Psychological training test device

By using a pressure-retaining bend system and a high-pressure gas-driven motion device, combined with buttons and sound effects, the problem of existing devices being unable to verify attention has been solved. This enables effective training and verification of attention and reaction time, improving the reliability and practicality of training results.

CN119770821BActive Publication Date: 2026-05-19LIANYUNGANG NORMAL COLLEGE
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
LIANYUNGANG NORMAL COLLEGE
Filing Date
2025-02-19
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Existing psychological training devices cannot effectively verify whether trainees are concentrating, resulting in a lack of evidence for training results.

Method used

The system employs a pressure-retaining bend tube system, which uses high-pressure gas to drive a motion device. The extension and retraction of the protruding seat, combined with button and horn sound effects, enables the training and verification of the trainee's attention and reaction ability.

Benefits of technology

It enabled effective training and verification of trainees' attention, improved the reliability and evidence of training results, and enhanced the training effect on memory and reaction speed.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of psychological training equipment, and discloses a psychological training testing device which comprises a pressure limiting device, the bottom of the pressure limiting device is fixedly installed with a hollow rod pressure guiding device, the inside of the hollow rod pressure guiding device is movably installed with a separation device, the front of the hollow rod pressure guiding device is fixedly installed with a sealing plate, and the front of the sealing plate is fixedly installed with an expansion machine. The expansion machine output shaft is retracted, the separation device as a whole moves synchronously with the matching groove, high-pressure gas in the pressure storage elbow pipe enters the upper area of the separation device through the separation device, the protruding seat is extended from the top of the stroke sleeve, so that a protrusion is formed on the top of the top plate, at this time, the trainee makes a response after observing the protrusion on the top of the top plate, presses the protrusion with hands to restore the protrusion, the trainee trains the response ability of the trainee by pressing the protruding seat in the extended state, and the attention training result of the trainee can be verified in reverse.
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Description

Technical Field

[0001] This application relates to the field of psychological training equipment technology, and more particularly to a psychological training testing device. Background Technology

[0002] Some children are born with attention deficit hyperactivity disorder (ADHD), which clinically manifests as inattention, hyperactivity, emotional instability, cognitive impairment, echolalia, and deviant emotional behavior. To treat this condition, psychological training and testing devices are often used, such as the psychological attention training device disclosed in CN119345559A. This device trains the trainee's attention by extending and retracting different striking discs. However, this device's training method is relatively simplistic and cannot verify whether the trainee's attention is focused on the rising of the striking discs, resulting in unreliable training test results. Therefore, this application proposes a psychological training and testing device to address the aforementioned problems. Summary of the Invention

[0003] This application proposes a psychological training testing device that has the advantage of being able to verify whether the trainee's attention is focused, thereby solving the problem that traditional devices cannot verify this and thus cannot obtain evidence-based training test results.

[0004] To achieve the above objectives, this application adopts the following technical solution: a psychological training and testing device, including a pressure storage bend, wherein a pressure supply machine is fixedly installed at the starting end of the pressure storage bend, and when the pressure supply machine is running, compressed gas is injected into the interior of the pressure storage bend, so that the interior of the pressure storage bend is in a high-pressure state.

[0005] Specifically, a sealing end cap is fixedly installed at the end of the pressure storage bend. The sealing end cap can effectively prevent the internal gas of the pressure storage bend from leaking out and prevent pressure loss.

[0006] Specifically, a connecting piece is fixedly installed on the top of the pressure storage bend near the pressure supply machine and the sealing end cover. The connecting piece serves to fix the top plate and the pressure storage bend together.

[0007] Specifically, a motion device is fixedly installed on the top of the pressure storage bend, and the motion device is connected to the inner cavity of the pressure storage bend. A top plate is fixedly installed on the top of the connecting piece. An adjustment knob is provided on the front of the top plate, and a speaker is provided on the back of the top plate. The speaker can play two sound effects: failure and success.

[0008] Furthermore, the number of motion devices is nine, and they are distributed in a linear array along the extension direction of the pressure-storing bend.

[0009] Specifically, the top of the top plate has a circular hole, which is matched with the moving device.

[0010] Specifically, the rotation of the horn can adjust the number of motion devices activated.

[0011] Furthermore, the motion device includes a pressure limiting device, and a pressing device is movably installed inside the pressure limiting device. When the pressing device is subjected to high pressure, it will extend out from inside the pressure limiting device and protrude from the top of the top plate.

