Sliding groove type control panel
By designing the design of the housing, the buffer plate and damper, the problem of large space and easy damage when used is solved, achieving the effect of convenient use and effective protection.
Patent Information
- Application Number
- CN202421991318.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-08-16
AI Technical Summary
The existing chute control panel takes up a lot of space when used and is not convenient for handheld use, and cannot effectively buffer external impact forces, which can easily cause damage to the internal control components.
A chute-type control panel is designed to provide buffer protection through the fit of the housing with the buffer plate and the damper, and can be rotatably adjusted to support it on the working surface when not in use, reducing space occupation.
Improves the convenience and security of the control board, ensuring that internal components are protected when external impacts and does not occupy additional space when not in use.
Smart Images

Figure CN223286025U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of massager control panels of physiotherapy instruments, in particular to a slide-type control panel. Background Art
[0002] The physiotherapy massager can be used on areas that need conditioning, such as soreness, and can greatly alleviate the patient's symptom deterioration, reduce discomfort, and provide great help to the patient's subsequent recovery. The relevant parameters can be adjusted through the control panel.
[0003] The slide-type control panel, because it is provided with a slide slot and a sliding shell, greatly enhances the protection of internal control components compared to conventional control panels. However, existing slide-type control panels usually occupy a large amount of space due to the sliding shell, and can usually only be used by hand afterwards, which is relatively inconvenient to use. At the same time, most slide-type control panels cannot effectively buffer external impact forces. Even if the external impact does not directly act on the control components, the impact force will still be transmitted to the controller body through the shell and cause damage to it.
[0004] Therefore, those skilled in the art have provided a slide-type control panel to solve the problems raised in the above background technology. Utility Model Content
[0005] The purpose of the present utility model is to solve the shortcomings of the prior art and to propose a slide-type control panel. When the device is not in use, the outer shell and the buffer plate and the adjacent damper cooperate to provide better protection when the external environment is subjected to impact force, thereby improving safety. When in use, the outer shell does not take up space after sliding open. Instead, by adjusting the outer shell and cooperating with the rotating bracket, it can support the controller body so that it can be placed on other work surfaces, greatly improving the convenience of use.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a slide-type control plate, comprising a controller body, a pressing block is slidably provided at the center of both sides of the controller body, a plurality of No. 1 springs are provided between the two pressing blocks and the controller body, a buffer plate is slidably provided at both sides of the front end of the controller body, a plurality of dampers are provided between the two buffer plates and the controller body, inner grooves are provided at the lower part of the inner walls of both sides of the controller body, square grooves are provided at the lower part of the inner walls of both sides of the controller body, pressing columns are slidably provided at the outer sides of both sides of the controller body near the square grooves, a support groove is provided at the lower part of the rear end of the controller body, and support side grooves are provided on both sides of the support groove;
[0007] A shell is provided between the two inner grooves for sliding engagement, outer grooves are provided on both sides of the shell, sliders are provided for sliding engagement in the two outer grooves, outer clamping blocks are provided for sliding engagement in the two sliders at the outer sides, a clamping groove is provided at the middle of one side of the shell close to the buffer plate, side sliding grooves are provided on both sides of the clamping groove, a rotating bracket is provided for sliding engagement between the two side sliding grooves, a telescopic rod is provided at the rear end of the rotating bracket, bracket clamping blocks are provided for sliding engagement in the rotating bracket at both sides, and two No. 2 springs are provided between the two bracket clamping blocks and the rotating bracket;
[0008] Through the above technical solution, when the two external clamping blocks are in contact with the pressing blocks on both sides, the shell is in a stable state due to the upward squeezing of the buffer plate and the restriction of the external clamping blocks. When the controller body needs to be used, it is necessary to press the pressing blocks on both sides to press the external clamping blocks into the slider. At this time, the shell can be slid along the inner groove, and when the slider slides into the square groove, it can be rotated. After taking out the rotating bracket, the position is adjusted so that the end of the rotating bracket away from the slot is clamped and rotated through the bracket clamping block and set inside the support groove, and the position is limited by the telescopic rod.
