Connecting structure of jack
Technical Field
The utility model relates to a connection structure of jack, which makes the connector combined with the screw joint of jack suitable for assembling of various specifications.
Background
A screw lifting jack, such as the jack 10 shown in fig. 1 and 4, has a screw joint 12 at the front end of a screw 11 for connecting the screw 11 and a hand tool. The screw joint structure of the existing jack is designed to be a fixed single structure, specifically, the screw joint is designed to be a quadrangle or a hexagon block for sleeving four corners or a hexagon socket hand tool; or the screw joint is designed into a hand tool with a square hole for inserting the assembly tool plug, in other words, the hexagonal block screw joint is not suitable for a four-corner sleeve hand tool, the tetragonal block screw joint is not suitable for a hexagonal sleeve hand tool, the tetragonal or hexagonal block screw joint is not suitable for a hand tool of the plug, and the screw joint with the square hole is not suitable for a four-corner or hexagonal sleeve hand tool, so that the tool specification is limited, and the use is inconvenient.
SUMMERY OF THE UTILITY MODEL
In view of the above, in order to improve the above disadvantages, the present invention provides a connection structure of a jack with wide practicability, which mainly comprises: the pin joint piece of the connector is provided with a groove, so that the pin joint piece can be assembled and connected with a screw rod joint with double pin joint pieces of the jack and also can be assembled and connected with a screw rod joint of a single pin joint piece; and the socket joint of the connector is designed into a twelve-star-shaped shape, the four corners of the socket hole of the square shape are respectively provided with an expanding arc angle, the socket joint can be simultaneously sleeved with four corners or hexagonal sleeves, and can also be inserted by a hand tool with a plug joint, therefore, the utility model can obtain the wide practical efficacy of being suitable for various specifications and being easy to assemble.
According to the above object of the present invention, there is provided a connection structure of a jack, comprising: a connector and a bolt, the connection structure of jack is combined in the screw rod joint of a jack, the connector is set up to have one set of joint and two pin joint pieces, the cover connects to be set up to have a square cover hole, its characterized in that: the sleeve joint is designed into a twelve-star shape, four corners of the sleeve joint hole are respectively provided with an expanded arc angle, the twelve-star corners of the sleeve joint can be simultaneously sleeved with a hexagonal sleeve or a four-corner sleeve, the sleeve joint hole can be inserted with a square plug joint hand tool, the two pivoting pieces are respectively provided with a shaft hole for penetrating, and a cutting groove is formed between the two pivoting pieces; and the side of the shaft bolt is dug with a hole slot, and a spring and a steel ball are sequentially arranged in the hole slot, and the steel ball can be elastically embedded and assembled in the hole opening of the hole slot without separating, two pivoting pieces of the connector can be combined with a screw joint with two pivoting pieces, the groove can be combined with a screw joint with a single pivoting piece, the shaft bolt can combine the pivoting pieces of the connector and the screw joint into a whole through the shaft hole, the steel ball can be elastically forced to plug the spring to pass through the shaft hole, and the steel ball can prevent the shaft bolt from separating by mistake.
By means of the structure, the connector of the utility model can be suitable for various specifications and has wide and practical effects of easier insertion and combination of hand tools by enlarging arc angles.
Drawings
Fig. 1 is an exploded perspective view of the present invention;
fig. 2 is a top cross-sectional view of the present invention;
FIG. 3 is a schematic perspective view of the hand tool for engaging the sleeve with the coupling head of the present invention;
FIG. 4 is a schematic view of the present invention showing a single pin-jointed piece used in a screw joint;
FIG. 5 is a schematic perspective view of the hand tool for inserting the socket joint hole and the plug-in connector of the present invention;
fig. 6 is a plan view of the socket hole of the present invention.
In the figure:
1, a four-corner sleeve; 2, a hexagonal sleeve; 3, a hand tool; 10 jack; 11, a screw rod; 12 screw joints; 13 a pivoting piece; 14 a combination tank; 15 a pivoting piece; 20 connecting heads; 21, sleeving a joint; 211 twelve-pointed star; 22, sleeving holes; 221 expanding the arc angle; 23 a pivoting piece; 24 shaft holes; 25, cutting a groove; 30 shaft bolts; 301 hole slots; 31 a spring; 32 steel balls.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and specific embodiments so that those skilled in the art can better understand the present invention and can implement the present invention, but the embodiments are not to be construed as limiting the present invention.
Referring to fig. 1 to 6, it includes a connector 20 and a bolt 30 combined with the screw connector 12 of a jack 10; the connector 20 is configured to have a sleeve connector 21 and two pivoting pieces 23, the sleeve connector 21 is configured to have a square sleeve hole 22, the sleeve connector 21 is configured to have a twelve-star shape 211, four corners of the sleeve hole 22 are respectively provided with an enlarged arc angle 221, the two pivoting pieces 23 are respectively provided with a shaft hole 24 to penetrate, and a cutting groove 25 is formed between the two pivoting pieces 23; and a hole groove 301 is dug at the side of the shaft bolt 30, and a spring 31 and a steel ball 32 are sequentially placed in the hole groove 301, so that the steel ball 32 can be elastically embedded in the hole opening of the hole groove 301 without being separated.
Through the jack connection structure, the following effects and advantages can be obtained: as shown in fig. 1 and 2, when the screw joint 12 of the jack 10 is in the form of two pivoting pieces 13, the two pivoting pieces 23 of the joint 20 can be inserted into the combination slots 14 of the two pivoting pieces 13 of the jack 10, and the shaft pin 30 combines the two pivoting pieces 23 of the joint 20 and the two pivoting pieces 13 of the screw joint 12 into a whole through the shaft hole 24; the steel ball 32 can be elastically forced to compress the spring 31 to pass through the shaft hole 24, and the steel ball 32 can prevent the shaft bolt 30 from being mistakenly separated, thereby achieving the effect of easy assembly.
As shown in fig. 4 and 5, when the screw joint 12 of the jack 10 is a single pivoting piece 15, the slot 25 between the two pivoting pieces 23 of the joint 20 is used for inserting the single pivoting piece 15 of the screw joint 12, and the shaft pin 30 combines the two pivoting pieces 23 of the joint 20 and the single pivoting piece 15 of the screw joint 12 into a whole through the shaft hole 24.
As shown in fig. 3, the twelve star 211 of the socket 21 can be simultaneously used for a quadrangle sleeve 1 or a hexagon sleeve 2 to be sleeved, so that the screw joint 12 is connected to rotate the screw 11.
As shown in fig. 5, the engaging hole 22 of the engaging head 21 is adapted for engaging with a square hand tool 3 to rotate the screw 11 when the screw joint 12 is connected thereto; the enlarged arc angle 221 of the engaging hole 22 allows the plugging head hand tool 3 to be inserted more easily.
As can be seen from the above description, the present invention is suitable for the screw rod joint 12 and the hand tool of the jack 10 with different specifications, and achieves a wide practical effect.
The above-mentioned embodiments are merely preferred embodiments for fully illustrating the present invention, and the scope of the present invention is not limited thereto. Equivalent substitutes or changes made by the technical personnel in the technical field on the basis of the utility model are all within the protection scope of the utility model. The protection scope of the present invention is subject to the claims.