[0012] Specifically, a hollow rod pressure guiding device is fixedly installed at the bottom of the pressure limiting device, a partition device is movably installed inside the hollow rod pressure guiding device, a sealing plate is fixedly installed on the front of the hollow rod pressure guiding device, and a telescopic mechanism is fixedly installed on the front of the sealing plate. The telescopic mechanism can move at both ends, and the distance of each movement is L / 2.

[0013] Specifically, the telescopic machine output shaft passes through the sealing plate and extends into the interior of the hollow rod pressure guiding device. A stroke seat is fixedly installed at one end of the telescopic machine output shaft, and mating grooves are provided on both sides of the outer surface of the stroke seat.

[0014] Furthermore, the pressure limiting device includes a travel sleeve, the inner wall of which has a pressure limiting groove, and the inner wall of the travel sleeve has a pressure limiting hole located above the pressure limiting groove. When both the pressure limiting groove and the pressure limiting hole are in the open state, the high-pressure gas can be discharged to the outside.

[0015] Specifically, a connecting base plate is fixedly installed on the inner wall of the stroke sleeve near the bottom, a bottom chamber is fixedly installed on the outer wall of the stroke sleeve near the bottom, and a connecting plate is fixedly installed on the outer wall of the bottom chamber near the bottom. The connecting plate is fixedly connected to the pressure guiding chamber by bolts.

[0016] Specifically, the bottom of the connecting plate is fixedly connected to the top of the hollow rod pressure guiding device, and a pressing device is movably installed inside the stroke sleeve, with the top of the pressing device extending out from the top of the stroke sleeve.

[0017] Furthermore, the pressing device includes a protruding seat, a first return spring is engaged at the bottom of the protruding seat near the outer side, a hollow rod is fixedly installed at the bottom of the protruding seat near the center, a spring pressure rod is provided at the inner cavity of the hollow rod near the bottom, a transverse frame is fixedly installed on the outer wall of the hollow rod near the bottom, side arms are fixedly installed on both sides of the transverse frame near the front end, and contact seats are fixedly installed at the bottom of the side arms.

[0018] Furthermore, the hollow rod pressure guiding device includes a pressure guiding chamber, a connecting chamber at the bottom of the pressure guiding chamber, the connecting chamber communicating with the inner cavity of the pressure guiding chamber, the bottom of the connecting chamber being fixedly connected to the top of the pressure storage bend and communicating with the inner cavity of the pressure storage bend, a stroke chamber being provided on the front of the pressure guiding chamber, the front of the stroke chamber being fixedly connected to a sealing plate, and limit seats being fixedly installed on both sides of the inner wall of the pressure guiding chamber, a downward pressure rod being movably installed inside the limit seats, and a contact seat being located directly above the downward pressure rod.

[0019] Specifically, a second return spring is engaged at the top of the pressing rod, and the bottom of the second return spring is engaged with the top of the limiting seat.

[0020] Specifically, the second return spring is initially in a compressed state.

[0021] Specifically, the travel chamber limits the displacement direction of the separating device.

[0022] Furthermore, the separating device includes a separating plate, which initially divides the inner cavity of the pressure guiding chamber into two independent parts. At this time, the high-pressure gas inside the pressure storage bend cannot enter the upper area of ​​the pressure guiding chamber through the separating plate.

[0023] Specifically, the front of the partition plate has a circular deep hole, and the output shaft of the telescopic machine extends into the interior of the circular deep hole.

[0024] Specifically, a bypass hole is provided on the inner wall of the circular deep hole near the bottom. Side grooves are provided on both sides of the outer surface of the partition plate at positions corresponding to the bypass hole. An arc-shaped retaining plate is movably installed inside the bypass hole. The front end of the arc-shaped retaining plate is inserted into the interior of the circular deep hole. A connecting rod is fixedly installed at the end of the arc-shaped retaining plate. The connecting rod extends into the interior of the side groove. A stroke block is fixedly installed on the outer surface of the connecting rod. The top of the stroke block is set as an inclined surface. When the pressing rod is pressed down and contacts the top inclined surface of the stroke block, the pressing rod moves to both sides under the pushing action, thereby releasing the locking between the arc-shaped retaining plate and the mating groove.

[0025] Specifically, the top of the partition plate is provided with a first button and a second button, the back of the partition plate is provided with a rectangular hole, the bottom of the rectangular hole is provided with a stress sensor, and the stress sensor is connected to the inner wall of the pressure guiding chamber through a spring.

[0026] Specifically, the portion of the arc-shaped plate inserted into the circular deep hole engages with the mating groove. When the arc-shaped plate and the mating groove are engaged, the entire separating device moves synchronously with the travel seat.

