Multi-angle directional test sliding block tool

By designing multi-angle directional test slider tooling, using traction ropes and sliding components to realize directional testing of products to be tested, and using sliders and fixing frames to realize multi-angle testing, the problem of poor testing results in the prior art is solved, and the accuracy and repeatability of the test are improved.

CN222874327UActive Publication Date: 2025-05-16广东智尚防务科技有限公司
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Patent Information

Application Number
CN202421585759.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-05
Publication Date
2025-05-16
Estimated Expiration
2034-07-05

AI Technical Summary

Technical Problem

The lack of testing tooling for products to be tested that require directional and multi-angle testing in the prior art, resulting in poor testing.

Method used

A multi-angle directional testing slide tooling is designed, including a traction rope, sliding assembly, fixing frame and slider. The sliding direction of the sliding assembly is determined through the traction rope to realize the directional testing of the product to be tested; through the design of the slider and fixing frame, multi-angle testing of the product to be tested is realized.

Benefits of technology

It realizes directional and multi-angle testing of the products to be tested, improves the accuracy and repeatability of the test, and solves the problems of inaccurate angle adjustment, cumbersome operation and poor repeatability.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222874327U_ABST
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Abstract

The utility model discloses a multi-angle directional test slide block tool, belongs to the technical field of test tools, and aims to solve the technical problem of poor test effect caused by lack of a test tool for a to-be-tested product needing directional and multi-angle test in the prior art. The device comprises a traction rope, a sliding assembly connected with the traction rope, a fixing frame connected with the sliding assembly and a sliding block connected with the fixing frame, wherein the sliding block is used for fixing a product to be tested; the sliding assembly comprises a pair of sliding rail plates, and the pair of sliding rail plates are connected through a plurality of first fastening bolts. The sliding rail plate comprises a fixing part and mounting parts arranged at the two ends of the fixing part. A fixing groove is formed in the mounting part and used for arranging a track wheel, and the track wheel is connected with a traction rope. The multi-angle directional test sliding block tool can be better used for multi-angle directional test work of various products and components, and is wide in application range, convenient to disassemble and assemble and controllable in cost.
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Description

Technical Field

[0001] The utility model relates to the technical field of testing tooling, in particular to a multi-angle directional testing slide block tooling. Background Art

[0002] In the prior art, with the advancement of science and technology, the demand for various specific test tools has gradually increased, and the test tools in various fields have gradually become specialized. When it comes to the need to simulate multi-angle impacts and directional movements that may occur in actual use environments, the current test methods have certain limitations and often cannot fully meet the test needs. There are problems such as inaccurate angle adjustment, cumbersome operation, and poor repeatability.

[0003] Therefore, there is an urgent need for a multi-angle directional test slider tooling to realize a directional, multi-angle combined test solution for the product to be tested, and meet the test requirements of the product to be tested at different orientations and angles. Utility Model Content

[0004] The utility model aims to provide a multi-angle directional test slider tooling to solve the technical problem in the prior art that there is a lack of test tooling for products to be tested that require directional and multi-angle testing, resulting in poor test results.

[0005] In order to achieve the above purpose, the utility model provides the following technical solutions:

[0006] The utility model provides a multi-angle directional test slider tooling, comprising a traction rope, a sliding assembly connected to the traction rope, a fixing frame connected to the sliding assembly, and a slider connected to the fixing frame, wherein the slider is used to fix the product to be tested;

[0007] The sliding assembly comprises a pair of slide rail plates, and the pair of slide rail plates are connected by a plurality of fastening bolts;

[0008] The slide rail plate includes a fixing portion and mounting portions arranged at both ends of the fixing portion; a fixing groove is opened on the mounting portion, and the fixing groove is used to set a track wheel, and the track wheel is connected to the traction rope.

[0009] By providing a traction rope and fixing both ends of the traction rope, the sliding direction of the sliding component is determined, thereby enabling directional testing of the product to be tested; by providing a slider and a fixing frame, multi-angle testing of the product to be tested can be achieved.

