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CN203816657U - Gun head regular filling device - Google Patents

Gun head regular filling device Download PDF

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Publication number
CN203816657U
CN203816657U CN201420136006.7U CN201420136006U CN203816657U CN 203816657 U CN203816657 U CN 203816657U CN 201420136006 U CN201420136006 U CN 201420136006U CN 203816657 U CN203816657 U CN 203816657U
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Prior art keywords
inner core
regular
filling
head
movable inner
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Chinese (zh)
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方文捷
陈敏
潘炜华
廖万清
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Second Military Medical University SMMU
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Second Military Medical University SMMU
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Abstract

本实用新型了一种将多个枪头一次性装填到枪头盒内的枪头规整装填装置,其特征在于,包括:一个输料分离部;和两个装填部,其中,输料分离部具有落料口,每个装填部包含:装填外壳;规整内芯;以及活动内芯,后壁部具有推离组件,该推离组件包含内凹洞和位于该内凹洞内的弹性推离头,规整内芯通过多个间隔板形成与落料口的数量相一致的多个容纳腔体,活动内芯具有:长条形槽道,多个出料口和多个推料口,以及穿插间隙,以及提拉件,当装配完成时,弹性推离头压缩在内凹洞内,一旦活动内芯沿着后壁部连续地提升出装填外壳,弹性推离头脱离挤压,通过推料口沿着长条形槽道将枪头由出料口连续地弹射到插孔中。

The utility model discloses a gun tip regular filling device for loading a plurality of gun tips into the gun tip box at one time, which is characterized in that it comprises: a feeding separation part; and two loading parts, wherein the feeding separation part With a blanking opening, each filling part includes: a filling shell; a regular inner core; and a movable inner core, the rear wall part has a push-off assembly, and the push-off assembly includes an inner cavity and an elastic push-off located in the inner cavity The regular inner core forms a plurality of accommodating cavities consistent with the number of blanking openings through a plurality of partition plates, and the movable inner core has: long strip grooves, multiple discharge openings and multiple pushing openings, and When the assembly is completed, the elastic push-off head is compressed in the inner cavity. Once the movable inner core is continuously lifted out of the filling shell along the rear wall, the elastic push-off head is detached from the extrusion, and the push-off head is pushed away. The material port continuously ejects the gun head from the material outlet into the socket along the long strip groove.

Description

枪头规整装填装置Gun tip regular filling device

技术领域technical field

本实用新型涉及在生化实验室使用的仪器设备技术领域,具体涉及一种将多个与移液器相配套使用的枪头进行规整后朝同一方向装填到消毒盒的插孔内的枪头规整装填装置。The utility model relates to the technical field of instruments and equipment used in biochemical laboratories, in particular to a method for aligning a plurality of pipettes used in conjunction with a pipette and then filling them into the socket of a disinfection box in the same direction. Filling device.

背景技术Background technique

在生化实验室中进行实验时,实验人员通常会较高频率地使用到移液器,与移液器相配套使用的枪头也会被大量使用到。在生化实验室中大量需要枪头的情况下,由于枪头为管状体,该管状体具有用于吸液的呈椎体的尖端和被移液器夹持的呈圆管的尾端,比较不规则,并且,大量的枪头被采购时被容纳在一个包装袋内为无序乱向地任意被堆放,为了能够大量使用枪头进行消毒或按序摆放好,实验人员就需要特别麻烦地将散落的各个枪头逐个插入到消毒盒的插孔内,费时费力、效率低下。When conducting experiments in biochemical laboratories, experimenters usually use pipettes more frequently, and the tips used with pipettes are also used in large quantities. In the case of a large number of pipette tips in the biochemical laboratory, because the pipette head is a tubular body, the tubular body has a pointed tip that is used to absorb liquid and a tail end that is a round tube held by a pipette. Irregular, and when a large number of gun tips are purchased, they are accommodated in a packaging bag and randomly stacked in random directions. In order to use a large number of gun tips for disinfection or arrange them in order, the experimenter needs to be particularly troublesome. It is time-consuming, laborious and inefficient to insert the scattered gun tips into the jacks of the disinfection box one by one.

现有技术的枪头装填设备中,可将多个枪头装填到消毒盒的插孔内的,然而却无法将多个枪头进行规整后朝同一方向进行装填,并且,现有枪头装填过程消毒盒仍需在一行的插孔内被打入枪头后再挪动一行接着被枪头装填设备打入下一行的插孔内,现有枪头装填过程比较麻烦,无法规整装填并且装填效率也不高。In the prior art gun tip filling equipment, multiple gun tips can be loaded into the socket of the sterilization box, but it is impossible to arrange the multiple gun tips and then load them in the same direction, and the existing gun tip loading The process disinfection box still needs to be driven into the gun head in the socket of one row, then moved one row and then driven into the socket of the next row by the gun head loading equipment. The existing gun head filling process is cumbersome, and the filling process cannot be adjusted according to the regulations and the filling efficiency Not high either.

实用新型内容Utility model content

本实用新型的目的在于提供一种能够将多个枪头一次性规整装填入消毒盒内装填效率高的枪头规整装填装置。The purpose of the utility model is to provide a device for neatly filling a plurality of gun tips into a disinfection box at one time and with high filling efficiency.

