Panel switch test equipment

By designing a cyclic conveying system for panel switch testing equipment, the waste and inefficiency of manual collection and return of switch fixtures in the prior art are solved, and automated testing and efficient switching fixture conveying is realized.

CN222882805UActive Publication Date: 2025-05-16ZHONGSHAN CITY CHUANGXIANG ELECTRICAL APPLIANCE CO LTD
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Patent Information

Application Number
CN202421121906.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-21
Publication Date
2025-05-16
Estimated Expiration
2034-05-21

AI Technical Summary

Technical Problem

Existing panel switch testing equipment requires manual collection and return of switch fixtures during the testing process, resulting in a waste of manpower and inefficiency.

Method used

A panel switch testing equipment is designed to realize the circulating conveying of switch fixtures through the upper conveying component and the lower conveying component, and combine the loading mechanism, the switch testing mechanism and the discharge mechanism to realize the automated testing and conveying process.

Benefits of technology

Through the circulating conveyance switch fixture, automated testing is realized, manual operation is reduced, testing efficiency is improved, and time and effort is saved.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222882805U_ABST
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Abstract

The utility model belongs to the technical field of panel switch testing, and particularly relates to panel switch testing equipment which comprises a working stand and a switch clamp, the working stand is sequentially provided with a feeding mechanism, a switch testing mechanism and a discharging mechanism, and the working stand is further provided with an upper conveying assembly, a lower conveying assembly, a first transfer assembly and a second transfer assembly. During working, a switch clamp is arranged on the upper conveying assembly, a panel switch is placed on the switch clamp through the feeding mechanism, and after the panel switch is tested through the switch testing mechanism and discharged through the discharging mechanism, the switch clamp passing through the discharging mechanism on the upper conveying assembly is transferred to the lower conveying assembly through the first transferring assembly; at the moment, the second transferring assembly synchronously transfers the switch clamps passing through the feeding mechanism on the lower conveying assembly to the upper conveying assembly, circulating backflow conveying of the switch clamps is achieved, time and labor are saved, and efficiency is high.
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Description

[Technical field]

[0001] The utility model belongs to the technical field of panel switch testing, and in particular relates to a panel switch testing device. [Background technology]

[0002] During the production process, panel switches need to be powered on for testing. The common workflow of panel switch testing equipment is as follows: first place the switch fixture at the loading station, which then places the panel switch on the switch fixture and transports it to the testing station via a conveyor line for testing. After the test is completed, the panel switch is removed, the switch fixture is manually collected, and the switch fixture is returned to the loading station, which not only wastes manpower but also has low efficiency. [Contents of the utility model]

[0003] The utility model aims to provide a panel switch testing device which can cyclically convey switch fixtures, saves time and effort and has high efficiency.

[0004] The utility model is realized by the following technical solutions:

[0005] A panel switch testing device comprises a workbench, on which is provided:

[0006] Switch fixture, which is used to place and fix the panel switch;

[0007] A loading mechanism, which is used to place the panel switch on the switch fixture;

[0008] A switch testing mechanism, which is arranged on one side of the feeding mechanism and is used to test the panel switch on the switch fixture;

[0009] A material removal mechanism, which is arranged on a side of the switch testing mechanism away from the material removal mechanism, and is used to remove the panel switch after the test;

[0010] An upper conveying assembly, which is used to carry the switch fixture and convey the switch fixture in a direction passing through a loading mechanism, a switch testing mechanism, and a unloading mechanism in sequence;

[0011] A lower conveying assembly is disposed below the upper conveying assembly and is used to carry the switch fixture and convey the switch fixture in a direction passing through the unloading mechanism, the switch testing mechanism and the loading mechanism in sequence;

[0012] A first transfer assembly, which is used to carry the switch fixture and transfer the switch fixture on the upper conveying assembly through the unloading mechanism to the lower conveying assembly;

[0013] The second transfer assembly is used to carry the switch fixture and transfer the switch fixture on the lower conveying assembly through the loading mechanism to the upper conveying assembly.