[0010] Optionally or preferably, the fixing portion is provided with a first guide groove along the laying direction of the traction rope; the mounting portion is provided with a second guide groove along the laying direction of the traction rope; and the traction rope is slidably connected to the first guide groove and the second guide groove respectively.

[0011] By providing guide groove one and guide groove two, the traction rope can be slidably connected in the above-mentioned guide groove one and guide groove two, which on the one hand improves the stability of the sliding component during the sliding process along the traction rope; on the other hand, reduces the volume and mass of the sliding component, making the device easy to lay out and install.

[0012] Optionally or preferably, the fixing frame is provided with a plurality of groups of mounting holes, and the plurality of groups of mounting holes are evenly spaced along a height direction of the fixing frame; and the sliding block is rotatably connected to the fixing frame via the mounting holes.

[0013] By providing a plurality of groups of mounting holes, the position of the slider can be adjusted relative to the fixing frame through the plurality of groups of mounting holes; after the traction rope is fixed, it is convenient to fine-tune the position of the slider and the product to be tested fixed on the slider.

[0014] Optionally or preferably, the fixing frame is a U-shaped frame; the U-shaped frame includes a transverse arm and two longitudinal arms fixed at both ends of the transverse arm;

[0015] The slider is rotatably arranged between the two longitudinal arms of the U-shaped frame through the mounting hole;

[0016] The transverse arm is fixedly connected to the slide rail plate via a plurality of fastening bolts.

[0017] There is a large accommodation space between the two longitudinal arms of the U-shaped frame, which is convenient for the rotation and arrangement of the slider and the product to be tested connected to the slider in the above accommodation space; at the same time, the U-shaped frame has good stability and meets the requirements of directional and multi-angle testing.

[0018] Optionally or preferably, a scale ruler is provided on a side of the slider close to the mounting hole and / or on a longitudinal arm of the fixing frame; the scale ruler is used to measure a rotation angle of the slider relative to the fixing frame.

[0019] The scale marking ruler allows operators to intuitively adjust the rotation angle of the slider and the product to be tested, meeting the requirements of directional and multi-angle testing.

[0020] Optionally or preferably, a through hole is provided at the center of the slider, and the through hole is used to fix the product to be tested.

[0021] Optionally or preferably, a wear-resistant plastic layer is provided on a side of the slide rail plate close to the traction rope; or the outer surface of the slide rail plate is covered with a wear-resistant plastic layer.

[0022] The mounting hole is provided with a fastener; the fastener is used to fix the relative position of the sliding block and the fixing frame.

[0023] Based on the above technical solution, the utility model can at least produce the following technical effects:

[0024] The multi-angle directional test slider tooling provided by the utility model is provided with a traction rope, and the two ends of the traction rope are fixed to determine the sliding direction of the sliding component, thereby being able to achieve directional testing of the product to be tested; by providing a slider and a fixing frame, multi-angle testing of the product to be tested can be achieved;

[0025] In addition, a plurality of mounting holes are provided on the fixing frame, so that the position of the slider relative to the fixing frame can be adjusted through the plurality of mounting holes; after the traction rope is fixed, the position of the slider and the product to be tested fixed on the slider can be fine-tuned, thereby improving the overall practicality of the test tooling;

[0026] By providing a scale mark ruler on one side of the slider close to the mounting hole and on the longitudinal arm of the fixing frame, it is convenient for the operator to intuitively adjust the rotation angle of the slider and the product to be tested, thereby meeting the test requirements of the test fixture for multi-angle testing of the product to be tested;

[0027] The wear-resistant plastic layer provided on the outer surface of the slide rail plate improves the applicability and service life of the test fixture and reduces the loss caused by the friction between the slide rail plate and the traction rope. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 This is a schematic diagram of the overall structure of the multi-angle directional test slider tooling of the utility model;

[0029] Figure 2 It is a structural schematic diagram of the sliding assembly in the multi-angle directional test slider tooling of the utility model;

[0030] Figure 3 It is a structural schematic diagram of a slide rail plate in a multi-angle directional test slide fixture of the utility model.

