Test probe group device tool

文档序号:986556 发布日期:2020-11-06 浏览:3次 中文

阅读说明:本技术 一种测试探针组装置治具 (Test probe group device tool ) 是由 井高飞 付盼红 申啸 于 2020-06-24 设计创作,主要内容包括:本发明公开一种测试探针组装置治具,包括整列机主体;若干个固定板治具,每个所述固定板治具上设置有多个安装槽,每个探针零件匹配对应一个固定板治具的安装槽结构;夹板组装治具,每个夹板组装治具上设置有对应所述固定板治具安装槽的通孔。本发明利用整列机产生振动,然后利用不同零件的板形治具上的安装槽将零件进行固定,最后利用夹板组装治具将不同的探针零件进行定位,然后组装在一起。本发明的测试探针组装置治具利用整列机和板形治具实现了对多个零件的快速排列固定,完成零件的批量组装,从而实现了探针的批量生产,提高了工作效率,同时也使得组装质量的一致性大大提高。(The invention discloses a test probe group device jig, which comprises an arraying machine main body; each fixed plate jig is provided with a plurality of mounting grooves, and each probe part is matched with the mounting groove structure of one corresponding fixed plate jig; and each clamping plate assembling jig is provided with a through hole corresponding to the fixing plate jig mounting groove. The invention uses the arraying machine to generate vibration, then uses the mounting grooves on the plate-shaped jigs of different parts to fix the parts, finally uses the clamping plate assembly jig to position different probe parts, and then assembles the probe parts together. The jig for the test probe group device realizes rapid arrangement and fixation of a plurality of parts by utilizing the arraying machine and the plate-shaped jig, and completes batch assembly of the parts, thereby realizing batch production of probes, improving the working efficiency and greatly improving the consistency of the assembly quality.)

1. The utility model provides a test probe group device tool which characterized in that includes:

a lining-up machine main body;

the fixture comprises a plurality of fixing plate fixtures, a plurality of mounting grooves are formed in each fixing plate fixture, each probe part is matched with a mounting groove structure corresponding to one fixing plate fixture, the fixing plate fixtures are arranged on an arranging machine main body, and the arranging machine main body is used for generating vibration to enable the probe parts to fall into the mounting grooves of the fixing plate fixtures;

the fixture comprises a plurality of clamping plate assembling fixtures, wherein each clamping plate assembling fixture is provided with a through hole corresponding to a mounting groove of the fixing plate fixture, and the clamping plate assembling fixtures are used for positioning the mounting grooves on the fixing plate fixtures so as to position and assemble the probe parts.

2. The apparatus of claim 1, wherein the aligner body is provided with a receiving box, and the fixing plate fixture is disposed in the receiving box.

3. The apparatus of claim 2, wherein the aligner body further comprises a hydraulically driven pressing plate, the upper end of the box body is provided with a cover plate, and the pressing plate is used for limiting the cover plate and covering the cover plate on the box body.

4. The test probe set device jig of claim 1, wherein the mounting slots on the fixture plate jig are distributed in a matrix.

5. The test probe set device jig of claim 1, wherein the assembly system further comprises a capper.

Technical Field

The invention belongs to the technical field of part assembly, and particularly relates to a test probe set device jig.

Background

The test probe plays an important role in the test production process of the circuit board. Because the test probe is small in size, industrial assembly cannot be carried out at present, and the current test probe assembly mainly depends on manual single assembly, so that the problems of low assembly efficiency and unstable product quality exist.

Disclosure of Invention

In view of this, the present invention provides a test probe set device jig to solve the problems of low efficiency and unstable quality of manual assembly of test probes.

In order to solve the above problems, the present invention discloses a device jig for testing probe sets, comprising:

a lining-up machine main body;

the fixture comprises a plurality of fixing plate fixtures, a plurality of mounting grooves are formed in each fixing plate fixture, each probe part is matched with a mounting groove structure corresponding to one fixing plate fixture, the fixing plate fixtures are arranged on an arranging machine main body, and the arranging machine main body is used for generating vibration to enable the probe parts to fall into the mounting grooves of the fixing plate fixtures;

the fixture comprises a plurality of clamping plate assembling fixtures, wherein each clamping plate assembling fixture is provided with a through hole corresponding to a mounting groove of the fixing plate fixture, and the clamping plate assembling fixtures are used for positioning the mounting grooves on the fixing plate fixtures so as to position and assemble the probe parts.

Further, a containing box body is arranged on the arraying machine main body, and the fixing plate jig is arranged in the containing box body.

Furthermore, a hydraulic drive pressing plate is further arranged on the arraying machine main body, a cover plate is arranged at the upper end of the containing box body, and the pressing plate is used for limiting the cover plate and covering the cover plate on the containing box body.

Furthermore, a plurality of mounting grooves on the fixed plate jig are distributed in a matrix form.

Further, the assembly system further comprises a sealing machine.

Compared with the prior art, the probe part fixing device has the advantages that the arraying machine is used for generating vibration, then the mounting grooves on the plate-shaped jigs of different parts are used for fixing the parts, finally the clamping plate assembly jig is used for positioning different probe parts, and then the probe parts are assembled together. The test probe set device jig realizes rapid arrangement and fixation of a plurality of parts by utilizing the arraying machine and the plate-shaped jig, so that the assembly of the plurality of parts can be completed at one time, thereby realizing the batch production of probes, improving the working efficiency and greatly improving the consistency of the assembly quality.

