CN215767875U - Endoscope - Google Patents
Endoscope Download PDFInfo
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- CN215767875U CN215767875U CN202121874064.6U CN202121874064U CN215767875U CN 215767875 U CN215767875 U CN 215767875U CN 202121874064 U CN202121874064 U CN 202121874064U CN 215767875 U CN215767875 U CN 215767875U
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- endoscope
- storage container
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- 239000000523 sample Substances 0.000 claims abstract description 89
- 238000004868 gas analysis Methods 0.000 claims abstract description 32
- 238000005086 pumping Methods 0.000 claims description 28
- 238000000605 extraction Methods 0.000 claims description 13
- 230000000149 penetrating effect Effects 0.000 claims description 2
- 238000004458 analytical method Methods 0.000 abstract description 11
- 238000001514 detection method Methods 0.000 abstract description 5
- 230000000694 effects Effects 0.000 abstract description 3
- 230000002159 abnormal effect Effects 0.000 abstract description 2
- 238000007689 inspection Methods 0.000 description 4
- 238000000034 method Methods 0.000 description 4
- 239000002184 metal Substances 0.000 description 3
- 238000007599 discharging Methods 0.000 description 1
- 238000005286 illumination Methods 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 230000001681 protective effect Effects 0.000 description 1
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Abstract
The utility model relates to the technical field of endoscopes, and discloses an endoscope which comprises a probe, a host connected with the probe and an air exhaust mechanism, wherein the air exhaust mechanism comprises an air exhaust hole arranged on the probe, and a gas storage container or/and a gas analysis module arranged on the host, and gas collected from the air exhaust hole is transported to the gas storage container or the gas analysis module. The utility model has the advantages that the probe and the host are arranged, the probe is connected with the host, the probe is provided with the air exhaust hole, the air exhaust hole is connected with the host through a pipeline, the host is provided with the gas storage container or/and the gas analysis module, the gas obtained from the probe can be analyzed or stored for subsequent analysis, a user can check the cable duct by using the endoscope in advance when checking the cable duct, the detection effect of the user in the complex environment is improved, and the internal gas is checked or stored to check whether the gas is abnormal or not.
Description
Technical Field
The utility model relates to the technical field of endoscopes, in particular to an endoscope.
Background
The cable trench detection is to ensure normal operation of the power or telecommunication cable facility, and often touches a pipeline which can not be directly observed in a direct view manner in the inspection process of the power or telecommunication cable facility, the pipeline is generally called as a cable trench and is also a building enclosure structure of a laid cable facility, and for parts which can not be observed in a direct view manner, such as a bent pipeline, a crack and other deep parts, the structure and the state of an internal space need to be observed in a sealed cavity by means of an endoscope in the detection process, so that remote observation and operation are realized.
Endoscopes are often used only for viewing purposes and cannot be used to capture the gas in the cable duct for analysis. If gas collection or analysis is required, an additional instrument is required to be matched with the endoscope for gas collection.
The prior art lacks an endoscope that can be used in a cable duct to acquire gas for analysis.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an endoscope, which aims to solve the problem that the existing endoscope cannot acquire gas in a cable duct for analysis.
The utility model is realized in such a way that the endoscope comprises a probe, a host connected with the probe, and an air pumping mechanism, wherein the air pumping mechanism comprises an air pumping hole arranged on the probe, and a gas storage container or/and a gas analysis module arranged on the host, and gas collected from the air pumping hole is transported to the gas storage container or the gas analysis module.
Preferably, the probe comprises a probe head and an extension tube, the suction hole is formed in the probe head, the probe head is connected with the extension tube, and the suction hole is connected to the host through the extension tube.
Preferably, the extension tube is hollow to form a circulation cavity, and both ends of the extension tube are provided with through holes communicated with the circulation cavity, the probe is inserted into the circulation cavity from one end of the extension tube, and the suction hole is communicated with the circulation cavity to circulate gas.
Preferably, a temperature and humidity sensor is arranged on the probe, the host comprises a temperature acquisition module or a main control module, and the temperature acquisition module or the main control module is electrically connected with the temperature and humidity sensor for control.
