Gauge inspection mechanism with telescopic block
By designing a test tool inspection mechanism with telescopic blocks, the problem that traditional test tool can only detect a single size is solved, and simultaneous inspection of products in different states is achieved, saving development costs and improving measurement stability.
Patent Information
- Application Number
- CN202422022693.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-08-20
AI Technical Summary
Traditional automotive parts inspection tools can only detect the size of a single component, which is poor in practicality, high product development costs, and inconvenient use.
A test tool inspection mechanism with telescopic blocks is designed, including positioning base, positioning plate, auxiliary devices, etc. Through the adjustment of telescopic blocks and the coordination of limiting components, workpieces of different heights and bottom sizes can be detected.
It realizes that products that can detect both states at the same time during use, save product development costs, improve product measurement stability under the same benchmark, and is more conducive to detection and use.
Smart Images

Figure CN222964549U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of automotive part inspection tools, in particular to an inspection mechanism of an inspection tool with a telescopic block. Background Art
[0002] Automotive parts are each unit that constitutes an entire vehicle and a product serving the vehicle. There are a wide variety of automotive parts, and the roles played by each part in the operation of the vehicle are also different. With the improvement of people's living standards, people's consumption of automobiles is increasing, and the market for automotive accessories is also becoming larger and larger.
[0003] When manufacturing automotive parts, different inspection tools are needed for dimensional inspection to determine whether the product processing is qualified and prevent unqualified products from entering the market.
[0004] However, when traditional automotive part inspection tools are used for inspection, most of them can only detect the dimensions of a single part, with poor practicability, high product development costs, and inconvenient use. Summary of the Utility Model
[0005] The purpose of the utility model is to provide an inspection mechanism of an inspection tool with a telescopic block, aiming to simultaneously realize the inspection of products in two states during use, which can save product development costs, has better measurement stability for products under the same reference, and is more conducive to inspection and use.
[0006] To achieve the above purpose, the utility model provides an inspection mechanism of an inspection tool with a telescopic block, including a positioning base and a positioning plate. The positioning plate is fixedly connected to the positioning base and is located on the positioning base. A left limiting device is arranged on the left side of the positioning base, and an auxiliary device is further included;
[0007] The auxiliary device includes a fixed seat, a telescopic block, a locking pin, a guiding component, a front limiting component, a rear limiting component, and a right limiting component. The fixed seat is fixedly connected to the positioning base and is located on the positioning base. The telescopic block is detachably connected to the fixed seat and is located on the top of the fixed seat. The locking pin is threadedly connected to the fixed seat and is slidably connected to the telescopic block, and is located on the side of the fixed seat close to the telescopic block. The guiding component is arranged on the positioning base. The front limiting component is arranged on the front side of the positioning base. The rear limiting component is arranged on the rear side of the positioning base. The right limiting component is arranged on the right side of the positioning base.
[0008] Wherein, the guiding component includes a mounting seat and a mating pin. The mounting seat is fixedly connected to the positioning base and is located on the positioning base; the mating pin is fixedly connected to the mounting seat and is located on the mounting seat.
[0009] Among them, the front limit component includes a fitting seat, an abutting seat and a ball head wrench. The fitting seat is fixedly connected to the positioning base and is located on the front side of the positioning base; the abutting seat is rotatably connected to the fitting seat and is located on the top of the fitting seat; the ball head wrench is threadedly connected to the abutting seat and is located on the left side of the abutting seat.
[0010] Among them, the rear limit component includes a sliding seat and a plug rod. The sliding seat is fixedly connected to the positioning base and is located on the rear side of the positioning base; the plug rod is slidably connected to the sliding seat and is arranged on the sliding seat.
[0011] Among them, the right limit component includes a limit seat, an inclined block, a fork seat and a sliding fork. The limit seat is fixedly connected to the positioning base and is located on the right side of the positioning base; the inclined block is slidably connected to the limit seat and is located on the limit seat; the fork seat is fixedly connected to the positioning base and is located on one side of the positioning base close to the limit seat; the sliding fork is slidably connected to the fork seat and is located on one side of the fork seat.