本实用新型提供的一种将多个具有尖端和尾端的枪头一次性装填到枪头盒的插孔内的枪头规整装填装置,其特征在于,包括:一个输料分离部;和两个装填部,其中,输料分离部具有与枪头盒中每行的插孔分别相对应的落料口,两个装填部分别与输料分离部相连接,在输料分离部下方两侧互相背向设置,每个装填部包含:装填外壳,具有开设有底向装配口的框架底部,开设有侧向装配口相对于枪头盒的框架侧部,以及与枪头盒相远离的后壁部;规整内芯,用于由底向装配口卡设装填外壳内;以及活动内芯,用于接收从落料口落下的枪头,由侧向装配口贯穿卡设装填外壳内,装填外壳、规整内芯以及活动内芯分别具有的宽度和厚度互相对应,框架侧部在两侧分别延伸具有用于卡嵌活动内芯的侧壁卡件,后壁部具有多个分别与每个插孔相对应的推离组件,该推离组件包含内凹洞和位于该内凹洞内的弹性推离头,规整内芯具有在宽度方向上等间距设置的多个间隔板,在装填外壳内装配的规整内芯,通过多个间隔板形成与落料口的数量相一致的多个容纳腔体,活动内芯具有:在底向壁上开设并且分别沿弹性推离头的延伸方向的多个长条形槽道,对应于每个长条形槽道在前向壁上开设的多个出料口和在后向壁上开设的多个推料口,以及供多个间隔板相对应穿插的穿插间隙,以及位于顶向壁上的提拉件,出料口和推料口分别与落入活动内芯时枪头的尖端和尾端相对应,当规整内芯、活动内芯装配在装填外壳内完成时,弹性推离头在活动内芯的挤压作用下压缩在内凹洞内,一旦提拉件带动活动内芯沿着后壁部连续地提升出装填外壳,弹性推离头脱离活动内芯的挤压,通过推料口沿着长条形槽道将枪头由出料口连续地弹射到相对应的插孔中。The utility model provides a device for filling a plurality of gun tips with sharp ends and tail ends into the socket of the gun tip box at one time, which is characterized in that it includes: a feeding separation part; and two The loading part, wherein, the feeding separation part has a blanking opening corresponding to each row of jacks in the gun tip box, and the two loading parts are respectively connected to the feeding separation part, and the two sides below the feeding separation part are connected to each other. Set on the back, each loading part includes: a loading shell, a frame bottom with a bottom-facing assembly opening, a frame side with a lateral assembly opening relative to the tip box, and a rear wall away from the tip box The regular inner core is used to clamp the filling shell from the bottom to the assembly port; and the movable inner core is used to receive the gun tip falling from the blanking port, and is inserted into the shell from the lateral assembly port to fill the shell. The width and thickness of the regular inner core and the movable inner core correspond to each other. The side parts of the frame extend on both sides and have side wall clips for inserting the movable inner core. The push-off assembly corresponding to the hole, the push-off assembly includes an inner cavity and an elastic push-off head located in the inner cavity, the regular inner core has a plurality of spacers arranged at equal intervals in the width direction, and in the filling shell The assembled regular inner core forms a plurality of accommodating cavities consistent with the number of blanking openings through a plurality of partition plates, and the movable inner core has: a plurality of chambers opened on the bottom-to-wall and respectively along the extending direction of the elastic push-off head. A strip-shaped channel, corresponding to each strip-shaped channel on the front wall to open a plurality of outlets and a plurality of push-out openings on the rear wall, and for a plurality of partitions corresponding The interspersed interspersed gap, as well as the lifting piece located on the top wall, the discharge port and the push port correspond to the tip and tail of the gun head when falling into the movable inner core respectively. When the regular inner core and the movable inner core are assembled When the filling shell is completed, the elastic push-off head is compressed in the inner cavity under the extrusion of the movable inner core. Once the lifting part drives the movable inner core to continuously lift out of the filling shell along the rear wall, the elastic push-off head The head is separated from the extrusion of the movable inner core, and the gun head is continuously ejected from the discharge port into the corresponding socket along the long strip channel through the push port.

在本实用新型的枪头规整装填装置中,还可以具有这样的特征:其中,规整内芯还具有支撑间隔板的底座,底向装配口的两侧设有卡嵌底座的弹性卡件。In the gun tip regular filling device of the present utility model, it may also have the following features: wherein, the regular inner core also has a base supporting the spacer plate, and elastic clips for snapping into the base are provided on both sides of the bottom toward the assembly port.

在本实用新型的枪头规整装填装置中,还可以具有这样的特征:其中,后向壁在每个推料口的上方设有一个挤压弹性推离头的楔形块。In the gun head regular filling device of the present utility model, it may also have such a feature: wherein, the rearward wall is provided with a wedge-shaped block for squeezing the elastic push-off head above each material pushing port.

在本实用新型的枪头规整装填装置中,还可以具有这样的特征:其中,弹性推离头包含弹簧和套装在弹簧前端的推子,推子的宽度小于长条形槽道的宽度,长条形槽道的宽度小于尾端的直径。In the gun head regular filling device of the present utility model, it can also have such a feature: wherein, the elastic push-off head includes a spring and a pusher set on the front end of the spring, the width of the pusher is smaller than the width of the elongated groove, and the length The width of the strip channel is smaller than the diameter of the tail end.

在本实用新型的枪头规整装填装置中,还可以具有这样的特征:其中,推料口的开口小于尾端的直径,出料口的开口大于尾端的直径。In the gun tip regular filling device of the present invention, it may also have such a feature: wherein, the opening of the pushing port is smaller than the diameter of the tail end, and the opening of the discharge port is larger than the diameter of the tail end.

在本实用新型的枪头规整装填装置中,还可以具有这样的特征:其中,推料口的外形为等腰梯形,矩形,以及圆弧形中的任意一种。In the regular filling device of the gun tip of the present invention, it may also have such a feature: wherein, the shape of the pushing port is any one of isosceles trapezoid, rectangle, and arc shape.

在本实用新型的枪头规整装填装置中,还可以具有这样的特征:其中,活动内芯的顶部设有分别与每个长条形槽道相一一对应的落料孔。In the regular filling device of the gun tip of the present invention, it may also have such a feature: wherein, the top of the movable inner core is provided with a blanking hole corresponding to each elongated channel respectively.

在本实用新型的枪头规整装填装置中,还可以具有这样的特征:其中,提拉件为把手,牵引绳,或拉环中的任意一种。In the gun tip regular filling device of the present invention, it may also have such a feature: wherein, the lifting member is any one of a handle, a pulling rope, or a pull ring.

实用新型的作用和效果:Function and effect of utility model:

本实用新型所涉及的枪头规整装填装置,因为两个装填部位于输料分离部的两侧,将规整内芯和活动内芯卡设入装填外壳完成后,分别接收由落料口落入容纳腔体的枪头,活动内芯的后向壁会将所有弹性推离头压缩在内凹洞内,一旦提拉件带动活动内芯沿着后壁部连续地提升出装填外壳,弹性推离头脱离后向壁的挤压,通过推料口沿着长条形槽道将枪头由出料口连续地弹射到相对应的插孔中,提拉件的带动过程是与枪头由出料口弹射到相对应的插孔中的过程相同步的,也就是带动过程是连续的那么一行行弹射的过程也是连续的,因此,本实用新型的枪头规整装填装置能够将多个枪头一次性规整装填入消毒盒内并且装填效率很高。The gun head regular filling device involved in the utility model, because the two filling parts are located on both sides of the feeding separation part, after the regular inner core and the movable inner core are snapped into the filling shell, they are respectively received and dropped from the feeding port. The gun head of the housing cavity, the rear wall of the movable inner core will compress all the elastic push-off heads in the inner cavity, once the lifting part drives the movable inner core to continuously lift out of the filling shell along the rear wall, the elastic push After the head is separated from the extrusion to the wall, the gun head is continuously ejected from the discharge port to the corresponding socket through the push port along the long strip groove. The process of ejecting the discharge port into the corresponding jack is synchronized, that is, the driving process is continuous, so the process of ejecting row by row is also continuous. The first time is neatly packed into the sterilization box and the filling efficiency is very high.