Preferably, the air pumping mechanism further comprises an operating member, an air pumping end of the operating member is connected with the air pumping hole pipeline, and an air exhaust end of the operating member is connected with the gas storage container or/and the gas analysis module.
Preferably, the gas pumping mechanism further comprises an operating member, a gas pumping end of the operating member is connected with the extension pipe, and a gas exhaust end of the operating member is connected with the gas storage container or/and the gas analysis module.
Wherein, preferentially, the probe still includes mount pad and connecting piece, control the piece installation the mount pad, the inside of controlling the piece is formed with the cavity, be formed with on one of cavity and link up the connecting hole of the inner wall of controlling the piece, the other end of cavity passes through the pipe connection the host computer, the connecting hole inlays and establishes the connecting piece, the connecting piece with mount pad threaded connection is with fixed mounting seat, the mount pad with extend pipe threaded connection.
Preferably, the gas storage container is arranged in the main machine or on the outer wall of the main machine, and the gas storage container is provided with a gas inlet for gas inlet.
Preferably, the gas analysis module is arranged in the main machine or on the outer wall of the main machine, and the gas analysis module is provided with a gas inlet for gas inlet.
In a second aspect, the utility model provides an endoscope, which comprises a probe and a host connected with the probe, and further comprises a gas pumping mechanism, wherein the gas pumping mechanism comprises a gas pumping hole arranged on the probe, and a gas storage container or/and a gas analysis module arranged on the host, and gas collected from the gas pumping hole is transported into the gas storage container or/and the gas analysis module; the probe also comprises a probe head, an extension tube for transmitting gas and an operation control piece for providing pumping power, wherein the pumping hole is formed in the probe head, the extension tube and the operation control piece are connected one by one, and the exhaust end of the operation control piece is connected with the host machine to provide gas analysis or storage.
Compared with the prior art, the endoscope provided by the utility model is provided with the probe and the host, the probe is connected with the host, the probe is provided with the air exhaust hole, the air exhaust hole is connected to the host through a pipeline, the host is provided with the gas storage container or/and the gas analysis module, gas obtained from the probe can be analyzed or stored for subsequent analysis, a user can check the cable duct by using the endoscope in advance, the detection effect of the user in the complex environment is improved, and the inspection or the storage of the gas in the endoscope is supported to check whether the gas is abnormal or not.
Drawings
The utility model will be further described with reference to the accompanying drawings and examples, in which:
FIG. 1 is a schematic perspective view of an endoscope provided by embodiments of the present invention;
FIG. 2 is a schematic perspective view of an endoscope provided by embodiments of the present invention;
FIG. 3 is a schematic perspective view of a probe provided by an embodiment of the present invention;
FIG. 4 is an enlarged schematic view of part A provided by the embodiment of the present invention;
FIG. 5 is an enlarged schematic view of part B according to an embodiment of the present invention;
FIG. 6 is a schematic perspective view of a host according to an embodiment of the present invention;
the relevant references in the drawings are explained below:
a probe 10;
a host 20; a host body 21; a handle 22; a display screen 23;
an air extraction hole 30;
a probe head 40; an illumination lamp 41; a temperature and humidity sensor 42; an elastic section 43; a contact section 44; a video module window 50;
an extension pipe 60;
a control member 70; a grip portion 71; a mounting seat 72.
Detailed Description
Embodiments of the present invention will now be described in detail with reference to the accompanying drawings.
Fig. 1 to 6 show a preferred embodiment of a collimation testing device provided by the present invention.
An endoscope comprises a probe 10 and a host 20 connected with the probe 10, and further comprises a gas extraction mechanism, wherein the gas extraction mechanism comprises an extraction hole 30 arranged on the probe 10, and a gas storage container or/and a gas analysis module arranged on the host 20, and gas collected from the extraction hole 30 is transported to the gas storage container or the gas analysis module; through setting up probe 10 and host computer 20, probe 10 is connected with host computer 20, be equipped with bleeder vent 30 on probe 10 in addition, bleeder vent 30 pipe connection to host computer 20, be provided with gas storage container or/and gas analysis module on the host computer 20, can carry out analysis or store with follow-up analysis to the gas that obtains on the probe, the user can be when the inspection cable pit, use the endoscope in advance to inspect, the detection effect when having improved the user and facing complex environment, support the inspection simultaneously or deposit inside gas and look over whether gas has the anomaly.
