Inspection functionality training device

By designing a sensory training device, and using adjustment and detection components to adjust and detect gaps and step differences, the problem of insufficient perception and judgment ability of employees was solved, thereby improving product quality and production efficiency.

CN223539262UActive Publication Date: 2025-11-11GAC TOYOTA MOTOR
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Patent Information

Application Number
CN202422106411.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-28
Publication Date
2025-11-11
Estimated Expiration
2034-08-28

AI Technical Summary

Technical Problem

The lack of training aids makes it impossible to improve employees' ability to perceive and judge gaps and step differences, which affects product quality and production efficiency.

Method used

Design a sensory training device, including a frame, a first adjustment mechanism, a second adjustment mechanism, and a detection mechanism, to adjust and detect gaps and step differences through the adjustment and detection components, thereby improving the perception and judgment abilities of employees.

Benefits of technology

The training device enhances employees' perception and judgment of gaps and step differences, thereby improving product quality and production efficiency. It has a simple structure, is flexible and convenient to operate, and is reusable.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an inspection functionality training device, and relates to the functionality inspection training technical field, the inspection functionality training device comprises a rack, a first adjusting mechanism, a second adjusting mechanism and a detection mechanism, the detection mechanism comprises a first detection assembly and a second detection assembly, the first adjusting mechanism comprises a first adjusting assembly and a first adjusting plate, and the second adjusting mechanism comprises a second adjusting assembly and a second adjusting plate. According to the technical scheme, the first adjusting assembly is adopted to drive the first adjusting plate to move in the left-right direction relative to the second adjusting plate so as to adjust the gap between the first adjusting plate and the second adjusting plate; the second adjusting assembly is adopted to drive the second adjusting plate to move up and down relative to the first adjusting plate so as to adjust the segment difference between the first adjusting plate and the second adjusting plate, so that the purpose of training the gap and segment difference skill level of staff is achieved, the functionality level of the staff is improved, and the device is simple in structure, flexible, convenient and rapid to operate and high in practicability. And repeated use can be realized.
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Description

Technical Field

[0001] This utility model relates to the field of functional examination and training technology, and in particular to a device for examining functional training. Background Technology

[0002] In industries with high requirements for precision and fit, such as automobile manufacturing, mold processing, and electronic product assembly, the sensory abilities of employees are highly demanding. Only by improving their sensory level can their sensitivity and judgment of gaps and differences be enhanced, thereby improving product quality and production efficiency. To achieve this goal, employees need to be trained accordingly. However, there is currently a lack of corresponding training aids, which makes it impossible to improve employees' perception and judgment of gaps and differences.

[0003] Therefore, how to improve employees' ability to perceive and judge gaps and step differences through training aids is an urgent problem to be solved. Utility Model Content

[0004] The main purpose of this invention is to propose a sensory training device for inspection, which aims to solve the problem of how to improve employees' perception and judgment of gaps and differences through training aids.

[0005] To achieve the above objectives, this utility model proposes a functional training device for examination. The functional training device includes a frame, a first adjustment mechanism, a second adjustment mechanism, and a detection mechanism. The detection mechanism includes a first detection component and a second detection component. The first adjustment mechanism includes a first adjustment component and a first adjustment plate. The first adjustment plate is slidably engaged with the frame via the first adjustment component. The second adjustment mechanism includes a second adjustment component and a second adjustment plate. The second adjustment plate is slidably engaged with the frame via the second adjustment component. The first adjustment component is used to move the first adjustment plate relative to the second adjustment plate along a first direction to adjust the gap between the first and second adjustment plates. The second adjustment component is used to move the second adjustment plate relative to the first adjustment plate along a second direction to adjust the step difference between the first and second adjustment plates. The first and second directions are perpendicular. The first detection component is used to detect the movement distance of the first adjustment plate along the first direction, and the second detection component is used to detect the movement distance of the second adjustment plate along the second direction.

