Conductive electrode for track socket
Technical Field
The utility model belongs to the technical field of the track socket and specifically relates to a conducting electrode for track socket is related to, its plug contact that can effectively increase its and butt joint is effective and stable contact, promotes socket safety in utilization and electrically conductive efficiency itself.
Background
The mainstream socket used by people at present adopts a fixed power socket and a power supply power board; the fixed power socket is characterized in that the power socket is fixedly arranged on an indoor wall, cannot be moved and lacks flexibility, once the fixed power socket is arranged, the fixed power socket is difficult to move and even cannot be moved, and the connection requirement of electric equipment cannot be met, particularly when the electric equipment far away from the power socket needs to supply power; although the power supply power board can be moved at will, the power supply power board is lack of safety and regularity, people are easy to trip and get an electric shock, the safety is low, and the socket is easy to be touched by external force to generate displacement, so that the plug is separated from the socket, and the power failure is caused.
Furthermore, a small number of movable track power sockets are also available in the market, but the conductive electrode of the existing track power socket is generally made of a copper sheet, in order to increase the conductive stability of the copper sheet and the plug contact, a commonly used method is to jack the copper sheet by a spring, but the structure is a split type assembly structure, so that the requirement on operators is high in the assembly process, high labor cost is generated, and meanwhile, the service life and the practicability of the product are directly influenced due to the fact that the assembly structure has unstable structure.
SUMMERY OF THE UTILITY MODEL
The utility model provides a problem how can also reduce personnel's cost when promoting track supply socket internal conductivity electrode structural stability.
In order to solve the above problem, the utility model provides a technical scheme for track socket's conducting electrode, it includes a conducting strip at least, the conducting strip is the bar sheetmetal, be provided with a plurality of shell fragments rather than an organic whole continuous on the conducting strip, each the shell fragment perk is stretched out outside the conducting strip, each the shell fragment supports in the inside wall that corresponds contact means and produces elastic deformation in order to acquire holding power or clamping-force.
Further preferred is: the conductive electrode comprises two conductive sheets which are symmetrically arranged, and a plurality of elastic sheets are arranged on each conductive sheet at intervals;
and each elastic sheet on the two conductive sheets and the inner side wall of the corresponding contact part elastically deform to obtain the clamping force of the part between the two conductive sheets.
Further preferred is: the conducting electrode comprises a conducting plate, a plurality of elastic sheets are arranged on the edges of two long edges of the conducting plate respectively, and the elastic sheets are arranged on the edges of the conducting plate at intervals.
Further preferred is: each elastic sheet is a hook copper sheet bent towards the body of the conducting sheet.
Further preferred is: each elastic sheet is in a J shape.
Further preferred is: : each conductive sheet is provided with a yielding through hole matched with the plurality of elastic sheets, and each yielding through hole is positioned below each elastic sheet so as to provide elastic space corresponding to the elastic sheet after force is applied.
Further preferred is: any long edge of each conducting strip bends towards the direction of the elastic sheet.
Compared with the prior art, the utility model has the advantages of it is following:
any conducting strip in the conducting electrode in the utility model adopts an integrated elastic sheet structure, which can effectively lift the body in the conducting electrode, contact with the contact sheet and can be tightened, and the integrated structure saves a link or procedure of rail power supply assembly, thereby improving the stability of the conducting electrode while reducing the manual operation cost, and further improving the practicability of the whole product;
in addition, the utility model discloses utilize the produced clamping-force's of shell fragment elastic deformation function, reach the contact quilt the conducting electrode compresses tightly and the purpose of in close contact to prevent phenomenons such as generating heat or the spark that the circular telegram during operation leads to because of contact failure.