附图说明Description of drawings

图1是本实用新型的实施例中枪头规整装填装置的结构示意图;Fig. 1 is the structural representation of the regular filling device of gun tip in the embodiment of the present utility model;

图2是本实用新型的实施例中枪头规整装填装置涉及枪头的结构示意图;Fig. 2 is a schematic diagram of the structure of the gun head regular filling device in an embodiment of the present invention involving the gun head;

图3是本实用新型的实施例中输料分离部的结构示意图;Fig. 3 is the structural representation of the conveying separation part in the embodiment of the utility model;

图4(a)是实施例中第一分离体的分离用推件处于未拨时的结构示意图;Fig. 4(a) is a schematic structural view of the separation pusher of the first separation body in the embodiment when it is not dialed;

图4(b)是实施例中第一分离体的分离用推件处于正拨时的结构示意图;Fig. 4(b) is a schematic diagram of the structure of the pusher for separation of the first separation body in the embodiment when it is dialing;

图4(c)是实施例中第一分离体的分离用推件处于拨完时的结构示意图;Fig. 4(c) is a schematic structural view of the separation pusher of the first separation body in the embodiment when it is dialed out;

图5(a)是实施例中第二分离体的分离用推件处于未拨时的结构示意图;Fig. 5(a) is a schematic structural view of the separation pusher of the second separation body in the embodiment when it is not dialed;

图5(b)是实施例中第二分离体的分离用推件处于正拨时的结构示意图;Fig. 5(b) is a schematic diagram of the structure of the pusher for separation of the second separation body in the embodiment when it is dialing;

图5(c)是实施例中第二分离体的分离用推件处于拨完时的结构示意图;Fig. 5(c) is a schematic structural view of the separation pusher of the second separation body in the embodiment when it is dialed out;

图6是本实用新型的实施例中装填部的立体组装结构示意图;Fig. 6 is a schematic diagram of the three-dimensional assembly structure of the loading part in the embodiment of the present invention;

图7是本实用新型的实施例中装填部中装填外壳的局部放大结构示意图;Fig. 7 is a partially enlarged structural schematic diagram of the filling shell in the filling part in the embodiment of the present utility model;

图8是本实用新型的实施例中装填部的前视结构示意图;Fig. 8 is a schematic diagram of the front view structure of the filling part in the embodiment of the present utility model;

图9(a)是实施例中装填部与消毒盒处于第一状态的结构示意图;Fig. 9(a) is a schematic structural view of the loading part and the sterilization box in the first state in the embodiment;

图9(b)是实施例中装填部与消毒盒处于第二状态的结构示意图;Fig. 9(b) is a schematic structural view of the filling part and the sterilization box in the second state in the embodiment;

图9(c)是实施例中装填部与消毒盒处于第三状态的的结构示意图;以及Figure 9(c) is a schematic structural view of the loading part and the sterilization box in the third state in the embodiment; and

图10是本实用新型的变形例中活动内芯的立体结构示意图。Fig. 10 is a three-dimensional structural schematic diagram of a movable inner core in a modified example of the present invention.

具体实施方式Detailed ways

下面结合附图和实施例对本实用新型进一步说明。Below in conjunction with accompanying drawing and embodiment the utility model is further described.

图1是本实用新型的实施例中枪头规整装填装置的结构示意图。Fig. 1 is a schematic structural view of a gun tip regular filling device in an embodiment of the present invention.

如图1所示,在本实施例中的枪头规整装填装置100,用于对多个枪头1进行规整。枪头1是被用来和图中未显示的移液器相配套使用的,被规整后并会都朝同一方向被装填到未显示的消毒盒的插孔内。枪头规整装填装置100包括:位于图1中间位置的一个输料分离部11和位于图1两边位置的第一装填部12、第二装填部13。As shown in FIG. 1 , the device 100 for aligning and filling pipette tips in this embodiment is used for regularizing a plurality of pipette tips 1 . The gun tip 1 is used to be used in conjunction with the pipette not shown in the figure, and will be loaded into the jack of the sterile box not shown in the same direction after being regularized. The gun tip structured filling device 100 includes: a feeding separation part 11 located in the middle of FIG. 1 , and a first loading part 12 and a second loading part 13 located on both sides of FIG. 1 .

图2是本实用新型的实施例中枪头规整装填装置所涉及的枪头的结构示意图。Fig. 2 is a schematic structural view of the gun head involved in the gun head regular filling device in the embodiment of the present utility model.

如图2所示,提供了经常使用到的枪头1的结构图,枪头1具有一个用于吸液的尖端1a和一个被图中未显示的移液器夹持的尾端1b。As shown in FIG. 2 , a structure diagram of a commonly used pipette head 1 is provided. The pipette head 1 has a tip 1 a for aspirating liquid and a tail end 1 b held by a pipette not shown in the figure.

图3是本实用新型的实施例中输料分离部的结构示意图。Fig. 3 is a schematic structural view of the conveying separation part in the embodiment of the utility model.

图3是由图1中侧视输料分离部11所呈现的结构,即图1中的输料分离部11在厚度方向上与左右侧的第一装填部12、第二装填部13分别对应具有十二个落料口111,这些落料口111的数量、以及落料口111之间间距等都是与消毒盒中每行的插孔的数量和间距相对应的。在本实施例中,消毒盒中每行的插孔的数量为十二个,那么如图3所示,落料口111的数量也为十二个。Fig. 3 is the structure presented by the side view conveying separation part 11 in Fig. 1, that is, the conveying separation part 11 in Fig. 1 corresponds to the first filling part 12 and the second filling part 13 on the left and right sides respectively in the thickness direction There are twelve discharge openings 111, and the number of these discharge openings 111 and the spacing between the discharge openings 111 are all corresponding to the number and spacing of the insertion holes in each row in the sterilization box. In this embodiment, the number of sockets in each row in the sterilization box is twelve, so as shown in FIG. 3 , the number of discharge openings 111 is also twelve.