[0006] In one embodiment, the first adjustment assembly includes an adjustment seat, a first driving member, and a movable member. The adjustment seat is connected to the frame, and the movable member is slidably engaged with the adjustment seat. The first adjustment plate is driven to the first driving member through the movable member. The first driving member is used to drive the first adjustment plate to move relative to the adjustment seat along the first direction through the movable member to adjust the gap between the first adjustment plate and the second adjustment plate.

[0007] In one embodiment, the first driving member includes a first knob and a first screw. The first screw is threadedly connected to the adjusting seat. One end of the first screw is connected to the first knob, and the other end of the first screw is rotatably mounted on the movable member. The first knob is used to drive the movable member to slide relative to the adjusting seat in the first direction via the first screw to adjust the gap between the first adjusting plate and the second adjusting plate.

[0008] In one embodiment, the movable component is provided with a slider, the adjusting seat is provided with a slide rail, and the slider slides in cooperation with the slide rail.

[0009] In one embodiment, the second adjustment assembly includes a mounting base, a second drive member, and a lifting base. The mounting base is connected to the frame, and the lifting base is slidably engaged with the mounting base. The second adjustment plate is driven to the second drive member via the lifting base. The second drive member is used to drive the second adjustment plate to move relative to the first adjustment plate in the second direction via the lifting base to adjust the step difference between the first adjustment plate and the second adjustment plate.

[0010] In one embodiment, the second driving member includes a second knob and a second screw. The second screw is threadedly connected to the mounting base. One end of the second screw is connected to the second knob, and the other end of the second screw is rotatably mounted on the lifting base. The second knob drives the lifting base to slide relative to the first adjusting plate in the second direction through the second screw to adjust the step difference between the first adjusting plate and the second adjusting plate.

[0011] In one embodiment, the second adjustment component further includes a guide sleeve connected to the lifting seat. The mounting seat includes a guide portion and a connecting portion. The frame and the connecting portion are both connected to the guide portion. The connecting portion is slidably engaged with the lifting seat. The guide sleeve is sleeved on the guide portion, and the guide sleeve is slidably engaged with the guide portion.

[0012] In one embodiment, the lifting seat includes a lifting platform, a leveling assembly, and a connecting frame. The lifting platform is connected to the second driving component. The leveling assembly is located between the lifting platform and the connecting frame. Both sides of the leveling assembly are connected to the lifting platform and the connecting frame, respectively. The connecting frame is connected to the second adjusting plate. The leveling assembly can adjust the levelness of the second adjusting plate.

[0013] In one embodiment, the first detection component includes a first measuring frame and a first measuring element. The first measuring frame is connected to the first adjustment component. The first measuring element includes a first support and a first dial indicator. The first dial indicator is connected to the frame through the first support. The first measuring frame abuts against the first measuring head of the first dial indicator. The first dial indicator is used to detect the sliding distance of the first measuring frame along the first direction.

[0014] In one embodiment, the second detection component includes a second measuring frame and a second measuring element. The second measuring frame is connected to the second adjustment component. The second measuring element includes a second support and a second dial indicator. The second dial indicator is connected to the frame via the second support. The second measuring frame abuts against the second measuring head of the second dial indicator. The second dial indicator is used to detect the sliding distance of the second measuring frame along the second direction.

[0015] In this embodiment of the invention, the first direction is left-right, and the second direction is up-down. When training employees in gap skills, the second adjustment mechanism is fixed, and the reading of the first detection component is covered. Based on the required gap distance, the first adjustment component moves the first adjustment plate relative to the second adjustment plate left-right to adjust the gap between the first and second adjustment plates. The first detection component can detect the distance the first adjustment plate moves in the left-right direction. After adjustment, the first detection component is opened, and the reading of the first detection component is observed to see if the required gap distance has been reached, thereby achieving the purpose of training employees in gap skills. Similarly, when training employees in step difference skills, the first adjustment mechanism is fixed, and the reading of the second detection component is covered. Based on the required step difference distance, the second adjustment component moves the second adjustment plate relative to the first adjustment plate up-down to adjust the step difference between the first and second adjustment plates. The second detection component can detect the distance the second adjustment plate moves up-down. After adjustment, the second detection component is opened, and the reading of the second detection component is observed to see if the required step difference distance has been reached, thereby achieving the purpose of training employees in step difference skills. This utility model embodiment uses a first adjusting component to move a first adjusting plate relative to a second adjusting plate in the left-right direction to adjust the gap between the first and second adjusting plates. A first detection component detects the distance the first adjusting plate moves in the left-right direction, thereby training employees' gap-finding skills. Similarly, a second adjusting component moves a second adjusting plate relative to the first adjusting plate in the up-down direction to adjust the step difference between the first and second adjusting plates. A second detection component also detects the distance the second adjusting plate moves in the up-down direction, thereby training employees' step-difference skills. By employing this inspection sensory training device, employees' perception and judgment abilities regarding gaps and step differences can be improved, thereby enhancing their sensory abilities, increasing product quality and production efficiency. Furthermore, the inspection sensory training device has a simple structure, is flexible, convenient, and quick to operate, and is reusable. Attached Figure Description

