Insulation and pressure resistance tool for special-shaped surface
Technical Field
The utility model relates to the technical field of detection tools, in particular to a special-shaped surface insulation pressure-resistant tool.
Background
The parts are basic parts which can be assembled into machines, meters and various devices, and when the parts are produced and processed, the parts are required to be detected in order to ensure the quality of the parts, a tool is required to be used for installing and positioning the parts, and the tool is installed on a corresponding detection machine for detection.
The insulation and voltage-resistant tool in the prior art is a flat plate and positive and negative wiring terminals arranged on the flat plate, and can only be applied to insulation and voltage-resistant test of flat structure products, and spot position measurement can only be carried out on different surface structure products through probes, so that the problems of large measurement result error, low measurement efficiency and the like exist.
Accordingly, there is a need for improvements and enhancements in the art.
Disclosure of utility model
Aiming at the defects existing in the prior art, the utility model aims to provide the special-shaped surface insulation pressure-resistant tool which is used for measuring special-shaped surface products and has accurate measurement results and high measurement efficiency.
In order to achieve the above purpose, the technical scheme adopted by the utility model is as follows:
A special-shaped surface insulation pressure-resistant tool comprises
A bottom plate;
the positioning column is arranged in the middle of the bottom plate;
The first special-shaped surface clamping block and the second special-shaped surface clamping block are oppositely arranged on two sides of the positioning column, and a gap is formed between the first special-shaped surface clamping block and the second special-shaped surface clamping block;
The first quick push-pull clamp drives the first special-shaped surface clamping block to move towards the direction of the positioning column;
The second quick push-pull clamp drives the second special-shaped surface clamping block to move towards the direction of the positioning column;
The negative electrode wiring block is arranged beside the first quick push-pull clamp, the negative electrode wiring block is connected with one end of a first conductive wire and one end of a second conductive wire, the other end of the first conductive wire passes through the first special-shaped surface clamping block and protrudes out of the inner wall surface of the first special-shaped surface clamping block, and the other end of the second conductive wire passes through the second special-shaped surface clamping block and protrudes out of the inner wall surface of the second special-shaped surface clamping block;
and the positive electrode wiring block is arranged beside the second quick push-pull clamp.
As a further scheme of the utility model, a first conductive foam is arranged on one side of the first special-shaped surface clamping block, which faces the second special-shaped surface clamping block, the first conductive foam is connected with the other end of the first conductive wire, a second conductive foam is arranged on one side of the second special-shaped surface clamping block, which faces the first special-shaped surface clamping block, the second conductive foam is connected with the other end of the second conductive wire, and a gap is formed between the first conductive foam and the second conductive foam.
As a further scheme of the utility model, the first quick push-pull clamp comprises a first base, a first pull rod, two first connecting pieces and a first driving rod, wherein the first base comprises a first connecting block and a first guide sleeve which are integrally arranged, one end of the first pull rod is hinged with the first connecting block, the middle part of the first pull rod is hinged with one ends of the two first connecting pieces, the other ends of the two first connecting pieces are hinged with the first driving rod, and the other end of the first driving rod penetrates through the first guide sleeve to be connected with the first special-shaped surface clamping block.
As a further scheme of the utility model, the second quick push-pull clamp comprises a second base, a second pull rod, two second connecting pieces and a second driving rod, wherein the second base comprises a second connecting block and a second guide sleeve which are integrally arranged, one end of the second pull rod is hinged with the second connecting block, the middle part of the second pull rod is hinged with one ends of the two second connecting pieces, the other ends of the two second connecting pieces are hinged with the second driving rod, and the other end of the second driving rod penetrates through the second guide sleeve to be connected with the second special-shaped surface clamping block.
As a further scheme of the utility model, the middle part of the first pull rod is in an obtuse angle shape, and the obtuse angle position of the first pull rod is hinged with one ends of the two first connecting pieces.
As a further scheme of the utility model, the middle part of the second pull rod is in an obtuse angle shape, and the obtuse angle position of the second pull rod is hinged with one ends of the two second connecting pieces.
As a further scheme of the utility model, the free end of the first pull rod is sleeved with a first soft rubber sleeve.
As a further scheme of the utility model, the free end of the second pull rod is sleeved with a second soft rubber sleeve.