[0012] A fixture inspection mechanism with a telescopic block according to the present utility model, a positioning plate is installed on a positioning base, a left limit device is arranged on the left side of the positioning base, a fixed seat is installed on the positioning base and a chute is vertically arranged thereon for facilitating the installation and sliding adjustment of the telescopic block. A locking pin is threadedly connected to the fixed seat and is slidably connected to the telescopic block. A guiding component is arranged on the positioning base, a front limit component is arranged on the front side of the positioning base, a rear limit component is arranged on the rear side of the positioning base, and a right limit component is arranged on the right side of the positioning base. During inspection, a workpiece is placed on the top of the telescopic block for support, and at the same time, the workpiece can be directly placed under the cooperation of the positioning plate and the guiding component. Then, by operating the left limit device, the left side limit and inspection of the workpiece can be realized. By operating the front limit component, the front side limit and inspection of the workpiece can be realized. By operating the rear limit component, the rear side limit and inspection of the workpiece can be realized. By operating the right limit component, the right side limit and inspection of the workpiece can be realized. Finally, before inspection, by loosening the locking pin, the telescopic block can be vertically pulled to slide, and after adjustment, the locking pin is tightened to fix the position, realizing the vertical position adjustment of the telescopic block, which is beneficial to placing workpieces of different heights, realizing the inspection of workpieces in two states with different bottom dimensions, and further realizing the inspection of two-state products simultaneously during use, which can save product development costs, has better measurement stability for products under the same reference, and is more conducive to inspection and use. Description of the Drawings
[0013] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art.
[0014] Figure 1It is a schematic diagram of the overall structure of the inspection tool inspection mechanism with a telescopic block of the present utility model.
[0015] Figure 2 It is a schematic diagram of the installation position of the telescopic block of the present utility model.
[0016] Figure 3 It is a schematic diagram of the structure of the fixed seat of the present utility model.
[0017] In the figure: 101 - positioning base, 102 - positioning plate, 103 - left limit device, 104 - fixed seat, 105 - telescopic block, 106 - locking pin, 107 - mounting seat, 108 - mating pin, 109 - mating seat, 110 - abutting seat, 111 - ball head wrench, 112 - sliding seat, 113 - insertion rod, 114 - limit seat, 115 - inclined block, 116 - fork seat, 117 - sliding fork. Detailed implementation manners
[0018] The following details the embodiments of the present utility model. The examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present utility model and should not be construed as a limitation of the present utility model.
[0019] As Figures 1 to 3 shown, among which Figure 1 is a schematic diagram of the overall structure of the inspection tool inspection mechanism with a telescopic block, Figure 2 is a schematic diagram of the installation position of the telescopic block 105, Figure 3 is a schematic diagram of the structure of the fixed seat 104. The present utility model provides an inspection tool inspection mechanism with a telescopic block: including a positioning base 101, a positioning plate 102 and an auxiliary device. A left limit device 103 is arranged on the left side of the positioning base 101. The auxiliary device includes a fixed seat 104, a telescopic block 105, a locking pin 106, a guiding component, a front limit component, a rear limit component and a right limit component. The guiding component includes a mounting seat 107 and a mating pin 108. The front limit component includes a mating seat 109, an abutting seat 110 and a ball head wrench 111. The rear limit component includes a sliding seat 112 and an insertion rod 113. The right limit component includes a limit seat 114, an inclined block 115, a fork seat 116 and a sliding fork 117. Through the foregoing solution, it can be realized that two-state product detection can be simultaneously achieved during use, which can save product development costs, and the measurement stability of products under the same reference is also better, which is more conducive to inspection and use. It can be understood that the foregoing solution can simultaneously achieve two-state product detection, which can save product development costs, and the measurement stability of products under the same reference is also better, which is conducive to inspection and use.
[0020] In this embodiment, the positioning plate 102 is fixedly connected to the positioning base 101 and is located on the positioning base 101. A left limiting device 103 is provided on the left side of the positioning base 101. The positioning plate 102 is installed on the positioning base 101 through positioning pins and bolts, and is located on the front, rear, left, and right sides of the positioning base 101 after installation for assisting in workpiece positioning. The left limiting device 103 adopts a telescopic clamp structure and is connected and fixed to the positioning base 101 through positioning pins and bolts. When detecting the placement of a workpiece, the corresponding part of the handle is pushed to achieve the operation, for performing left-side limiting and left-side dimension detection of the workpiece. If the dimension is unqualified, the corresponding part will not be able to cooperate.