Drawings

The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the invention and not to limit the invention. In the drawings:

FIG. 1 is a schematic structural diagram of a fixture plate fixture;

FIG. 2 is a schematic structural view of a clamping plate assembly jig;

fig. 3 is a schematic structural view of the aligner main body.

Detailed Description

The following embodiments are described in detail with reference to the accompanying drawings, so that how to implement the technical features of the present invention to solve the technical problems and achieve the technical effects can be fully understood and implemented.

In this embodiment, the test probe set apparatus of the present invention is described by taking a single-action test probe as an example.

The single-action type test probe is composed of a needle tube, a spring and a needle head respectively, the needle tube and the spring need to be assembled firstly during assembly, and then the assembled semi-finished product and the needle head are assembled, namely the assembly work of the single-action type test probe is completed. This test probe group device tool of implementing includes:

an aligner main body 3;

the three fixing plate jigs 1 are respectively a needle tube fixing plate jig, a spring fixing plate jig and a needle head fixing plate jig, the needle tube fixing plate jig is provided with a plurality of mounting grooves, the shape and the size of each mounting groove are consistent with those of a needle tube, similarly, the spring fixing plate jig is also provided with a plurality of mounting grooves, the specification of each mounting groove is consistent with that of a spring, and the needle head fixing plate jig is also provided with a plurality of mounting grooves, the specification of each mounting groove is consistent with that of a needle head; preferably, a plurality of mounting grooves on the three fixing plate jigs are distributed in a matrix form, and the mounting grooves on the three fixing plate jigs are corresponding in position.

The two clamping plate assembling jigs 2, wherein one clamping plate assembling jig is provided with a through hole corresponding to the needle tube fixing plate jig mounting groove, and the other clamping plate assembling jig is provided with a through hole corresponding to the spring fixing plate jig mounting groove;

a sealing machine.

Specifically, a containing box body 4 is arranged on the arraying machine main body 3, and the fixing plate jig 1 is arranged in the containing box body 4. In order to avoid popping the probe parts out of the containing box body 4 in the vibrating arrangement process, preferably, the upper end of the containing box body 4 is provided with a cover plate 5, the arraying machine body is further provided with a hydraulic-driven pressing plate 6, the cover plate covers the containing box body 4, and the pressing plate 6 moves downwards to limit the cover plate 5. It is understood, of course, that cover 5 is used to close the upper opening of cassette 4, and therefore, a simple replacement of the functions of cover 5 and pressure plate 6 for limiting the movement of cover 5 is within the scope of the present invention, for example, the cover may be movably attached to the open side of the upper end of cassette 4 or the cover 5 and cassette 4 may be closed by a snap-in structure.

When the automatic arranging machine is used, the needle tube fixing plate jig, the spring fixing plate jig and the needle head fixing plate jig are firstly placed into the containing box body 4 in a grading manner, the needle tube, the spring and the needle head are correspondingly placed in the containing box body 4 in a grading manner, the cover plate 5 is covered and the press plate 6 is driven to move downwards to press the cover plate, then the arranging machine main body is started, the needle tube, the spring and the needle head correspondingly fall into the mounting grooves of the needle tube fixing plate jig, the spring fixing plate jig and the needle head fixing plate jig in the vibrating process, and therefore batch arrangement of the needle tube, the; then, the needle tube fixing plate jig and the spring fixing plate jig are correspondingly connected together by utilizing the clamping plate assembling jig corresponding to the needle tube fixing plate jig mounting groove, and batch needle tube and spring assembling work can be realized due to the fact that the positions of the needle tubes correspond to those of the springs; and finally, correspondingly connecting the assembled needle tube with the spring and the needle head fixing plate jig together by utilizing the clamping plate assembling jig corresponding to the spring fixing plate jig mounting groove, assembling the needle head and the spring, namely completing the assembly of the single-action type test probes in batches, and taking out the assembled single-action type test probes to seal by using a sealing machine.

It can be understood that this embodiment can also adopt three permutation machines, realize the range to needle tubing, spring, syringe needle simultaneously, through according to the equipment process, can realize the streamlined production of test probe.

The technical personnel in the field can adjust the structure of the assembly system of the embodiment aiming at the test probes of other types and structures, and can realize the batch assembly work of the test probes of different types and structures only by adjusting the number of the probe parts and the specification of the fixing plate jig 1 and the specification of the mounting groove, and the number of the clamping plate assembly jig 2 and the size of the through holes.

While the foregoing description shows and describes several preferred embodiments of the invention, it is to be understood, as noted above, that the invention is not limited to the forms disclosed herein, but is not to be construed as excluding other embodiments and is capable of use in various other combinations, modifications, and environments and is capable of changes within the scope of the inventive concept as expressed herein, commensurate with the above teachings, or the skill or knowledge of the relevant art. And that modifications and variations may be effected by those skilled in the art without departing from the spirit and scope of the invention as defined by the appended claims.

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