Magnetic sensor detection equipment capable of linearly pushing materials

By combining the limit seat and guide groove with the motor-driven connecting rod and push rod, the automated feeding and accuracy judgment of the magnetic sensor detection equipment are realized, which solves the problem of low detection efficiency of existing equipment and improves detection efficiency and stability.

CN223815120UActive Publication Date: 2026-01-20SHENZHEN YANGHETONG ELECTRONICS CO LTD
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Patent Information

Application Number
CN202520501849.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2026-01-20
Estimated Expiration
2035-03-21

AI Technical Summary

Technical Problem

Existing magnetic sensor detection equipment cannot achieve streamlined detection, and frequent disassembly and assembly operations lead to low detection efficiency.

Method used

A magnetic sensor detection device capable of linear material pushing was designed. Through the cooperation of the limiting seat and the guide groove, combined with the motor-driven connecting rod and push rod, the stable sliding of the base and the automatic pushing are realized. The sensor qualification is judged in conjunction with the indicator light.

Benefits of technology

It improves the accuracy and efficiency of testing, simplifies the operation process, reduces human error and equipment shaking, and enhances the stability and flexibility of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of magnetic sensor detection, in particular to magnetic sensor detection equipment capable of linearly pushing materials. According to the technical scheme, a limiting seat and a supporting plate are supported on a support, a base is installed on the limiting seat in a sliding mode, a sensor to be detected is installed on the base, a fixing plate is installed on the supporting plate through an upper installation plate, a magnetic block is connected to the upper installation plate in an inserted mode, and the magnetic block is pressed and fixed to the upper installation plate through a pressing bolt. A power module is installed on one side of the support, and the base is driven by the power module to move forwards on the limiting base. According to the utility model, assembly line type detection of the magnetic sensor probe is realized. After a sensor 204 to be detected is installed on the base 2, the detection process can be continuously and stably completed only through driving of the power module 7 and guiding of the guiding seat and the limiting seat 8. Therefore, the detection efficiency is greatly improved, and the labor intensity of operators is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to magnetic sensor detection technical field, concretely relates to a kind of magnetic sensor detection equipment of linear pushing material. BACKGROUND

[0002] Magnetic sensor is also called electromagnetic induction sensor, and main component is magnetic proximity switch.Magnetic proximity switch has Hall type, also has Reed tube type, but it is essentially all magnetic special switch, and the displacement change of sensing proximity object is realized to open or close switch, to achieve the purpose of control circuit.Magnetic sensor is widely used in industrial equipment, and is often used for counting, limiting, navigation and the like.Magnetic strip, magnetic track nail or cable are generally used together.The trigger sensing distance of magnetic sensor is an important parameter in its technical index, and directly affects the performance and stability of application circuit.Currently, single magnetic sensor detection method is used for detecting the trigger sensing distance of magnetic sensor.Generally, magnetic sensor probe is fixed, and standard magnet is moved manually, and trigger sensing distance is determined by visual measurement scale.

[0003] Through search, patent publication No.CN201620503517.7 discloses a kind of magnetic sensor detection tool, although the device can realize the batch of sensor detection when using, the face of the magnetic strip placement seat opposite magnetic probe fixed base is equipped with multiple small magnetic blocks with through hole, which can realize the batch of sensor detection, isolate external magnetic interference, improve detection precision, but the device needs to be disassembled and assembled on magnetic probe fixed base multiple times when using, cannot be detected in assembly line, and the frequent disassembly and assembly operation directly leads to the extension of detection time, because each time disassembly and assembly need to spend certain time and energy, thereby reducing the overall detection efficiency. UTILITY MODEL CONTENT

[0004] In view of the deficiencies of the prior art, the utility model provides a kind of magnetic sensor detection equipment of linear pushing material, solves the problems raised in the background art.

[0005] The technical problem of the utility model is solved by the following solutions:

[0006] A kind of magnetic sensor detection equipment of linear pushing material, including support, the support is supported with limiting seat and support plate, the limiting seat is slidably installed with base, the base is installed with sensor to be measured;

[0007] The support plate is provided with an upper mounting plate, a fixing plate is mounted on the upper mounting plate, a magnetic block is inserted into the upper mounting plate, and a pressing bolt is mounted on the fixing plate, the magnetic block is pressed and fixed on the upper mounting plate through the pressing bolt, one side of the support frame is provided with a power module, and the base is driven to move forward on the limiting seat through the power module.