[0016] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0017] Figure 1 This is a schematic diagram of the structure of an embodiment of the functional training device of this utility model;

[0018] Figure 2 This is a schematic diagram of the structure of an embodiment of the first adjustment mechanism of the functional training device of this utility model.

[0019] Figure 3 This is a schematic diagram of the structure of an embodiment of the second adjustment mechanism of the functional training device of this utility model;

[0020] Figure 4 This is a schematic diagram of the structure of an embodiment of the frame of the functional training device of this utility model;

[0021] Figure 5 for Figure 1 A magnified view of a portion of point A in the middle.

[0022] Explanation of icon numbers:

[0023] 100. Inspection Functional Training Device; 1. Frame; 11. Clearance Hole; 2. First Adjustment Mechanism; 21. First Adjustment Component; 211. Adjustment Seat; 2111. Slide Rail; 212. First Drive Component; 2121. First Knob; 2122. First Screw; 213. Movable Component; 2131. Slider; 2132. Horizontal Plate; 2133. Mounting Plate; 22. First Adjustment Plate; 3. Second Adjustment Mechanism; 31. Second Adjustment Component; 311. Mounting Seat; 3111. Guide Part; 3112. Connecting Part; 312. Second Drive Component; 3121. Second Knob 3122, Second screw; 313, Lifting seat; 3131, Lifting platform; 3132, Leveling assembly; 3133, Connecting frame; 314, Guide sleeve; 32, Second adjusting plate; 4, Detection mechanism; 41, First detection assembly; 411, First measuring frame; 412, First measuring piece; 4121, First support; 4122, First dial indicator; 41221, First measuring head; 42, Second detection assembly; 421, Second measuring frame; 422, Second measuring piece; 4221, Second support; 4222, Second dial indicator; 42221, Second measuring head.

[0024] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.

[0026] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, and back), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.

[0027] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.

[0028] In industries with high requirements for precision and fit, such as automobile manufacturing, mold processing, and electronic product assembly, the sensory abilities of employees are highly demanding. Only by improving their sensory level can their sensitivity and judgment of gaps and differences be enhanced, thereby improving product quality and production efficiency. To achieve this goal, employees need to be trained accordingly. However, there is currently a lack of corresponding training aids, which makes it impossible to improve employees' perception and judgment of gaps and differences.

[0029] The main purpose of this invention is to propose a sensory training device for inspection, which aims to solve the problem of how to improve employees' perception and judgment of gaps and differences through training aids.

[0030] Please see Figure 1In one embodiment of this utility model, the functional training device 100 includes a frame 1, a first adjustment mechanism 2, a second adjustment mechanism 3, and a detection mechanism 4. The detection mechanism 4 includes a first detection component 41 and a second detection component 42. The first adjustment mechanism 2 includes a first adjustment component 21 and a first adjustment plate 22. The first adjustment plate 22 is slidably engaged with the frame 1 through the first adjustment component 21. The second adjustment mechanism 3 includes a second adjustment component 31 and a second adjustment plate 32. The second adjustment plate 32 is slidably engaged with the frame 1 through the second adjustment component 31. The first adjustment component 21 is used to drive the first adjustment plate 22 to move relative to the second adjustment plate 32 along a first direction to adjust the gap between the first adjustment plate 22 and the second adjustment plate 32. The second adjustment component 31 is used to drive the second adjustment plate 32 to move relative to the first adjustment plate 22 along a second direction to adjust the step difference between the first adjustment plate 22 and the second adjustment plate 32. The first direction and the second direction are perpendicular. The first detection component 41 is used to detect the moving distance of the first adjustment plate 22 along the first direction. The second detection component 42 is used to detect the moving distance of the second adjustment plate 32 along the second direction.