[0014] As described above, a panel switch testing device, the switch fixture includes a fixture body, a placement and fixing groove arranged on the fixture body for placing and fixing the panel switch, upper supporting protrusions arranged on both sides of the fixture body, and lower supporting protrusions arranged on both sides of the fixture body and located below the upper supporting protrusions.

[0015] In the panel switch testing device as described above, the first transfer component comprises:

[0016] A first transfer mounting plate, which is arranged at one end of the upper conveying assembly close to the unloading mechanism;

[0017] A first transfer driving member, which is used to drive the first transfer mounting plate to rotate;

[0018] The first transfer support member has one end disposed on the first transfer mounting plate and the other end capable of extending between the upper support protrusion and the lower support protrusion for carrying the switch fixture. The two first transfer support members are disposed on the first transfer mounting plate opposite to each other.

[0019] In the panel switch testing device as described above, the second transfer component comprises:

[0020] A second transfer mounting plate is arranged at one end of the upper conveying assembly close to the feeding mechanism;

[0021] A second transfer driving member, which is used to drive the second transfer mounting plate to rotate;

[0022] The second transfer support member has one end disposed on the second transfer mounting plate and the other end capable of extending between the upper support protrusion and the lower support protrusion for carrying the switch fixture. The two second transfer support members are disposed on the second transfer mounting plate opposite to each other.

[0023] In the panel switch testing device as described above, the upper conveying assembly comprises:

[0024] An upper conveying frame, which is arranged along the conveying direction of the switch fixture and is used to support the lower supporting protrusion;

[0025] The upper conveying driving member is arranged on a side of the upper conveying frame close to the feeding mechanism and is used to push the switch clamp on the upper conveying frame.

[0026] In the panel switch testing device as described above, the lower conveying assembly comprises:

[0027] A lower conveying frame, which is relatively arranged below the upper conveying frame and is used to support the upper supporting protrusion;

[0028] The lower conveying driving member is arranged on one side of the lower conveying frame close to the unloading mechanism and is used to push the switch clamp on the lower conveying frame.

[0029] As described above, a panel switch testing device, the loading mechanism includes a loading platform for placing the switch panel, a loading clamp for clamping the panel switch, and a loading lifting and transverse movement mechanism for driving the loading clamp to place the switch panel on the loading platform onto the upper conveying assembly.

[0030] In the panel switch testing device as described above, the blanking mechanism includes a blanking clamp for clamping the panel switch, and a blanking lifting and lateral movement mechanism for driving the blanking clamp to lift, lift and lateral movement.

[0031] A panel switch testing device as described above, wherein the switch testing mechanism comprises:

[0032] A fixed mounting frame, which is arranged on the working platform;

[0033] A test fixed column, which is movably mounted on a fixed mounting frame;

[0034] A fixed driving member, which is arranged on the fixed mounting frame and is used to drive the lifting and lowering movement of the test fixed column;

[0035] A test mounting frame, which is arranged on the workbench;

[0036] A test terminal, which is movably arranged on a test mounting frame;

[0037] The test driver is used to drive the test terminal to move.

[0038] Compared with the prior art, the utility model has the following advantages:

[0039] The utility model provides a panel switch testing device, comprising a workbench and a switch fixture, wherein a loading mechanism, a switch testing mechanism and a unloading mechanism are sequentially arranged on the workbench, and an upper conveying assembly, a lower conveying assembly, a first transfer assembly and a second transfer assembly are also arranged on the workbench. During operation, the switch fixture is arranged on the upper conveying assembly, the loading mechanism places the panel switch on the switch fixture, and after being tested by the switch testing mechanism and unloaded by the unloading mechanism, the switch fixture on the upper conveying assembly passing through the unloading mechanism is transferred to the lower conveying assembly through the first transfer assembly, and at this time, the second transfer assembly synchronously transfers the switch fixture on the lower conveying assembly passing through the loading mechanism to the upper conveying assembly, thereby realizing the circulating reflux transportation of the switch fixture, saving time and labor, and having high efficiency.

Brief Description of the Drawings

[0040] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the following briefly introduces the drawings required for describing the embodiments.