[0027] Furthermore, the limit displacement distance of the partition plate under the limiting action of the travel chamber is L. When the displacement distance of the partition plate is L / 2, the first button is located directly below the spring pressure rod. When the displacement distance of the partition plate is L, the second button is located directly below the spring pressure rod. At the same time, the side groove is located directly below the lower pressure rod, and the position of the lower pressure rod corresponds to the travel block.

[0028] Furthermore, the output terminals of the first and second buttons are connected to the input terminal of the speaker via a signal connection. When the first button is activated, the speaker plays a sound effect indicating failure, and when the second button is activated, the speaker plays a sound effect indicating success.

[0029] This application has the following beneficial effects.

[0030] The protruding seats extend from the top of the top plate to train the trainee's attention. The trainee can reset the seats by pressing them, which trains the trainee's reaction speed. At the same time, the training results can be verified in reverse. The number of activated motion devices can be adjusted by turning the adjustment knob, so that multiple protruding seats can extend from the top of the top plate in a certain order. The trainee needs to reset the protruding seats in sequence, and the speaker will remind the trainee with success or failure sound effects. Attached Figure Description

[0031] The accompanying drawings, which form part of this specification, illustrate embodiments disclosed in this application and, together with the specification, serve to explain the principles disclosed in this application.

[0032] This disclosure will become clearer with reference to the accompanying drawings and the following detailed description, wherein:

[0033] Figure 1 This is a front view of the structure of the present invention;

[0034] Figure 2 This is a schematic diagram of the rear side of the structure of the present invention;

[0035] Figure 3 This is a structural diagram of the area below the top plate of the present invention;

[0036] Figure 4 This is a diagram of the power equipment structure of the present invention;

[0037] Figure 5 This is a diagram of the structural motion device of the present invention;

[0038] Figure 6 This is a cross-sectional view of the structural motion device of the present invention;

[0039] Figure 7 This is a diagram of the pressure limiting device of the present invention;

[0040] Figure 8 This is a cross-sectional view of the pressure limiting device of the present invention;

[0041] Figure 9 This is a diagram of the pressing device of the present invention;

[0042] Figure 10 This is a diagram of the pressure guiding device of the present invention;

[0043] Figure 11 This is a cross-sectional view of the pressure guiding device of the present invention;

[0044] Figure 12 This is a diagram of the structural separation device of the present invention;

[0045] Figure 13 This is a top view of the structural partition device of the present invention;

[0046] Figure 14 The structure of this invention Figure 13 Cross-sectional view along direction A;

[0047] Figure 15 The structure of this invention Figure 13 Cross-sectional view along the B direction.

[0048] In the diagram: 1. Pressure storage bend; 2. Press; 3. Sealing end cap; 4. Connecting piece; 5. Motion device; 51. Pressure limiting device; 511. Stroke sleeve; 512. Pressure limiting groove; 513. Pressure limiting hole; 514. Connecting base plate; 515. Base chamber; 516. Connecting plate; 52. Pressing device; 521. Protruding seat; 522. First return spring; 523. Hollow rod; 524. Spring pressure rod; 525. Transverse frame; 526. Side arm; 527. Contact seat; 53. Pressure guiding device; 531. Pressure guiding chamber; 532. Connecting chamber. 533. Stroke chamber; 534. Limit seat; 535. Pressing rod; 536. Second return spring; 54. Separating device; 541. Separating plate; 542. Circular deep hole; 543. Bypass hole; 544. Side groove; 545. Arc-shaped retaining plate; 546. Connecting rod; 547. Stroke block; 548. First button; 549. Second button; 5401. Rectangular hole; 5402. Stress sensor; 55. Sealing plate; 56. Telescopic mechanism; 57. Stroke seat; 58. Mating groove; 6. Top plate; 7. Adjusting knob; 8. Horn. Detailed Implementation

[0049] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.

[0050] A psychological training and testing device, please refer to Figures 1-3 It includes a pressure storage bend 1, and a pressure supply machine 2 is fixedly installed at the starting end of the pressure storage bend 1. When the pressure supply machine 2 is running, it will inject compressed gas into the interior of the pressure storage bend 1, so that the interior of the pressure storage bend 1 is in a high-pressure state.

[0051] Please see Figures 1-3 A sealing end cap 3 is fixedly installed at the end of the pressure storage bend 1. The sealing end cap 3 can effectively prevent the internal gas of the pressure storage bend 1 from leaking out and prevent pressure loss.

[0052] Please see Figures 1-3 A connecting piece 4 is fixedly installed on the top of the pressure storage bend 1 near the pressure supply machine 2 and the sealing end cover 3. The connecting piece 4 serves to fix the top plate 6 and the pressure storage bend 1.