[0021] Among them, the fixed seat 104 is fixedly connected to the positioning base 101 and is located on the positioning base 101. The telescopic block 105 is detachably connected to the fixed seat 104 and is located on the top of the fixed seat 104. The locking pin 106 is threadedly connected to the fixed seat 104 and is slidably connected to the telescopic block 105, and is located on the side of the fixed seat 104 close to the telescopic block 105. The guiding component is arranged on the positioning base 101. The front limiting component is arranged on the front side of the positioning base 101. The rear limiting component is arranged on the rear side of the positioning base 101. The right limiting component is arranged on the right side of the positioning base 101. The two fixed seats 104 are respectively fixed on the positioning base 101 through positioning pins and bolts. A vertical chute is arranged on the fixed seat 104 to facilitate the installation and sliding adjustment of the telescopic block 105. A through threaded hole is arranged on the side of the fixed seat 104 to facilitate the installation of the locking pin 106. Two spaced circular holes are vertically arranged on the side of the telescopic block 105 close to the locking pin 106. A stepped portion is arranged on the front side of the locking pin 106. The small-diameter end of the stepped portion is a smooth shaft end, which can directly slide into the circular hole on the side of the telescopic block 105. The large-diameter end is an external thread end for installation on the fixed seat 104. The top of the telescopic block 105 is L-shaped stepped to facilitate workpiece support, and a cylindrical pin is installed. The guiding component is used for assisting in workpiece positioning. The front limiting component is used for front-side limiting and dimension detection of the workpiece. The rear limiting component is used for rear-side limiting and dimension detection of the workpiece. The right limiting component is used for right-side limiting and dimension detection of the workpiece.
[0022] Secondly, the mounting seat 107 is fixedly connected to the positioning base 101 and is located on the positioning base 101; the mating pin 108 is fixedly connected to the mounting seat 107 and is located on the mounting seat 107. The mounting seat 107 is installed on the positioning base 101 through positioning pins and bolts. The mating pin 108 is fixed on the mounting seat 107 through a positioning pin.
[0023] Then, the mating seat 109 is fixedly connected to the positioning base 101 and is located on the front side of the positioning base 101; the abutting seat 110 is rotatably connected to the mating seat 109 and is located on the top of the mating seat 109; the ball head wrench 111 is threadedly connected to the abutting seat 110 and is located on the left side of the abutting seat 110. The mating seat 109 is fixed to the positioning base 101 by a positioning pin and a bolt. The mounting portion of the abutting seat 110 is mounted on the mating seat 109 by a pin shaft. Two positioning rods are vertically arranged on the front abutting portion. The positioning rods can be vertically pulled to facilitate abutting on the surface of the workpiece for limit and dimensional inspection cooperation. The outer threaded end of the ball head wrench 111 can be directly mounted on the mating rotating shaft of the abutting seat 110 to facilitate the flipping operation of the abutting seat 110.
[0024] Further, the sliding seat 112 is fixedly connected to the positioning base 101 and is located on the rear side of the positioning base 101; the insertion rod 113 is slidably connected to the sliding seat 112 and is arranged on the sliding seat 112. The sliding seat 112 is fixed to the positioning base 101 by a positioning pin and a bolt. A mating sliding hole is provided on the sliding seat 112 to facilitate the pulling and sliding of the plurality of insertion rods 113. Pushing the plurality of insertion rods 113 close to the workpiece can enable the insertion rods 113 to perform sliding cooperation with the positioning holes on the rear side of the workpiece for positioning and dimensional inspection cooperation.
[0025] Finally, the limiting seat 114 is fixedly connected to the positioning base 101 and is located on the right side of the positioning base 101; the inclined block 115 is slidably connected to the limiting seat 114 and is located on the limiting seat 114; the fork seat 116 is fixedly connected to the positioning base 101 and is located on one side of the positioning base 101 close to the limiting seat 114; the sliding fork 117 is slidably connected to the fork seat 116 and is located on one side of the fork seat 116. The limiting seat 114 is mounted on the positioning base 101 by a positioning pin and a bolt, and there are two of them. The inclined block 115 can be directly pulled and slid on the limiting seat 114. During dimensional inspection, when the inclined block 115 is pushed close to the workpiece, if the workpiece size is qualified, the inclined block 115 will abut on the upper surface of the workpiece. The fork seat 116 is fixed to the positioning base 101 by a positioning pin and a bolt and is provided with a rectangular sliding groove to facilitate the sliding of the sliding fork 117. During dimensional inspection, when the sliding fork 117 is pushed close to the workpiece, if the workpiece size is qualified, the sliding fork 117 will be stuck into the left detection point of the workpiece.
