Guide wheel detection equipment
By designing a detection mechanism and a limiting mechanism suitable for guide wheel detection equipment, the problem that existing equipment cannot adapt to guide wheels of different thicknesses and cannot perform comprehensive detection has been solved. This enables accurate measurement of guide wheel diameter and flatness, and improves the equipment's versatility and detection accuracy.
Patent Information
- Application Number
- CN202520370246.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-05
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-03-05
AI Technical Summary
Existing guide wheel testing equipment can only perform fixed testing on a single guide wheel, and cannot adapt to guide wheels of different thicknesses. Furthermore, it cannot comprehensively test important indicators such as friction coefficient, dimensions, and surface flatness, and is susceptible to human error.
A guide wheel inspection device including an inspection mechanism and a limiting mechanism was designed. The diameter and flatness of the guide wheel are accurately measured by a diameter measuring component and a flatness measuring component. The limiting mechanism adapts to guide wheels of different sizes, and the thickness measuring mechanism enables comprehensive inspection.
It enables precise measurement of guide wheel diameter and flatness, reduces human error, and improves the versatility and flexibility of the equipment, making it applicable to guide wheels of different sizes.
Smart Images

Figure CN223807753U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of guide wheel, specifically, a guide wheel detection equipment. BACKGROUND
[0002] In modern industrial production, guide wheels are widely used in various mechanical equipment, such as elevators, cranes, conveyors, etc. In the production and processing of guide wheels, it is crucial to ensure their quality and performance, as their performance and quality directly affect the stability, precision, and safety of the equipment. Therefore, it is necessary to detect the performance of guide wheels during processing.
[0003] Through searching, Chinese patent application CN 212058617U discloses a potential change type elevator guide wheel detection device. The passive detection wheel is effectively clamped by the U-shaped guide wheel through the U-shaped clamping groove. When the passive detection wheel is uneven, the U-shaped guide wheel will push the passive detection wheel upwards. At this time, the pressure monitor will record the uneven data of the passive detection wheel, thereby solving the problem that the existing detection device detection system cannot effectively friction the passive detection wheel during detection, causing insufficient friction and instability of the passive detection wheel during detection.
[0004] However, in the implementation of the above technical solution, the following technical problems still exist: only single guide wheels can be fixed and detected, different thickness guide wheels cannot be clamped for detection, and only the friction coefficient of the guide wheel can be detected, other important indicators such as size and surface flatness cannot be comprehensively detected.
[0005] Therefore, it is an urgent problem for the utility model to provide a guide wheel detection equipment that can accurately measure the diameter and flatness of guide wheels during use, reduce human error, and be applicable to guide wheels of different sizes, improving the versatility and flexibility of the equipment. UTILITY MODEL CONTENTS
[0006] To solve the above technical problems, the utility model aims to provide a guide wheel detection equipment that can accurately measure the diameter and flatness of guide wheels during use, reduce human error, and be applicable to guide wheels of different sizes, improving the versatility and flexibility of the equipment.
[0007] In order to achieve the above object, the utility model provides a guide wheel detection equipment, detection equipment includes: the detection mechanism for detecting the size and flatness of guide wheel body is fixed on the workbench through the support, the workbench is rotatably provided with the limiting mechanism for limiting the guide wheel body of different size,
[0008] The detection mechanism comprises a diameter measuring element for measuring the diameter of the guide wheel body and a flatness detection element for detecting the surface flatness of the guide wheel body.
[0009] Preferably, the diameter measuring element comprises an adjusting frame, a screw rod, a threaded block and a detection wheel.
[0010] The mounting bracket is coaxially fixed with the guide wheel body fixed on the workbench, the bottom surface of the mounting bracket is fixed with an adjusting frame, the adjusting frame is provided with a mounting groove, the screw rod is rotatably arranged in the mounting groove, a servo motor is fixedly arranged on the adjusting frame, the output shaft of the servo motor is horizontally arranged at the top end and is fixedly connected with the screw rod, the threaded block is threadedly arranged on the screw rod, the vertical rod is slidably arranged on the threaded block, the detection wheel is rotatably arranged on the vertical rod and abuts against the side surface of the guide wheel body, and the flatness detection element is arranged in the threaded block to detect the movement data of the vertical rod and reflect the flatness of the guide wheel body.