[0053] Please see Figures 1-3 A motion device 5 is fixedly installed on the top of the pressure-storing bend 1. The motion device 5 is connected to the inner cavity of the pressure-storing bend 1. A top plate 6 is fixedly installed on the top of the connecting piece 4. An adjustment knob 7 is provided on the front of the top plate 6. A speaker 8 is provided on the back of the top plate 6. The speaker 8 can play two sound effects: failure and success.

[0054] Please see Figures 1-3 The number of motion devices 5 is nine and they are distributed in a linear array along the extension direction of the pressure-storing bend 1.

[0055] Please see Figures 1-3 The top of the top plate 6 has a round hole, and the round hole is matched with the moving device 5;

[0056] Please see Figures 1-3 The rotation of the horn 8 can adjust the number of times the motion device 5 is activated.

[0057] Please see Figure 2 and Figures 4-6 The motion device 5 includes a pressure limiting device 51, and a pressing device 52 is movably installed inside the pressure limiting device 51. When the pressing device 52 is subjected to high pressure, it will extend out from inside the pressure limiting device 51 and protrude on the top of the top plate 6.

[0058] Please see Figures 4-6 A hollow rod pressure guiding device 53 is fixedly installed at the bottom of the pressure limiting device 51. A partition device 54 is movably installed inside the hollow rod pressure guiding device 53. A sealing plate 55 is fixedly installed on the front of the hollow rod pressure guiding device 53. A telescopic mechanism 56 is fixedly installed on the front of the sealing plate 55. The telescopic mechanism 56 can move at both ends, and the distance of each movement is L / 2.

[0059] Please see Figures 4-6The output shaft of the telescopic machine 56 passes through the sealing plate 55 and extends into the interior of the hollow rod pressure guiding device 53. One end of the output shaft of the telescopic machine 56 is fixedly installed with a stroke seat 57, and the two sides of the outer surface of the stroke seat 57 are provided with mating grooves 58.

[0060] Please see Figures 7-8 The pressure limiting device 51 includes a travel sleeve 511. A pressure limiting groove 512 is formed on the inner wall of the travel sleeve 511. A pressure limiting hole 513 is formed on the inner wall of the travel sleeve 511 above the pressure limiting groove 512. When both the pressure limiting groove 512 and the pressure limiting hole 513 are in the open state, the high-pressure gas can be discharged to the outside.

[0061] Please see Figures 7-8 and Figure 10 A connecting base plate 514 is fixedly installed on the inner wall of the stroke sleeve 511 near the bottom. A bottom chamber 515 is fixedly installed on the outer wall of the stroke sleeve 511 near the bottom. A connecting plate 516 is fixedly installed on the outer wall of the bottom chamber 515 near the bottom. The connecting plate 516 is fixedly connected to the pressure guiding chamber 531 by bolts.

[0062] Please see Figures 5-8 The bottom of the connecting plate 516 is fixedly connected to the top of the hollow rod pressure guiding device 53. The pressure device 52 is movably installed inside the stroke sleeve 511, and the top of the pressure device 52 extends out from the top of the stroke sleeve 511.

[0063] Please see Figure 9 The pressing device 52 includes a protruding seat 521. A first return spring 522 is engaged at the bottom of the protruding seat 521 near the outer side. A hollow rod 523 is fixedly installed at the bottom of the protruding seat 521 near the center. A spring pressure rod 524 is provided at the bottom of the inner cavity of the hollow rod 523. A transverse frame 525 is fixedly installed at the bottom of the outer wall of the hollow rod 523. Side arms 526 are fixedly installed on both sides of the transverse frame 525 near the front end. A contact seat 527 is fixedly installed at the bottom of the side arm 526.

[0064] When the protruding seat 521 extends out of the inside of the stroke sleeve 511 and reaches its limit position, the lower edge of the protruding seat 521 is in contact with the top of the inner wall of the stroke sleeve 511, so that the pressure limiting hole 513 is in a closed state. The high pressure gas inside the pressure storage bend 1 cannot be released outward through the pressure limiting groove 512 and the pressure limiting hole 513, thereby avoiding the situation where the pressure inside the pressure storage bend 1 is depressurized, which would cause the protruding seat 521 to be unable to maintain the outward extension state, thus ensuring the stability of the device during operation.