那么,在图3中用“大直径圆”代表了较粗的尾端1b,用“小直径圆”代表了较尖细的尖端1a,可以得知,输料分离部11的堆料体中的这些枪头1在重力方向上互相往下挪落,并且是无规律被堆放,经由梳筛,将这些枪头1互相平行但朝向不同地最终落入了十二个分离体112当中,从图3中F箭头方向所指的第一顺序的分离体112作为第一分离体112a,第二顺序的分离体112作为第二分离体112b。由图3可知,各个分离体112中各个枪头1叠落朝向是随机的。Then, represent the thicker tail end 1b with "large diameter circle" in Fig. 3, have represented the thinner tip 1a with "small diameter circle", it can be known that in the stacking body of the feeding separation part 11 These gun heads 1 move down to each other in the direction of gravity, and are stacked irregularly. After combing and sieving, these gun heads 1 are parallel to each other but with different orientations and finally fall into twelve separate bodies 112, from which The separation body 112 of the first order indicated by the direction of arrow F in FIG. 3 serves as the first separation body 112a, and the separation body 112 of the second order serves as the second separation body 112b. It can be seen from FIG. 3 that the stacking orientation of each gun tip 1 in each separation body 112 is random.

图4(a)、图4(b)及图4(c)是实施例中第一分离体112a的分离用推件处于未拨时、正拨时以及拨完时的结构示意图,显示的都是同一个分离体内不同状态的结构示意图。Fig. 4(a), Fig. 4(b) and Fig. 4(c) are schematic diagrams of the structure of the separation pusher of the first separation body 112a in the embodiment when it is not dialed, when it is dialed and when it is dialed. It is a schematic diagram of the structure of different states in the same isolate.

第一分离体112a具有:底板113、分离用推件114以及位于左、右的两个落料口111。The first separation body 112a has: a bottom plate 113, a push piece 114 for separation, and two discharge openings 111 located on the left and right.

分离用推件114在未显示的滑槽内,图4(a)首先是处于位于最下方接触底板113的枪头1的靠近尖端1a的左边侧位置上,由于该分离用推件114从底板113上凸起的凸起高度略小于枪头1的尖端1a与底板113之间高度,如图4(b)所示,该分离用推件114就沿着最下方接触底板113的枪头1的下侧壁滑过,又由于图4(b)虚线圈中所示,落料口111与底板113之间宽度略小于枪头1的尾端1b的直径的,此时的尾端1b却被右边的落料口111抵卡住了,这种情况下,分离用推件114在由枪头1的尖端1a向尾端1b推动该枪头1时,由于推动力度足够小,如图4(c)所示,分离用推件114沿着滑槽内,最终处于位于最下方接触底板113的枪头1的靠近尾端1b的右边侧位置上。结合图4(a)、图4(b)、图4(c)总体来说,分离用推件114由尖端1a向尾端1b推动时根本无法推移这个最下方接触底板113的枪头1。The push piece 114 for separation is in the chute not shown, and Fig. 4(a) is at first located on the left side of the tip 1a of the gun head 1 which contacts the base plate 113 at the bottom. The height of the protrusion on 113 is slightly smaller than the height between the tip 1a of the gun head 1 and the bottom plate 113. As shown in FIG. The lower side wall of the gun head 1 slides over, and as shown in the dotted circle in Figure 4 (b), the width between the blanking opening 111 and the bottom plate 113 is slightly smaller than the diameter of the tail end 1b of the gun head 1, and the tail end 1b at this time is It is blocked by the blanking port 111 on the right. In this case, when the pusher 114 for separation pushes the gun head 1 from the tip 1a of the gun head 1 to the tail end 1b, since the pushing force is small enough, as shown in Figure 4 As shown in (c), the push piece 114 for separation moves along the chute, and finally is located at the right side of the gun head 1 that is at the bottom and contacts the bottom plate 113 near the tail end 1b. 4(a), 4(b), and 4(c), in general, when the separation pusher 114 is pushed from the tip 1a to the tail end 1b, it is impossible to push the gun head 1 that contacts the bottom plate 113 at the bottom.

与图4相应的,图5(a)、图5(b)、图5(c)分别是第二分离体112b内所对应具有的分离用推件114处于未拨时、正拨时以及拨完时的结构示意图。Corresponding to Fig. 4, Fig. 5(a), Fig. 5(b) and Fig. 5(c) respectively show that the separation pusher 114 corresponding to the second separation body 112b is in the state of not dialing, being dialing and dialing. Schematic diagram of the finished structure.

如图5(a)所示,分离用推件114在未显示的滑槽内,首先是处于位于最下方接触底板113的枪头1的靠近尾端1b的左边侧位置上,由于分离用推件114在尾端1b推动该枪头1时由于推动力度足够大,如图5(b)所示,推动着该枪头1由右边的落料口111掉落而出,是该枪头1的尖端1a先离开落料口111后,紧接着该尾端1b被稍稍挤压也相继离开了右边的落料口111,如图5(c)所示,图5(a)中最下方接触底板113的枪头1分离后,那么叠设在上方的枪头1则由于重力落下与底板113相接触,此时,分离用推件114在滑槽内处于了枪头1的靠近尖端1a的右边侧位置上。结合图5(a)、图5(b)、图5(c)总体来说,分离用推件114能够由尾端1b向尖端1a推动、推移最下方接触底板113的枪头1的。As shown in Fig. 5(a), the push piece 114 for separation is in the chute not shown, and it is firstly located on the left side of the gun head 1 which contacts the bottom plate 113 near the tail end 1b. When the part 114 pushes the gun head 1 at the tail end 1b, because the pushing force is strong enough, as shown in Figure 5(b), it pushes the gun head 1 to fall out from the blanking port 111 on the right, which is the gun head 1 After the tip 1a of the tip leaves the discharge port 111 first, the tail end 1b is squeezed slightly and leaves the discharge port 111 on the right one after another, as shown in Figure 5(c), and the bottom contact in Figure 5(a) After the gun head 1 of the bottom plate 113 is separated, the gun head 1 stacked on the top then falls to contact the bottom plate 113 due to gravity. on the right side position. 5(a), 5(b), and 5(c), in general, the separation pusher 114 can be pushed from the tail end 1b to the tip 1a, and pushes the gun head 1 that contacts the bottom plate 113 at the bottom.

可以得知,根据上述的图4和图5中第一分离体112a、第二分离体112b,图3中朝内或朝外方向的枪头1只能分别朝各自尖端1a方向分别由两侧的落料口111推移出从而被分离。It can be known that, according to the above-mentioned first separating body 112a and second separating body 112b in Fig. 4 and Fig. 5, the gun tip 1 facing inwardly or outwardly in Fig. The blanking port 111 is pushed out so as to be separated.

图6是本实用新型的实施例中装填部的立体组装结构示意图。Fig. 6 is a schematic diagram of the three-dimensional assembly structure of the loading part in the embodiment of the present invention.

