CN214478008U - Contact element of tight connector - Google Patents

Contact element of tight connector Download PDF

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Publication number
CN214478008U
CN214478008U CN202120285361.0U CN202120285361U CN214478008U CN 214478008 U CN214478008 U CN 214478008U CN 202120285361 U CN202120285361 U CN 202120285361U CN 214478008 U CN214478008 U CN 214478008U
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grid
contact
conductive
conductive block
grid strip
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CN202120285361.0U
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杨柳
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Shenzhen Youcheng Industrial Co ltd
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Shenzhen Youcheng Industrial Co ltd
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Abstract

The utility model relates to a connector technical field, concretely relates to contact piece of inseparable connector, it includes elastic body and polylith conducting block, elastic body includes that two go-between and interval locate a plurality of grid strips between two go-between, the grid strip includes first side and the second side of being connected with two go-between respectively and is located third side and fourth side between first side and the second side, third side and fourth side set up relatively, the third side of grid strip twists reverse the third side that makes the grid strip and is located the central direction that is close to the go-between, every set up the conducting block on the grid strip. The contact has good elasticity and conductivity, is not easy to fatigue and has small resistance value.

Description

Contact element of tight connector
Technical Field
The utility model relates to a connector technical field, concretely relates to contact of inseparable connector.
Background
In the current market, the contact element of the contact plug-in unit is connected with a conductor by providing elasticity and electric conduction through a pot spring structure or by providing elasticity and electric conduction through a torsion pot spring angle structure, and the two modes both need to use special raw materials to enable the contact element to have the elasticity and the electric conduction function, and have the following main problems:
(1) the price of special raw materials is high and the manufacturing process is monopolized abroad.
(2) Special raw and other materials appear tiredly in material elasticity easily, lead to the connecting piece to appear the resistance value big, lead to the temperature rise, the burning phenomenon appears easily, and is unsafe, along with present miniaturization and the multi-functionalization to the product, the electric current of passing through constantly increases, and the burning phenomenon can be more frequent in this time, and the solution is that the high temperature resistant requirement to external insulation plastic material is higher and higher, still can not solve the problem simultaneously.
(3) When the elasticity of the material is increased, the conductivity of the conductor is sacrificed, and other non-conductive metal molecular materials are added on the basis of the original conductor material to be fused, namely, the conductivity of the special raw material is poor, the stronger the conductivity of the elastic material is, the lower the passing current is, the more easily the material is fatigued and the more easily the material is burnt, and the function and the risk reduction can be realized only by enlarging the conductor.
(4) The special raw materials have high requirements and cost for surface treatment, and only expensive metal materials can be electroplated to ensure the electroplating adhesive force and the requirement of repeated plugging and unplugging (gold materials and silver materials).
(5) The materials forming the conductive connection are different in origin, so that another insulation can be formed on the surfaces of different materials in long-time extrusion, the contact resistance is increased, and finally the non-conductive condition can occur.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model provides a contact piece of a close connector, which has good elasticity and conductivity, is not easy to cause fatigue and has small resistance value.
The utility model discloses the purpose is realized through following technical scheme:
a contact element of a compact connector comprises an elastic body and a plurality of conductive blocks, wherein the elastic body comprises two connecting rings and a plurality of grid strips arranged between the two connecting rings at intervals, the grid strips comprise a first side and a second side respectively connected with the two connecting rings and a third side and a fourth side arranged between the first side and the second side, the third side and the fourth side are arranged oppositely, the third side of each grid strip is twisted to enable the third side of each grid strip to be positioned close to the center direction of the connecting rings, and each grid strip is provided with the conductive blocks.
Wherein, the third side direction of the grid bars is rotated by 30 to 70 degrees in the direction close to the center of the connecting ring.
The grid strip penetrates through the middle of the conductive block and is connected with the conductive block, and the conductive block is arranged in the middle of the grid strip.
And the side edges of the conductive blocks are all provided with arc-shaped guide surfaces.
And one corner of the conductive block, which is close to the center of the connecting ring, is provided with an inclined guide surface, and the inclined guide surface extends from the end surface of the conductive block, which is connected with the grid bars, to the side surface of the conductive block and gradually inclines towards the direction close to the center of the connecting ring.