[0011] Preferably, the adjusting frame is provided with a first scale line with the center of the mounting bracket as zero point, and the top surface of the threaded block is fixedly provided with a pointer matched with the first scale line at a position corresponding to the edge of the detection wheel.
[0012] Preferably, the flatness detection element comprises a first spring, a pressure sensor and a sliding block.
[0013] The sliding groove is formed in the threaded block, the sliding block is slidably arranged in the sliding groove, the inner side wall of the sliding groove is fixedly provided with the first spring having one end fixedly connected with the sliding block, and the pressure sensor is fixedly arranged on the threaded block for detecting the pressure of the first spring.
[0014] Preferably, the limiting mechanism comprises a rotating element and a fixing element for fixing the guide wheel body of different sizes.
[0015] The rotating element comprises a driving motor and a mounting disc, the driving motor is fixedly arranged on the workbench, the output shaft of the driving motor is vertically upward and the top end is fixedly provided with the mounting disc, and the mounting disc is provided with the fixing element.
[0016] Preferably, the fixing element comprises a rotating disc, a driving rod and a sliding rod.
[0017] The driving motor is fixedly arranged in the installation disc, a rotating disc is fixedly arranged on the output shaft of the driving motor, a plurality of groups of inclined guide grooves are arranged on the rotating disc along the circumferential direction of the rotating disc, a driving rod is slidably arranged in each group of guide grooves, a sliding rod is fixedly arranged on the driving rod and slidably penetrates the side wall of the installation disc, and a supporting plate is fixedly arranged at the top end of the sliding rod and abuts against the inner side wall of the guide wheel body.
[0018] Preferably, a measuring mechanism for measuring the thickness of the guide wheel body is further fixedly arranged on the workbench.
[0019] Preferably, the measuring mechanism comprises a second spring, a movable rod and a clamping block, wherein,
[0020] A sliding groove is arranged in the workbench, the second spring is fixedly arranged in the sliding groove, the movable rod is fixedly connected to the top end of the second spring and slidably abuts against the inner side wall of the sliding groove, and the clamping block is fixedly arranged at the top end of the movable rod and abuts against the surface of the guide wheel body.
[0021] Preferably, a second scale line is fixedly arranged on the surface of the movable rod and is zeroed with the bottom surface of the clamping block.
[0022] According to the technical scheme, the guide wheel detection equipment has the beneficial effects that: according to the size of the guide wheel body, the limiting mechanism is adjusted to ensure that the position of the guide wheel body on the workbench is fixed, the diameter measuring part in the detection mechanism is started to measure the diameter of the guide wheel body, the flatness detection part contacts the surface of the guide wheel body at this time, the control system processes and analyzes the collected diameter and flatness data, and whether the guide wheel body is qualified is judged according to the preset standard or threshold value. Through the special diameter measuring part and the flatness detection part, the diameter and flatness of the guide wheel body can be accurately measured, and human error is reduced. The automatic detection process helps to ensure the accuracy and consistency of each measurement, the design of the limiting mechanism makes the detection equipment applicable to guide wheel bodies of different sizes, and the versatility and flexibility of the equipment are improved.
