Endurance test tool for magnetic card coded lock

By designing the durability test tooling for magnetic card password locks, and using cylinder units and solenoid valves to achieve automated tests, solving the problems of time and cost in the existing technology, and achieving efficient and accurate magnetic card password lock tests.

CN223243939UActive Publication Date: 2025-08-19SUZHOU CHUANGCHI TESTING TECH CO LTD
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Patent Information

Application Number
CN202422597438.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-08-19
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

The test method of existing magnetic card password locks is time-consuming and costly, and manual simulation results in inaccurate detection data.

Method used

Design a magnetic card password lock durability test tooling, including a durability test execution module and control system, and realizes automated tests through cylinder unit and solenoid valve, and automatically performs magnetic card insertion, handle pressing and door opening and closing operations.

Benefits of technology

The automatic continuous durability test of magnetic card password lock is realized, which improves the test efficiency and accuracy, while reducing costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an endurance test tool for a magnetic card coded lock. The endurance test tool comprises an endurance test execution module and a control system, the endurance test execution module comprises a frame, a door plate is hinged to the front end of the frame, an installation area used for installing a magnetic card coded lock is arranged on the front end face of the door plate, and a magnetic card execution air cylinder unit capable of conveying a magnetic card to a magnetic card coded lock recognition area is arranged on the portion, located on the right side of the installation area, of the frame. A handle action execution air cylinder unit capable of pressing down a magnetic card coded lock handle is arranged on the door plate on the left side of the mounting area; a door opening and closing air cylinder unit capable of pulling the door plate to be opened and closed on the frame is arranged in the frame. And the magnetic card execution cylinder unit, the handle action execution cylinder unit and the door opening and closing cylinder unit are respectively in electric signal connection with the control system. According to the utility model, the endurance test of the magnetic card coded lock can be automatically and continuously carried out, the test efficiency is effectively improved, the test accuracy is improved, and the cost is reduced.
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Description

Technical Field

[0001] The utility model belongs to the technical field of test tools, and in particular relates to a magnetic card password lock durability test tool. Background Art

[0002] With increasing emphasis on security, the widespread adoption of smart home concepts, and the intelligentization of rail transit products, market demand for magnetic card combination locks, a convenient and secure door locking method, continues to grow. Magnetic card combination locks are particularly widely used in high-end residential, commercial real estate, and apartment buildings. To ensure the performance and quality of magnetic card combination locks, testing and inspection are particularly important.

[0003] At present, the main methods for testing and testing magnetic card combination locks are long-term actual use and artificial simulated use. Among them, long-term actual use tests are not only time-consuming but also costly; while artificial simulated use tests are prone to operator fatigue, resulting in inaccurate test data. Therefore, it is necessary to design a magnetic card combination lock durability test tool to effectively solve the above technical problems. Utility Model Content

[0004] In order to solve the problems existing in the prior art, the utility model aims to provide a magnetic card password lock durability test tool to improve test efficiency and accuracy and reduce costs.

[0005] In order to achieve the above technical objectives and effects, the present invention is implemented through the following technical solutions:

[0006] A magnetic card password lock durability test tool, comprising a durability test execution module for testing the magnetic card password lock and a control system arranged on one side of the durability test execution module;

[0007] The durability test execution module includes a frame, a door panel is hinged at the front end of the frame, and an installation area for installing the magnetic card password lock body is provided on the front end surface of the door panel. A magnetic card execution cylinder unit that can transport the magnetic card to the magnetic card password lock body identification area is provided on the frame on the right side of the installation area, and a handle action execution cylinder unit that can press down the magnetic card password lock handle is provided on the door panel on the left side of the installation area; a door switching cylinder unit that can pull the door panel to open and close on the frame is provided in the frame; the magnetic card execution cylinder unit, the handle action execution cylinder unit and the door switching cylinder unit are respectively connected to the control system electrical signals.

[0008] Furthermore, the magnetic card execution cylinder unit includes a magnetic card execution cylinder, a connecting base for installing a magnetic card, a first magnetic switch and a first solenoid valve; the connecting base is arranged at the front end of the magnetic card execution cylinder piston rod, the first magnetic switch is arranged on the side wall of the magnetic card execution cylinder body, and the first solenoid valve is connected to the magnetic card execution cylinder through a corresponding air pipe.