[0065] Please see Figure 3 and Figures 10-11The hollow rod pressure guiding device 53 includes a pressure guiding chamber 531. A connecting chamber 532 is provided at the bottom of the pressure guiding chamber 531. The connecting chamber 532 is connected to the inner cavity of the pressure guiding chamber 531. The bottom of the connecting chamber 532 is fixedly connected to the top of the pressure storage bend 1 and the connecting chamber 532 is connected to the inner cavity of the pressure storage bend 1. A stroke chamber 533 is provided on the front of the pressure guiding chamber 531. The front of the stroke chamber 533 is fixedly connected to the sealing plate 55. Limit seats 534 are fixedly installed on both sides of the inner wall of the pressure guiding chamber 531. A downward pressure rod 535 is movably installed inside the limit seat 534. The contact seat 527 is located directly above the downward pressure rod 535.

[0066] Please see Figures 10-11 The top of the pressing rod 535 is engaged with the second return spring 536, and the bottom of the second return spring 536 is engaged with the top of the limiting seat 534.

[0067] Please see Figures 10-11 The second return spring 536 is initially in a compressed state;

[0068] Please see Figure 6 and Figures 10-11 The travel chamber 533 limits the displacement direction of the separating device 54.

[0069] Please see Figure 3 and Figures 11-15 The separating device 54 includes a separating plate 541. In its initial state, the separating plate 541 divides the inner cavity of the pressure guiding chamber 531 into two independent parts. At this time, the high-pressure gas inside the pressure storage bend 1 cannot enter the upper area of ​​the pressure guiding chamber 531 through the separating plate 541.

[0070] Please see Figure 4 and Figures 12-15 The front of the partition plate 541 has a circular deep hole 542, and the output shaft of the telescopic machine 56 extends into the interior of the circular deep hole 542.

[0071] Please see Figure 4 and Figures 11-15 A bypass hole 543 is provided on the inner wall of the circular deep hole 542 near the bottom. Side grooves 544 are provided on both sides of the outer surface of the partition plate 541 at positions corresponding to the bypass hole 543. An arc-shaped retaining plate 545 is movably installed inside the bypass hole 543. The front end of the arc-shaped retaining plate 545 is inserted into the interior of the circular deep hole 542. A connecting rod 546 is fixedly installed at the end of the arc-shaped retaining plate 545. The connecting rod 546 extends into the interior of the side groove 544. A stroke block 547 is fixedly installed on the outer surface of the connecting rod 546. The top of the stroke block 547 is set as an inclined surface. When the pressing rod 535 is pressed down and contacts the top inclined surface of the stroke block 547, the pressing rod 535 moves to both sides under the pushing action, so that the arc-shaped retaining plate 545 and the mating groove 58 are unlocked.

[0072] Please see Figures 11-15 The top of the partition plate 541 is provided with a first button 548 and a second button 549 respectively. A rectangular hole 5401 is provided on the back of the partition plate 541. A stress sensor 5402 is provided at the bottom of the rectangular hole 5401. The stress sensor 5402 is connected to the inner wall of the pressure guiding chamber 531 through a spring.

[0073] Please see Figures 4-6 and Figures 12-15 The portion of the arc-shaped clamping plate 545 inserted into the circular deep hole 542 engages with the mating groove 58. When the arc-shaped clamping plate 545 and the mating groove 58 are engaged, the entire separating device 54 moves synchronously with the travel seat 57.

[0074] Please see Figures 10-15 The limit displacement distance of the partition plate 541 under the limiting action of the stroke chamber 533 is L. When the displacement distance of the partition plate 541 is L / 2, the first button 548 is located directly below the spring pressure rod 524. When the displacement distance of the partition plate 541 is L, the second button 549 is located directly below the spring pressure rod 524. At the same time, the side groove 544 is located directly below the lower pressure rod 535 and the position of the lower pressure rod 535 corresponds to the stroke block 547.

[0075] When the pressurizer 2 is running, the pressure-storing bend 1 stores high-pressure gas. When the telescopic mechanism 56 is activated, the output shaft of the telescopic mechanism 56 extends, and the travel seat 57 extends into the bottom of the circular deep hole 542. The groove 58 and the arc-shaped clamping plate 545 engage and lock together. When the output shaft of the telescopic mechanism 56 retracts, the separating device 54 moves synchronously with the groove 58. At this time, the separating device 54 is in the open state, and the high-pressure gas inside the pressure-storing bend 1 enters the upper area of ​​the separating device 54 through the separating device 54 and acts on the protruding seat 521, causing the protruding seat 521 to extend from the top of the travel sleeve 511, thereby... A protrusion is formed on the top of the top plate 6. When the trainee observes the protrusion on the top of the top plate 6, he reacts by pressing the protrusion back to its original position. Compared with the technical means used in the previous document, the device involved in this application forms a protrusion on the top of the top plate 6 after the protruding seat 521 extends, thereby training the trainee's attention. At the same time, the trainee can train his reaction ability by pressing down the protruding seat 521 in the extended state, and the training results of the trainee's attention can be verified in reverse, avoiding the device's inability to judge whether the trainee's attention is focused, thus improving the practicality of the device.