[0031] In the figure: 10, sliding assembly; 11, slide rail plate; 1101, fixing part; 1102, mounting part; 1103, fixing groove; 1104, track wheel; 1105, guide groove one; 1106, guide groove two; 12, fastening bolt one; 20, fixing frame; 21, mounting hole; 22, fastening bolt two; 30, slider; 31, through hole; 40, traction rope; 50, scale marking ruler. DETAILED DESCRIPTION

[0032] The technical solutions in the embodiments of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiments of the utility model; obviously, the described embodiments are only part of the embodiments of the utility model, rather than all of the embodiments, and all other embodiments obtained by ordinary technicians in this field based on the embodiments of the utility model without making creative work belong to the scope of protection of the utility model.

[0033] Example:

[0034] See also Figures 1 to 3 A multi-angle directional test slider tooling includes a traction rope 40, a sliding assembly 10 slidably connected to the traction rope 40, a fixing frame 20 fixed to the sliding assembly 10 by a fastening bolt 22, and a slider 30 rotatably connected to the fixing frame 20.

[0035] In this embodiment, the multi-angle directional test slider tooling realizes directional multi-angle testing by fixing the product to be tested on the slider 30; the product to be tested includes but is not limited to electronic product housings, packaging materials, building materials, precision instrument housings or protective components, sports equipment, some mechanical parts and other products with directional and multi-angle testing requirements.

[0036] See also Figure 2 In this embodiment, the sliding assembly 10 includes a pair of slide rail plates 11 that are arranged in a vertically fitted manner, and the pair of slide rail plates 11 are fastened to each other by four fastening bolts 12; each slide rail plate 11 includes a fixing portion 1101 and mounting portions 1102 arranged at both ends of the fixing portion 1101, and the fixing portion 1101 and the mounting portion 1102 can be welded or integrally formed.

[0037] In order to make the sliding plate 11 cooperate well with the traction rope 40 and improve the sliding performance; in this embodiment, a pair of fixed grooves 1103 are opened on the above-mentioned mounting portion 1102, and the fixed grooves 1103 are used to set the track wheel 1104, and the track wheel 1104 can be rotatably connected with the traction rope 40; it can be understood that a bearing is provided between the pair of fixed grooves 1103, and the above-mentioned track wheel 1104 is rotatably connected through the bearing; the setting method of the track wheel 1104 is not specifically limited here.

[0038] See also Figure 3In addition, the fixing portion 1101 is further provided with a guide groove 1105 along the laying direction of the traction rope 40; the mounting portion 1102 is also provided with a guide groove 1106 along the laying direction of the traction rope 40. It can be understood that the axes of the above-mentioned guide groove 1105 and the guide groove 2 1106 are on the same straight line; the traction rope 40 is respectively slidably connected with the above-mentioned guide groove 1105 and the guide groove 2 1106, thereby further improving the sliding performance of the sliding plate 11 relative to the traction rope 40.

[0039] Please continue reading Figure 1 In this embodiment, the product to be tested is fixed on the slider 30 to achieve multi-angle motion test of the product to be tested; the sliding direction of the sliding assembly 10 is determined by fixing the two ends of the traction rope 40, thereby achieving directional motion test of the product to be tested. It can be understood that in this embodiment, a variety of sensor structures, such as a speed sensor, can also be arranged on the slider 30.

[0040] In order to improve the practicality of the tooling and the convenience of testing, the slider 30 and the product to be tested can be adjusted in position after fixing the two ends of the traction rope 40. In this embodiment, a plurality of groups of mounting holes 21 are provided on the fixing frame 20, and the plurality of groups of mounting holes 21 are evenly spaced along the longitudinal arm height direction of the fixing frame 20, and the slider 30 is fixed in the above-mentioned mounting holes 21 by fasteners; in this embodiment, the fasteners are not shown in the figure, and the fasteners may be a bolt structure.