Compared with the prior art, the utility model has the beneficial effects that:
Due to the adoption of the structural design, the positioning column is arranged on the bottom plate, the first quick push-pull clamp and the second quick push-pull clamp respectively drive the first special-shaped surface clamping block and the second special-shaped surface clamping block to move in opposite directions, the negative electrode wiring block and the positive electrode wiring block are connected with the testing instrument, during testing, a product to be tested is placed on the positioning column, and the first special-shaped surface clamping block and the second special-shaped surface clamping block are respectively driven by the first quick push-pull clamp and the second quick push-pull clamp to clamp the special-shaped surface product to be tested, so that insulation and voltage resistance testing can be conducted, the measurement result is accurate, and the testing efficiency is high.
Drawings
FIG. 1 is a schematic diagram of an embodiment of the present utility model;
Fig. 2 is a schematic diagram of a structure before clamping according to an embodiment of the present utility model.
The reference numerals in the figures are respectively:
10-bottom plates, 20-positioning columns, 30-first special-shaped surface clamping blocks, 40-second special-shaped surface clamping blocks, 50-first quick push-pull clamps, 60-second quick push-pull clamps, 70-negative electrode wiring blocks and 80-positive electrode wiring blocks;
31-a first conductive foam;
41-a second conductive foam;
51-first base, 52-first pull rod, 53-first connecting piece, 54-first driving rod;
511-a first connecting block and 512-a first guide sleeve;
521-a first soft rubber sleeve;
61-second base, 62-second pull rod, 63-second connecting piece, 64-second driving rod;
611-second connecting blocks, 612-second guide sleeves;
621-second soft rubber sleeve
71-First conductive lines, 72-second conductive lines.
Detailed Description
The present utility model will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present utility model more apparent. It should be understood that the particular embodiments described herein are illustrative only and are not intended to limit the utility model, i.e., the embodiments described are merely some, but not all, of the embodiments of the utility model. The components of the embodiments of the present utility model generally described and illustrated in the figures herein may be arranged and designed in a wide variety of different configurations.
Thus, the following detailed description of the embodiments of the utility model, as presented in the figures, is not intended to limit the scope of the utility model, as claimed, but is merely representative of selected embodiments of the utility model. All other embodiments, which can be made by a person skilled in the art without making any inventive effort, are intended to be within the scope of the present utility model.
It is noted that relational terms such as "first" and "second", and the like, are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one does not exclude the presence of other like elements in a process, method, article, or apparatus that comprises an element.
The features and capabilities of the present utility model are described in further detail below in connection with the examples.
Examples
As shown in FIGS. 1 and 2, the application relates to a special-shaped surface insulation and voltage-resistant tool, which comprises
The wire clamping device comprises a base plate 10, a positioning column 20, a first special-shaped surface clamping block 30, a second special-shaped surface clamping block 40, a first quick push-pull clamp 50, a second quick push-pull clamp 60, a negative electrode wire connecting block 70, a first wire connecting block 70 and a second wire connecting block 80, wherein the first special-shaped surface clamping block 30 and the second special-shaped surface clamping block 40 are arranged at the middle position of the base plate 10, a gap is formed between the first special-shaped surface clamping block 30 and the second special-shaped surface clamping block 40 and oppositely arranged at two sides of the positioning column 20, the first quick push-pull clamp 50 drives the first special-shaped surface clamping block 30 to move towards the positioning column 20, the second quick push-pull clamp 60 drives the second special-shaped surface clamping block 40 to move towards the positioning column 20, the negative electrode wire connecting block 70 is arranged beside the first quick push-pull clamp 50, one end of the first wire connecting block 71 and one end of the second wire connecting block 72, the other end of the first wire connecting block 71 penetrates through the first special-shaped surface clamping block 30 and protrudes out of the inner wall surface of the first special-shaped surface clamping block 30, the other end of the second wire connecting block 72 penetrates through the second special-shaped surface clamping block 40 and protrudes out of the inner wall surface of the second special-shaped surface clamping block 40, and the positive electrode connecting block 80 is arranged beside the second wire connecting block 60. Through the above structural design, during testing, the special-shaped surface product to be tested is placed on the positioning column, the first special-shaped surface clamping block 30 and the second special-shaped surface clamping block 40 are respectively driven by the first quick push-pull clamp 50 and the second quick push-pull clamp 60 to clamp the special-shaped surface product to be tested, at this time, the first conductive wire 71 and the second conductive wire 72 are in contact with the special-shaped surface product to be tested, the negative electrode wiring block 70 and the positive electrode wiring block 80 are connected with the testing instrument, if the first conductive wire and the second conductive wire are conducted, the insulation voltage withstand test of the product to be tested is not passed, and if the first conductive wire and the second conductive wire are not conducted, the insulation voltage withstand test of the product to be tested is passed, and because the first special-shaped surface clamping block and the second special-shaped surface clamping block which are matched with the special-shaped surface product to be tested in shape are adopted, the special-shaped surface product to be tested can be conveniently tested, the measurement result is accurate, and the testing efficiency is high.