[0031] In this embodiment of the invention, the first direction is left-right, and the second direction is up-down. During gap skill level training for employees, the second adjustment mechanism 3 is fixed, and the reading of the first detection component 41 is covered. Based on the required gap distance, the first adjustment component 21 drives the first adjustment plate 22 to move left-right relative to the second adjustment plate 32 to adjust the gap between the first and second adjustment plates 22. The first detection component 41 can detect the distance the first adjustment plate 22 moves in the left-right direction. After adjustment, the first detection component 41 is opened, and it is observed whether the reading of the first detection component 41 reaches the required gap distance, thereby achieving… The purpose is to train employees' gap difference skill level. When training employees' gap difference skill level, the first adjustment mechanism 2 is fixed and the reading of the second detection component 42 is covered. According to the required gap difference distance, the second adjustment component 31 drives the second adjustment plate 32 to move relative to the first adjustment plate 22 in the vertical direction to adjust the gap difference between the first adjustment plate 22 and the second adjustment plate 32. The second detection component 42 can detect the vertical movement distance of the second adjustment plate 32. After the adjustment is completed, the second detection component 42 is opened and it is observed whether the reading of the second detection component 42 reaches the required gap difference distance, thereby achieving the purpose of training employees' gap difference skill level.

[0032] The technical solution of this utility model uses a first adjusting component 21 to move a first adjusting plate 22 relative to a second adjusting plate 32 in the left-right direction to adjust the gap between the first adjusting plate 22 and the second adjusting plate 32, and a first detection component 41 to detect the movement distance of the first adjusting plate 22 in the left-right direction, thereby achieving the purpose of training employees' gap-finding skills. It also uses a second adjusting component 31 to move a second adjusting plate 32 relative to the first adjusting plate 22 in the up-down direction to adjust the step difference between the first adjusting plate 22 and the second adjusting plate 32, and a second detection component 42 to detect the movement distance of the second adjusting plate 32 in the up-down direction, thereby achieving the purpose of training employees' step difference skills. By using the inspection sensory training device 100, it can improve employees' perception and judgment ability of gaps and step differences, thereby improving employees' sensory level, improving product quality and production efficiency. Furthermore, the inspection sensory training device 100 has a simple structure, is flexible, convenient, and quick to operate, and is reusable.

[0033] Please see Figure 2 In one embodiment, the first adjustment assembly 21 includes an adjustment seat 211, a first driving member 212, and a movable member 213. The adjustment seat 211 is connected to the frame 1, and the movable member 213 is slidably engaged with the adjustment seat 211. The first adjustment plate 22 is drivenly connected to the first driving member 212 via the movable member 213. The first driving member 212 is used to drive the first adjustment plate 22 to move relative to the adjustment seat 211 in a first direction via the movable member 213 to adjust the gap between the first adjustment plate 22 and the second adjustment plate 32. Specifically, in order to enable the first adjustment plate 22 to move relative to the second adjustment seat 211 in a first direction, the first adjustment plate 22 is adjusted to move relative to the second adjustment seat 211. The adjustment plate 32 moves in the left and right direction to adjust the gap between the first adjustment plate 22 and the second adjustment plate 32, thereby achieving the purpose of training the employee's gap skill level. The adjustment seat 211 is connected to the frame 1, the movable part 213 is slidably engaged with the adjustment seat 211, the first adjustment plate 22 is connected to the movable part 213, and the first drive part 212 is drivenly connected to the movable part 213, so that the first drive part 212 can drive the first adjustment plate 22 to move in the left and right direction relative to the adjustment seat 211 through the movable part 213 to adjust the gap between the first adjustment plate 22 and the second adjustment plate 32.

