A daily hot compress physiotherapy device for the rehabilitation of kidney diseases
Through the design of the adaptive patch structure and self-conducting mechanism, the problem of insufficient adaptive adjustment of the steam heat compress equipment is solved, the accuracy and comfort of the steam heat compress is achieved, energy consumption is reduced, and treatment efficiency is improved.
Patent Information
- Application Number
- CN202510437350.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-09
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2045-04-09
AI Technical Summary
The existing steam heat compress equipment lacks adaptive regulation function, which leads to premature release of steam, causing waste, reducing treatment efficiency and increasing energy consumption, and affecting the patient's user experience.
An adaptive patch structure is designed, including a back cushion and a chest cushion, which releases steam heat compress when the patient is contacted by a self-conducting mechanism. Combined with a moving base and a driving member, flexible adjustments are achieved to fit the patient's posture and needs.
It improves the accuracy and comfort of hot compresses, reduces steam waste, reduces energy consumption, and ensures maximum treatment effect and patient comfort experience.
Smart Images

Figure CN119925076B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a physiotherapy device, specifically a daily hot compress physiotherapy device for the rehabilitation of kidney diseases. Background Art
[0002] Kidney diseases refer to a group of disorders that affect the function and structure of the kidneys. The kidneys are important organs in the human body, responsible for filtering waste and excess water from the blood, maintaining the body's electrolyte balance, regulating blood pressure, and producing some important hormones. During the rehabilitation process of kidney diseases, the main function of the hot compress physiotherapy device is to help improve blood circulation in the kidney area, relieve muscle tension, reduce pain, and promote the excretion of metabolic waste through the provision of a warm effect. Generally speaking, the hot compress physiotherapy device for kidney diseases promotes blood circulation, relieves muscle tension and pain through the warm effect, and can play a certain role in assisting rehabilitation in combination with other treatment methods.
[0003] During the rehabilitation process of kidney diseases, hot compress physiotherapy is a common auxiliary treatment method. Among them, steam hot compress has attracted much attention due to its unique warm effect and humidity regulation function. The working principle of a steam hot compresser is to generate steam by heating water, and then use a special mask or cloth bag to transfer the steam to the local skin, so as to achieve the effects of promoting blood circulation, soothing muscles and relieving pain. This hot compress method is especially suitable for patients with kidney diseases because the kidneys are located in the waist, and hot compress can improve blood circulation in the renal area and promote the recovery of kidney function.
[0004] However, there are some obvious deficiencies in the existing steam hot compress devices during use, especially in the aspect of adaptive adjustment of the devices. Generally, once a steam hot compresser is turned on, it will immediately start outputting steam. However, many patients need to perform certain preparatory work before receiving treatment, such as adjusting body posture, relaxing muscles, ensuring a comfortable sitting or lying position, etc. During this process, due to the lack of an adaptive function in the device, the steam has already started to leak, resulting in the device starting to work before the patient is fully prepared. This not only causes waste of steam but also reduces the treatment efficiency because the hot compress effect is not maximally demonstrated when the patient is in an ideal state, and the patient's treatment experience is thus affected. Especially in the case where specific positions and pressures are required, premature steam release may cause discomfort and even affect the accuracy and uniformity of the hot compress. Furthermore, this wasted steam may increase energy consumption, thereby increasing the cost of using the device. Summary of the Invention
[0005] The purpose of the present invention is to provide a daily hot compress physiotherapy device for the rehabilitation of kidney diseases to solve the problems raised in the above background art.
[0006] To achieve the above purpose, the present invention provides the following technical solutions:
[0007] A daily hot compress physiotherapy device for the rehabilitation of kidney diseases, comprising a moving base and a cushion arranged on the moving base, wherein an adaptive sticking structure is arranged on the cushion, and the adaptive sticking structure includes:
[0008] A backrest cushion connected to the cushion and a driving member connected to the cushion. A chest cushion is further arranged on the driving member. When the driving member acts, it can drive the backrest cushion to rotate on the cushion, and at the same time drive the chest cushion to rotate and move closer to or away from the cushion;
[0009] Self-conducting mechanisms are arranged on both the backrest cushion and the chest cushion. When the self-conducting mechanisms on the backrest cushion and the chest cushion touch the patient's body and the resistance force reaches a preset pressure value, the self-conducting mechanisms are conducted. At this time, the steam inside the steam hot compress machine arranged on the moving base is transmitted to the backrest cushion and the chest cushion through a connecting pipe and leaks out from the inside thereof, realizing the hot compress function.