[0023] Other features and advantages of the present application will be described in detail in the following specific embodiments; moreover, the parts not involved in the present application are the same as or can be realized by the prior art. BRIEF DESCRIPTION OF DRAWINGS
[0024] The accompanying drawings are used to provide a further understanding of the present application, and constitute a part of the specification, and are used together with the following specific embodiments to explain the present application, but do not constitute a limitation on the present application. In the drawings:
[0025] Figure 1 It is a preferred embodiment of the guide wheel detection equipmentFigure 1 ;
[0026] Figure 2 is a perspective view of a guide wheel detection device according to a preferred embodiment Figure 2 ;
[0027] Figure 3 is a sectional view of a guide wheel detection device according to a preferred embodiment
[0028] Figure 4 is a perspective view of a detection mechanism of a guide wheel detection device according to a preferred embodiment Figure 1 ;
[0029] Figure 5 is a perspective view of a detection mechanism of a guide wheel detection device according to a preferred embodiment Figure 2 ;
[0030] Figure 6 is a perspective view of a limiting mechanism of a guide wheel detection device according to a preferred embodiment Figure 1 ;
[0031] Figure 7 is a perspective view of a limiting mechanism of a guide wheel detection device according to a preferred embodiment Figure 2 ;
[0032] Figure 8 is a plan view of a guide wheel detection device according to a preferred embodiment
[0033] Figure 9 is a sectional view of A-A in Figure 8
[0034] Explanation of reference numerals
[0035] 100, workbench; 101, support; 102, guide wheel body; 200, limiting mechanism; 201, driving motor; 202, mounting disc; 203, rotating disc; 204, guide groove; 205, driving rod; 206, sliding rod; 207, support plate; 208, driving motor; 300, detection mechanism; 301, mounting frame; 302, adjusting frame; 303, mounting groove; 304, servo motor; 305, screw rod; 306, threaded block; 307, vertical rod; 308, detection wheel; 309, sliding groove; 310, first spring; 311, pressure sensor; 312, pointer; 313, first scale line; 314, sliding block; 400, measuring mechanism; 401, sliding groove; 402, second spring; 403, movable rod; 404, clamping block; 405, second scale line. DETAILED DESCRIPTION
[0036] The specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are merely intended to illustrate and explain the present application, and are not intended to limit the present application.
[0037] In the present application, unless otherwise stated, the orientation words contained in the terms such as "up, down, in, out" only represent the orientation of the terms in the normal use state, or the common name understood by those skilled in the art, and should not be regarded as a limitation of the terms.
[0038] Referring to Figures 1-9 The detection device includes a detection mechanism 300 fixed on the workbench 100 by a support 101 for detecting the size and flatness of the guide wheel body 102, and the workbench 100 is rotatably provided with a limiting mechanism 200 for limiting different sizes of the guide wheel body 102; wherein,
[0039] The detection mechanism 300 includes a diameter measuring member for measuring the diameter of the guide wheel body 102 and a flatness detecting member for detecting the surface flatness of the guide wheel body 102.
[0040] In use, the guide wheel body 102 is placed on the workbench 100, the limiting mechanism 200 is adjusted according to the size of the guide wheel body 102 to ensure that the position of the guide wheel body 102 on the workbench 100 is fixed, the diameter measuring member in the detection mechanism 300 is started to measure the diameter of the guide wheel body 102, and the flatness detecting member contacts the surface of the guide wheel body 102 at this time. The control system processes and analyzes the collected diameter and flatness data, and determines whether the guide wheel body 102 is qualified according to the preset standard or threshold. Through the special diameter measuring member and the flatness detecting member, the diameter and flatness of the guide wheel body 102 can be accurately measured, and human error can be reduced. The automatic detection process helps to ensure the accuracy and consistency of each measurement, and the design of the limiting mechanism 200 makes the detection device applicable to guide wheel bodies 102 of different sizes, improving the versatility and flexibility of the device.