[0008] The base is provided with a tool, and the tool is provided with an indicator lamp, when the magnetic block is sensed by the to-be-tested sensor, the to-be-tested sensor generates a signal to turn on the power supply of the indicator lamp, and whether the to-be-tested sensor is qualified is judged by whether the power supply of the indicator lamp is turned on.

[0009] On the basis of the above technical scheme, the utility model can also be improved as follows.

[0010] Further, the limiting seat is provided with a guide groove, the bottom end of the base is provided with a limiting block, and the base is placed on the limiting seat through the cooperation of the limiting block and the guide groove.

[0011] The beneficial effects of the above further scheme are:

[0012] Through the cooperation of the limiting block and the guide groove, the base can stably slide on the limiting seat, avoiding deviation or shaking during movement. The guide groove provides a clear movement path for the base, ensuring the positioning accuracy during movement. With the cooperation of the limiting block and the guide groove, the operator can easily place the base on the limiting seat and smoothly push the base along the guide groove. This simplifies the operation process and improves work efficiency.

[0013] Further, the power module is provided with a base, the base is placed with a motor, the output end of the motor is provided with a connecting rod, and the output end of the connecting rod is provided with a push rod.

[0014] The beneficial effects of the above further scheme are:

[0015] The motor serves as a power source, and the power is transmitted to the push rod through the connecting rod, realizing effective conversion and transmission of energy. This transmission mode has high transmission efficiency and can ensure that the push rod can quickly and accurately complete the pushing action after receiving power. By controlling the rotation direction of the motor, the extension and retraction of the push rod can be conveniently controlled, thereby realizing automatic pushing of the base and the to-be-tested sensor. This design makes the operation of the equipment more simple and flexible, and can adapt to different detection requirements and working environments.

[0016] Further, the support frame is provided with a moving rod which is slidingly installed, the moving rod is provided with a sliding block and a push block, the connecting rod is driven to swing by the motor, the connecting rod pushes the sliding block through the push rod, and the sliding block drives the moving rod to drive the push block to push the base to move forward.

[0017] The beneficial effects of adopting the above further scheme are:

[0018] By driving the connecting rod to swing, and then pushing the push rod and the sliding block, this design realizes an efficient transmission chain. The rotational motion of the motor is effectively converted into linear motion, which pushes the moving rod and the push block, finally driving the base to move forward. This transmission mechanism reduces energy loss and improves the efficiency of the overall device. The sliding design of the sliding block on the moving rod and the pushing method of the push block on the base contribute to stable motion characteristics. This design reduces shaking and wobbling during movement, improving the stability and reliability of the device.

[0019] Further, a sliding groove is opened on the sliding block, and the push rod slides in the sliding groove, so that when the connecting rod swings, the sliding block is pushed by the push rod.

[0020] The beneficial effects of adopting the above further scheme are:

[0021] The sliding groove provides a clear sliding path for the push rod, ensuring the stability and accuracy of the push rod during sliding. This precise guidance helps to reduce transmission errors and improve the overall accuracy of the system. When the push rod slides in the sliding groove, it can more effectively convert the swing of the connecting rod into linear motion of the sliding block. This design reduces energy loss during transmission and improves transmission efficiency. The cooperation of the sliding block and the sliding groove increases the structural stability of the system. The sliding groove supports and limits the push rod, preventing the push rod from deviating or wobbling during swinging, thereby enhancing the stability of the entire transmission system.

[0022] Further, a guide seat is installed on the bracket, and the moving rod is limitedly installed on the bracket through the guide seat.

[0023] The beneficial effects of adopting the above further scheme are:

[0024] By limiting the installation of the moving rod through the guide seat, the deviation or wobbling of the moving rod during movement can be effectively prevented, thereby improving the stability of the entire structure. The guide seat provides a clear movement path for the moving rod, ensuring that the moving rod can move along the predetermined direction. This design helps to reduce errors caused by deviation of the movement direction, improving the accuracy and reliability of the system.