And the conductive block is in clamping fit with the grid bars.
Two limiting parts for blocking the movement of the conductive block are arranged on two sides of the conductive block, which are positioned on the grid bars.
Wherein, the connecting ring is provided with a position-giving opening.
Wherein the two connection rings and the plurality of grid bars are integrally formed.
The utility model has the advantages that:
the utility model discloses a set up elasticity body and conducting block, when the terminal plug of the other end inserts in this contact, because the plug supports and presses the conducting block, and then make conducting block and grid strip receive the outside pressure of supporting of plug simultaneously, because the elasticity body has elasticity, and then make the third side of grid strip drive the conducting block and outwards rotate, make the plug insert the contact smoothly in, and because the effect of the elastic recovery power of the grid strip of elasticity body, the grid strip gives the conducting block to go-between middle part pivoted elastic force, and then make the conducting block support the surface of pressing the plug all the time, and then make conducting block and plug keep good electricity to be connected.
The utility model discloses a contact provides elasticity by the elasticity body, provides electric conductivity by the conducting block, makes the electric conductivity and the elasticity of contact can not influence each other, during the preparation, can choose the elastic material that the price is lower for use to prepare the elasticity body to choose the better conducting material of electric conductivity for use to prepare the conducting block, and then make the utility model discloses a contact has good elasticity and electric conductivity simultaneously, and can not appear fatigue because of the elasticity body and lead to the resistance value increase of conducting block, can reduce the temperature of contact during operation, avoids appearing the phenomenon of burning, has improved the security performance and the life of contact.
Drawings
The present invention will be further explained with reference to the drawings and examples.
FIG. 1 is a schematic structural view of a contact element according to the present invention;
fig. 2 is a schematic structural view of another view angle of the contact member of the present invention;
fig. 3 is a top view of the contact member of the present invention;
figure 4 is a side view of the contact of the present invention;
FIG. 5 is a schematic view of the stainless steel material of the present invention after grid bars and connecting plates are punched;
fig. 6 is a schematic structural view of the conductive material after the clamping structure and the groove are punched;
fig. 7 is a schematic view of the first and second conductive portions of the present invention disposed on both sides of the grid bar;
fig. 8 is a schematic diagram of the first conductive part and the second conductive part after the first conductive part and the second conductive part are snap-fitted on two sides of the grid bar;
fig. 9 is a schematic diagram of the process of rounding the stainless steel workpiece according to the present invention.
Description of reference numerals: 1. an elastic body; 11. a connecting ring; 111. a let position port; 112. a first positioning portion; 113. a second positioning portion; 12. grid bars; 121. a first side; 122. a second side; 123. a third side; 124. a fourth side; 125. a connecting portion; 126. a limiting part; 127. a clamping part; 2. a conductive block; 21. a first conductive portion; 211. a clamping structure; 22. a second conductive portion; 221. a groove; 3. an arc-shaped guide surface; 4. an inclined guide surface; 5. stainless steel material; 6. a connecting plate; 7. a conductive material.
Detailed Description
The conception, the specific structure, and the technical effects produced by the present invention will be clearly and completely described below in conjunction with the embodiments and the accompanying drawings to fully understand the objects, the features, and the effects of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all embodiments, and other embodiments obtained by those skilled in the art without inventive labor based on the embodiments of the present invention all belong to the protection scope of the present invention. In addition, all the connection/connection relations referred to in the patent do not mean that the components are directly connected, but mean that a better connection structure can be formed by adding or reducing connection auxiliary components according to specific implementation conditions. The utility model discloses each technical feature in the creation can the interactive combination under the prerequisite that does not contradict conflict each other.
Example 1
A contact of a close contact, as shown in FIGS. 1-4, comprises an elastic body 1 and a plurality of conductive blocks 2, wherein the elastic body 1 comprises two connecting rings 11 and a plurality of grid bars 12 arranged between the two connecting rings 11 at intervals, the grid bars 12 comprise a first side 121 and a second side 122 respectively connected with the two connecting rings 11 and a third side 123 and a fourth side 124 arranged between the first side 121 and the second side 122, the third side 123 and the fourth side 124 are oppositely arranged, the third side 123 of the grid bars 12 is twisted to enable the third side 123 of the grid bars 12 to be positioned close to the center direction of the connecting rings 11, and each grid bar 12 is provided with the conductive block 2.