[0010] A daily hot compress physiotherapy device for the rehabilitation of kidney diseases as described above: The driving member includes a guiding mechanism fixed on one side of the cushion, a power source installed on the guiding mechanism, and a transmission mechanism connected to the power source;
[0011] The guiding mechanism includes a sliding frame fixed on one side of the cushion and a connecting rod fixed on the sliding frame. A spiral groove is arranged on the connecting rod.
[0012] A daily hot compress physiotherapy device for the rehabilitation of kidney diseases as described above: The power source includes a motor installed on the sliding frame, a second bevel gear fixed on the output shaft of the motor, and a transmission shaft fixed on the second bevel gear;
[0013] A stop-rotation guiding groove is arranged on the transmission shaft, and the second bevel gear meshes with a first bevel gear fixed on one side of the backrest cushion.
[0014] A daily hot compress physiotherapy device for the rehabilitation of kidney diseases as described above: The transmission mechanism includes a transverse movement component connected to the sliding frame, a linkage component connected to the transverse movement component, and a flipping component connected to the linkage component;
[0015] The transverse movement component includes a sliding bar sliding in the sliding frame, a first rotating seat fixed on the sliding bar, and a second rotating seat fixed at one end of the sliding bar.
[0016] The daily hot compress physiotherapy device for kidney disease rehabilitation as described above: the linkage assembly includes a transmission rod rotating in the sliding bar, a sleeve rod connected to the transmission rod and rotating on the first rotating seat, and a third bevel gear fixed to one end of the sleeve rod;
[0017] The convex ball on the inner wall of the transmission rod abuts against the spiral groove on the outer wall of the sliding frame. A transmission wheel is fixed to one end of the transmission rod. The transmission wheel is connected to the transmission wheel at the other end of the sleeve rod through a transmission belt. The sleeve rod is plugged into the transmission shaft.
[0018] The daily hot compress physiotherapy device for kidney disease rehabilitation as described above: the flip assembly includes a mounting plate whose one side rotates on the second rotating seat, a guide hole provided in the mounting plate, and a fourth bevel gear fixed to one side of the mounting plate;
[0019] The fourth helical gear meshes with the third helical gear.
[0020] A daily hot compress physiotherapy device for kidney disease rehabilitation as described above: a plurality of guide posts are fixed to the bottom of the chest support cushion, and the guide posts are slidably inserted into the guide holes;
[0021] A first spring is sleeved on the guide column, one end of the first spring abuts against the chest support cushion, and the other end abuts against the mounting plate. A limiting plate is fixed to one end of the guide column, and the limiting plate abuts against the mounting plate.
[0022] The daily hot compress physiotherapy device for kidney disease rehabilitation as described above: the self-conducting mechanism includes a resistance component sliding on the back cushion or the chest cushion and an elastic blocking component provided in the back cushion or the chest cushion and connected to the resistance component;
[0023] The interference component includes a trigger plate and a plurality of interference rods fixed on one side of the trigger plate, and through holes are distributed on the trigger plate.
[0024] As described above, a daily hot compress therapy device for kidney disease rehabilitation: the elastic blocking component includes a blocking plate sliding in the back cushion or the chest cushion, an inclined groove opened on the blocking plate and a plurality of second springs arranged at one end of the blocking plate.
[0025] The daily hot compress physiotherapy device for kidney disease rehabilitation as described above: the inclined groove abuts against the abutting rod, the blocking plate is provided with a plurality of through holes corresponding to the through holes on the trigger plate, one end of the second spring abuts against the blocking plate, and the other end abuts against the inner wall of the back cushion or the chest cushion;
[0026] A slotted hole is provided on the backrest cushion or the chestrest cushion to match the through hole.
[0027] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0028] The backrest cushion and chest cushion of the present invention can be flexibly adjusted in position and angle according to the patient's body posture and treatment needs. With this design of the adaptive fitting structure, whether the patient is sitting, lying down or semi-reclining, during steam hot compress, the backrest cushion and chest cushion can closely fit the patient's renal area, ensuring the maximization of the hot compress effect. This personalized design not only improves the accuracy of the hot compress but also makes the patient feel more comfortable and natural during use.