[0034] In one embodiment, the first driving member 212 includes a first knob 2121 and a first screw 2122. The first screw 2122 is threadedly connected to the adjusting seat 211. One end of the first screw 2122 is connected to the first knob 2121, and the other end of the first screw 2122 is rotatably mounted on the movable member 213. The first knob 2121 is used to drive the movable member 213 to slide relative to the adjusting seat 211 in a first direction via the first screw 2122 to adjust the gap between the first adjusting plate 22 and the second adjusting plate 32. Specifically, the first driving member 212 is the power source of the first adjusting assembly 21. To facilitate driving, a first knob 2121 is provided at one end of the first screw 2122. By rotating the first knob 2121, the rotational stroke of the first screw 2122 can be adjusted, thereby changing the moving distance of the movable member 213 in the left and right directions. In this embodiment, a first rotating sleeve is provided at the other end of the first screw 2122. By providing the first rotating sleeve, the first screw 2122 can rotate flexibly relative to the movable part 213, reducing the friction and wear generated between the first screw 2122 and the movable part 213 during the movement, and improving the durability and reliability of the first adjusting mechanism 2. The first rotating sleeve is sleeved on the outer wall of the first screw 2122. The movable part 213 is provided with a mounting hole. The first rotating sleeve is rotatably connected to the wall of the mounting hole, thereby converting the rotation of the first screw 2122 into the horizontal movement of the movable part 213. The first knob 2121 drives the first adjusting plate 22 to slide relative to the adjusting seat 211 in the left and right direction through the first screw 2122 and the movable part 213 to adjust the gap between the first adjusting plate 22 and the second adjusting plate 32. The structure is simple, the movement is smooth, the operation is convenient, and the adjustment is easy.

[0035] In this embodiment, the movable component 213 includes a horizontal plate 2132 and a mounting plate 2133. The horizontal plate 2132 is slidably engaged with the adjusting seat 211. The first screw 2122 is rotatably mounted on the horizontal plate 2132. The side of the horizontal plate 2132 facing away from the adjusting seat 211 is detachably connected to the mounting plate 2133. The mounting plate 2133 is connected to the first adjusting plate 22. The first driving component 212 drives the first adjusting plate 22 to move relative to the adjusting seat 211 in a first direction through the horizontal plate 2132 and the mounting plate 2133 to adjust the gap between the first adjusting plate 22 and the second adjusting plate 32. By setting the mounting plate 2133 and the horizontal plate 2132 to be detachably connected by bolts, the mounting plate 2133 of different heights can be replaced, thereby matching the different height step requirements of the second adjusting plate 32.

[0036] In one embodiment, a slider 2131 is provided on the movable part 213, and a slide rail 2111 is provided on the adjusting seat 211. The slider 2131 and the slide rail 2111 are slidably engaged. Specifically, by setting the slider 2131 and the slide rail 2111 to slide and engage, the movement of the movable part 213 in the left and right directions is limited and guided. The structure is simple, easy to install, can achieve high-precision linear motion, slides smoothly, and is not prone to errors.

[0037] Please see Figure 3 In one embodiment, the second adjustment assembly 31 includes a mounting base 311, a second drive member 312, and a lifting base 313. The mounting base 311 is connected to the frame 1, and the lifting base 313 is slidably engaged with the mounting base 311. The second adjustment plate 32 is drivenly connected to the second drive member 312 via the lifting base 313. The second drive member 312 is used to drive the second adjustment plate 32 to move relative to the first adjustment plate 22 in a second direction via the lifting base 313 to adjust the step difference between the first adjustment plate 22 and the second adjustment plate 32. Specifically, in order to enable the second adjustment plate 32 to move relative to the first adjustment plate 22 in a second direction, the second adjustment plate 32 is adjusted to adjust the step difference between the first adjustment plate 22 and the second adjustment plate 32. The section plate 22 moves up and down to adjust the step difference between the first adjustment plate 22 and the second adjustment plate 32, thereby achieving the purpose of training employees' step difference skill level. The mounting base 311 is connected to the frame 1, the lifting base 313 is slidably engaged with the mounting base 311, the second adjustment plate 32 is connected to the lifting base 313, and the second drive member 312 is drivenly connected to the lifting base 313, so that the second drive member 312 can drive the second adjustment plate 32 to move up and down relative to the mounting base 311 through the lifting base 313 to adjust the step difference between the first adjustment plate 22 and the second adjustment plate 32.