[0009] Furthermore, the handle action executing cylinder unit includes a handle action executing cylinder, a pressing block, a pressing plate, a second magnetic switch and a second solenoid valve; the pressing block is arranged at the front end of the piston rod of the handle action executing cylinder, the pressing plate is installed on the handle of the magnetic card password lock, the second magnetic switch is arranged on the side wall of the handle action executing cylinder, and the second solenoid valve is connected to the handle action executing cylinder unit through a corresponding air pipe.

[0010] Furthermore, a pressing roller is provided at the lower end of the pressing block.

[0011] Furthermore, the door-opening and closing cylinder unit includes a door-opening and closing cylinder, a third magnetic switch and a third solenoid valve; the third magnetic switch is arranged on the side wall of the door-opening and closing cylinder, and the third solenoid valve is connected to the door-opening and closing cylinder through a corresponding air pipe.

[0012] Furthermore, the rear end of the door-opening and closing cylinder body is hinged to the frame, and the front end of the door-opening and closing cylinder piston rod is hinged to the door panel.

[0013] Furthermore, a limit block is provided on the frame.

[0014] Furthermore, a door closing position proximity switch is provided on the frame.

[0015] Furthermore, the control system includes a cabinet, an electric control cabinet and an upper machine operating system arranged in the cabinet.

[0016] The beneficial effects of the present invention are as follows: the present invention realizes the automatic continuous durability test of the magnetic card password lock, effectively improves the test efficiency, improves the test accuracy and reduces the cost.

[0017] The above description is only an overview of the technical solution of the present invention. In order to more clearly understand the technical means of the present invention and to implement it according to the contents of the description, the following is a detailed description of the preferred embodiments of the present invention with the accompanying drawings. The specific implementation methods of the present invention are given in detail in the following embodiments and drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of this application. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention. In the drawings:

[0019] Figure 1 This is a schematic diagram of the overall structure of the tooling of the utility model;

[0020] Figure 2 This is a schematic diagram of the structure of the durability test execution module of the utility model;

[0021] Figure 3 This is a schematic diagram of the installation of a magnetic card password lock for the utility model;

[0022] Figure 4 For this utility model Figure 3 Enlarged view of point A in the middle;

[0023] Figure 5 For this utility model Figure 3 Enlarged view of point B in the middle;

[0024] Figure 6 This is a schematic diagram of a magnetic card password lock of the present utility model.

[0025] Explanation of the numbers in the figure: 1. Durability test execution module; 2. Control system; 11. Frame; 12. Door panel; 13. Magnetic card execution cylinder unit; 14. Handle action execution cylinder unit; 15. Door opening and closing cylinder unit; 16. Limit block; 17. Door closing position proximity switch; 18. Angle iron; 21. Cabinet; 22. Electric control cabinet; 23. Upper machine position operating system; 131. Magnetic card execution cylinder; 132. Connecting seat; 133. First magnetic switch; 134. First solenoid valve; 141. Handle action execution cylinder; 142. Pressing block; 143. Pressing plate; 144. Second magnetic switch 1; 145. Second solenoid valve; 151. Door opening and closing cylinder; 152. Third magnetic switch; 153. Third solenoid valve. DETAILED DESCRIPTION

[0026] The present invention will be described in detail below with reference to the accompanying drawings and in combination with embodiments.

[0027] It should be noted that all directional indications in the embodiments of the present invention (such as up, down, left, right, front, back, upper end, lower end, top, bottom...) are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.

[0028] See also Figure 1As shown, a magnetic card password lock durability test tool includes a durability test execution module 1 for testing the magnetic card password lock and a control system 2 arranged on one side of the durability test execution module 1, and the durability test execution module 1 is electrically connected to the control system 2; during the test, the control system 2 is used to control the action of the durability test execution module 1, thereby realizing the durability test of the magnetic card password lock.