It can be understood that the probe 10 is provided with a camera for taking a picture so that a user can check the condition inside the cable trench on the host 20, wherein one end of the probe 10, which is away from the host 20, is provided with a groove, and the camera is connected with the groove to realize matching, so that the camera can be fixed on the probe 10 for shooting, which is very convenient; in addition, in order to ensure the normal operation of the endoscope, the probe 10 is electrically connected with the host 20, so that the power supply required by the shooting of the probe 10 can be directly provided by the host 20, and the probe 10 is not required to be equipped with the power supply by itself.
In this embodiment, the probe 10 is fixedly connected to the host 20 to realize the cooperation between the probe 10 and the host 20, which is not shown in the drawings, and moreover, since the user needs to replace different probes 10 during the use, the probe 10 is detachably connected to the host 20, and the use experience of the user can be improved by setting the diversified connection between the probe 10 and the host.
In this embodiment, the probe head 10 includes a probe head 40 and an extension tube 60, the suction hole 30 is formed on the probe head 40, the probe head 40 is connected to the extension tube 60, and the suction hole 30 is connected to the host 20 through the extension tube 60. Specifically, the probe head 40 is provided with an illuminating lamp 41, the suction hole pumps the gas into the host 20 for analysis through the extension pipe 60, and the illuminating lamp 41 is used for illuminating the cable duct and is turned on or off by the operation of a user, which is very convenient.
In this embodiment, the probing tip 40 has an elastic section 43 and a contact section 44, the contact section 44 connects the elastic section 43, specifically, the elastic section 43 is disposed between the two contact sections 44, so that the elastic section 43 between the two contact sections 44 can ensure that the probing tip 40 does not collide excessively, the elastic section 43 is used to ensure that the probing tip 10 does not collide with the objects in the cable trench rigidly, and the contact section 44 is made of wear-resistant metal to ensure that the contact section 44 does not wear too much, which is very convenient by disposing the elastic section 43 and the contact section 44; also, the contact section 44 referred to in this embodiment is a video probe protective sleeve for protecting the video module window 50.
In this embodiment, the probe 40 is provided with a temperature and humidity sensor 42, the host 20 includes a temperature acquisition module or a main control module, and the temperature acquisition module or the main control module is electrically connected with the temperature and humidity sensor 42 for control; through setting up temperature and humidity sensor 42, host computer 20 can know humidity and temperature in the current cable pit through temperature and humidity sensor 42 to whether there is damage etc. that arouses because humidity is too big or the high temperature in the convenient user of use understanding cable pit.
In this embodiment, one end of the detecting head 40 departing from the host 20 is formed with a mounting groove, and the video module window 50 is embedded in the mounting groove, so as to fix, and ensure that the video module window 50 can normally operate in the using process, and the video module window 50 is electrically connected with the host 20, so that it can be ensured that the video shot by the video module window 50 can be rapidly transmitted to the host 20.
In this embodiment, the probe 10 further includes an extension tube 60, a flow cavity is formed in the extension tube 60, through holes communicated with the flow cavity are formed at both ends of the extension tube 60, the probe head 40 is inserted into the flow cavity from one end of the extension tube 60, and the suction hole is communicated with the flow cavity to circulate air, so that air or gas sucked from the probe head 40 can circulate to the flow cavity along the suction hole and further circulate to the host 20, thereby improving the operation convenience of a user, so that the length of the extension tube 60 can be freely adjusted, and the extension length of the probe head 40 can also be freely adjusted, which is very convenient.
Not shown in the drawings, the extension pipe 60 is a folding pipe, that is, the extension pipe 60 includes a plurality of foldable portions, and the foldable portions are set or folded one by one, so that when a user needs to set or fold one by one, the user can operate the length of the extension pipe 60 more conveniently, which is very convenient.
Not shown in the drawings is another embodiment provided by the present invention, the air pumping mechanism further includes an operation member 70, an air pumping end of the operation member 70 is connected to the air pumping hole 30 through a pipeline, an air discharging end of the operation member is connected to the gas storage container or/and the gas analysis module, and air pumping of the air pumping hole is achieved by setting the operation member.