[0038] Please see Figure 4 In this embodiment, in order to enable the lifting seat 313 to move up and down relative to the frame 1, a clearance hole 11 is provided on the frame 1. By providing the clearance hole 11, interference between the lifting seat 313 and the frame 1 can be avoided during the up and down movement, thereby ensuring the stable operation of the examination function training device 100.

[0039] In one embodiment, the second driving member 312 includes a second knob 3121 and a second screw 3122. The second screw 3122 is threadedly connected to the mounting base 311. One end of the second screw 3122 is connected to the second knob 3121, and the other end of the second screw 3122 is rotatably mounted on the lifting base 313. The second knob 3121 drives the lifting base 313 to slide relative to the first adjusting plate 22 in a second direction via the second screw 3122 to adjust the step difference between the first adjusting plate 22 and the second adjusting plate 32. Specifically, the second driving member 312 is the power source for the second adjusting assembly 31. To facilitate driving, a second knob 3121 is provided at one end of the second screw 3122. By rotating the second knob 3121, the rotational stroke of the second screw 3122 can be adjusted, thereby changing the vertical movement distance of the lifting base 313. In this embodiment... In this example, a second rotating sleeve is provided at the other end of the second screw 3122. By providing the second rotating sleeve, the second screw 3122 can rotate flexibly relative to the lifting seat 313, reducing the friction and wear generated between the second screw 3122 and the lifting seat 313 during the movement, and improving the durability and reliability of the second adjusting mechanism 3. The second rotating sleeve is sleeved on the outer wall of the second screw 3122. A second mounting hole is provided on the lifting seat 313. The second rotating sleeve is rotatably connected to the hole wall of the second mounting hole, thereby converting the rotation of the second screw 3122 into the up and down movement of the lifting seat 313. The second knob 3121 drives the second adjusting plate 32 to slide in the up and down direction relative to the mounting seat 311 through the second screw 3122 and the lifting seat 313 to adjust the step difference between the first adjusting plate 22 and the second adjusting plate 32. The structure is simple, the movement is smooth, the operation is convenient, and the adjustment is easy.

[0040] In one embodiment, the second adjustment assembly 31 further includes a guide sleeve 314, which is connected to the lifting seat 313. The mounting base 311 includes a guide portion 3111 and a connecting portion 3112. The frame 1 and the connecting portion 3112 are both connected to the guide portion 3111. The connecting portion 3112 is slidably engaged with the lifting seat 313. The guide sleeve 314 is sleeved on the guide portion 3111, and the guide sleeve 314 is slidably engaged with the guide portion 3111. Specifically, by setting the guide sleeve 314 to be slidably engaged with the guide portion 3111, the movement of the lifting seat 313 in the vertical direction is limited and guided. The structure is simple and easy to install, and it can ensure that the second adjustment plate 32 moves smoothly up and down.

[0041] In one embodiment, the lifting seat 313 includes a lifting platform 3131, a leveling component 3132, and a connecting frame 3133. The lifting platform 3131 is connected to the second driving member 312. The leveling component 3132 is located between the lifting platform 3131 and the connecting frame 3133. Both sides of the leveling component 3132 are connected to the lifting platform 3131 and the connecting frame 3133, respectively. The connecting frame 3133 is connected to the second adjusting plate 32. The leveling component 3132 can adjust the levelness of the second adjusting plate 32. Specifically, to improve the accuracy of the level of skill in step difference... The leveling of the second adjusting plate 32 is improved by setting a leveling component 3132 between the lifting platform 3131 and the connecting frame 3133. In this embodiment, the leveling component 3132 can be a leveling screw. Four leveling screws are set at intervals between the lifting platform 3131 and the connecting frame 3133. The height or angle of the screw is changed by rotating the nut on the leveling screw, thereby achieving the purpose of leveling the second adjusting plate 32. The structure is simple, the operation is convenient, and the height of the second adjusting plate 32 can be accurately adjusted, thereby improving the accuracy of the leveling skill.