由图1中输料分离部11的左右两侧的落料口111分别被分离的枪头,所具有的朝向是相一致,分别朝外地落入了第一装填部12和第二装填部13当中。第一装填部12和第二装填部13分别与输料分离部11相连接,在输料分离部11下方两侧互相背向设置,结构是相对称的,在这里,仅通过图6来详细说明第一装填部12的结构,第二装填部13的结构相同省略同样的说明。The gun tips separated by the discharge openings 111 on the left and right sides of the feeding separation part 11 in FIG. among. The first loading part 12 and the second loading part 13 are respectively connected with the feeding separation part 11, and the two sides under the feeding separation part 11 are arranged opposite to each other, and the structures are relatively symmetrical. Here, only through FIG. The structure of the first loading portion 12 will be described, and the same structure of the second loading portion 13 will be omitted.

如图6所示,装填部12包含:装填外壳14、规整内芯15以及活动内芯16。通过装填外壳14、规整内芯15以及活动内芯16三者之间组装形成一个装填部12。As shown in FIG. 6 , the filling part 12 includes: a filling shell 14 , a regular inner core 15 and a movable inner core 16 . A filling part 12 is formed by assembling among the filling shell 14 , the regular inner core 15 and the movable inner core 16 .

装填外壳14,具有框架底部141、框架侧部142以及后壁部143。朝底侧方向,框架底部141开设有一个底向装配口141a。与消毒盒相靠近的朝前侧方向,框架侧部142开设有一个相对于未显示的消毒盒的侧向装配口142a。后壁部143远离于消毒盒,与框架侧部142相对。The loading case 14 has a frame bottom 141 , a frame side 142 and a rear wall 143 . Towards the bottom side, the frame bottom 141 defines a bottom-facing assembly opening 141a. In the direction of the front side close to the sterilization box, the side part 142 of the frame is provided with a side assembly opening 142a relative to the sterilization box not shown. The rear wall portion 143 is away from the sterilization box and is opposite to the frame side portion 142 .

由图6中所显示的安装顺序箭头可知,首先是,规整内芯15由底向装配口141a被卡设装填外壳14内,其次是,活动内芯16由侧向装配口142a被卡设装填外壳14内。It can be seen from the arrows of the installation sequence shown in Figure 6 that, firstly, the regular inner core 15 is clamped from the bottom to the assembly opening 141a to be loaded into the casing 14, and secondly, the movable inner core 16 is clamped to be loaded from the lateral assembly opening 142a. Inside the shell 14.

装填外壳14具有的高度H1、宽度L1和厚度W1,活动内芯16具有的高度H2、宽度L2和厚度W2,规整内芯15具有的高度H3、宽度L3和厚度W3。三者的宽度考虑到与消毒盒的宽度相对应,三者的厚度考虑到与枪头的长度相对应。为了使得在装填外壳14内规整内芯15和活动内芯16被卡设牢稳,三者的高度、宽度和厚度都是分别互相对应的。The packing shell 14 has a height H1, a width L1 and a thickness W1, the movable inner core 16 has a height H2, a width L2 and a thickness W2, and the regular inner core 15 has a height H3, a width L3 and a thickness W3. The width of the three is considered to be corresponding to the width of the sterilization box, and the thickness of the three is considered to be corresponding to the length of the gun head. In order to make the regular inner core 15 and the movable inner core 16 firmly clamped in the filling shell 14, the height, width and thickness of the three are all corresponding to each other.

框架侧部142在左、右两侧分别延伸具有侧壁卡件142b。在这两条侧壁卡件142b的抵挡下当活动内芯16卡嵌入装填外壳14后就被限制在了装填外壳14内。The frame side portion 142 has side wall clips 142b extending on the left and right sides respectively. Under the resistance of the two side wall clips 142b, when the movable inner core 16 is inserted into the filling shell 14, it is restricted in the filling shell 14.

为了与本实施例中未显示消毒盒中每行12个插孔、以及图3中12个落料口111的数量相对应,规整内芯15具有在宽度方向上等间距设置的十一个间隔板151以及支撑这十一个间隔板151的底座152。在装填外壳14内装配的规整内芯15,通过该十一个间隔板151和装填外壳14的两个内腔侧壁,形成十二个用于容纳同朝外向落入的枪头的容纳腔体153。那么,在装填外壳14的底向装配口141a的两侧设有卡嵌、承托该底座152的弹性卡件141b。In order to correspond to the number of 12 jacks in each row in the sterilization box and the 12 discharge openings 111 in Fig. 3 not shown in this embodiment, the regular inner core 15 has eleven intervals arranged at equal intervals in the width direction plate 151 and a base 152 supporting the eleven spacer plates 151 . The regular inner core 15 assembled in the filling shell 14, through the eleven spacers 151 and the two inner cavity side walls of the filling shell 14, forms twelve accommodating cavities for accommodating the gun tips falling into the same outward direction. Body 153. Then, on both sides of the bottom of the filling shell 14 facing the assembly opening 141 a, there are elastic clips 141 b that engage and support the base 152 .

活动内芯16具有底向壁、前向壁、后向壁以及顶向壁,其他两个左右壁为镂空。The movable inner core 16 has a bottom-facing wall, a forward-facing wall, a rear-facing wall and a top-facing wall, and the other two left and right walls are hollowed out.

顶向壁上设有分别与十二个落料口111相对应用于接收落下的枪头的十二个落料孔161。Twelve discharge holes 161 corresponding to the twelve discharge openings 111 for receiving dropped gun tips are provided on the top wall.

为了不影响枪头落入落料孔161内,提拉件162设置在顶向壁的向外伸出位置上,本实施例中提拉件162为把手。底向壁上开设十二个长条形槽道163,该长条形槽道163都是沿弹性推离头的延伸方向上开设的,每个长条形槽道163与顶部的落料孔161是相一一对应的。In order not to affect the falling of the gun head into the discharge hole 161 , the lifting member 162 is arranged on the outwardly protruding position of the top wall. In this embodiment, the lifting member 162 is a handle. Twelve strip-shaped channels 163 are provided on the bottom to the wall, and the strip-shaped channels 163 are all provided along the extension direction of the elastic push-off head. 161 is a one-to-one correspondence.

对应于每个长条形槽道163的位置,前向壁上开设多个出料口164,在后向壁上开设的多个推料口165,推料口165与落入活动内芯16时枪头的尾端1b相对应。出料口164与落入活动内芯16时枪头的尖端1a相对应。Corresponding to the position of each elongated channel 163, a plurality of discharge openings 164 are provided on the forward wall, and a plurality of pushing openings 165 are provided on the rear wall, and the pushing openings 165 and the movable inner core 16 fall into each other. When the tail end 1b of the gun head is corresponding. The outlet 164 corresponds to the tip 1a of the gun head when it falls into the movable inner core 16 .