[0029] In addition, the self-conducting mechanism provided on the backrest cushion and chest cushion is a major highlight of the present invention. In actual use, patients often need some time to adjust their postures and relax their bodies before hot compress to achieve the best treatment state. The self-conducting mechanism of the present invention will only conduct and release hot compress steam when the backrest cushion and chest cushion are in contact with the patient's body. This means that patients can start receiving hot compress treatment only after being fully prepared. Such a design not only avoids the waste of steam, reduces energy consumption, but also lowers the equipment operation cost. At the same time, it also makes the patient feel more at ease and comfortable during use. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] Figure 1 Structural schematic diagram of the daily hot compress physiotherapy device for the rehabilitation of kidney diseases;
[0031] Figure 2 Structural schematic diagram of the daily hot compress physiotherapy device for the rehabilitation of kidney diseases from another perspective;
[0032] Figure 3 Structural schematic diagram of the moving base in the daily hot compress physiotherapy device for the rehabilitation of kidney diseases;
[0033] Figure 4 Structural schematic diagram of the daily hot compress physiotherapy device for the rehabilitation of kidney diseases with the moving base removed;
[0034] Figure 5 Structural schematic diagram of the backrest cushion in the daily hot compress physiotherapy device for the rehabilitation of kidney diseases;
[0035] Figure 6 Structural schematic diagram of the seat cushion in the daily hot compress physiotherapy device for the rehabilitation of kidney diseases;
[0036] Figure 7 Structural schematic diagram of the chest cushion in the daily hot compress physiotherapy device for the rehabilitation of kidney diseases;
[0037] Figure 8 Structural schematic diagram of the transmission mechanism in the daily hot compress physiotherapy device for the rehabilitation of kidney diseases;
[0038] Figure 9 Schematic diagram of the decomposition of the chest cushion in the daily hot compress physiotherapy device for the rehabilitation of kidney diseases;
[0039] Figure 10 Schematic diagram of the trigger plate in the daily hot compress physiotherapy device for the rehabilitation of kidney diseases;
[0040] Figure 11 Schematic diagram of the elastic sealing component in the daily hot compress physiotherapy device for the rehabilitation of kidney diseases;
[0041] Figure 12 The first contact state of the inclined groove and the contact rod in the daily hot compress physiotherapy device for the rehabilitation of kidney diseases;
[0042] Figure 13 The second contact state of the inclined groove and the contact rod in the daily hot compress physiotherapy device for the rehabilitation of kidney diseases.
[0043] In the figure: 1, moving base; 2, seat cushion; 3, sliding frame; 4, back cushion; 5, first helical gear; 6, second helical gear; 7, motor; 8, transmission shaft; 9, connecting rod; 10, sliding bar; 11, first rotating seat; 12, second rotating seat; 13, transmission rod; 14, sleeve rod; 15, third helical gear; 16, fourth helical gear; 17, mounting plate; 18, guide hole; 19, guide post; 20, limiting disc; 21, first spring; 22, chest cushion; 23, trigger plate; 24, insertion hole; 25, plugging plate; 26, inclined groove; 27, second spring; 28, contact rod. Detailed implementation manners
[0044] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments.
[0045] Please refer to Figures 1 - 4 , in the embodiment of the present invention, a daily hot compress physiotherapy device for the rehabilitation of kidney diseases includes a moving base 1 and a seat cushion 2 provided on the moving base 1. An adaptive application structure is provided on the seat cushion 2, and the adaptive application structure includes:
[0046] A back cushion 4 connected to the seat cushion 2 and a driving member connected to the seat cushion 2. A chest cushion 22 is further provided on the driving member. When the driving member operates, it can drive the back cushion 4 to rotate on the seat cushion 2, and at the same time drive the chest cushion 22 to rotate and approach or move away from the seat cushion 2;
[0047] Self-conducting mechanisms are provided on both the backrest cushion 4 and the chest cushion 22. When the self-conducting mechanisms on the backrest cushion 4 and the chest cushion 22 touch the patient's body and the resistance force reaches a preset pressure value, the self-conducting mechanisms are turned on. At this time, the steam inside the steam hot compress machine provided on the moving base 1 is transmitted to the backrest cushion 4 and the chest cushion 22 through the connecting pipe and leaks out from inside them, realizing the hot compress function.