[0042] Please see Figure 1 and Figure 5 In one embodiment, the first detection component 41 includes a first measuring frame 411 and a first measuring element 412. The first measuring frame 411 is connected to the first adjustment component 21. The first measuring element 412 includes a first support 4121 and a first dial indicator 4122. The first dial indicator 4122 is connected to the frame 1 via the first support 4121. The first measuring frame 411 abuts against the first measuring head 41221 of the first dial indicator 4122. The first dial indicator 4122 is used to detect the sliding distance of the first measuring frame 411 along a first direction. Specifically, the first measuring frame 411 is connected to the first adjustment component 21 so that the first measuring frame 411 can move relative to the frame 1 in the left-right direction with the first adjustment component 21. The dial indicator 4122 is connected to the frame 1 via the first bracket 4121, thereby ensuring that the position of the first dial indicator 4122 is fixed. The first dial indicator 4122 measures the left and right movement distance by extending and retracting the first measuring head 41221, and then displays the reading. Since the first measuring frame 411 abuts against the first measuring head 41221 of the first dial indicator 4122, when the first measuring frame 411 moves in the left and right direction, it can push the first measuring head 41221 to extend or retract relative to the first dial indicator 4122, thereby changing the reading of the first dial indicator 4122. By visually observing the left and right gaps of the first adjusting plate 22 and the second adjusting plate 32 through the reading displayed by the first dial indicator 4122, the gap skill level of employees can be improved.

[0043] In one embodiment, the second detection component 42 includes a second measuring frame 421 and a second measuring element 422. The second measuring frame 421 is connected to the second adjustment component 31. The second measuring element 422 includes a second support 4221 and a second dial indicator 4222. The second dial indicator 4222 is connected to the frame 1 via the second support 4221. The second measuring frame 421 abuts against the second measuring head 42221 of the second dial indicator 4222. The second dial indicator 4222 is used to detect the sliding distance of the second measuring frame 421 along a second direction. Specifically, the second measuring frame 421 is connected to the second adjustment component 31 so that the second measuring frame 421 can move vertically relative to the frame 1 with the second adjustment component 31. The dial indicator 4222 is connected to the frame 1 via the second bracket 4221, thus ensuring that the position of the second dial indicator 4222 is fixed. The second dial indicator 4222 measures the vertical movement distance by extending and retracting the second measuring head 42221, and then displays the reading. Since the second measuring bracket 421 abuts against the second measuring head 42221 of the second dial indicator 4222, when the second measuring bracket 421 moves in the vertical direction, it can push the second measuring head 42221 to extend or retract relative to the second dial indicator 4222, thereby changing the reading of the second dial indicator 4222. By visually observing the height difference between the first adjustment plate 22 and the second adjustment plate 32 through the reading displayed by the second dial indicator 4222, the employee's level of skill in leveling differences can be improved.

[0044] According to one embodiment of the present invention, the first detection component 41 and the second detection component 42 can also employ other measuring instruments for detecting distance or height, such as vernier calipers, micrometers, dial indicators, etc., to detect the gap distance and step distance between the first adjustment plate 22 and the second adjustment plate 32.

[0045] The above description is merely an exemplary embodiment of the present utility model and does not limit the patent scope of the present utility model. Any equivalent structural transformations made based on the technical concept of the present utility model and the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.