[0025] The utility model provides a magnetic sensor detection equipment of linear push material, has the following beneficial effects:

[0026] The guide groove on the limiting seat cooperates with the limiting block at the bottom end of the base to realize stable sliding and limiting of the base on the limiting seat, effectively preventing deviation or wobbling of the base during movement, and improving the accuracy of detection.

[0027] The magnetic blocks on the upper mounting plate are fixed by pressing bolts, which is not only simple and convenient, but also can easily adjust the position of the magnetic blocks or replace the magnetic blocks according to needs, increasing the flexibility and adaptability of the equipment.

[0028] The power module drives the connecting rod and the push rod through the motor, realizing the automatic pushing of the base and the sensor to be tested. This design not only improves the detection efficiency, but also reduces the tediousness and error of manual operation.

[0029] The matching design of the sliding groove on the sliding block and the push rod makes the connecting rod smoothly push the sliding block when swinging, and then drives the moving rod and the push block to push the base to move forward. This design ensures the stability and accuracy of the pushing process.

[0030] The indicator light on the tool is connected to the sensor to be tested. When the sensor senses the magnetic block, the indicator light will be powered on. By observing whether the indicator light is powered on, it can be directly judged whether the sensor to be tested is qualified, simplifying the detection process and improving the detection efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0031] The drawings described herein are used to provide further understanding of the present application, and form a part of the present application. The schematic embodiments of the present application and their descriptions are used to explain the present application, and do not constitute an improper limitation on the present application.

[0032] In the drawings:

[0033] Figure 1 It is a front view appearance schematic diagram of the present application;

[0034] Figure 2 It is a rear view appearance schematic diagram of the present application;

[0035] Figure 3 It is a base front view appearance schematic diagram of the present application;

[0036] Figure 4 It is a support plate front view appearance schematic diagram of the present application;

[0037] Figure 5 It is a support plate bottom view appearance schematic diagram of the present application;

[0038] Figure 6 It is a power module front view structure schematic diagram of the present application.

[0039] In the drawings, the component list represented by each number is as follows:

[0040] 1, push block; 10, moving rod; 11, slider; 1101, sliding groove; 12, motor; 13, base; 14, support plate; 2, base; 201, limit block; 202, indicator light; 203, tooling; 204, to be measured sensor; 3, magnetic block; 4, fixed plate; 5, upper mounting plate; 6, pressing bolt; 7, power module; 701, push rod; 702, connecting rod; 8, limit seat; 801, guide groove; 9, support. DETAILED DESCRIPTION

[0041] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0042] Please refer to Figures 1 to 6 The embodiments provided by the present application:

[0043] Embodiment one

[0044] The application discloses a linear pushing magnetic sensor detection equipment, which comprises a support 9, a limiting seat 8 and a supporting plate 14 supported on the support 9, a base 2 slidingly installed on the limiting seat 8, a guide groove 801 formed in the limiting seat 8, a limiting block 201 arranged at the bottom end of the base 2, and a limiting and placing mode of the base 2 on the limiting seat 8 through cooperation of the limiting block 201 and the guide groove 801, so that the base 2 can stably slide on the limiting seat 8 and offset or shaking in the moving process is avoided. The guide groove 801 provides a clear moving path for the base 2, and ensures the positioning accuracy of the base 2 in the moving process. Through cooperation of the limiting block 201 and the guide groove 801, the operator can easily place the base 2 on the limiting seat 8 and stably push the base 2 along the guide groove 801. This simplifies the operation process and improves the work efficiency. The base 2 is provided with a to-be-detected sensor 204, the supporting plate 14 is provided with an upper mounting plate 5, the upper mounting plate 5 is provided with a fixing plate 4, the upper mounting plate 5 is provided with a magnetic block 3, the fixing plate 4 is provided with a pressing bolt 6, the magnetic block 3 is tightly fixed on the upper mounting plate 5 through the pressing bolt 6, one side of the support 9 is provided with a power module 7, the base 2 is driven to move forward on the limiting seat 8 through the power module 7, the power module 7 is provided with a base 13, the base 13 is provided with a motor 12, the output end of the motor 12 is provided with a connecting rod 702, the output end of the connecting rod 702 is provided with a push rod 701, the motor 12 serves as a power source, and power is transmitted to the push rod 701 through the connecting rod 702, so that effective conversion and transmission of energy are realized. The transmission mode has high transmission efficiency and can ensure that the push rod 701 can quickly and accurately complete the pushing action after receiving power. The extension and retraction actions of the push rod 701 can be conveniently controlled by controlling the rotating direction of the motor 12, so that the base 2 and the to-be-detected sensor 204 are automatically pushed. The design makes the operation of the equipment more convenient and flexible, and the equipment can adapt to different detection requirements and working environments. The support 9 is slidingly provided with a moving rod 10, the support 9 is provided with a guide seat, the moving rod 10 is limitingly installed on the support 9 through the guide seat, the limitingly installed moving rod 10 can effectively prevent offset or shaking in the moving process, so that the stability of the whole structure is improved. The guide seat provides a clear moving path for the moving rod 10, and ensures that the moving rod 10 can move along the predetermined direction.This design helps to reduce the error caused by the deviation of the moving direction, improve the accuracy and reliability of the system, and the moving rod 10 is installed with a sliding block 11 and a push block 1, and the push block 1 is provided with a push plate connected by a spring. When the push block 1 pushes the base 2 to move forward, the push plate stands up through the spring, and the push plate pushes the base. When the moving rod 10 drives the push block 1 to reset, the push plate is pressed by the base 2, and the push plate is retracted into the push block 1, until the push plate moves to the other end of the base 2, and the push plate stands up again through the spring, so as to push the base 2 again. The linkage 702 is driven to swing by the motor 12, so that the linkage 702 pushes the sliding block 11 through the push rod 701, and the sliding block 11 drives the moving rod 10 to drive the push block 1 to push the base 2 to move forward. The linkage 702 is driven to swing by the motor 12, and then the push rod 701 and the sliding block 11 are pushed. This design realizes an efficient transmission chain. The rotary motion of the motor 12 is effectively converted into linear motion, so as to push the moving rod 10 and the push block 1, and finally drive the base 2 to move forward. This transmission mechanism reduces energy loss and improves the efficiency of the whole device. The sliding design of the sliding block 11 on the moving rod 10 and the pushing way of the push block 1 to the base 2 help to realize stable motion characteristics. This design reduces the shaking and shaking in the movement process, improves the stability and reliability of the device, and the sliding block 11 is provided with a sliding groove 1101, and the push rod 701 slides in the sliding groove 1101, so that when the linkage 702 swings, the push rod 701 pushes the sliding block 11, and the sliding groove 1101 provides a clear sliding path for the push rod 701, ensuring the stability and accuracy of the push rod 701 in the sliding process. This accurate guide helps to reduce transmission error and improve the overall accuracy of the system. When the push rod 701 slides in the sliding groove 1101, it can more effectively convert the swing of the linkage 702 into linear motion of the sliding block 11. This design reduces the loss of energy in the transmission process and improves the transmission efficiency. The cooperation of the sliding block 11 and the sliding groove 1101 increases the structural stability of the system. The sliding groove 1101 supports and limits the push rod 701, preventing the push rod 701 from deviating or shaking during swinging, thereby enhancing the stability of the whole transmission system.

[0045] Example two

[0046] In order to facilitate the detection of whether the to-be-tested sensor 204 is qualified, as shown in Figures 1 to 6 , the application also includes: a tool 203 is installed on the base 2, one side of the tool 203 is installed with an indicator light 202, when the to-be-tested sensor 204 senses the magnetic block 3, the to-be-tested sensor 204 generates a signal to turn on the power supply of the indicator light 202, whether the to-be-tested sensor 204 is qualified is judged by whether the power supply of the indicator light 202 is turned on.

[0047] Working principle:

[0048] The magnetic block 3 is pressed and fixed on the upper mounting plate 5 by the pressing bolt 6, forming a stable magnetic field source. The sensor 204 to be tested is installed on the base 2, and when the base 2 moves forward under the drive of the power module 7, the sensor 204 to be tested gradually approaches the magnetic block 3. When the sensor 204 to be tested senses the magnetic field generated by the magnetic block 3, it will generate a corresponding signal according to the change of the magnetic field.