[0009] Furthermore, when the slider is at the bottom of the outer groove, it is simultaneously at the top of the inner groove, and both outer clamping blocks are in contact with the inner side of the pressing block;
[0010] Through the above technical solution, a stable snap connection between the housing and the controller body is easier to achieve, and releasing the snap connection is more convenient.
[0011] Furthermore, a small square groove is opened inside the two square grooves, and the size of the two small square grooves is consistent with the size of the external clamping block. The two square grooves are provided with a rotating block around their bodies, and the two rotating blocks are rotatably arranged on the inner wall of the controller body. The two sliders and the external clamping block can rotate in their grooves.
[0012] Through the above technical solution, the housing can be adjusted in position by rotation when the controller body is not in use, so as to facilitate subsequent support.
[0013] Furthermore, the arrangement between the two pressing posts and the outer clamping block is consistent with the arrangement between the pressing block and the outer clamping block, and the outer clamping block can also be compressed into the slider by pressing the pressing posts;
[0014] Through the above technical solution, the clamping settings of the outer clamping block at two locations can be conveniently controlled, and the position of the outer shell can be further adjusted by simply pressing the pressing block or the pressing column.
[0015] Furthermore, when the two outer clamping blocks are in contact with the pressing blocks on both sides respectively, the housing is in a closed state. At this time, the housing is in contact with the two buffer plates. At the same time, under the influence of the two buffer plates, the sides of the two sliders close to the buffer plates do not come into contact with the controller body.
[0016] Through the above technical solution, the shell can better protect the controller body by buffering when it is subjected to external impact force. When the shell is subjected to impact force, the sliders and external blocks on both sides will not limit the depression of the buffer plate.
[0017] Furthermore, a placement slot is fixedly provided inside the card slot. When the rotating bracket is not in use, it can be reversed into the placement slot and stably placed inside the card slot through the cooperation of the two bracket blocks and the second spring.
[0018] Through the above technical solution, the rotating bracket can be well stored when not in use, saving space.
[0019] Furthermore, the parts of the two rotating brackets located in the side slide grooves are cylinders, which can rotate in the side slide grooves, and the parts of the two bracket blocks located in the supporting side grooves are also cylinders, which can also rotate in the supporting side grooves, and the telescopic parts of the two telescopic rods are in contact with the bracket blocks;
[0020] Through the above technical solution, the supporting angle of the rotating bracket to the controller body is more controllable.
[0021] The utility model has the following beneficial effects:
[0022] 1. The slide groove type control panel proposed by the present invention has a shell that can slide along the inner groove. When the slider slides to the pressing block area, the external clamping block can be used to achieve a clamping connection. When the slider slides to the square groove area, the external clamping block can also be used to achieve a clamping connection. Thereafter, the pressing block and the pressing column can be pressed respectively to continue to adjust the position of the slider. After the slider is clamped in the square groove area, the shell can be rotated and adjusted to a suitable position by rotation. The controller body can be supported by adjusting the rotating bracket and the bracket clamping block so that it can be placed on the desktop for continued operation, which greatly improves the convenience of use and avoids the shell from occupying unnecessary space after sliding open, so that the shell can be used more effectively.
[0023] 2. The slide-type control panel proposed in the present invention has a slider in the area where the pressing block is located when the device is not in use. At this time, a snap connection is formed by the external clamping block. The provided buffer plate and damper can support the outer shell, which not only improves the connection stability between the outer shell and the controller body, but also can provide buffering when the outer shell is subjected to external impact force, thereby reducing the impact of the impact force on internal components. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 This is a schematic diagram of the overall front axonometric view of the present invention in a supported state;
[0025] Figure 2 This is a schematic diagram of the overall rear axonometric view of the present invention in a supported state;
[0026] Figure 3 This is a schematic diagram of the overall front axonometric view of the present invention in a closed state;
[0027] Figure 4 This is a schematic diagram of the rear axonometric view of the utility model after separation;
[0028] Figure 5 It is a front cross-sectional schematic diagram of the utility model near the outer clamping block area;
[0029] Figure 6 This is a top cross-sectional schematic diagram of the present invention near the bracket block;
[0030] Figure 7 It is a side cross-sectional schematic diagram of the present invention near the damper area;
[0031] Figure 8 It is a top cross-sectional schematic diagram of the utility model near the telescopic rod area.