In this embodiment, the air pumping mechanism further includes a control member 70, an air pumping end of the control member 70 is connected to the extension pipe 60, an air exhaust end of the control member is connected to the gas storage container or/and the gas analysis module, the control member 70 is connected to the extension pipe 60, one end of the control member 70 is embedded into a through hole at one end of the extension pipe 60 facing the control member 70, and the other end of the control member 70 is connected to the host 20, so that the control member 70 can pump the cable duct through the extension pipe 60 and the probe 40, and the pumped air can be transmitted to the host 20 through a pipeline for analysis, which is very convenient.
Specifically, the control member 70 is provided with a holding portion 71 for holding, and the holding portion 71 is formed on the lower end surface of the control member 70, so that the user can conveniently and quickly move the control member 70 to other positions when holding the control member 70, which is very convenient.
The suction piece 70 is provided with a holding part 71 for holding, and the holding part 71 is formed on the lower end surface of the suction piece 70, so that a user can conveniently and quickly move the suction piece 70 to other positions when holding the suction piece, and the suction piece is very convenient. In this embodiment, the extension pipe 60 is threadedly connected to the control member 70. Specifically, the probe 10 further includes a mounting seat 72 and a connecting member, the mounting seat 72 is mounted on the manipulating member 70, a cavity is formed inside the manipulating member 70, a connecting hole penetrating through the inner wall of the manipulating member 70 is formed at one end of the cavity, the other end of the cavity is connected to the host 20 through a pipeline, the connecting member is embedded in the connecting hole, the connecting member is in threaded connection with the mounting seat 72 to fix the mounting seat 72, and the mounting seat 72 is in threaded connection with the extension pipe 60. Mounting seat 72 and connecting piece all are formed with hollow perforating hole, and two perforating holes set up relatively, and through setting up connecting piece and mounting seat 72, thereby the mounting seat 72 can be connected with the connecting piece and strengthen the result of use of perforating hole, specifically through setting up connecting piece and mounting seat 72, can strengthen extension pipe 60 to the gas tightness of controlling 70, improve user's use experience.
In this embodiment, a gas storage container is disposed inside or on an outer wall of the host 20, the gas storage container is provided with a gas inlet for gas intake, and the gas storage container and a corresponding gas inlet are disposed, so that the gas storage container is convenient for gas storage; in addition, a gas analysis module is disposed inside or on an outer wall of the main body 20, and a gas inlet is disposed on the gas analysis module to allow gas to be analyzed by the gas analysis module.
It will be appreciated that the probe head 40 of the present embodiment is made of a relatively rigid material, such as a metal probe head 10, and preferably a wear-resistant metal, so as to prevent the probe head 10 from being touched each time it extends into a cable trench, causing damage and the like.
In this embodiment, the host 20 includes the host body 21 and the portable component 22, and the portable component 22 is connected with the host 20 main part, and through setting up portable component 22 and host 20 main part, thereby the user can directly take away through taking portable component 22 when needing to take away the endoscope, and is very convenient, improves user's availability factor.
In this embodiment, the host body 21 is provided with the display screen 23 to display information, and by arranging the display screen 23 on the host body 21, a user can check related information through the display screen 23, which is very convenient; also, not shown in the drawings, a gas analyzing device is provided inside the main body 21 to facilitate analysis of the gas using the main body 20.
In this embodiment, be equipped with control panel and/or control switch on the host computer, control panel and/or control switch control bleed mechanism gather gas or stop, and specifically, control panel and/or control switch can be used to control button, also can use with the button cooperation to improve operating efficiency, it is very convenient.
An endoscope comprises a probe 10 and a host 20 connected with the probe 10, and further comprises a gas extraction mechanism, wherein the gas extraction mechanism comprises an extraction hole 30 arranged on the probe 10, and a gas storage container or/and a gas analysis module arranged on the host 20, and gas collected from the extraction hole 30 is transported to the gas storage container or the gas analysis module; the probe 10 further comprises a probe head 40, an extension tube 60 for transmitting gas and a control member 70 for providing suction power, wherein the suction holes 30 are formed on the probe head 40, the extension tube 60 and the control member 70 are connected one by one, and the exhaust end of the control member 70 is connected with the host 20 to provide gas; the main machine 20 comprises a main machine body 21, a portable piece 22 and a display screen 23, wherein the main machine body 21 is used for analyzing gas, the portable piece 22 is used for being carried by hand, and the display screen 23 is used for displaying information; through setting up probe 10 and host computer 20, wherein be provided with aspirating hole 30 on the probe 10 to convenience of customers can directly bleed through probe 10 at the in-process of using, transmits host computer 20, improves user's result of use, improves user's use and experiences.