Drawings
Fig. 1 is a schematic perspective view of a conductive electrode for a rail socket (the conductive electrode includes two conductive strips symmetrically distributed) according to an embodiment of the present invention;
fig. 2 is a front view of the structure of any one of the conductive sheets of fig. 1;
FIG. 3 is a bottom view of FIG. 2;
fig. 4 is a cross-sectional view of the conductive sheet of fig. 1;
fig. 5 is a conductive electrode for a rail socket according to an embodiment of the present invention (the conductive electrode includes a conductive strip);
fig. 6 is a schematic structural diagram of a conductive electrode for a track socket used in a track body according to an embodiment of the present invention (showing a single-side structure, the other side is symmetrical to the structure and the display structure with a center line of the track body).
Detailed Description
There are also a small amount of mobilizable track supply socket in the market, but current track socket's conducting pole is generally made by the copper sheet, in order to increase the conductive stability of copper sheet and plug contact, the way of commonly using is with spring jack-up for the copper sheet, but such structure is split type assembly structure, and then it is higher to need operating personnel to require in the assembling process, and then has produced higher labour cost, because of there is the unstable factor of structure in the assembly structure itself simultaneously, the life and the practicality of direct influence product.
The inventor aims at the technical problems and finds a technical scheme of a conductive electrode for a track socket through continuous research and analysis of reasons, wherein the conductive electrode at least comprises a conductive sheet, the conductive sheet is a strip-shaped copper sheet, a plurality of elastic sheets integrally connected with the conductive sheet are arranged on the conductive sheet, each elastic sheet tilts and extends out of the conductive sheet, and each elastic sheet abuts against the inner side wall of a corresponding contact part and generates elastic deformation to obtain supporting force or clamping force.
After the technical scheme is adopted, a link or a procedure of assembling the rail power supply is omitted, the manual operation cost is reduced, and meanwhile, the stability of the conductive electrode is improved, so that the practicability of the whole product is improved; in addition, the scheme utilizes the function of clamping force or supporting force generated by elastic deformation of each elastic sheet to promote the clamping force of each conducting sheet, so that the conducting electrode is contacted with other contact pieces or is stably connected with the sliding rail body, and the phenomena of heating or sparking and the like caused by poor contact in the electrifying work are prevented.
The following detailed description of the embodiments of the present invention will be made with reference to the accompanying drawings.
Example (b):
a technical scheme of a conductive electrode for a track socket at least comprises a conductive plate 1, wherein the conductive plate 1 is a strip-shaped copper sheet, a plurality of elastic sheets 2 integrally connected with the conductive plate 1 are arranged on the conductive plate 1, each elastic sheet 2 is tilted and extends out of the conductive plate 1, and each elastic sheet 2 abuts against the inner side wall of a corresponding contact part and generates elastic deformation to obtain supporting force or clamping force.
When the conducting electrode is a ground electrode, the specific structure is as follows:
as shown in fig. 5, when the conductive electrode 1-1 includes a conductive plate 1, the conductive electrode 1-1 is a ground electrode, wherein the conductive plate 1 is a rectangular copper sheet, two long edges of the conductive plate 1 are equidistantly provided with a plurality of the elastic pieces 2, the elastic pieces 2 on each edge of the conductive plate 1 are arranged in the same direction and at intervals, the conductive plate 1 is provided with abdicating through holes 1-3 adapted to the elastic pieces 2, each abdicating through hole 1-3 is a groove formed at the edge of the conductive plate, each abdicating through hole 1-3 is located below each elastic piece 2 to provide a space corresponding to elasticity of the elastic piece 2 after force is applied, and each abdicating through hole is a rectangular through hole.
As shown in fig. 6, when the ground pole is installed in the slide rail body 3 of the track-type power supply, a ground pole installation groove 31 is formed in the slide rail body 3, the ground pole is arranged in the installation groove 31, and the elastic pieces 2 on each ground pole are abutted to the inner side wall of the slide rail body 3, so that installation supporting force is effectively given to the ground pole, the installation structure of the ground pole is ensured to be stable, and the product quality is effectively improved.