[0041] Referring to Figures 2-5 The diameter measuring member includes an adjusting frame 302, a screw rod 305, a threaded block 306 and a detection wheel 308; wherein,
[0042] The mounting frame 301 is coaxially fixed on the guide wheel body 102 fixed on the workbench 100, the bottom surface of the mounting frame 301 is fixedly provided with an adjusting frame 302, the adjusting frame 302 is provided with a mounting groove 303, a screw rod 305 is rotatably arranged in the mounting groove 303, a servo motor 304 is fixedly arranged on the adjusting frame 302, the top end of the output shaft of the servo motor 304 is fixedly connected with the screw rod 305, a threaded block 306 is threadedly arranged on the screw rod 305, a vertical rod 307 is slidably arranged on the threaded block 306, a detection wheel 308 is rotatably arranged on the vertical rod 307 and abuts against the side surface of the guide wheel body 102, and a flatness detection member is arranged in the threaded block 306 to detect the movement data of the vertical rod 307 and reflect the flatness of the guide wheel body 102.
[0043] In use, the guide wheel body 102 is fixed on the workbench 100, the servo motor 304 is started, the output shaft of the servo motor 304 drives the screw rod 305 to rotate in the mounting groove 303, the threaded block 306 moves in the vertical direction under the drive of the screw rod 305, and the vertical rod 307 slides on the threaded block 306 to keep the detection wheel 308 in contact with the side surface of the guide wheel body 102, with the movement of the threaded block 306, the detection wheel 308 rolls along the side surface of the guide wheel body 102, and the movement path of the detection wheel 308 reflects the diameter of the guide wheel. The flatness detection member records the slight movement of the vertical rod 307 to evaluate the flatness of the guide wheel.
[0044] Referring to Figure 4 The top surface of the threaded block 306 is fixedly provided with a pointer 312 corresponding to the position of the edge of the detection wheel 308, and the adjusting frame 302 is provided with a first scale line 313 with the center of the mounting frame 301 as the zero point.
[0045] In the above scheme, during the diameter measurement, the position of the pointer 312 on the first scale line 313 is observed, and the position of the pointer 312 directly reflects the vertical distance of the detection wheel 308 relative to the center of the mounting frame 301, thereby indirectly indicating the diameter of the guide wheel.
[0046] Referring to Figure 5 The flatness detection member comprises a first spring 310, a pressure sensor 311 and a sliding block 314.
[0047] The threaded block 306 is provided with a sliding groove 309, the sliding groove 309 is slidably provided with a sliding block 314, the inner side wall of the sliding groove 309 is fixedly provided with a first spring 310 having one end fixedly connected with the sliding block 314, and the threaded block 306 is fixedly provided with a pressure sensor 311 for detecting the pressure of the first spring 310.
[0048] In the above scheme, when the detection wheel 308 rolls along the side of the guide wheel body 102, unevenness will cause the vertical rod 307 and the threaded block 306 to be subjected to additional force, which is transmitted to the first spring 310 through the sliding block 314, causing the spring to compress. The pressure sensor 311 monitors the pressure change of the first spring 310 in real time, converts the pressure data into an electric signal, and transmits it to the control system for analysis. The control system analyzes the pressure data according to the preset flatness standard to determine whether the flatness of the guide wheel body 102 is qualified.
[0049] Referring to Figures 6-7 As shown in the figure, the limiting mechanism 200 includes a rotating part and a fixing part for fixing guide wheel bodies 102 of different sizes; wherein,
[0050] The rotating part includes a drive motor 201 and a mounting disc 202; the workbench 100 is fixedly provided with a drive motor 201, the output shaft of the drive motor 201 is vertically upward and the top end is fixedly provided with a mounting disc 202, and the mounting disc 202 is provided with a fixing part.
[0051] In the above scheme, according to the size of the guide wheel body 102, the position of the fixing part in the mounting disc 202 is adjusted to ensure that the guide wheel is firmly fixed. Start the drive motor 201, and the output shaft drives the mounting disc 202 and the guide wheel body 102 fixed thereon to rotate. The rotating guide wheel body 102 facilitates the detection mechanism 300 to conduct omnidirectional detection.