为了供规整内芯15的11个间隔板151相对应穿插而入,活动内芯16设有相对应的多个穿插间隙166。In order to allow the eleven partition plates 151 of the regular inner core 15 to be inserted correspondingly, the movable inner core 16 is provided with a plurality of corresponding insertion gaps 166 .

图7是本实用新型的实施例中装填部中装填外壳的局部放大结构示意图。Fig. 7 is a partially enlarged structural schematic diagram of the loading shell in the loading part in the embodiment of the present utility model.

图7显示出图6中字母A圈框中所指示的局部放大结构,图6可知,后壁部143具有多个推离组件1431,推离组件1431是分别与消毒盒中每个插孔相一一对应的。后壁部143是具有一定的厚度的,每个推离组件1431包含内凹洞1431a和位于该内凹洞1431a内的弹性推离头1431b,当弹性推离头1431b处于未被压缩的状态时,弹性推离头1431b伸出内凹洞1431a外,当弹性推离头1431b在装配完成后的活动内芯16挤压下处于被压缩的状态时,则被压缩在内凹洞1431a内。Fig. 7 shows the partial enlarged structure indicated in the letter A circle box in Fig. 6, and Fig. 6 shows that rear wall portion 143 has a plurality of push-off assemblies 1431, and push-off assemblies 1431 are respectively corresponding to each jack in the sterilization box corresponding. The rear wall portion 143 has a certain thickness, and each push-off assembly 1431 includes an inner concave hole 1431a and an elastic push-off head 1431b located in the inner concave hole 1431a, when the elastic push-off head 1431b is in an uncompressed state The elastic push-off head 1431b protrudes out of the inner concave hole 1431a, and when the elastic push-off head 1431b is in a compressed state under the extrusion of the movable inner core 16 after assembly, it is compressed in the inner concave hole 1431a.

图7可知,弹性推离头1431b包含弹簧和套装在弹簧前端的圆柱形的推子,该推子的宽度小于长条形槽道163的宽度,以便在长条形槽道163内伸缩由推料口165推离枪头。长条形槽道163的宽度小于尾端1b的直径,推料口165的开口也应小于尾端1b的直径,否则无法承托枪头,以免枪头从长条形槽道163掉落出活动内芯16。在本实施例中,推料口165的外形为等腰梯形,其实也可以为矩形,以及圆弧形中的任意一种。出料口164的开口应大于尾端1b的直径,以便于枪头被弹射出出料口164。It can be seen from Fig. 7 that the elastic push-off head 1431b includes a spring and a cylindrical pusher set on the front end of the spring, the width of the pusher is smaller than the width of the elongated groove 163, so that it can be stretched in the elongated groove 163 by pushing The feed port 165 is pushed away from the gun head. The width of the elongated channel 163 is smaller than the diameter of the tail end 1b, and the opening of the push port 165 should also be smaller than the diameter of the tail end 1b, otherwise the gun head cannot be supported to prevent the gun head from falling out of the elongated channel 163. Movable inner core 16. In this embodiment, the shape of the pushing port 165 is an isosceles trapezoid, but it can also be any one of a rectangle and an arc shape. The opening of the discharge port 164 should be larger than the diameter of the tail end 1b, so that the gun head is ejected out of the discharge port 164.

当规整内芯15、活动内芯16装配在装填外壳14内完成时,在侧壁卡件142b的抵挡作用下将活动内芯16限制在装填外壳14内,从而弹性推离头1431b在活动内芯16的挤压作用下压缩在内凹洞1431a内。When the regular inner core 15 and the movable inner core 16 are assembled in the filling shell 14, the movable inner core 16 is limited in the filling shell 14 under the resistance of the side wall clip 142b, so that the elastic push-off head 1431b is in the movable The core 16 is compressed in the inner cavity 1431a under the extrusion action.

图8是本实用新型的实施例中装填部的前视结构示意图。Fig. 8 is a front structural schematic diagram of the loading part in the embodiment of the present invention.

图8呈现的是由外侧观察的规整内芯、活动内芯以及装填外壳已装配完成时装填部12的结构示意图。此时,图8显示的是提拉件162已带动活动内芯16向上提拉一定距离。FIG. 8 presents a structural schematic diagram of the filling part 12 when the regular inner core, the movable inner core, and the filling shell are assembled, viewed from the outside. At this time, FIG. 8 shows that the lifting member 162 has driven the movable inner core 16 to lift upward for a certain distance.

由图6至图8可知,一旦提拉件162带动活动内芯16沿着后壁部143连续地提升出装填外壳14,弹性推离头1431b脱离活动内芯16的挤压,通过推料口165沿着长条形槽道163将枪头由出料口164连续地弹射到消毒盒相对应的插孔中。It can be seen from Figures 6 to 8 that once the lifting member 162 drives the movable inner core 16 to continuously lift out of the filling shell 14 along the rear wall 143, the elastic push-off head 1431b breaks away from the extrusion of the movable inner core 16 and passes through the pushing port. 165 continuously ejects the gun tip from the outlet 164 into the corresponding socket of the sterilization box along the elongated channel 163 .

图9(a)、图9(b)、图9(c)是实施例中活动内芯刚被提拉时、提拉过程中、已提拉出时的装填部与消毒盒处于各状态时的结构示意图,显示的是图6、图8中装填部装配完成后的侧向剖视图,。Fig. 9(a), Fig. 9(b), and Fig. 9(c) are the loading part and the sterilization box in each state when the movable inner core is just pulled, during the pulling process, and when it has been pulled out in the embodiment The schematic diagram of the structure shows the side sectional view of the assembled part in Fig. 6 and Fig. 8 after completion.

如图9(a)所示,位于左侧的为待装填枪头的消毒盒9,位于右侧的为装填部12。消毒盒9和装填部12可直接在未显示的桌面上相对向设置,消毒盒9的盒盖9a处于被打开状态。As shown in FIG. 9( a ), the one on the left side is the sterilization box 9 to be filled with gun tips, and the one on the right side is the loading part 12 . The sterilization box 9 and the loading part 12 can be arranged opposite to each other directly on the desktop not shown, and the lid 9a of the sterilization box 9 is in an opened state.