[0041] Figure 1 This is a schematic diagram of the structure of a panel switch testing device in a specific implementation mode of the present utility model;

[0042] Figure 2 This is a schematic diagram of the structure of a panel switch testing device in a specific implementation mode of the present utility model;

[0043] Figure 3 It is a partial structural schematic diagram of a panel switch testing device in a specific implementation mode of the utility model;

[0044] Figure 4 It is a structural schematic diagram of a switch clamp in a specific implementation manner of the utility model. [Specific implementation method]

[0045] In order to make the technical problems, technical solutions and beneficial effects solved by the utility model more clear, the utility model is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain the utility model and are not used to limit the utility model.

[0046] When the embodiments of the present invention mention ordinal numbers such as "first" and "second", unless they do express the meaning of order according to the context, they should be understood as being merely for distinction.

[0047] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installation", "connection" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0048] Specific embodiments, such as Figure 1-4The panel switch testing device shown in the figure comprises a workbench 1, on which are provided: a switch fixture 2, which is used to place and fix the panel switch; a feeding mechanism 3, which is used to place the panel switch on the switch fixture 2; a switch testing mechanism 4, which is arranged on one side of the feeding mechanism 3, and is used to test the panel switch on the switch fixture 2; a unloading mechanism 5, which is arranged on the side of the switch testing mechanism 4 away from the feeding mechanism 3, and is used to take away the panel switch after the test; an upper conveying assembly 6, which is used to carry the switch fixture 2 and convey the switch fixture 2 along the feeding mechanism 3, the switch fixture 2, and the switch fixture 2. The switch fixture 2 is transported in the direction of the testing mechanism 4 and the unloading mechanism 5; the lower conveying component 7 is arranged below the upper conveying component 6, and is used to carry the switch fixture 2 and transport the switch fixture 2 in the direction of passing through the unloading mechanism 5, the switch testing mechanism 4 and the loading mechanism 3 in sequence; the first transfer component 8 is used to carry the switch fixture 2 and transfer the switch fixture 2 on the upper conveying component 6 that passes through the unloading mechanism 5 to the lower conveying component 7; the second transfer component 9 is used to carry the switch fixture 2 and transfer the switch fixture 2 on the lower conveying component 7 that passes through the loading mechanism 3 to the upper conveying component 6. During operation, the switch fixture is arranged on the upper conveying assembly, and the loading mechanism places the panel switch on the switch fixture. After being tested by the switch testing mechanism and unloaded by the unloading mechanism, the switch fixture on the upper conveying assembly passing through the unloading mechanism is transferred to the lower conveying assembly through the first transfer assembly. At this time, the second transfer assembly synchronously transfers the switch fixture on the lower conveying assembly passing through the loading mechanism to the upper conveying assembly, thereby realizing the circulating reflux transportation of the switch fixture, saving time and effort and being highly efficient.

[0049] Specifically, the switch clamp 2 includes a clamp body 21, a placement and fixing groove 22 provided on the clamp body 21 for placing and fixing the panel switch, upper support protrusions 23 provided on both sides of the clamp body 21, and lower support protrusions 24 provided on both sides of the clamp body 21 and located below the upper support protrusions 23.

[0050] In addition, the first transfer assembly 8 includes: a first transfer mounting plate 81, which is arranged at one end of the upper conveying assembly 6 close to the unloading mechanism 5; a first transfer driving member 82, which is used to drive the first transfer mounting plate 81 to rotate; a first transfer support member 83, one end of which is arranged on the first transfer mounting plate 81, and the other end can extend between the upper support protrusion 23 and the lower support protrusion 24, and is used to carry the switch fixture 2, and the two first transfer supports 83 are relatively arranged on the first transfer mounting plate 81. The first transfer driving member 82 adopts a rotary cylinder. When the switch fixture 2 on the upper conveying assembly 6 is delivered to one of the first transfer supports 83, the first transfer driving member 82 drives the first transfer mounting plate 81 to rotate until the first transfer support 83 corresponds to the lower conveying assembly 7, and at this time, the other first transfer support 83 corresponds to the upper conveying assembly 6, ensuring uninterrupted transfer and high efficiency.