[0032] Legend:
[0033] 1. Inner groove; 2. Buffer plate; 3. Controller body; 4. Press block; 5. Press column; 6. Outer groove; 7. Card slot; 8. Housing; 9. Support groove; 10. Side slide groove; 11. Rotating bracket; 12. Square groove; 13. Outer card block; 14. Support side groove; 15. No. 1 spring; 16. Bracket card block; 17. No. 2 spring; 18. Damper; 19. Telescopic rod; 20. Slider. DETAILED DESCRIPTION
[0034] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0035] Reference Figure 1-8The utility model provides an embodiment of a slide-type control panel, including a controller body 3, with pressing blocks 4 slidingly arranged on both sides of the controller body 3 near the center, and multiple No. 1 springs 15 are arranged between the two pressing blocks 4 and the controller body 3. A groove of the size of the outer clamping block 13 is opened in the inner groove 1 near the pressing block 4. When the slider 20 slides to this area, the outer clamping block 13 contacts the inner side of the pressing block 4 due to the internal spring reset. At this time, the shell 8 is initially clamped and fixed in the inner groove 1;
[0036] Buffer plates 2 are slidably provided on both sides of the front end of the controller body 3. Multiple dampers 18 are provided between the two buffer plates 2 and the controller body 3. After the shell 8 is initially clamped and fixed in the inner groove 1, since the buffer plates 2 are slightly higher than the plane where the control panel of the front end of the controller body 3 is located, they support the shell 8 and are affected by the internal dampers 18. The slider 20 will not contact the inner groove 1 and is not easy to slide;
[0037] The inner walls on both sides of the controller body 3 are provided with inner grooves 1 at the lower part, and the inner walls on both sides of the controller body 3 are provided with square grooves 12 near the bottom of the inner grooves 1. The block in the square grooves 12 can be rotated, and a groove for placing an external card block 13 is also provided inside the square grooves 12. Pressing columns 5 are slidingly provided on the outer sides of the controller body 3 near the square grooves 12. The same arrangement as that of the pressing block 4 and the external card block 13 is adopted so that pressing the pressing column 5 can also press the external card block 13 into the slider 20. A support groove 9 is provided at the lower part of the rear end of the controller body 3, and support side grooves 14 are provided on both sides of the support groove 9.
[0038] The outer casing 8 is provided with a sliding connection between the two inner grooves 1, and outer grooves 6 are provided on both sides of the outer casing 8. Slide blocks 20 are provided inside the two outer grooves 6 for sliding connection. External blocks 13 are provided inside the two slide blocks 20 for sliding connection. A slot 7 is provided in the middle of one side of the outer casing 8 close to the buffer plate 2. Side slide grooves 10 are provided on both sides of the slot 7. A rotating bracket 11 is provided for sliding connection between the two side slide grooves 10. A telescopic rod 19 is provided at the rear end of the rotating bracket 11. Bracket blocks 16 are provided for sliding connection on both sides of the rotating bracket 11. The bracket blocks 16 can be stuck in the side slide grooves 10 or in the supporting side grooves 14. Two No. 2 springs 17 are provided between the two bracket blocks 16 and the rotating bracket 11. The friction force of the slider 20 in the outer groove 6 should be designed according to the weight of the controller body 3 so that it can cooperate with the friction of the rotating bracket 11 in the slot 7 to achieve stable support for the controller body 3.