位于活动内芯16上,在对应于每个推料口的上方,后向壁外都分别设有一个用于挤压弹性推离头1431b的楔形块167,即图中所显示的三角形凸起,通过位于后向壁和弹性推离头1431b之间的楔形块167,增加了每个弹性推离头1431b被压缩的程度,从而一旦弹性推离头1431b脱离挤压,就加大了弹性推离头1431b推离枪头时的推力。Located on the movable inner core 16, a wedge-shaped block 167 for extruding the elastic push-off head 1431b is provided on the top corresponding to each pushing port and outside the rear wall, that is, the triangular protrusion shown in the figure , through the wedge-shaped block 167 between the rearward wall and the elastic push-off head 1431b, the degree to which each elastic push-off head 1431b is compressed is increased, so that once the elastic push-off head 1431b is detached from extrusion, the elastic push is increased. Thrust from head 1431b when pushing away from gun head.

提拉件162在沿着F方向上被提拉,带动活动内芯16沿着装填外壳14的后壁部143朝上移动一定距离,由图9(a)可知,最下方的第一行弹性推离头1431b脱离了活动内芯16的挤压,由推料口165将枪头通过图6中显示的长条形槽道163由出料口164弹射到相对应的消毒盒9的最下方的一行插孔内。从下方开始的第二行弹性推离头1431b也是一直被活动内芯16的后向壁所挤压,直至此时经过与楔形块167后,相对移动至推料口165的位置,脱离了活动内芯16的后向壁的挤压,在推料口165中释放弹性,顺势推着在活动内芯16内由于自由重力原因已掉下的第二行枪头由出料口164弹射而出。The pulling member 162 is pulled along the F direction, which drives the movable inner core 16 to move upward for a certain distance along the rear wall 143 of the filling shell 14. It can be seen from Fig. 9(a) that the first row at the bottom is elastic The push-off head 1431b breaks away from the extrusion of the movable inner core 16, and the gun head is ejected from the discharge port 164 to the bottom of the corresponding sterilization box 9 through the strip channel 163 shown in FIG. 6 by the push port 165 in a row of jacks. The second row of elastic push-off heads 1431b from the bottom has also been squeezed by the rearward wall of the movable inner core 16 until it passes through the wedge-shaped block 167 and relatively moves to the position of the pushing port 165, breaking away from the movable The extrusion of the rear wall of the inner core 16 releases the elasticity in the pushing port 165, and pushes the second row of gun tips that have fallen due to free gravity in the movable inner core 16 to be ejected from the discharging port 164. .

由于视角原因,在图中仅显示出一个枪头弹射入插孔的状态,未显示出,在装填部12的宽度方向上其他十一个枪头以及弹性推离头1431b的状态,一行中的十二个弹性推离头1431b同时被释放,十二个枪头同时被弹射入一行中的十二个插孔内的。Due to the viewing angle, only one gun head is projected into the socket in the figure, and the state of the other eleven gun heads and the elastic push-off head 1431b in the width direction of the loading part 12 is not shown. Twelve elastic push-off heads 1431b are released simultaneously, and twelve gun heads are ejected into twelve jacks in a row at the same time.

由图9(a)的状态基础上,如图9(b)所示,提拉件162在沿着F方向上被继续提拉,带动活动内芯16沿着装填外壳14的后壁部143朝上移动一定距离,大约被提拉到装填外壳14的一半高度,则枪头被弹射入相应的第二行至第四行的插孔内,那么位于活动内芯16内上层堆积的那些枪头由于重力作用落在了图6中的长条形槽道163上,等待被弹性推离头1431b弹射而推离出。Based on the state of FIG. 9( a ), as shown in FIG. 9( b ), the pulling member 162 is continuously pulled along the F direction, driving the movable inner core 16 along the rear wall 143 of the filling shell 14 Move a certain distance upwards, and be pulled to about half the height of the filling shell 14, then the gun heads are ejected into the corresponding second to fourth row jacks, and then those guns that are stacked on the upper layer in the movable inner core 16 The head falls on the elongated groove 163 in FIG. 6 due to gravity, and waits to be ejected and pushed away by the elastically pushed away head 1431b.

如图9(c)所示,随着提拉件162的连续提拉,活动内芯16提拉出整个装填外壳14,消毒盒9在完成八行枪头的规整装填后,盖上盒盖9a即可。As shown in Figure 9(c), with the continuous pulling of the pulling member 162, the movable inner core 16 pulls out the entire filling shell 14, and the disinfection box 9 is covered with the lid after the regular filling of the eight rows of gun tips is completed. 9a will do.

图10是本实用新型的变形例中活动内芯的立体结构示意图。Fig. 10 is a three-dimensional structural schematic diagram of a movable inner core in a modified example of the present invention.

上述实施例中提拉件162为设置在顶向壁的向外伸出位置上的把手。如图10所示,在本实用新型中,只要是不影响枪头的落入以及能够顺利带动活动内芯16的提拉,提拉件可以为软绳拉件262,该软绳拉件262包含一个固定在顶向壁上的牵引绳262a、以及与牵引绳262a相连接的拉环262b。由图10可以得知,当采用软绳拉件262时,活动内芯16的顶向壁也无需设置向外伸出的结构。提拉件可以为把手,牵引绳,或拉环中的任意一种。In the above-mentioned embodiment, the lifting member 162 is a handle arranged at a position protruding outward against the wall. As shown in Figure 10, in the utility model, as long as it does not affect the falling of the gun head and can smoothly drive the lifting of the movable inner core 16, the lifting part can be a soft rope pulling part 262, and the soft rope pulling part 262 It includes a pulling rope 262a fixed on the top facing wall, and a pull ring 262b connected with the pulling rope 262a. It can be seen from FIG. 10 that when the flexible rope puller 262 is used, the top wall of the movable inner core 16 does not need to be provided with an outwardly protruding structure. The lifting part can be any one of a handle, a traction rope, or a pull ring.

实施例的作用与效果Function and effect of embodiment

本实施例所涉及的枪头规整装填装置,因为两个装填部位于输料分离部的两侧,将规整内芯和活动内芯卡设入装填外壳完成后,分别接收由落料口落入容纳腔体的枪头,活动内芯的后向壁会将所有弹性推离头压缩在内凹洞内,一旦提拉件带动活动内芯沿着后壁部连续地提升出装填外壳,弹性推离头脱离后向壁的挤压,通过推料口沿着长条形槽道将枪头由出料口连续地弹射到相对应的插孔中,提拉件的带动过程是与枪头由出料口弹射到相对应的插孔中的过程相同步的,也就是带动过程是连续的那么一行行弹射的过程也是连续的,因此,本实施例的枪头规整装填装置能够将多个枪头一次性连续地规整装填入消毒盒内并且装填效率很高。The gun head regular filling device involved in this embodiment, because the two filling parts are located on both sides of the feeding separation part, after the regular inner core and the movable inner core are snapped into the filling shell, they are respectively received from the feeding port. The gun head of the housing cavity, the rear wall of the movable inner core will compress all the elastic push-off heads in the inner cavity, once the lifting part drives the movable inner core to continuously lift out of the filling shell along the rear wall, the elastic push After the head is separated from the extrusion to the wall, the gun head is continuously ejected from the discharge port to the corresponding socket through the push port along the long strip groove. The process of ejecting the discharge port into the corresponding jack is synchronous, that is, the driving process is continuous, so the process of ejecting row by row is also continuous. The first batch is continuously and neatly packed into the sterilization box and the filling efficiency is very high.