[0052] Referring to Figures 6-7 As shown in the figure, the fixing part includes a rotating disc 203, a drive rod 205 and a sliding rod 206; wherein,
[0053] The mounting disc 202 is fixedly provided with a drive motor 208, the output shaft of the drive motor 208 is fixedly provided with a rotating disc 203, the rotating disc 203 is provided with a plurality of groups of inclined guide grooves 204 along the circumferential direction thereof, each group of guide grooves 204 is slidably penetrated by a drive rod 205, the drive rod 205 is fixedly provided with a sliding rod 206 which slidably penetrates the side wall of the mounting disc 202, and the top end of the sliding rod 206 is fixedly provided with a support plate 207 which abuts against the inner side wall of the guide wheel body 102.
[0054] In the above scheme, the guide wheel body 102 is placed on the workbench 100, according to the size of the guide wheel body 102, the driving motor 208 is started, the output shaft drives the rotating disc 203 to rotate, the guide groove 204 on the rotating disc 203 rotates, the driving rod 205 slides along the inclined direction of the guide groove 204, the sliding of the driving rod 205 drives the sliding rod 206 to slide in the side wall of the mounting disc 202, and pushes the supporting plate 207 to move to the inner side wall of the guide wheel body 102, with the continuous rotation of the rotating disc 203, a plurality of supporting plates 207 gradually approach and touch the inner side wall of the guide wheel body 102, which is firmly fixed, the number and position of the supporting plates 207 are adjusted according to the size of the guide wheel body 102, to ensure uniform stress. Through the design of the rotating disc 203 and the guide groove 204, the fixing part can adapt to guide wheels of different sizes without manual adjustment.
[0055] Referring to Figures 1-7 As shown in the figure, the workbench 100 is also fixedly provided with a measuring mechanism 400 for measuring the thickness of the guide wheel body 102.
[0056] In the above scheme, by increasing the thickness measuring mechanism 400, the detection of the guide wheel is more comprehensive, covering multiple key parameters such as diameter, flatness, thickness, etc. The design of the measuring mechanism 400 may allow thickness measurement of guide wheels of different sizes and types, improving the versatility and flexibility of the equipment.
[0057] Referring to Figure 9 As shown in the figure, the measuring mechanism 400 comprises a second spring 402, a movable rod 403 and a clamping block 404; wherein,
[0058] The workbench 100 is provided with a sliding groove 401, the second spring 402 is fixedly arranged in the sliding groove 401, the top end of the second spring 402 is fixedly connected with the movable rod 403 which is in sliding fit with the inner side wall of the sliding groove 401, and the top end of the movable rod 403 is fixedly provided with the clamping block 404 which is in abutment with the surface of the guide wheel body 102.
[0059] In the above scheme, the guide wheel body 102 is placed in the limiting mechanism 200 on the workbench 100, the movable rod 403 is manually pushed, the bottom surface of the clamping block 404 abuts against the lower surface of the guide wheel body 102, the movable rod 403 slides upward in the sliding groove 401, the second spring 402 is stretched, and the sliding distance of the movable rod 403 reflects the thickness of the guide wheel body 102. By observing the position change of the movable rod 403 in the sliding groove 401, the thickness of the guide wheel body 102 can be directly understood.
[0060] Referring to Figure 9As shown, the surface of the movable rod 403 is fixedly provided with a second scale line 405 with zero point of the bottom surface of the clamping block 404.
[0061] In the above scheme, the position change of the second scale line 405 during sliding is observed, and the scale value corresponding to the contact of the bottom surface of the clamping block 404 with the surface of the guide wheel body 102 is recorded, which represents the thickness of the guide wheel body 102. The movable rod 403 is released, and the second spring 402 restores the elastic force to push the movable rod 403 and the clamping block 404 back to the initial position. By recording the scale value of the second scale line 405, the thickness data of different guide wheels can be conveniently stored, analyzed and compared.