[0029] Among them, see Figure 2-3 As shown, in this embodiment, the durability test execution module 1 includes a frame 11, and a door panel 12 is hinged at the front end of the frame 11. A mounting area 121 for mounting the magnetic card password lock body is provided on the front end surface of the door panel 12. A magnetic card execution cylinder unit 13 that can transport the magnetic card to the magnetic card password lock body identification area is provided on the frame 11 on the right side of the mounting area 121, and a handle action execution cylinder unit 14 that can press down the magnetic card password lock handle is provided on the door panel 12 on the left side of the mounting area 121; a door switching cylinder unit 15 that can pull the door panel 12 to open and close on the frame 11 is provided in the frame 11; the magnetic card execution cylinder unit 13, the handle action execution cylinder unit 14 and the door switching cylinder unit 15 are respectively connected to the control system 2 with electrical signals.

[0030] Among them, see Figure 4 As shown, in this embodiment, the magnetic card execution cylinder unit 13 includes a magnetic card execution cylinder 131, a connecting base 132 for installing a magnetic card, a first magnetic switch 133 and a first solenoid valve 134; when connected, the magnetic card execution cylinder 131 is fixed to the frame 11 through a corresponding support base, and the connecting base 132 is arranged at the front end of the piston rod of the magnetic card execution cylinder 131. The first magnetic switch 133 is arranged on the side wall of the body of the magnetic card execution cylinder 131. The first magnetic switch 133 is used to control the extension position of the piston rod of the magnetic card execution cylinder 131 while counting the number of actions and controlling the number of cycles. The first solenoid valve 134 is connected to the magnetic card execution cylinder 131 through a corresponding air pipe, and the flow direction of the air source is adjusted through the first solenoid valve 134, thereby realizing the reciprocating operation of the piston rod of the magnetic card execution cylinder 131; and in this embodiment, the first magnetic switch 133 and the first solenoid valve 134 are respectively connected to the control system 2 with electrical signals.

[0031] See also Figure 5As shown, in this embodiment, the handle action executing cylinder unit 14 includes a handle action executing cylinder 141, a pressing block 142, a pressing plate 143, a second magnetic switch 144 and a second solenoid valve 145; when connected, the handle action executing cylinder 141 is fixed to the door panel 12 through a corresponding support seat, the pressing block 142 is arranged at the front end of the piston rod of the handle action executing cylinder 141, the pressing plate 143 is installed on the handle of the magnetic card password lock, and the second magnetic switch 144 is arranged on the side wall of the handle action executing cylinder 141. The second magnetic switch 144 can be used to control the extension position of the piston rod of the handle action executing cylinder 141 and count the number of actions at the same time. and cycle number control, the second solenoid valve 145 is connected to the handle action execution cylinder unit 14 through the corresponding air pipe, and the flow direction of the air source is adjusted by the second solenoid valve 145, so as to realize the reciprocating operation of the piston rod of the handle action execution cylinder 141; and in the present embodiment, the second magnetic switch 144 and the second solenoid valve 145 are respectively connected to the control system 2 electrical signal; during the test, the handle action execution cylinder 141 presses down the lower pressure plate 143 through the lower pressure block 142, and in the present embodiment, in order to avoid wear between the lower pressure block 142 and the lower pressure plate 143 during the pressing process and to improve the pressing efficiency, a lower pressure roller 146 is provided at the lower end of the lower pressure block 142.

[0032] See also Figure 3 As shown, in this embodiment, the door opening and closing cylinder unit 15 includes a door opening and closing cylinder 151, a third magnetic switch 152 and a third solenoid valve 153; when connected, the door opening and closing cylinder 151 is installed in the frame 11, and the rear end of the door opening and closing cylinder 151 body is hinged to the frame 11, and the front end of the piston rod of the door opening and closing cylinder 151 is hinged to the door panel 12, and the third magnetic switch 152 is arranged on the side wall of the door opening and closing cylinder 151. The third magnetic switch 152 is used to control the retraction position of the piston rod of the door opening and closing cylinder 151 while counting the number of actions and controlling the number of cycles. The third solenoid valve 153 is connected to the door opening and closing cylinder 151 through a corresponding air pipe, and the flow direction of the air source is adjusted through the third solenoid valve 153, thereby realizing the reciprocating operation of the piston rod of the door opening and closing cylinder 151; and in this embodiment, the third magnetic switch 152 and the third solenoid valve 153 are respectively connected to the control system 2 for electrical signals.