另外,在本实施例的枪头规整装填装置中,通过后向壁在每个推料口的上方设置的楔形块,能够更大程度地挤压弹性推离头,使得弹性推离头的推离力更大,使得枪头一次性连续地弹射入消毒盒内的过程更加高效顺利。In addition, in the gun tip regular filling device of this embodiment, the wedge-shaped block arranged on the rearward wall above each material pushing port can squeeze the elastic push-off head to a greater extent, so that the push-off head of the elastic push-off head The greater separation force makes the process of ejecting the gun head into the disinfection box more efficient and smooth at one time and continuously.

上述实施方式为本实用新型的优选案例,并不用来限制本实用新型的保护范围。The above embodiments are preferred cases of the present utility model, and are not intended to limit the protection scope of the present utility model.

在实施例中,活动内芯的顶部设有分别与每个长条形槽道相一一对应的落料孔,在本实用新型中,活动内芯的顶部也为敞口状态,不设置落料孔也是可以的。In the embodiment, the top of the movable inner core is provided with blanking holes corresponding to each elongated channel respectively. Feed hole is also possible.

Claims (8)

1. multiple rifle property first time with most advanced and sophisticated and tail end are loaded into the regular filling device of rifle head in the jack of rifle head box, it is characterized in that, comprising: a conveying separation unit; With two filling departments,
Wherein, described conveying separation unit has the blanking port corresponding with the described jack difference of every row in described rifle head box,
Two described filling departments are connected with described conveying separation unit respectively, and below described conveying separation unit, both sides arrange mutually dorsad, and each described filling department comprises:
Filling shell, have and offer the base of frame of the end to installation opening, offer the frame side of side direction installation opening with respect to described rifle head box, and with described rifle head box away from rear wall parts;
Regular inner core, for being established in described filling shell to installation opening card by the described end; And
Movable inner core, for receiving the described rifle head falling from described blanking port, runs through card by described side direction installation opening and establishes in described filling shell,
The width that described filling shell, described regular inner core and described movable inner core have respectively and thickness in correspondence with each other,
Described frame side extends respectively the sidewall fastener having for movable inner core described in inlay card in both sides,
Described rear wall parts has multiple corresponding with each described jack assemblies that push away respectively, and this pushes away the elasticity that assembly comprises interior pothole and be positioned at this pothole and pushes away head,
Described regular inner core has the multiple space bars that arrange in described width equal intervals, and the described regular inner core assembling in described filling shell forms multiple the hold cavitys consistent with the quantity of described blanking port by described multiple space bars,
Described movable inner core has: the end of to multiple strip conduits of offering and pushing away along described elasticity respectively the bearing of trend of head on wall, multiple discharging openings of offering in forward directed wall corresponding to each described strip conduit and at rear multiple pusher mouths to offering on wall, and for the corresponding interspersed interspersed gap of described multiple space bars, and be positioned at top to the lifting piece on wall
Described discharging opening and described pusher mouth respectively when falling into described movable inner core described in described tip and the described tail end of rifle head corresponding,
When described regular inner core, described movable inner core are assemblied in while completing in described filling shell, described elasticity push away head in the squeezing action lower compression of described movable inner core in described interior pothole,
Once described lifting piece drives described movable inner core to be lifted out continuously described filling shell along described rear wall parts, described elasticity pushes away the extruding that head departs from described movable inner core, described strip conduit described rifle head is launched in corresponding described jack continuously by described discharging opening by described pusher opening's edge.
2. the regular filling device of rifle head according to claim 1, is characterized in that:
Wherein, described regular inner core also has the base that supports described space bar,
The described end, is provided with the flexible clamp piece of base described in inlay card to the both sides of installation opening.
3. the regular filling device of rifle head according to claim 1, is characterized in that:
Wherein, described backward wall above each described pusher mouth, be provided with one extruding described elasticity push away head wedge.
4. the regular filling device of rifle head according to claim 1, is characterized in that:
Wherein, described elasticity pushes away the hairclipper that head comprises spring and is sleeved on described spring at front end,
The width of described hairclipper is less than the width of described strip conduit,
The width of described strip conduit is less than the diameter of described tail end.
5. the regular filling device of rifle head according to claim 1, is characterized in that:
Wherein, the opening of described pusher mouth is less than the diameter of described tail end,
The opening of described discharging opening is greater than the diameter of described tail end.
6. the regular filling device of rifle head according to claim 1, is characterized in that:
Wherein, the profile of described pusher mouth is isosceles trapezoid, rectangle, and any one in circular arc.
7. the regular filling device of rifle head according to claim 1, is characterized in that:
Wherein, the top of described movable inner core is provided with respectively and each described strip conduit material-dropping hole one to one mutually.
8. the regular filling device of rifle head according to claim 1, is characterized in that:
Wherein, described lifting piece is handle, pull rope, or any one in draw ring.
CN201420136006.7U 2014-03-25 2014-03-25 Gun head regular filling device Expired - Lifetime CN203816657U (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104826678A (en) * 2014-03-25 2015-08-12 中国人民解放军第二军医大学 Pipette tip structured filling device
CN111417463A (en) * 2017-12-05 2020-07-14 美国西门子医学诊断股份有限公司 Probe tip ejection device for automatic diagnostic analysis equipment and method thereof

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104826678A (en) * 2014-03-25 2015-08-12 中国人民解放军第二军医大学 Pipette tip structured filling device
CN104826678B (en) * 2014-03-25 2016-09-14 中国人民解放军第二军医大学 Gun tip regular filling device
CN111417463A (en) * 2017-12-05 2020-07-14 美国西门子医学诊断股份有限公司 Probe tip ejection device for automatic diagnostic analysis equipment and method thereof
US11486889B2 (en) 2017-12-05 2022-11-01 Siemens Healthcare Diagnostics Inc. Probe tip eject devices and methods thereof for automated diagnostic analysis apparatus
CN111417463B (en) * 2017-12-05 2023-08-08 美国西门子医学诊断股份有限公司 Probe tip ejection device for automatic diagnostic analysis apparatus and method thereof

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