[0076] When the user presses down on the protruding seat 521 in its protruding state, the separating device 54 is displaced by the sealing plate 55, and the displacement distance is L. This causes the contact seat 527 to press down on the pressing rod 535 during the pressing process of the protruding seat 521. This causes the bottom of the pressing rod 535 to push against the top inclined surface of the stroke block 547, causing the stroke block 547 to move outward. This causes the arc-shaped locking plate 545 to disengage from the mating groove 58 and unlock. Under the elastic force of the spring connected to the stress sensor 5402, the separating device 54 is reset as a whole, and the pressure guide chamber 5 is reopened. The inner cavity of 31 is divided into two independent parts to prevent the high-pressure gas inside the pressure-retaining bend 1 from continuously escaping through the pressure-limiting groove 512 and pressure-limiting hole 513 after the trainee presses down on the protruding seat 521, thus preventing pressure loss and improving the reliability of the device. In addition, when the separating device 54 is reset, the high-pressure gas remaining in the space above the separating device 54 can be released to the outside through the pressure-limiting groove 512 and pressure-limiting hole 513, so that the air pressure in this area can be balanced with the outside, avoiding the problem of the pressure-limiting groove 512 rebounding and protruding again after the trainee presses down on it, thus improving the reliability of the device.

[0077] Please see Figure 3 and Figures 12-15 The output terminals of the first button 548 and the second button 549 are connected to the input terminal of the speaker 8 via a signal connection. When the first button 548 is activated, the speaker 8 plays a sound effect indicating failure, and when the second button 549 is activated, the speaker 8 plays a sound effect indicating success.

[0078] The number of motion devices 5 activated can be controlled by rotating the adjustment knob 7. When the number of motion devices 5 activated is greater than or equal to two, if the number of motion devices 5 activated is three, the three motion devices 5 can be divided into motion device 1, motion device 2, and motion device 3 according to the activation order. The three activated motion devices 5 are activated sequentially. The retraction distance of the telescopic mechanism 56 in motion device 3 is L, and the retraction distance of the telescopic mechanisms 56 in motion devices 1 and 2 is L / 2. When the trainee presses down on the protruding seat in motion device 3... 521, causing the spring lever 524 to press down and contact the second button 549, resulting in the speaker 8 playing successfully. Simultaneously, the contact seat 527 presses down, causing the pressing rod 535 to push against the travel block 547, thus releasing the arc-shaped locking plate 545 from the mating groove 58. The separating device 54 resets. When the stress sensor 5402 in the third motion device 5 senses the release of the connected spring force, the telescopic mechanism 56 in the second motion device 5 continues to retract, the retraction distance being L / 2, bringing the total retraction distance to L. At this point, the trainee presses down on the protruding seat 521 in the second motion device 5, returning... Repeat the above steps to continue retracting the telescopic mechanism 56 in motion device 5, retracting a distance of L / 2 and bringing the total retraction distance to L. At this point, the trainee presses down on the protruding seat 521 in motion device 5. By repeating the same steps, motion devices 5, 2, and 3 can all be restored. If the trainee misremembers the order in which motion devices 5 are activated and presses the wrong protruding seat 521, the pressing rod 535 and the stroke block 547 will be misaligned, the arc-shaped locking plate 545 will not disengage from the mating groove 58, and the separating device 54 will not reset. Furthermore, when the spring lever 524 moves downward, it contacts the first button 548, causing the speaker 8 to play a failure sound effect and remind the trainee that the wrong protrusion 521 has been pressed. This ensures that the trainee must press the protrusions 521 in the activation sequence to reset all the motion devices 5. This allows the device to train not only the trainee's attention and reaction time, but also their memory, improving the device's practicality. Moreover, the success and failure sound effects can encourage and remind the trainee, ensuring that the entire training process proceeds smoothly.