In addition, the first, second, etc. sequence terms noted in the above are not used to define the sequence between the objects, and are used only as identifying terms, and the specific object arrangement position and spatial relationship are defined by the orientation in the text.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the utility model, and any modifications, equivalents and improvements made within the spirit and principle of the present invention are intended to be included within the scope of the present invention.
Claims (10)
1. An endoscope comprises a probe and a host connected with the probe, and is characterized by further comprising a gas pumping mechanism, wherein the gas pumping mechanism comprises a gas pumping hole formed in the probe, and a gas storage container or/and a gas analysis module which are/is arranged on the host, and gas collected from the gas pumping hole is conveyed into the gas storage container or the gas analysis module.
2. The endoscope of claim 1, wherein said probe head includes a probe head and an extension tube, said suction port being formed in said probe head, said probe head being connected to said extension tube, said suction port being connected to said host computer through said extension tube conduit.
3. The endoscope of claim 2, wherein the extension tube is hollow to form a circulation chamber, and both ends of the extension tube are provided with through holes communicating with the circulation chamber, the probe is inserted into the circulation chamber from one end of the extension tube, and the suction hole communicates with the circulation chamber to circulate gas.
4. The endoscope of claim 1, wherein the probe is provided with a temperature and humidity sensor, the host comprises a temperature acquisition module or a main control module, and the temperature acquisition module or the main control module is electrically connected with the temperature and humidity sensor for control.
5. The endoscope as defined in claim 1, wherein said suction mechanism further comprises a control member, a suction end of said control member being connected to said suction port tube and a discharge end thereof being connected to said gas storage container or/and gas analysis module.
6. An endoscope according to claim 2 or 3 and wherein said suction mechanism further comprises a control member having a suction end connected to said extension tube and a discharge end connected to said gas storage container and/or gas analysis module.
7. The endoscope as defined in claim 6, wherein the probe further comprises a mounting seat and a connecting piece, the control piece is mounted on the mounting seat, a cavity is formed inside the control piece, a connecting hole penetrating through the inner wall of the control piece is formed at one end of the cavity, the other end of the cavity is connected with the main machine through a pipeline, the connecting piece is embedded in the connecting hole, the connecting piece is in threaded connection with the mounting seat to fix the mounting seat, and the mounting seat is in threaded connection with the extension pipe.
8. The endoscope of claim 1, wherein the gas storage container is provided on an inner or outer wall of the main body, and a gas inlet is provided on the gas storage container for introducing gas.
9. The endoscope of claim 1, wherein the gas analysis module is disposed inside or on an outer wall of the main body, and a gas inlet is disposed on the gas analysis module to allow gas to enter.
10. An endoscope is characterized by comprising a probe and a host connected with the probe, and further comprising a gas extraction mechanism, wherein the gas extraction mechanism comprises an extraction hole arranged on the probe, and a gas storage container or/and a gas analysis module arranged on the host, and gas collected from the extraction hole is transported into the gas storage container or the gas analysis module; the probe also comprises a probe head, an extension tube for transmitting gas and an operation control piece for providing pumping power, wherein the pumping hole is formed in the probe head, the extension tube and the operation control piece are connected one by one, and the exhaust end of the operation control piece is connected with the host machine to provide gas analysis or storage.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202121874064.6U CN215767875U (en) | 2021-08-11 | 2021-08-11 | Endoscope |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202121874064.6U CN215767875U (en) | 2021-08-11 | 2021-08-11 | Endoscope |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN215767875U true CN215767875U (en) | 2022-02-08 |
Family
ID=80073584
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202121874064.6U Active CN215767875U (en) | 2021-08-11 | 2021-08-11 | Endoscope |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN215767875U (en) |
-
2021
- 2021-08-11 CN CN202121874064.6U patent/CN215767875U/en active Active
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