[0051] Furthermore, the second transfer assembly 9 includes: a second transfer mounting plate 91, which is arranged at one end of the upper conveying assembly 6 close to the feeding mechanism 3; a second transfer driving member 92, which is used to drive the second transfer mounting plate 91 to rotate; a second transfer support member 93, one end of which is arranged on the second transfer mounting plate 91, and the other end can extend between the upper support protrusion 23 and the lower support protrusion 24, and is used to carry the switch fixture 2, and the two second transfer supports 93 are relatively arranged on the second transfer mounting plate 91. Similarly, in cooperation with the first transfer assembly 8, uninterrupted cyclic reflux transfer is ensured with high efficiency.

[0052] More specifically, the upper conveying assembly 6 includes: an upper conveying frame 61, which is arranged along the conveying direction of the switch fixture 2 and is used to support the lower supporting protrusion 24; an upper conveying driving member 62, which is arranged on a side of the upper conveying frame 61 close to the feeding mechanism 3 and is used to push the switch fixture 2 on the upper conveying frame 61. The upper conveying driving member 62 adopts a telescopic cylinder.

[0053] Furthermore, the lower conveying assembly 7 includes: a lower conveying frame 71, which is relatively arranged below the upper conveying frame 61 and is used to support the upper support protrusion 23; a lower conveying driving member 72, which is arranged on a side of the lower conveying frame 71 close to the unloading mechanism 5 and is used to push the switch fixture 2 on the lower conveying frame 71. The lower conveying driving member 72 adopts a telescopic cylinder.

[0054] Furthermore, the loading mechanism 3 includes a loading platform 31 for placing the switch panel, a loading clamp 32 for clamping the panel switch, and a loading lifting and lateral movement mechanism 33 for driving the loading clamp 32 to place the switch panel on the loading platform 31 onto the upper conveying assembly 6. Automatic loading is achieved, which is more efficient and saves time and effort.

[0055] Specifically, the material unloading mechanism 5 includes a material unloading clamp 51 for clamping the panel switch, and a material unloading lifting and lateral movement mechanism 52 for driving the material unloading clamp 51 to lift and lateral movement. Automated material unloading is realized, which is more efficient and saves time and effort.

[0056] More specifically, the switch testing mechanism 4 includes: a fixed mounting frame 41, which is arranged on the workbench 1; a test fixed column 42, which is movably arranged on the fixed mounting frame 41; a fixed driving member 43, which is arranged on the fixed mounting frame 41 and is used to drive the test fixed column 42 to move up and down; a test mounting frame 44, which is arranged on the workbench 1; a test terminal 45, which is movably arranged on the test mounting frame 44; a test driving member 46, which is used to drive the test terminal 45 to move, so as to realize the automated testing of the panel switch, which saves time and effort and is highly efficient.

[0057] The above is an implementation method provided in combination with specific content, and it is not considered that the specific implementation of the utility model is limited to these descriptions. At the same time, due to different industry names, it is not limited to the above names, nor is it limited to English names. Any method, structure, etc. similar to or identical to the method, structure, etc. of the utility model, or a number of technical deductions or replacements made on the premise of the concept of the utility model, shall be regarded as the protection scope of the utility model.

Claims

1. A panel switch testing device, comprising a workbench (1), characterized in that: The workbench (1) is provided with: A switch fixture (2), which is used to place and fix the panel switch; A loading mechanism (3), which is used to place the panel switch on the switch fixture (2); A switch testing mechanism (4), which is arranged on one side of the feeding mechanism (3) and is used to test the panel switch on the switch fixture (2); A material removal mechanism (5), which is arranged on a side of the switch testing mechanism (4) away from the material removal mechanism (3) and is used to remove the panel switch after the test; An upper conveying assembly (6) is used to carry the switch fixture (2) and convey the switch fixture (2) in a direction passing through the loading mechanism (3), the switch testing mechanism (4) and the unloading mechanism (5) in sequence; A lower conveying assembly (7) is arranged below the upper conveying assembly (6) and is used to carry the switch fixture (2) and convey the switch fixture (2) in a direction passing through the unloading mechanism (5), the switch testing mechanism (4) and the loading mechanism (3) in sequence; A first transfer assembly (8), which is used to carry the switch fixture (2) and transfer the switch fixture (2) on the upper conveying assembly (6) that has passed through the unloading mechanism (5) to the lower conveying assembly (7); The second transfer assembly (9) is used to carry the switch fixture (2) and transfer the switch fixture (2) on the lower conveying assembly (7) through the loading mechanism (3) to the upper conveying assembly (6).