[0079] The method of using this invention is as follows:

[0080] During operation, the pressurizer 2 injects high-pressure gas into the pressure storage bend 1. When the telescopic mechanism 56 is activated, its output shaft extends, and the travel seat 57 extends into the bottom of the circular deep hole 542. The groove 58 engages with the arc-shaped locking plate 545 to achieve engagement and lock. When the output shaft of the telescopic mechanism 56 retracts, the separating device 54 moves synchronously with the groove 58. At this time, the separating device 54 is in the open state, and the high-pressure gas inside the pressure storage bend 1 enters the area above the separating device 54 through it, acting on the protruding seat 521. This causes the protruding seat 521 to extend from the top of the travel sleeve 511, thus forming a protrusion on the top of the top plate 6. When the trainee observes the protrusion on the top of the top plate 6, they react accordingly. When the user presses the protrusion to restore it, and the protruding seat 521 extends from the inside of the stroke sleeve 511 and reaches its limit position, the lower edge of the protruding seat 521 contacts the top of the inner wall of the stroke sleeve 511, so that the pressure limiting hole 513 is in a closed state. The high pressure gas inside the pressure storage bend 1 cannot be released outward through the pressure limiting groove 512 and the pressure limiting hole 513. When the user presses down on the protruding seat 521 in the protruding state, the separating device 54 is displaced by the sealing plate 55, and the displacement distance is L. This causes the contact seat 527 to press down on the pressing rod 535 during the pressing process of the protruding seat 521, so that the bottom of the pressing rod 535 pushes the top inclined surface of the stroke block 547, causing the stroke block 547 to move towards the top inclined surface of the stroke block 547. The outward movement causes the arc-shaped locking plate 545 to disengage from the mating groove 58 and unlock. Under the elastic force of the spring connected to the stress sensor 5402, the separating device 54 resets as a whole and once again divides the inner cavity of the pressure chamber 531 into two independent parts. This prevents the high-pressure gas inside the pressure-retaining bend 1 from continuously escaping through the pressure-limiting groove 512 and pressure-limiting hole 513 after the trainee presses down on the protruding seat 521. Meanwhile, the high-pressure gas remaining in the space above the separating device 54 can be released outward through the pressure-limiting groove 512 and pressure-limiting hole 513, allowing the air pressure in this area to reach equilibrium with the outside. The number of motion devices 5 activated can be controlled by rotating the adjustment knob 7. When the number of motion devices 5 activated is greater than or equal to two, if the motion device 5 Three motion devices 5 are activated in sequence, designated as Motion Device 1, Motion Device 2, and Motion Device 3. The three activated motion devices 5 are started sequentially. The retraction distance of the telescopic mechanism 56 in Motion Device 3 is L, while the retraction distance of the telescopic mechanisms 56 in Motion Devices 1 and 2 is L / 2. When the trainee presses down on the protruding seat 521 in Motion Device 3, the spring rod 524 is pressed down and contacts the second button 549, causing the speaker 8 to play the sound successfully. Simultaneously, the contact seat 527 presses down, driving the pressing rod 535 to push the stroke block 547, thus releasing the arc-shaped locking plate 545 from the mating groove 58, and resetting the separating device 54.When the stress sensor 5402 in motion device 5 senses the release of the spring force, the telescopic mechanism 56 in motion device 5 continues to retract, retracting a distance of L / 2 until the total retraction distance reaches L. At this point, the trainee presses down on the protruding seat 521 in motion device 5, repeating the above steps to cause the telescopic mechanism 56 in motion device 5 to continue retracting, retracting a distance of L / 2 until the total retraction distance reaches L. At this point, the trainee presses down on the protruding seat 521 in motion device 5. By repeating the same steps, motion devices 5, 2, and 3 can all be restored to their original positions. If the trainee misremembers the motion device... If the wrong protrusion 521 is pressed during the activation sequence of the five devices, the pressing rod 535 and the travel block 547 will be misaligned. The arc-shaped locking plate 545 will not disengage from the mating groove 58, preventing the separating device 54 from resetting. Furthermore, the spring-loaded rod 524 will move downwards and contact the first button 548, causing the speaker 8 to play a failure sound effect and remind the trainee that the wrong protrusion 521 has been pressed. This ensures that the trainee must press the protrusions 521 in the correct activation sequence to reset all the moving devices 5. This allows the device to train not only the trainee's attention and reaction time but also their memory.