[0049] The indicator light 202 installed on the tool 203 is connected with the sensor 204 to be tested. When the sensor 204 to be tested senses the magnetic field and generates a signal, the signal will trigger the circuit of the indicator light 202, so that it is turned on and emits light. By observing whether the indicator light 202 emits light or not, it can be directly judged whether the sensor 204 to be tested has a correct response to the magnetic field, so as to judge whether it is qualified.

[0050] The motor 12 serves as a power source, and transmits power to the sliding block 11 through the connecting rod 702 and the push rod 701 at the output end. The connecting rod 702 swings under the drive of the motor 12, pushes the push rod 701 to slide in the sliding groove 1101, and further pushes the sliding block 11 and the moving rod 10 to slide on the support 9. The push block 1 on the moving rod 10 is in contact with the base 2. When the moving rod 10 moves forward under the drive of the power module 7, the push block 1 pushes the base 2 to slide in the guide groove 801 of the limiting seat 8. The sensor 204 to be tested on the base 2 gradually approaches the magnetic block 3 with the movement of the base 2, and completes the detection process of the magnetic field sensing.

[0051] The basic principle and main features of the utility model and the advantages of the utility model are shown and described above, and for those skilled in the art, obviously, the utility model is not limited to the details of the above-mentioned exemplary embodiments, and the utility model can be realized in other specific forms without departing from the spirit or basic characteristics of the utility model. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting, and the scope of the utility model is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the utility model. Any reference signs in the claims should not be regarded as limiting the claims involved.

[0052] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description manner of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be appropriately combined to form other embodiments that those skilled in the art can understand.

Claims

1. A linear pushing magnetic sensor detection device, comprising a support (9), a limiting seat (8) and a supporting plate (14) supported on the support (9), a base (2) slidingly installed on the limiting seat (8), and a sensor (204) to be detected installed on the base (2), characterized in that: an upper mounting plate (5) is supported and installed on the supporting plate (14), a fixed plate (4) is installed on the upper mounting plate (5), a magnetic block (3) is inserted into the upper mounting plate (5), a pressing bolt (6) is installed on the fixed plate (4), the magnetic block (3) is tightly fixed on the upper mounting plate (5) by the pressing bolt (6), a power module (7) is installed on one side of the support (9), and the base (2) is driven to move forward on the limiting seat (8) by the power module (7). A tool (203) is installed on the base (2), an indicating lamp (202) is installed on one side of the tool (203), when the sensor (204) to be detected senses the magnetic block (3), the sensor (204) to be detected generates a signal to turn on the power supply of the indicating lamp (202), and whether the sensor (204) to be detected is qualified is determined by whether the power supply of the indicating lamp (202) is turned on. A guide groove (801) is formed in the limiting seat (8), and a limiting block (201) is arranged at the bottom end of the base (2), the base (2) is placed on the limiting seat (8) by the cooperation of the limiting block (201) and the guide groove (801).

2. The magnetic sensor detection device of claim 1, wherein: The power module (7) is provided with a base (13), the motor (12) is placed on the base (13), the output end of the motor (12) is provided with a connecting rod (702), and the output end of the connecting rod (702) is provided with a push rod (701).

3. The magnetic sensor detection device of claim 1, wherein: A moving rod (10) is slidingly installed on the support (9), a sliding block (11) and a push block (1) are installed on the moving rod (10), the connecting rod (702) is driven to swing by the motor (12), the connecting rod (702) drives the sliding block (11) to move by the push rod (701), and the sliding block (11) drives the moving rod (10) to drive the push block (1) to move the base (2) forward.

4. The magnetic sensor detection apparatus of claim 1, wherein: A sliding groove (1101) is formed in the sliding block (11), the push rod (701) slides in the sliding groove (1101), and when the connecting rod (702) swings, the push rod (701) drives the sliding block (11).

5. The magnetic sensor detection apparatus of claim 4, wherein: A guide seat is installed on the support (9), and the moving rod (10) is limitingly installed on the support (9) through the guide seat.

6. The magnetic sensor detection apparatus of claim 4, wherein: ​

Citation Information

Patent Citations

  • Magnetic sensor detects frock

    CN205787075U