Claims

1. A sensory training device, characterized in that, The examination function training device includes a frame, a first adjustment mechanism, a second adjustment mechanism, and a detection mechanism. The detection mechanism includes a first detection component and a second detection component. The first adjustment mechanism includes a first adjustment component and a first adjustment plate. The first adjustment plate is slidably engaged with the frame via the first adjustment component. The second adjustment mechanism includes a second adjustment component and a second adjustment plate. The second adjustment plate is slidably engaged with the frame via the second adjustment component. The first adjustment component is used to drive the first adjustment plate to move relative to the second adjustment plate along a first direction to adjust the gap between the first adjustment plate and the second adjustment plate. The second adjustment component is used to drive the second adjustment plate to move relative to the first adjustment plate along a second direction to adjust the step difference between the first adjustment plate and the second adjustment plate. The first direction and the second direction are perpendicular. The first detection component is used to detect the movement distance of the first adjustment plate along the first direction. The second detection component is used to detect the movement distance of the second adjustment plate along the second direction. The second adjustment component includes a mounting base, a second drive component, and a lifting base. The mounting base is connected to the frame, and the lifting base is slidably engaged with the mounting base. The second adjustment plate is connected to the second drive component via the lifting base. The second drive component is used to drive the second adjustment plate to move relative to the first adjustment plate in the second direction via the lifting base to adjust the step difference between the first adjustment plate and the second adjustment plate. The second adjustment component further includes a guide sleeve, which is connected to the lifting seat. The mounting seat includes a guide portion and a connecting portion. The frame and the connecting portion are both connected to the guide portion. The connecting portion is slidably engaged with the lifting seat. The guide sleeve is sleeved on the guide portion, and the guide sleeve is slidably engaged with the guide portion.

2. The examination function training device as described in claim 1, characterized in that, The first adjustment assembly includes an adjustment seat, a first driving member, and a movable member. The adjustment seat is connected to the frame, and the movable member is slidably engaged with the adjustment seat. The first adjustment plate is connected to the first driving member via the movable member. The first driving member is used to drive the first adjustment plate to move relative to the adjustment seat along the first direction via the movable member to adjust the gap between the first adjustment plate and the second adjustment plate.

3. The examination function training device as described in claim 2, characterized in that, The first driving component includes a first knob and a first screw. The first screw is threadedly connected to the adjusting seat. One end of the first screw is connected to the first knob, and the other end of the first screw is rotatably mounted on the movable component. The first knob is used to drive the movable component to slide relative to the adjusting seat in the first direction via the first screw to adjust the gap between the first adjusting plate and the second adjusting plate.

4. The examination function training device as described in claim 2, characterized in that, The movable component is provided with a slider, and the adjusting seat is provided with a slide rail, with the slider slidingly engaged with the slide rail.

5. The examination function training device as described in claim 1, characterized in that, The second driving component includes a second knob and a second screw. The second screw is threadedly connected to the mounting base. One end of the second screw is connected to the second knob, and the other end of the second screw is rotatably mounted on the lifting base. The second knob drives the lifting base to slide relative to the first adjusting plate in the second direction through the second screw to adjust the step difference between the first adjusting plate and the second adjusting plate.

6. The examination function training device as described in claim 1, characterized in that, The lifting seat includes a lifting platform, a leveling component, and a connecting frame. The lifting platform is connected to the second driving component. The leveling component is located between the lifting platform and the connecting frame. Both sides of the leveling component are connected to the lifting platform and the connecting frame, respectively. The connecting frame is connected to the second adjusting plate. The leveling component can adjust the levelness of the second adjusting plate.

7. The examination function training device as described in any one of claims 1 to 6, characterized in that, The first detection component includes a first measuring frame and a first measuring element. The first measuring frame is connected to the first adjustment component. The first measuring element includes a first support and a first dial indicator. The first dial indicator is connected to the frame through the first support. The first measuring frame abuts against the first measuring head of the first dial indicator. The first dial indicator is used to detect the sliding distance of the first measuring frame along the first direction.

8. The examination function training device as claimed in any one of claims 1 to 6, characterized in that, The second detection component includes a second measuring frame and a second measuring element. The second measuring frame is connected to the second adjustment component. The second measuring element includes a second support and a second dial indicator. The second dial indicator is connected to the frame through the second support. The second measuring frame abuts against the second measuring head of the second dial indicator. The second dial indicator is used to detect the sliding distance of the second measuring frame along the second direction.