[0039] When the two outer clamping blocks 13 are in contact with the pressing blocks 4 on both sides, the shell 8 is in a stable state due to the upward squeezing of the buffer plate 2 and the restriction of the outer clamping blocks 13. When the controller body 3 needs to be used, it is necessary to press the pressing blocks 4 on both sides to press the outer clamping blocks 13 into the slider 20. At this time, the shell 8 can be slid along the inner groove 1. When the slider 20 slides into the square groove 12, it can be rotated. After taking out the rotating bracket 11, the position is adjusted so that the end of the rotating bracket 11 away from the card slot 7 is engaged and rotated by the bracket clamping block 16 and is arranged inside the support groove 9. The position is restricted by the telescopic rod 19.
[0040] When the slider 20 is at the bottom of the outer groove 6, it is at the top of the inner groove 1 at the same time. At this time, the two outer card blocks 13 are in contact with the inner side of the pressing block 4, making it easier to achieve a stable card connection between the shell 8 and the controller body 3, and more convenient to release the card connection. Small square grooves are provided inside the two square grooves 12. The sizes of the two small square grooves are consistent with the sizes of the outer card blocks 13. Rotating blocks are provided around the two square grooves 12. The two rotating blocks are rotatably set on the inner wall of the controller body 3. The two sliders 20 and the outer card blocks 13 can be rotated in their grooves, so that the shell 8 can be adjusted by rotation when the controller body 3 is not in use, which is convenient for subsequent support.
[0041] The settings between the two pressing columns 5 and the external clamping block 13 are consistent with the settings between the pressing block 4 and the external clamping block 13. Similarly, the external clamping block 13 can be compressed into the slider 20 by pressing the pressing column 5, so that the clamping settings of the external clamping block 13 at two places can be conveniently controlled. The position of the shell 8 can be further adjusted by pressing the pressing block 4 or the pressing column 5. When the two external clamping blocks 13 are in contact with the pressing blocks 4 on both sides, the shell 8 is in a closed state. At this time, the shell 8 is in contact with the two buffer plates 2. At the same time, under the influence of the two buffer plates 2, the sides of the two sliders 20 close to the buffer plates 2 do not contact the controller body 3, so that the shell 8 can better protect the controller body 3 by buffering when it is subjected to external impact force. When the shell 8 is subjected to impact force, the sliders 20 on both sides and the external clamping block 13 will not limit the depression of the buffer plate 2;
[0042] A placement slot is fixedly provided inside the card slot 7. When the rotating bracket 11 is not in use, it can be reversed into the placement slot. The two bracket blocks 16 are stably placed inside the card slot 7 under the cooperation of the second spring 17, so that the rotating bracket 11 can be well accommodated when not in use, saving space. The parts of the two rotating brackets 11 located in the side slide grooves 10 are cylinders, which can rotate in the side slide grooves 10. The parts of the two bracket blocks 16 located in the supporting side grooves 14 are also cylinders, which can also rotate in the supporting side grooves 14. The retractable parts of the two telescopic rods 19 are in contact with the bracket blocks 16, so that the supporting angle of the rotating bracket 11 to the controller body 3 is more controllable;
[0043] When the controller body 3 is not in use, the shell 8 can be slid along the inner groove 1. Affected by the range of the inner groove 1 and the range of the outer groove 6, the slider 20 will stop at the uppermost position of the inner groove 1 and the lowermost position of the outer groove 6. At this time, the internal spring of the outer card block 13 returns to its original position, so that the outer card block 13 contacts the pressing block 4. Since the shell 8 is squeezed upward by the buffer plate 2 and restricted by the outer card block 13, the shell 8 is in a stable state and is not easy to loosen. When the controller body 3 needs to be used, it is necessary to press the pressing blocks 4 on both sides to press the outer card block 13 into the slider 20. At this time, the shell 8 can be slid along the inner groove 1. When the slider 20 slides into the square groove 12, the outer card block 13 is reset due to the influence of the internal spring to achieve locking. It can then be rotated and placed on the desktop after adjusting the position. Then, the rotating bracket 11 is taken out and the position is adjusted. The bracket card block 16 that is currently in the side slide groove 10 is placed in the supporting side groove 14. The position is restricted by the telescopic rod 19, so that the controller body 3 can be supported, which is convenient for use.