2. A panel switch testing device according to claim 1, characterized in that: The switch clamp (2) comprises a clamp body (21), a placement and fixing groove (22) provided on the clamp body (21) for placing and fixing a panel switch, upper supporting protrusions (23) provided on two sides of the clamp body (21), and lower supporting protrusions (24) provided on two sides of the clamp body (21) and located below the upper supporting protrusions (23).

3. A panel switch testing device according to claim 2, characterized in that: The first transfer component (8) comprises: A first transfer mounting plate (81) is arranged at one end of the upper conveying assembly (6) close to the unloading mechanism (5); A first transfer driving member (82), which is used to drive the first transfer mounting plate (81) to rotate; The first transfer support member (83) has one end disposed on the first transfer mounting plate (81) and the other end capable of extending between the upper support protrusion (23) and the lower support protrusion (24) for supporting the switch fixture (2). The two first transfer support members (83) are disposed on the first transfer mounting plate (81) in a relative manner.

4. A panel switch testing device according to claim 2, characterized in that: The second transfer component (9) comprises: A second transfer mounting plate (91) is disposed at one end of the upper conveying assembly (6) close to the loading mechanism (3); A second transfer driving member (92), which is used to drive the second transfer mounting plate (91) to rotate; The second transfer support member (93) has one end disposed on the second transfer mounting plate (91) and the other end capable of extending between the upper support protrusion (23) and the lower support protrusion (24) for supporting the switch fixture (2). The two second transfer support members (93) are disposed on the second transfer mounting plate (91) in a relative manner.

5. A panel switch testing device according to claim 2, characterized in that: The upper conveying assembly (6) comprises: An upper conveying frame (61) is arranged along the conveying direction of the switch fixture (2) and is used to support the lower supporting protrusion (24); An upper conveying driving member (62) is arranged on a side of the upper conveying frame (61) close to the feeding mechanism (3) and is used to push the switch clamp (2) on the upper conveying frame (61).

6. A panel switch testing device according to claim 5, characterized in that: The lower conveying assembly (7) comprises: A lower conveying frame (71), which is relatively arranged below the upper conveying frame (61) and is used to support the upper supporting protrusion (23); The lower conveying driving member (72) is arranged on one side of the lower conveying frame (71) close to the unloading mechanism (5) and is used to push the switch clamp (2) on the lower conveying frame (71).

7. A panel switch testing device according to claim 1, characterized in that: The loading mechanism (3) comprises a loading platform (31) for placing a switch panel, a loading clamp (32) for clamping a panel switch, and a loading lifting and transverse movement mechanism (33) for driving the loading clamp (32) to place the switch panel on the loading platform (31) onto an upper conveying assembly (6).

8. A panel switch testing device according to claim 1, characterized in that: The blanking mechanism (5) comprises a blanking clamp (51) for clamping the panel switch, and a blanking lifting and lateral movement mechanism (52) for driving the blanking clamp (51) to lift, lift and lateral movement.

9. A panel switch testing device according to claim 1, characterized in that: The switch testing mechanism (4) comprises: A fixed mounting frame (41) is arranged on the working platform (1); A test fixed column (42) movably mounted on the fixed mounting frame (41); A fixed driving member (43), which is arranged on the fixed mounting frame (41) and is used to drive the test fixed column (42) to move up and down; A test mounting frame (44) is arranged on the working platform (1); A test terminal (45) movably mounted on a test mounting frame (44); A test driver (46) is used to drive the test terminal (45) to move.