[0048] In this embodiment, the backrest cushion 4 rotates on one side of the chest cushion 22. When using this device, the patient first sits on the seat cushion 2. Subsequently, through the action of the driving member, the movements of the backrest cushion 4 and the chest cushion 22 can be controlled. The structural design of the driving member enables the backrest cushion 4 and the chest cushion 22 to rotate towards or away from each other. Under the drive of the driving member, the chest cushion 22 can not only perform a rotating action but also move closer to or away from the backrest cushion 4. This unique movement mode enables the backrest cushion 4 and the chest cushion 22 to flexibly adjust the distance and angle between them according to the patient's body shape and treatment needs, so as to better fit the back and chest contours of the patient.
[0049] When the backrest cushion 4 and the chest cushion 22 are adjusted to the appropriate positions, the patient sitting on the seat cushion 2 will be clamped between them. Self-conducting mechanisms are provided on both the backrest cushion 4 and the chest cushion 22. The self-conducting mechanism is one of the core innovations of the present invention, which can realize the precise release of hot compress steam. A steam hot compress machine is provided on the moving base 1. This steam hot compress machine is an application of the prior art and is connected to the backrest cushion 4 and the chest cushion 22 through a connecting pipe. The connecting pipe is made of a material resistant to high temperature and steam corrosion to ensure that the steam can be safely and stably transmitted to the backrest cushion 4 and the chest cushion 22. When the patient's body contacts the self-conducting mechanisms on the backrest cushion 4 and the chest cushion 22, the self-conducting mechanisms will be triggered.
[0050] So that only after the patient contacts the backrest cushion 4 and the chest cushion 22, the hot compress steam will start to leak out for hot compress. Such an adaptive application effect can not only reduce unnecessary steam leakage, avoid energy waste, but also ensure that the hot compress steam acts precisely on the patient's renal area, improving the treatment effect. At the same time, during the process of the patient adjusting the posture or preparing for treatment, they will not be disturbed by the prematurely released steam, thus obtaining a more comfortable and reassuring treatment experience. During the entire hot compress process, the patient can further finely adjust the positions and angles of the backrest cushion 4 and the chest cushion 22 according to their own feelings to achieve the best treatment effect. In addition, the design of the moving base 1 enables the entire device to be moved to different positions as needed and adjust different usage heights, facilitating the use of the patient at home or in a medical institution. The moving base 1 is an application of the prior art and will not be elaborated here too much.
[0051] Please refer to Figures 4 - 6, as a further solution of the present invention, the driving member includes a guiding mechanism fixed on one side of the seat cushion 2, a power source installed on the guiding mechanism, and a transmission mechanism connected to the power source;
[0052] The guiding mechanism includes a sliding frame 3 fixed on one side of the seat cushion 2 and a connecting rod 9 fixed on the sliding frame 3. A spiral groove is provided on the connecting rod 9.
[0053] The power source includes a motor 7 installed on the sliding frame 3, a second bevel gear 6 fixed on the output shaft of the motor 7, and a transmission shaft 8 fixed on the second bevel gear 6;
[0054] A rotation prevention guiding groove is provided on the transmission shaft 8, and the second bevel gear 6 meshes with a first bevel gear 5 fixed on one side of the backrest cushion 4.
[0055] In this embodiment, the motor 7 is the core power source of the driving member, responsible for providing power support for the movement of the entire device. When the motor 7 is started, its output shaft will start to rotate, and this rotation action is the starting point of the entire driving mechanism. Since the second bevel gear 6 is fixed on the output shaft of the motor 7, the rotation of the motor 7 will directly drive the second bevel gear 6 to rotate together. There is a meshing relationship between the second bevel gear 6 and the first bevel gear 5, and this meshing between gears enables the power to be transmitted from the motor 7 to the backrest cushion 4. The backrest cushion 4 is installed on one side of the seat cushion 2 and can be rotationally adjusted around its connection point. Therefore, when the motor 7 operates, through the rotation of the second bevel gear 6, the backrest cushion 4 can achieve precise rotational adjustment, so as to adjust its position and angle according to the patient's body posture and treatment needs;
[0056] In addition, the rotation of the second bevel gear 6 will further drive the transmission shaft 8 fixed to it to rotate. The transmission shaft 8 is a key component for power transmission, and its rotation transmits the power to other related components through the transmission mechanism. This process enables the entire driving member to work together to achieve multi-directional movements of the backrest cushion 4 and the chest cushion 22, including complex actions such as rotation, approaching or moving away from the seat cushion 2, etc. Through this ingenious power transmission mechanism, the start of the motor 7 can not only drive the rotational adjustment of the backrest cushion 4, but also, through the coordinated action of the transmission shaft 8 and the transmission mechanism, achieve the overall movement function of the driving member. This design not only improves the flexibility and adaptability of the device, but also ensures the efficiency and precision of the entire hot compress physiotherapy process.