[0026] When using the present utility model to simultaneously detect products in two states, it can save product development costs, and has better measurement stability for products under the same reference, which is more conducive to detection. During detection, the workpiece is placed on the top of the telescopic block 105 for support. At the same time, with the cooperation of the positioning plate 102 and the guiding component, the workpiece can be directly placed. When the workpiece is placed, the mating pin 108 can cooperate with the positioning hole of the workpiece. Then, by operating the left limiting device 103, the left side limit and detection of the workpiece can be realized. Further, by pulling the ball head wrench 111, the abutting seat 110 can be driven to flip. When flipping, the bottom of the abutting seat 110 just abuts against the bottom of the mating groove of the mating seat 109 for limiting. Then, the positioning rod on the abutting seat 110 is pushed downward to abut against the surface of the workpiece for limiting and dimensional inspection cooperation. Then, by pulling a plurality of the insertion rods 113, the insertion rods 113 can be slidably mated with the positioning holes at the rear side of the workpiece for positioning and dimensional inspection cooperation. Furthermore, the inclined block 115 is pushed close to the workpiece. At this time, if the size of the workpiece is qualified, the inclined block 115 will abut against the upper surface of the workpiece. The sliding fork 117 is pushed close to the workpiece. At this time, if the size of the workpiece is qualified, the sliding fork 117 will be stuck into the left side detection point of the workpiece. When the workpiece is qualified, the corresponding mating parts of the inspection tool will be mated with the workpiece detection points. Finally, before detection, by loosening the locking pin 106, the telescopic block 105 can be vertically pulled to slide. After adjustment, the front end of the locking pin 106 slides into two different vertical circular holes of the telescopic block 105, and by tightening the locking pin 106, the adjustment and position fixing can be carried out, realizing the vertical position adjustment and locking of the telescopic block 105, which is conducive to placing workpieces of different heights, realizing the detection of workpieces in two states with different bottom sizes, and thus realizing the simultaneous detection of products in two states during use, which can save product development costs, has better measurement stability for products under the same reference, and is more conducive to detection use.
[0027] The above-disclosed are only one or more preferred embodiments of the present application, and the scope of rights of the present application cannot be limited thereby. Those of ordinary skill in the art can understand all or part of the processes of implementing the above embodiments, and the equivalent changes made according to the claims of the present application still fall within the scope covered by the present application.
Claims
1. A gauge inspection mechanism with a telescopic block, comprising a positioning base and a positioning plate, wherein the positioning plate is fixedly connected to the positioning base and is located on the positioning base, and a left limit device is provided on the left side of the positioning base, characterized in that: Also includes auxiliary devices; The auxiliary device includes a fixed seat, a telescopic block, a locking pin, a guide assembly, a front limit assembly, a rear limit assembly and a right limit assembly. The fixed seat is fixedly connected to the positioning base and is located on the positioning base. The telescopic block is detachably connected to the fixed seat and is located on the top of the fixed seat. The locking pin is threadedly connected to the fixed seat and is slidably connected to the telescopic block and is located on the side of the fixed seat close to the telescopic block. The guide assembly is arranged on the positioning base, the front limit assembly is arranged on the front side of the positioning base, the rear limit assembly is arranged on the rear side of the positioning base, and the right limit assembly is arranged on the right side of the positioning base.
2. The inspection device with a telescopic block according to claim 1, characterized in that: The guide assembly includes a mounting seat and a matching pin. The mounting seat is fixedly connected to the positioning base and is located on the positioning base; the matching pin is fixedly connected to the mounting seat and is located on the mounting seat.
3. The inspection device with a telescopic block according to claim 1, characterized in that: The front limit assembly includes a matching seat, an abutment seat and a ball wrench. The matching seat is fixedly connected to the positioning base and is located on the front side of the positioning base; the abutment seat is rotatably connected to the matching seat and is located on the top of the matching seat; the ball wrench is threadedly connected to the abutment seat and is located on the left side of the abutment seat.
4. The inspection device with a telescopic block according to claim 1, characterized in that: The rear limit assembly includes a sliding seat and an insertion rod. The sliding seat is fixedly connected to the positioning base and is located at the rear side of the positioning base; the insertion rod is slidably connected to the sliding seat and is arranged on the sliding seat.
5. The inspection device with a telescopic block according to claim 1, characterized in that: The right limit assembly includes a limit seat, an inclined block, a fork seat and a sliding fork, the limit seat is fixedly connected to the positioning base and is located on the right side of the positioning base; the inclined block is slidably connected to the limit seat and is located on the limit seat; the fork seat is fixedly connected to the positioning base and is located on a side of the positioning base close to the limit seat; the sliding fork is slidably connected to the fork seat and is located on one side of the fork seat.