Claims

1. A psychological training and testing device, characterized in that, The device includes a pressure-storing bend, with a pressure feeder fixedly installed at the starting end and a sealing end cap fixedly installed at the end. A connecting piece is fixedly installed on the top of the pressure-storing bend near the pressure feeder and the sealing end cap. A moving device is fixedly installed on the top of the pressure-storing bend and communicates with the inner cavity of the pressure-storing bend. A top plate is fixedly installed on the top of the connecting piece. An adjustment knob is provided on the front of the top plate, and a horn is provided on the back of the top plate. The motion device includes a pressure limiting device, and a pressing device is movably installed inside the pressure limiting device; a hollow rod pressure guiding device is fixedly installed at the bottom of the pressure limiting device, and a separating device is movably installed inside the hollow rod pressure guiding device; a sealing plate is fixedly installed on the front of the hollow rod pressure guiding device, and a telescopic mechanism is fixedly installed on the front of the sealing plate; the output shaft of the telescopic mechanism passes through the sealing plate and extends into the interior of the hollow rod pressure guiding device; a stroke seat is fixedly installed at one end of the output shaft of the telescopic mechanism, and mating grooves are opened on both sides of the outer surface of the stroke seat; The pressing device includes a protruding seat, a hollow rod is fixedly installed at the bottom of the protruding seat near the center, a spring pressure rod is provided in the inner cavity of the hollow rod near the bottom, a transverse frame is fixedly installed on the outer wall of the hollow rod near the bottom, side arms are fixedly installed on both sides of the transverse frame near the front end, and contact seats are fixedly installed at the bottom of the side arms. The hollow rod pressure guiding device includes a pressure guiding chamber; limit seats are fixedly installed on both sides of the inner wall of the pressure guiding chamber, and a downward pressure rod is movably installed inside the limit seats, with a contact seat located directly above the downward pressure rod; The separating device includes a separating plate with a circular deep hole on its front side. A bypass hole is formed on the inner wall of the circular deep hole near the bottom. Side grooves are formed on both sides of the outer surface of the separating plate corresponding to the bypass hole. An arc-shaped retaining plate is movably installed inside the bypass hole. The front end of the arc-shaped retaining plate is inserted into the circular deep hole, and a connecting rod is fixedly installed at the end of the arc-shaped retaining plate, extending into the side groove. A stroke block is fixedly installed on the outer surface of the connecting rod, and the top of the stroke block is set as an inclined surface. A first button and a second button are respectively provided on the top of the separating plate. The part of the arc-shaped retaining plate inserted into the circular deep hole mates with the mating groove. The limit displacement distance of the separating plate under the limiting action of the stroke chamber is L. When the displacement distance of the separating plate is L / 2, the first button is located directly below the spring pressure rod. When the displacement distance of the separating plate is L, the second button is located directly below the spring pressure rod. At the same time, the side groove is located directly below the lower pressure rod, and the position of the lower pressure rod corresponds to the stroke block.

2. The psychological training and testing device according to claim 1, characterized in that, The number of motion devices is nine, and they are distributed in a linear array along the extension direction of the pressure-retaining bend. The top of the top plate has a circular hole, which is matched with the moving device. Rotating the adjustment knob can adjust the number of motion devices activated.

3. The psychological training and testing device according to claim 1, characterized in that, The pressure limiting device includes a travel sleeve, the inner wall of which has a pressure limiting groove, and the inner wall of which has a pressure limiting hole above the pressure limiting groove. A connecting base plate is fixedly installed on the inner wall of the travel sleeve near the bottom, and a bottom chamber is fixedly installed on the outer wall of the travel sleeve near the bottom. A connecting plate is fixedly installed on the outer wall of the bottom chamber near the bottom. The bottom of the connecting plate is fixedly connected to the top of the hollow rod pressure guiding device, and a pressing device is movably installed inside the stroke sleeve, with the top of the pressing device extending out from the top of the stroke sleeve.

4. The psychological training and testing device according to claim 1, characterized in that, A first return spring is engaged at the bottom of the protruding seat near the outer side.

5. The psychological training and testing device according to claim 1, characterized in that, The bottom of the pressure guiding chamber is provided with a connecting chamber, which is connected to the inner cavity of the pressure guiding chamber. The bottom of the connecting chamber is fixedly connected to the top of the pressure storage bend and the connecting chamber is connected to the inner cavity of the pressure storage bend. The front of the pressure guiding chamber is provided with a stroke chamber, which is fixedly connected to the front of the sealing plate. The top of the pressure lowering rod is engaged with a second return spring, and the bottom of the second return spring is engaged with the top of the limiting seat. The second reset spring is initially in a compressed state; The travel chamber limits the displacement direction of the separating device.

6. The psychological training and testing device according to claim 4, characterized in that, A rectangular hole is provided on the back of the partition plate, and a stress sensor is provided at the bottom of the rectangular hole. The stress sensor is connected to the inner wall of the pressure guiding chamber by a spring.

7. A psychological training and testing device according to claim 6, characterized in that, The output terminals of the first and second buttons are connected to the input terminal of the speaker via a signal connection. When the first button is activated, the speaker plays a sound effect indicating failure, and when the second button is activated, the speaker plays a sound effect indicating success.