[0057] Please refer to Figures 6 - 9 , as a further solution of the present invention, the transmission mechanism includes a transverse movement component connected to the sliding frame 3, a linkage component connected to the transverse movement component, and a flipping component connected to the linkage component;
[0058] The transverse movement component includes a slide bar 10 slidably disposed within the slide frame 3, a first rotating seat 11 fixed to the slide bar 10, and a second rotating seat 12 fixed to one end of the slide bar 10.
[0059] The linkage component includes a transmission rod 13 rotatably disposed within the slide bar 10, a sleeve rod 14 connected to the transmission rod 13 and rotatably disposed on the first rotating seat 11, and a third helical gear 15 fixed to one end of the sleeve rod 14;
[0060] A convex ball on the inner wall of the transmission rod 13 abuts against a spiral groove on the outer wall of the slide frame 3. A transmission wheel is fixed to one end of the transmission rod 13, and the transmission wheel is connected to a transmission wheel at the other end of the sleeve rod 14 through a transmission belt. The sleeve rod 14 is inserted into the transmission shaft 8.
[0061] The flipping component includes a mounting plate 17 rotatably disposed on one side of the second rotating seat 12, a guiding hole 18 formed in the mounting plate 17, and a fourth helical gear 16 fixed to one side of the mounting plate 17;
[0062] The fourth helical gear 16 meshes with the third helical gear 15.
[0063] In this embodiment, the sleeve rod 14 and the transmission shaft 8 are connected by an insertion method. The inner wall of the sleeve rod 14 is provided with anti-rotation convex strips matching the anti-rotation guiding grooves on the transmission shaft 8. This design ensures that during the transmission process, the sleeve rod 14 can maintain a sliding insertion connection with the transmission shaft 8, thereby achieving stable power transmission and control. As the sleeve rod 14 rotates, due to the synchronous transmission relationship between the sleeve rod 14 and the transmission rod 13 through the transmission wheels and the transmission belt, the transmission rod 13 will rotate together with the sleeve rod 14. The transmission rod 13 makes corresponding movements inside the slide bar 10, and the convex ball fixed on its inner wall comes into contact with the spiral groove on the connecting rod 9, ensuring a stable fit between the two;
[0064] The connecting rod 9 is fixed to the sliding frame 3, while the sleeve rod 14 is meshed and driven with the fourth bevel gear 16 through the fixed third bevel gear 15. The fourth bevel gear 16 is fixed to the mounting plate 17, and the mounting plate 17 can rotate on the second rotating seat 12. The second rotating seat 12 is fixed to the sliding strip 10, further ensuring the stability and accuracy of the system. Through such a design, when the sleeve rod 14 rotates, its interaction with the transmission system can adjust the rotation position of the mounting plate 17 on the second rotating seat 12, thereby controlling the flipping angle of the mounting plate 17 to ensure that it can be precisely adjusted as needed. In addition, due to the sliding fit of the transmission rod 13 on the connecting rod 9, when the sleeve rod 14 starts to rotate, the mounting plate 17 will flip accordingly and move closer to the seat cushion 2 side, ensuring stability and comfort during movement, and further improving the practicality and performance of the device.
[0065] Please refer to Figure 7 and Figure 9 As a further solution of the present invention, a plurality of guide posts 19 are fixed to the bottom of the chest cushion 22, and the guide posts 19 are slidably inserted into the guide holes 18.
[0066] A first spring 21 is sleeved on the guide post 19. One end of the first spring 21 abuts against the chest cushion 22, and the other end abuts against the mounting plate 17. A limiting disk 20 is fixed to one end of the guide post 19, and the limiting disk 20 abuts against the mounting plate 17.