The utility model discloses a set up elastic body 1 and conducting block 2, when the terminal plug of the other end inserts in this contact, because the plug supports and presses conducting block 2, and then make conducting block 2 and grid strip 12 receive the outside pressure of supporting of plug simultaneously, because elastic body 1 has elasticity, and then make the third side 123 of grid strip 12 drive conducting block 2 outwards rotate, make the plug insert in the contact smoothly, and because the effect of the elastic recovery power of grid strip 12 of elastic body 1, grid strip 12 gives conducting block 2 to go-between 11 middle part pivoted elastic force, and then make conducting block 2 support the surface of pressing the plug all the time, and then make conducting block 2 and plug keep good electricity to be connected.
The utility model discloses a contact is by elasticity body 1 provides elasticity, provides electric conductivity by conducting block 2, makes the electric conductivity and the elasticity of contact can not influence each other, during the preparation, can choose for use the elastic material that the price is lower to prepare elasticity body 1 to choose for use the better conducting material 7 of electric conductivity to prepare conducting block 2, and then make the utility model discloses a contact has good elasticity and electric conductivity simultaneously, and can not lead to the resistance value increase of conducting block 2 because of elasticity body 1 appears tiredly, can reduce the temperature of contact during operation, avoids appearing the phenomenon of burning, has improved the security performance and the life of contact.
Specifically, the elastic body 1 is a stainless steel elastic body 1, which has good elasticity, and is beneficial to ensuring that the conductive block 2 stably presses against the surface of the plug all the time, and ensuring that the conductive block 2 is in good electrical connection with the plug, the conductive block 2 is a copper conductive block 2, which has good conductivity, the conductivity can reach more than 99% (the conductivity of the best special raw material is only 16%), the smaller the resistance value of the conductor material with higher conductivity is, the smaller the temperature rise when the contact piece with the same thickness and size is, the larger the current can pass, the safer the performance is, and the lower the requirement on the high temperature resistant material of the plastic material required by the exterior of the connector is. The materials forming the conductive connection are the same in origin, and other substances cannot influence the conductive function in long-term operation.
The third side 123 of the grid bar 12 rotates 30-70 degrees towards the direction close to the center of the connection ring 11, the twisting angle of the grid bar 12 not only enables the terminal plug to be smoothly inserted between the plurality of conductive blocks 2, but also enables the conductive blocks 2 to stably press the surface of the terminal plug after the terminal plug is inserted into the contact element, so that the conductive blocks 2 and the terminal plug are well electrically connected, and the condition of open circuit between the conductive blocks 2 and the plug is avoided. When the twisting angle of the grid bar 12 is too small, it is difficult to ensure that the conductive block 2 can always press against the surface of the terminal plug, so that the disconnection phenomenon is easy to occur between the conductive block 2 and the plug, and when the twisting angle of the grid bar 12 is too large, the terminal plug is difficult to smoothly insert into the contact element, which affects the installation efficiency.
The conductive block 2 is a rectangular block, the grid strips 12 penetrate through the middle of the conductive block 2 to be connected with the conductive block 2, the conductive block 2 is arranged in the middle of the grid strips 12, and the conductive block 2 is further easily connected with plugs of the two terminals.
Wherein, in the contact is inserted to the convenience of terminal plug, the side of conducting block 2 all sets up to arc spigot surface 3, and when arc spigot surface 3 can make the plug contact conducting block 2, can be along the smooth slip of arc spigot surface 3 between a plurality of conducting blocks 2, improve the installation effectiveness.
In order to further facilitate the insertion of the plug into the contact and further improve the installation efficiency, an inclined guide surface 4 is provided at one corner of the conductive block 2 near the center of the connection ring 11, and the inclined guide surface 4 extends from the end surface of the conductive block 2 connected with the grid bars 12 to the side surface of the conductive block 2 and gradually inclines towards the direction near the center of the connection ring 11.
The conductive block 2 is matched with the grid bars 12 in a clamping mode, the structure is simple, and the production efficiency is improved.
Specifically, the conductive block 2 includes a first conductive part 21 and a second conductive part 22, two opposite sides of the first conductive part 21 are provided with a convex clamping structure 211, the second conductive part 22 is provided with a groove 221 matched with the clamping structure 211 in a clamping manner, during production, the first conductive part 21 and the second conductive part 22 are respectively placed at two side positions of the grid bar 12, then the clamping structure 211 of the first conductive part 21 is clamped into the groove 221 of the second conductive part 22, then the first conductive part 21 and the second conductive part 22 clamped together are stamped by a mold, so that the first conductive part 21 and the second conductive part 22 are stamped into a rectangular plate-shaped structure, the first conductive part 21 and the second conductive part 22 are firstly provided with the clamping structure 211 and the groove 221, the first conductive part 21 and the second conductive part 22 are preliminarily positioned, and the first conductive part 21 and the second conductive part 22 are conveniently and accurately installed on the grid bar 12, then, the first conductive part 21 and the second conductive part 22 are pressed to firmly connect the first conductive part 21 and the second conductive part 22 with the grid bar 12, so that looseness does not occur.