Specifically, a first conductive foam 31 is disposed on one side of the first profiled surface clamping block 30 facing the second profiled surface clamping block 40, the first conductive foam 31 is connected with the other end of the first conductive wire 71, a second conductive foam 41 is disposed on one side of the second profiled surface clamping block 40 facing the first profiled surface clamping block 30, the second conductive foam 41 is connected with the other end of the second conductive wire 72, a gap is formed between the first conductive foam 31 and the second conductive foam 41, the first conductive foam and the second conductive foam are matched with the shape of the profiled surface product to be tested, and through the above structural design, the negative electrode wire block 70 is connected with the profiled surface product to be tested through the first conductive foam 31, the positive electrode wire block 80 is connected with the profiled surface product to be tested through the second conductive foam 41, and meanwhile, the first conductive foam 31 and the second conductive foam 41 play a buffering role to prevent damage to the profiled surface product to be tested by the first profiled surface clamping block and the second profiled surface clamping block.
Specifically, the first quick push-pull fixture 50 includes a first base 51, a first pull rod 52, and two first connecting pieces
53 And a first driving rod 54, the first base 51 includes a first connecting block 511 and a first guide integrally provided
A sleeve 512, one end of the first pull rod 52 is hinged with the first connecting block 511, and the middle part of the first pull rod 52 is hinged with
One ends of the two first connecting pieces 53 are hinged, and the other ends of the two first connecting pieces 53 are connected with the first driving rod
54 Are hinged, the other end of the first driving rod 54 passes through the first guide sleeve 512 and is connected with the first special-shaped surface clamping block
30, Wherein the middle part of the first pull rod 52 is in an obtuse angle shape, the obtuse angle position of the first pull rod 52 is hinged with one ends of the two first connecting pieces 53, through the structural design, not only the first special-shaped surface clamping block can be driven by the first push rod, but also the first special-shaped surface clamping block can be driven by the second push rod, thereby facilitating test operation and improving working efficiency.
Specifically, the second quick push-pull fixture 60 includes a second base 61, a second pull rod 62, two second connection pieces 63 and a second driving rod 64, where the second base 61 includes a second connection block 611 and a second guide sleeve 612 that are integrally disposed, one end of the second pull rod 62 is hinged to the second connection block 611, the middle of the second pull rod 62 is hinged to one ends of the two second connection pieces 63, the other ends of the two second connection pieces 63 are hinged to the second driving rod 64, the other ends of the second driving rod 64 pass through the second guide sleeve 612 and are connected to the second special-shaped surface clamping block 40, the middle of the second pull rod 62 is in an obtuse angle shape, and the obtuse angle of the second pull rod 62 is hinged to one ends of the two second connection pieces 63.
Specifically, the free end of the first pull rod 52 is sleeved with a first soft rubber sleeve 521, the free end of the second pull rod 62 is sleeved with a second soft rubber sleeve 621, and annular protrusions are uniformly distributed on the first soft rubber sleeve 521 and the second soft rubber sleeve 621 to increase friction force between a hand of a user and the first pull rod and the second pull rod, so that the user is not easy to slip off, and meanwhile, the rubber sleeve is soft in material, so that more comfortable holding experience can be improved.
In conclusion, the utility model solves the defects in the prior art through the structural design, and has the characteristics of reasonable structure, accurate test result, high test efficiency and the like.
The above description is only a preferred embodiment of the present utility model, and the patent protection scope of the present utility model is defined by the claims, and all equivalent structural changes made by the specification and the drawings of the present utility model should be included in the protection scope of the present utility model.