[0033] For further information, see Figure 2-3As shown, in this embodiment, a limit block 16 is provided on the frame 11, and the position of the door panel 12 in the closed state is limited by the limit block 16; a door closing position proximity switch 17 is provided on the frame 11, and the door closing position proximity switch 17 is fixed to the frame 11 by an angle iron 18, and the door closing position proximity switch 17 is electrically connected to the control system 2.

[0034] In addition, see Figure 1 As shown, in this embodiment, the control system 2 includes a cabinet 21 and an electric control cabinet 22 and an upper machine operating system 23 arranged in the cabinet 21 . The upper machine operating system 23 is arranged above the electric control cabinet 22 .

[0035] The working principle of this utility model is as follows:

[0036] Before the test, see Figure 3 and 6 As shown (label C in the figure represents the main body of the magnetic card password lock; label D in the figure represents the wire hinge of the magnetic card password lock), first install the main body of the magnetic card password lock on the installation area 121, and install the wire hinge of the magnetic card password lock between the frame 11 and the door panel 12, wherein the plugs at both ends of the wire hinge of the magnetic card password lock are respectively connected with the plug of the main body of the magnetic card password lock and the external wire plug, and after the connection is completed, the door panel 12 is closed. At this time, the main body of the magnetic card password lock is in a locked state; then install the magnetic card on the connecting seat 132; then connect the first solenoid valve 134, the second solenoid valve 145 and the third solenoid valve 153 to the external compressed air supply device through the corresponding air pipes; finally, enter the upper computer operating system 23 operation interface, and set the number of tests according to the requirements and prompts of the operation interface.

[0037] During the test, click the start / stop icon in the upper computer operating system 23 operation interface, the tooling starts, and the system detects whether the door panel 12 is in the closed position. When it is in the closed position, the piston rod of the magnetic card execution cylinder 131 is extended first, and the magnetic card is driven to extend into the magnetic card recognition area of the magnetic card password lock through the connecting seat 132. At this time, the magnetic card password lock is unlocked, and a voice prompt "unlocked" is given, and the magnetic card password lock handle is converted from the idling mode to the braking mode; then the piston rod of the handle action execution cylinder 141 is extended to drive the pressing block 14 2. Press down the lower pressure plate 143, thereby driving the magnetic card password lock handle to rotate, so that the lock tongue is retracted into the lock body. After unlocking, the piston rod of the magnetic card execution cylinder 131 is retracted; then the door opening and closing cylinder 151 is retracted, and when the door panel 12 is pulled into the frame 11 to the set maximum position, the piston rod of the handle action execution cylinder 141 is retracted. At the same time, the piston rod of the door opening and closing cylinder 151 is extended, driving the door panel 12 to reset to the locked state, completing a test; repeat the above actions to realize the cycle test until the set number of experiments is completed.

[0038] Among them, during the test process, the specific control process is that when the piston rod of the magnetic card execution cylinder 131 is extended, the first magnetic switch 133 detects the piston of the magnetic card execution cylinder 131, and sends an electrical signal to the control system 2. After the control system 2 receives the signal from the first magnetic switch 133, it controls the magnetic card execution cylinder 131 to stop running and maintain it through the first solenoid valve 134. At the same time, the control system 2 controls the handle action execution cylinder 141 to run through the second solenoid valve 145, that is, controls the piston rod of the handle action execution cylinder 141 to extend; when the second magnetic switch 144 detects the piston of the handle action execution cylinder 141, it sends an electrical signal to the control system 2. After the control system 2 receives the signal from the second magnetic switch 144, it controls the handle action execution cylinder 141 to stop running and maintain it through the second solenoid valve 145. At the same time, it controls the magnetic card execution cylinder 131 to reset through the first solenoid valve 134, that is, the magnetic card execution cylinder 13 1, and the operation of the door-opening and closing cylinder 151 is controlled by the third solenoid valve 153, that is, the piston rod of the door-opening and closing cylinder 151 is controlled to be retracted; when the third magnetic switch 152 detects the piston of the door-opening and closing cylinder 151, an electrical signal is sent to the control system 2. After receiving the signal from the third magnetic switch 152, the control system 2 controls the piston rod of the door-opening and closing cylinder 151 from retraction to extension through the third solenoid valve 153, and controls the piston rod of the handle action execution cylinder 141 to be reset through the second solenoid valve 145, that is, the piston rod of the handle action execution cylinder 141 is retracted, completing one test; when the piston rod of the door-opening and closing cylinder 151 is extended and reset, driving the door panel 12 to reset to the door-locked state, the door-closing position proximity switch 17 sends an in-position signal to the control system 2, and the control system 2 controls the magnetic card execution cylinder 131 to be extended again through the first solenoid valve 134, repeating the above steps, which will not be repeated here, to realize the cyclic test.