When the conducting electrode is a contact conducting electrode, the contact conducting electrode is a conducting electrode matched with a plug contact piece, and the structure is as follows:
as shown in fig. 1 to 4, a conductive electrode 2-1 for a track socket includes two conductive plates 1 symmetrically disposed, each conductive plate 1 is provided with a plurality of spring pieces 2 linearly distributed, the plurality of spring pieces 2 are disposed in the same direction and at intervals, and each spring piece 2 is tilted and extends out of the conductive plate 1;
each elastic sheet 2 on the two conducting sheets 1 is abutted against the inner side wall of the corresponding contact part and generates elastic deformation to store energy, and a holding force is applied to the contact sheet between the two conducting sheets;
as shown in fig. 1 to 4, each conductive plate 1 is provided with a yielding through hole 2-3 adapted to the plurality of elastic sheets 2, each yielding through hole 2-3 is located below each elastic sheet 2 to provide a space corresponding to the elasticity of the elastic sheet 2 after force is applied, each yielding through hole 2-3 is a rectangular through hole, and the yielding through hole 2-3 located at the extreme end of the bending direction of the plurality of elastic sheets is a groove with an opening at the end;
any long edge of each conducting strip 1 bends towards the direction of the elastic sheet 2, so that a conducting strip structure distributed in a splayed shape is formed, and one end of the large opening of each conducting strip 1 forms a horn-shaped inserting opening so as to be conveniently inserted into the contact sheet 4 of the plug.
As shown in fig. 1 to 5, the above-mentioned conductive electrode 2-1 for a track socket is applied to the track body 3, and because two conductive electrodes 2-1 matching with a plug contact are arranged in the track body 3 and are in contact conduction, and the two conductive electrodes 2-1 are symmetrically distributed and have the same structure, the following schemes are all explained in a single-side description manner.
As shown in fig. 5, a space for installing the conductive electrode 1 is provided in the track body 3, an insulating groove 32 is provided around a side wall of the space, the conductive electrode 2 is disposed in the insulating groove 32, two conductive sheets 11 in the conductive electrode 2 are symmetrically distributed, a body in each conductive sheet 11 forms a splayed structure, an opening for allowing a plug contact 4 to be inserted or pulled out is formed at one end with a large diameter, and in order to enable the two conductive sheets 1 to be in close contact with the inserted contact 4, the clamping force of the two conductive sheets 1 on the contact 4 needs to be increased;
therefore, each body extends outwards to form a plurality of spring plates 2, each spring plate 2 is in contact with the inner wall of the track body 3 or the inner wall of the insulation groove 32, each spring plate 2 is an extension part of the conducting strip 1, when the contact piece 4 is inserted between the two conducting strips from the opening, each body is pressed by the contact piece 4 to generate an expansion force, and the elastic piece 2 in each body is pressed to elastically deform, after the elastic sheet 2 is elastically deformed and stores energy, a clamping force towards the contact sheet 4 is generated on the conducting sheet, thereby further increasing the clamping force of the two conducting strips to the contact strip 4, the two conducting strips 1 are closely contacted with the contact strip 4, thereby achieving the purpose that the contact piece 4 can be clamped by the conductive electrode 2-1, and simultaneously preventing the phenomena of heating or electric sparks and the like caused by poor contact during the power-on work.
The following are the structures of the ground electrode or the contact conductive electrode, and the specific description is as follows:
as shown in fig. 1 to 5, each spring piece 2 is a hook copper sheet bent toward the conductive sheet 1, and preferably: each shell fragment 2 is J word shape, and then makes each the crotch department of shell fragment 2 is circular radian to when guaranteeing assembly process staff dismouting safety, also promote its in the smooth degree of elastic deformation and the process that resets, promote this structure practicality.
Although the present invention has been described with reference to the preferred embodiments, it is not intended to limit the present invention, and those skilled in the art can make modifications and changes without departing from the spirit and scope of the present invention.