Two limiting parts 126 for blocking the motion of the conductive block 2 are arranged on two sides of the conductive block 2 of the grid bar 12.
Specifically, each grid bar 12 includes two connecting portions 125, two spacing portions 126 and a joint portion 127, two the spacing portions 126 are located at the both ends of the joint portion 127 respectively, two the connecting portions 125 are connected with one side of two spacing portions 126 far away from the joint portion 127 respectively, one side of the connecting portion 125 far away from the spacing portions 126 is connected with the connecting ring 11, the both ends of the spacing portions 126 protrude out of the both sides of the joint portion 127, that is to say, the length a of the side edge where the spacing portions 126 are connected with the joint portion 127 is greater than the length b of the side edge where the joint portion 127 is connected with the spacing portions 126, the conductive block 2 is installed on the joint portion 127, and the conductive block 2 is limited by the both sides where the spacing portions 126 protrude out of the joint portion 127, so that the conductive block 2 cannot slide up and down along the grid bar 12, which is more favorable for improving the electrical connection between the conductive block 2 and the terminal plug, and avoiding the phenomenon of circuit breaking.
Wherein, in order to facilitate the installation equipment insert the contact in the sleeve of conductor terminal, be equipped with on the go-between 11 and let a mouthful 111, during the installation, through extrusion go-between 11, make the both ends of go-between 11 to the position of letting a mouthful 111 be close to each other, and then make the diameter of go-between 11 reduce, be convenient for the smooth installation of contact to the sleeve of conductor terminal in, and because the elastic body 1 of contact has elasticity, after the contact is installed to the sleeve of conductor terminal in, elastic body 1 has the trend of recovering original shape under the effect of self elastic force, carry out the go-between 11 joint that makes the contact in the sleeve of terminal conductor firmly, be difficult for taking place to remove in the sleeve of terminal conductor.
Specifically, two ends of the connection ring 11 located at the let opening 111 are respectively provided with a first positioning portion 112 and a second positioning portion 113, the first positioning portion 112 is disposed on one side away from the conductive block 2, the second positioning portion 113 is disposed on one side close to the conductive block 2, one surfaces of the two second positioning portions 113 of the connection ring 11 away from the conductive block 2 respectively abut against two surfaces of the connection ring 11, close to the conductive block 2, of the first positioning portion 112, and the first positioning portion 112 and the second positioning portion 113 are arranged to prevent the two connection rings 11 from being vertically displaced.
Wherein, two said connecting rings 11 and a plurality of grid bars 12 are integrated into one piece.
The method for manufacturing the contact of the above-mentioned tight connector, as shown in fig. 5 to 9, comprises the following steps:
taking a flat stainless steel material 5, and punching a plurality of grid strips 12 arranged at intervals and two connecting plates 6 respectively connected with two ends of the grid strips 12 on the flat stainless steel material 5 through a punching die to obtain a stainless steel workpiece as shown in figure 1;
step two, taking two conductive materials 7, as shown in fig. 6, punching a convex clamping structure 211 on two opposite sides of one conductive material 7 through a punching die, punching a groove 221 matched with the clamping structure 211 in a clamping manner on the other conductive material 7, and then punching and distributing the two conductive materials 7 according to the shape of the conductive block 2;
step three, as shown in fig. 7 and 8, the conductive material 7 with the groove 221 and the conductive material 7 with the clamping structure 211 which are punched and distributed in the step two are respectively placed on two sides of the grid bars 12, and the two conductive materials 7 are clamped on the grid bars 12 through the clamping matching of the clamping structures 211 on the two conductive materials 7 and the groove 221;
punching the conductive material 7 clamped on the grid bars 12 through a punching die, so that the two conductive materials 7 which are clamped and matched with each other are punched into a flat plate structure, and referring to the structure shown in fig. 8;
step five, stamping and bending the grid bars 12 which are stamped in the step four and are fixed with the conductive material 7 through a stamping die, and twisting one sides of the conductive material 7 and the grid bars 12 by 30-70 degrees;
and step six, as shown in fig. 9, performing rounding treatment on the stainless steel workpiece processed in the step five through a die, and enabling two ends of a connecting plate 6 on the stainless steel workpiece to be close to each other until the stainless steel workpiece forms a circular ring shape to obtain the contact element.
While the preferred embodiments of the present invention have been described, the present invention is not limited to the above embodiments, and those skilled in the art can make various equivalent modifications or substitutions without departing from the spirit of the present invention, and such equivalent modifications or substitutions are intended to be included within the scope of the present invention as defined by the appended claims.