[0062] In summary, the guide wheel detection device provided by the utility model, when in use, the guide wheel body 102 is placed on the mounting disc 202 on the workbench 100, the driving motor 208 in the mounting disc 202 is started, the output shaft of the driving motor 208 drives the rotating disc 203 to rotate, the plurality of groups of inclined guide grooves 204 opened in the circumferential direction on the rotating disc 203 rotate, since the driving rod 205 is slidably penetrated in each group of guide grooves 204, and the sliding rod 206 fixedly arranged on the driving rod 205 is slidably penetrated through the side wall of the mounting disc 202, therefore, the rotation of the rotating disc 203 makes the driving rod 205 slide in the guide groove 204, and further drives the sliding rod 206 to move along the radial direction, the support plate 207 at the top end of the sliding rod 206 abuts against the inner side wall of the guide wheel body 102, the fixing of the guide wheel body 102 of different sizes is realized, the servo motor 304 on the adjusting frame 302 is started, the output shaft of the servo motor 304 drives the screw rod 305 to rotate in the mounting groove 303, the threaded block 306 threadedly arranged on the screw rod 305 moves along the mounting groove 303 under the rotation of the screw rod 305, the vertical rod 307 on the threaded block 306 moves, the detection wheel 308 rotating on the vertical rod 307 gradually approaches the guide wheel body 102 until abutting against the side surface of the guide wheel body 102, the diameter data of the guide wheel body 102 is read by observing the position of the pointer 312 on the top surface of the threaded block 306 on the first scale line 313 of the adjusting frame 302, in the process that the detection wheel 308 abuts against the side surface of the guide wheel body 102, if the surface of the guide wheel body 102 is uneven, the detection wheel 308 drives the vertical rod 307 to slide on the threaded block 306, the sliding block 314 at the bottom of the vertical rod 307 slides in the sliding groove 309, so that the first spring 310 is compressed or stretched, the pressure sensor 311 on the threaded block 306 detects the pressure change of the first spring 310, and the surface flatness of the guide wheel body 102 is reflected according to the pressure change data.
[0063] When the guide wheel body 102 is placed on the workbench 100, the guide wheel body 102 will generate pressure on the clamping block 404 at the top end of the movable rod 403, so that the movable rod 403 slides downward in the sliding groove 401, the second spring 402 is compressed, the second scale line 405 on the surface of the movable rod 403 with the bottom surface of the clamping block 404 as the zero point is observed, the thickness data of the guide wheel body 102 is read, the driving motor 201 on the workbench 100 is started, the output shaft of the driving motor 201 drives the mounting disc 202 to rotate, so that the guide wheel body 102 fixed on the mounting disc 202 rotates, and in the rotating process of the guide wheel body 102, the detection mechanism 300 and the measuring mechanism 400 continuously detect the size and flatness of the guide wheel body 102, so as to obtain more comprehensive detection data.
[0064] The preferred embodiments of the utility model are described in detail above in combination with the drawings, but the utility model is not limited to the specific details in the above-mentioned embodiments, and various simple modifications can be made to the technical scheme of the utility model within the technical concept of the utility model, and these simple modifications all belong to the protection scope of the utility model.
[0065] In addition, it should be noted that various specific technical features described in the above-mentioned specific embodiments can be combined in any appropriate manner without contradiction, and in order to avoid unnecessary repetition, the utility model will not further describe various possible combination manners.
[0066] In addition, various different embodiments of the utility model can also be combined in any manner, as long as it does not deviate from the technical concept of the utility model, and it should be considered as the disclosed content of the utility model.
Claims
1. A guider wheel detection apparatus characterized by comprising: The detection device comprises a detection mechanism (300) for detecting the size and flatness of the guide wheel body (102) fixed on the workbench (100) through a support (101), and the workbench (100) is rotatably provided with a limiting mechanism (200) for limiting guide wheel bodies (102) of different sizes; wherein The detection mechanism (300) comprises a diameter measuring member for measuring the diameter of the guide wheel body (102) and a flatness detection member for detecting the surface flatness of the guide wheel body (102).