[0044] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A chute-type control panel, comprising a controller body (3), characterized in that: A pressing block (4) is provided on both sides of the controller body (3) near the center thereof, and a plurality of No. 1 springs (15) are provided between the two pressing blocks (4) and the controller body (3). A buffer plate (2) is provided on both sides of the front end of the controller body (3) and a plurality of dampers (18) are provided between the two buffer plates (2) and the controller body (3). An inner groove (1) is provided on the lower part of the inner wall of both sides of the controller body (3). A square groove (12) is provided on the inner wall of both sides of the controller body (3) near the lower part of the inner groove (1). A pressing column (5) is provided on the outer side of both sides of the controller body (3) near the square groove (12). A support groove (9) is provided on the lower part of the rear end of the controller body (3), and support side grooves (14) are provided on both sides of the support groove (9). A housing (8) is provided in a snap-fitting and sliding manner between the two inner grooves (1), outer grooves (6) are provided on both sides of the housing (8), sliders (20) are provided in a snap-fitting and sliding manner inside the two outer grooves (6), and outer clamping blocks (13) are provided in the outer sides of the two sliders (20), and a clamping groove (7) is provided in the middle of one side of the housing (8) close to the buffer plate (2), and side sliding grooves (10) are provided on both sides of the clamping groove (7), and a rotating bracket (11) is provided in a sliding manner between the two side sliding grooves (10), and a telescopic rod (19) is provided at the rear end of the rotating bracket (11), and bracket clamping blocks (16) are provided in the inner sides of the rotating bracket (11) and two No. 2 springs (17) are provided between the two bracket clamping blocks (16) and the rotating bracket (11).
2. The chute type control panel according to claim 1, characterized in that: When the slider (20) is at the bottom of the outer groove (6), it is simultaneously at the top of the inner groove (1), and both outer clamping blocks (13) are in contact with the inner side of the pressing block (4).
3. The chute type control panel according to claim 1, characterized in that: Small square grooves are provided inside the two square grooves (12), and the sizes of the two small square grooves are consistent with the sizes of the external clamping block (13). Rotating blocks are provided around the two square grooves (12), and the two rotating blocks are rotatably provided on the inner wall of the controller body (3). The two sliders (20) and the external clamping block (13) can both rotate in their grooves.
4. The chute type control panel according to claim 1, characterized in that: The arrangement between the two pressing columns (5) and the outer clamping block (13) is consistent with the arrangement between the pressing block (4) and the outer clamping block (13). Similarly, the outer clamping block (13) can be compressed into the slider (20) by pressing the pressing column (5).
5. The chute type control panel according to claim 1, characterized in that: When the two outer clamping blocks (13) are in contact with the pressing blocks (4) on both sides respectively, the housing (8) is in a closed state. At this time, the housing (8) is in contact with the two buffer plates (2). At the same time, under the influence of the two buffer plates (2), the sides of the two sliders (20) close to the buffer plates (2) do not come into contact with the controller body (3).
6. The chute type control panel according to claim 1, characterized in that: A placement slot is fixedly provided inside the card slot (7). When the rotating bracket (11) is not in use, it can be flipped into the placement slot and stably placed inside the card slot (7) through the cooperation of the two bracket blocks (16) and the second spring (17).
7. The chute type control panel according to claim 1, characterized in that: The parts of the two rotating brackets (11) located in the side slide groove (10) are cylindrical and can rotate in the side slide groove (10). The parts of the two bracket blocks (16) located in the supporting side groove (14) are also cylindrical and can also rotate in the supporting side groove (14). The telescopic parts of the two telescopic rods (19) are in contact with the bracket blocks (16).