Claims (9)

1. A contact for a compression connector, comprising: the elastic body comprises two connecting rings and a plurality of grid strips arranged between the two connecting rings at intervals, the grid strips comprise a first side and a second side which are respectively connected with the two connecting rings and a third side and a fourth side which are arranged between the first side and the second side, the third side and the fourth side are oppositely arranged, the third side of each grid strip is twisted to enable the third side of each grid strip to be positioned close to the center direction of the connecting rings, and each grid strip is provided with a conductive block.
2. The contact of a mating connector according to claim 1, wherein: the third side of the grid bars rotates 30-70 degrees in the direction close to the center of the connecting ring.
3. The contact of a mating connector according to claim 1, wherein: the grid strip is arranged on the bottom of the grid strip, the grid strip penetrates through the middle of the grid strip and is connected with the conductive block, and the conductive block is arranged in the middle of the grid strip.
4. The contact of a mating connector according to claim 1, wherein: the sides of the conductive blocks are all set to be arc-shaped guide surfaces.
5. The contact of a mating connector according to claim 1, wherein: an inclined guide surface is arranged at one corner of the conductive block close to the center of the connecting ring, and the inclined guide surface extends from the end face of the conductive block connected with the grid strip to the side face of the conductive block and gradually inclines towards the direction close to the center of the connecting ring.
6. The contact of a mating connector according to claim 1, wherein: and the conductive blocks are in clamping fit with the grid bars.
7. The contact of a mating connector according to claim 6, wherein: two limiting parts for blocking the movement of the conductive block are arranged on two sides of the grid bar, which are positioned on the conductive block.
8. The contact of a mating connector according to claim 1, wherein: and a position yielding port is arranged on the connecting ring.
9. The contact of a mating connector according to claim 1, wherein: the two connecting rings and the plurality of grid bars are integrally formed.
CN202120285361.0U 2021-02-01 2021-02-01 Contact element of tight connector Active CN214478008U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120285361.0U CN214478008U (en) 2021-02-01 2021-02-01 Contact element of tight connector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120285361.0U CN214478008U (en) 2021-02-01 2021-02-01 Contact element of tight connector

Publications (1)

Publication Number Publication Date
CN214478008U true CN214478008U (en) 2021-10-22

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ID=78117295

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120285361.0U Active CN214478008U (en) 2021-02-01 2021-02-01 Contact element of tight connector

Country Status (1)

Country Link
CN (1) CN214478008U (en)

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