2. A guider wheel detection device according to claim 1, characterized in that The diameter measuring member comprises an adjusting frame (302), a screw rod (305), a threaded block (306) and a detection wheel (308); wherein The mounting bracket (301) is coaxially fixed on the support (101) with the guide wheel body (102) fixed on the workbench (100), the bottom surface of the mounting bracket (301) is fixedly provided with the adjusting frame (302), the adjusting frame (302) is provided with a mounting groove (303), the screw rod (305) is rotatably arranged in the mounting groove (303), a servo motor (304) is fixedly arranged on the adjusting frame (302), the output shaft of the servo motor (304) is horizontally arranged at the top end and is fixedly connected with the screw rod (305), the threaded block (306) is threadedly arranged on the screw rod (305), the vertical rod (307) is slidably arranged on the threaded block (306), the detection wheel (308) is rotatably arranged on the vertical rod (307) and abuts against the side surface of the guide wheel body (102), and the flatness detection member is arranged in the threaded block (306) to detect the movement data of the vertical rod (307) and thus reflect the flatness of the guide wheel body (102).
3. A guider wheel detection device according to claim 2, characterised in that, The first scale line (313) is arranged on the adjusting frame (302) with the center of the mounting bracket (301) as the zero point, and the pointer (312) is fixedly arranged on the top surface of the threaded block (306) corresponding to the edge of the detection wheel (308) and is used in cooperation with the first scale line (313).
4. A guider wheel detection apparatus according to claim 2, wherein The flatness detection member comprises a first spring (310), a pressure sensor (311) and a sliding block (314); wherein The sliding groove (309) is arranged on the threaded block (306), the sliding block (314) is slidably arranged in the sliding groove (309), the inner side wall of the sliding groove (309) is fixedly provided with the first spring (310) having one end fixedly connected with the sliding block (314), and the pressure sensor (311) is fixedly arranged on the threaded block (306) for detecting the pressure of the first spring (310).
5. A guider wheel detection device according to claim 1, characterized in that The limiting mechanism (200) comprises a rotating member and a fixing member for fixing guide wheel bodies (102) of different sizes; wherein The rotating member comprises a driving motor (201) and a mounting disc (202); the driving motor (201) is fixedly arranged on the workbench (100), the output shaft of the driving motor (201) is vertically upward and the top end is fixedly provided with the mounting disc (202), and the mounting disc (202) is provided with the fixing member.
6. A guider wheel detection device according to claim 5, characterised in that The fixing part comprises a rotating disc (203), a driving rod (205) and a sliding rod (206); wherein, The driving motor (208) is fixedly arranged in the mounting disc (202), the output shaft of the driving motor (208) is fixedly provided with the rotating disc (203), a plurality of groups of inclined guide grooves (204) are formed on the rotating disc (203) along the circumferential direction, the driving rod (205) is slidably arranged in each group of guide grooves (204), the driving rod (205) is fixedly provided with the sliding rod (206) which is slidably arranged through the side wall of the mounting disc (202), and the top end of the sliding rod (206) is fixedly provided with the supporting plate (207) which abuts against the inner side wall of the guide wheel body (102).
7. A guider wheel inspection apparatus according to claim 1, wherein The workbench (100) is further fixedly provided with a measuring mechanism (400) for measuring the thickness of the guide wheel body (102).
8. A guider wheel detection apparatus according to claim 7, wherein The measuring mechanism (400) comprises a second spring (402), a movable rod (403) and a clamping block (404); wherein, The workbench (100) is provided with a sliding groove (401), the second spring (402) is fixedly arranged in the sliding groove (401), the top end of the second spring (402) is fixedly connected with the movable rod (403) which is in sliding fit with the inner side wall of the sliding groove (401), and the top end of the movable rod (403) is fixedly provided with the clamping block (404) which abuts against the surface of the guide wheel body (102).
9. A guider wheel detection apparatus according to claim 8, wherein The surface of the movable rod (403) is fixedly provided with the second scale line (405) which is zero with the bottom surface of the clamping block (404).
Citation Information
Patent Citations
Potential change type elevator guide wheel detection device
CN212058617U