[0041] In this embodiment, the above-mentioned fixed frame 20 is a U-shaped frame. It can be understood that the U-shaped frame includes a transverse arm and two longitudinal arms fixed at both ends of the transverse arm; the slider 30 is fixed between the above-mentioned two longitudinal arms by fasteners, and the slider 30 can be rotated or fixed between the two longitudinal arms by the above-mentioned fasteners; the fixed frame 20 is fixedly connected to the slide rail plate 11 through its transverse arm and two fastening bolts 22 arranged on the transverse arm.

[0042] In order to facilitate the operator to intuitively adjust the rotation angle of the slider 30 and the product to be tested and meet the directional multi-angle testing requirements, in this embodiment, a scale ruler 50 is provided on the side of the slider 30 close to the mounting hole 21 and on the longitudinal arm of the fixing frame 20; the above-mentioned scale ruler 50 is used to measure the rotation angle of the slider 30 relative to the fixing frame 20.

[0043] In order to improve the applicability and service life of the test tooling and reduce the loss caused by the friction between the slide plate and the traction rope, in this embodiment, the slide plate 11 is made of wear-resistant plastic material as a whole or its surface is covered with a wear-resistant plastic layer.

[0044] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A multi-angle directional test slider tooling, characterized in that: It comprises a traction rope (40), a sliding assembly (10) connected to the traction rope (40), a fixing frame (20) connected to the sliding assembly (10), and a sliding block (30) connected to the fixing frame (20), wherein the sliding block (30) is used to fix the product to be tested; The sliding assembly (10) comprises a pair of slide rail plates (11), and the pair of slide rail plates (11) are connected via a plurality of fastening bolts (12); The slide rail plate (11) comprises a fixing portion (1101) and mounting portions (1102) arranged at both ends of the fixing portion (1101); a fixing groove (1103) is provided on the mounting portion (1102); the fixing groove (1103) is used to set a track wheel (1104); the track wheel (1104) is connected to the traction rope (40).

2. The multi-angle directional test slider tooling according to claim 1 is characterized in that: The fixing portion (1101) is provided with a first guide groove (1105) along the direction in which the traction rope (40) is laid; the mounting portion (1102) is provided with a second guide groove (1106) along the direction in which the traction rope (40) is laid; and the traction rope (40) is slidably connected to the first guide groove (1105) and the second guide groove (1106), respectively.

3. The multi-angle directional test slider tooling according to claim 1 is characterized in that: The fixing frame (20) is provided with a plurality of groups of mounting holes (21), and the plurality of groups of mounting holes (21) are evenly spaced along the height direction of the fixing frame (20); the sliding block (30) is rotatably connected to the fixing frame (20) via the mounting holes (21).

4. The multi-angle directional test slider tooling according to claim 3 is characterized in that: The fixing frame (20) is a U-shaped frame; the U-shaped frame comprises a transverse arm and two longitudinal arms fixed at both ends of the transverse arm; The slider (30) is rotatably disposed between two longitudinal arms of the U-shaped frame through the mounting hole (21); The transverse arm is fixedly connected to the slide rail plate (11) via a plurality of fastening bolts (22).

5. The multi-angle directional test slider tooling according to claim 4 is characterized in that: A scale ruler (50) is provided on one side of the slider (30) close to the mounting hole (21) and / or on a longitudinal arm of the fixing frame (20); the scale ruler (50) is used to measure the rotation angle of the slider (30) relative to the fixing frame (20).

6. The multi-angle directional test slider tooling according to claim 1 is characterized in that: A through hole (31) is provided at the center of the sliding block (30), and the through hole (31) is used to fix the product to be tested.

7. The multi-angle directional test slider tooling according to claim 1 is characterized in that: A wear-resistant plastic layer is provided on one side of the slide rail plate (11) close to the traction rope (40); or the outer surface of the slide rail plate (11) is covered with a wear-resistant plastic layer.

8. The multi-angle directional test slider tooling according to claim 5 is characterized in that: A fastener is provided on the mounting hole (21); the fastener is used to fix the relative position of the sliding block (30) and the fixing frame (20).