[0039] Through the above operations, the automatic continuous durability test of the magnetic card password lock body and the magnetic card password lock over-line hinge is carried out simultaneously.

[0040] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. A magnetic card combination lock durability test tool, characterized by: The invention comprises a durability test execution module (1) for testing a magnetic card password lock and a control system (2) arranged on one side of the durability test execution module (1); The durability test execution module (1) comprises a frame (11), a door panel (12) is hingedly connected to the front end of the frame (11), a mounting area (121) for mounting a magnetic card password lock body is provided on the front end surface of the door panel (12), a magnetic card execution cylinder unit (13) is provided on the frame (11) on the right side of the mounting area (121) for transporting a magnetic card to the magnetic card password lock body identification area, and a handle action execution cylinder unit (14) is provided on the door panel (12) on the left side of the mounting area (121) for pressing down the magnetic card password lock handle; a door opening and closing cylinder unit (15) is provided in the frame (11) for pulling the door panel (12) to open and close on the frame (11); the magnetic card execution cylinder unit (13), the handle action execution cylinder unit (14) and the door opening and closing cylinder unit (15) are respectively connected to the control system (2) in terms of electrical signals.

2. The magnetic card combination lock durability test tool according to claim 1, characterized in that: The magnetic card execution cylinder unit (13) comprises a magnetic card execution cylinder (131), a connecting seat (132) for installing a magnetic card, a first magnetic switch (133) and a first electromagnetic valve (134); the connecting seat (132) is arranged at the front end of the piston rod of the magnetic card execution cylinder (131), the first magnetic switch (133) is arranged on the side wall of the magnetic card execution cylinder (131) body, and the first electromagnetic valve (134) is connected to the magnetic card execution cylinder (131) through a corresponding air pipe.

3. The magnetic card combination lock durability test tool according to claim 1, characterized in that: The handle action execution cylinder unit (14) comprises a handle action execution cylinder (141), a pressing block (142), a pressing plate (143), a second magnetic switch (144) and a second electromagnetic valve (145); the pressing block (142) is arranged at the front end of the piston rod of the handle action execution cylinder (141), the pressing plate (143) is installed on the handle of the magnetic card password lock, the second magnetic switch (144) is arranged on the side wall of the handle action execution cylinder (141), and the second electromagnetic valve (145) is connected to the handle action execution cylinder unit (14) through a corresponding air pipe.

4. The magnetic card combination lock durability test tool according to claim 3, characterized in that: A lower pressing roller (146) is provided at the lower end of the lower pressing block (142).

5. The magnetic card combination lock durability test tool according to claim 1, characterized in that: The door-opening and closing cylinder unit (15) comprises a door-opening and closing cylinder (151), a third magnetic switch (152) and a third solenoid valve (153); the third magnetic switch (152) is arranged on the side wall of the door-opening and closing cylinder (151), and the third solenoid valve (153) is connected to the door-opening and closing cylinder (151) through a corresponding air pipe.

6. The magnetic card combination lock durability test tool according to claim 5, characterized in that: The rear end of the door-opening and closing cylinder (151) body is hinged to the frame (11), and the front end of the piston rod of the door-opening and closing cylinder (151) is hinged to the door panel (12).

7. The magnetic card combination lock durability test tool according to claim 1, characterized in that: A limiting block (16) is provided on the frame (11).

8. The magnetic card combination lock durability test tool according to claim 1, characterized in that: A door closing position proximity switch (17) is provided on the frame (11).

9. The magnetic card combination lock durability test tool according to claim 1, characterized in that: The control system (2) comprises a cabinet (21), an electric control cabinet (22) and an upper machine position operating system (23) arranged in the cabinet (21).