[0067] In this embodiment, the design of the chest cushion 22 fully considers the usage requirements of patients with different body types to ensure the best application effect during hot compress. Specifically, a plurality of guide posts 19 are fixed to the bottom of the chest cushion 22, and these guide posts 19 are slidably inserted into the guide holes 18 on the mounting plate 17. The guide holes 18 provide an accurate sliding path for the movement of the chest cushion 22 to ensure that it can move smoothly and accurately during the operation of the device. To further optimize the application effect of the chest cushion 22, a first spring 21 is provided between the chest cushion 22 and the mounting plate 17. The first spring 21 is sleeved on the guide post 19, with one end abutting against the bottom of the chest cushion 22 and the other end abutting against the mounting plate 17. This design enables the first spring 21 to provide appropriate elastic support and resilience when the chest cushion 22 moves.
[0068] When the patient sits on the seat cushion 2 and starts the device, the driving member drives the chest support cushion 22 closer to the patient. At this time, the first spring 21 begins to work. As the chest support cushion 22 gradually approaches the patient's chest, the first spring 21 is compressed and elastically deformed. When the chest support cushion 22 contacts the patient's chest, the rebound force of the first spring 21 can be automatically adjusted according to the patient's body shape and chest contour, thereby controlling the distance between the chest support cushion 22 and the mounting plate 17. This adaptive adjustment mechanism enables the chest support cushion 22 to fit closely to the patient's chest, regardless of whether the patient is thin or plump, and can maintain a good application effect. The design of the first spring 21 also provides additional comfort for the patient. During the hot compress process, the chest support cushion 22 can evenly disperse the pressure through the elastic support of the first spring 21, avoiding excessive pressure on the patient's chest, while ensuring that the hot compress steam can be effectively transmitted to the patient's kidney area, thereby achieving an ideal therapeutic effect.
[0069] See also Figures 10 - 13 As a further solution of the present invention, the self-conducting mechanism includes a resistance component sliding on the back cushion 4 or the chest cushion 22 and an elastic blocking component provided in the back cushion 4 or the chest cushion 22 and connected to the resistance component;
[0070] The interference component includes a trigger plate 23 and a plurality of interference rods 28 fixed to one side of the trigger plate 23 . Through holes are distributed on the trigger plate 23 .
[0071] The elastic blocking component includes a blocking plate 25 sliding in the back cushion 4 or the chest cushion 22 , an inclined groove 26 provided on the blocking plate 25 , and a plurality of second springs 27 provided at one end of the blocking plate 25 .
[0072] The inclined slot 26 abuts against the abutting rod 28, and the blocking plate 25 is provided with a plurality of corresponding through holes that match the through holes on the trigger plate 23. One end of the second spring 27 abuts against the blocking plate 25, and the other end abuts against the inner wall of the backrest cushion 4 or the chest cushion 22.
[0073] The backrest cushion 4 or the chest cushion 22 is provided with a slotted hole that matches the through hole.
[0074] The backrest cushion 4 or the chest cushion 22 is provided with an inserting hole 24 corresponding to the abutting rod 28 .
[0075] In this embodiment, the hot compress steam begins to leak only when the back cushion 4 or the chest cushion 22 comes into contact with the patient's body, thereby avoiding unnecessary steam waste and improving the effect of the hot compress treatment;
[0076] Specifically, when the patient sits on the cushion 2 and adjusts the posture, the backrest cushion 4 and the chest cushion 22 will gradually approach the patient's body according to the action of the driving member. At this time, the trigger plate 23 will first contact the patient's back or chest. Due to the resistance force from the patient's body, the trigger plate 23 will approach the chest cushion 22 or the backrest cushion 4. A plurality of contact rods 28 are fixed on the trigger plate 23, and the contact rods 28 are inserted into the insertion holes 24, which can limit the movement of the trigger plate 23 in a direction perpendicular to the chest cushion 22 or the backrest cushion 4. The blocking plate 25 slides inside the chest cushion 22 or the backrest cushion 4 to ensure that it can only move in a direction parallel to the trigger plate 23. These contact rods 28 cooperate with the inclined grooves 26 on the blocking plate 25;
[0077] In the initial position, the contact rod 28 abuts against the higher end of the inclined groove 26. This design enables the blocking plate 25 to rise inside the chest cushion 22 or the backrest cushion 4 under the elastic force of the second spring 27. At this time, the through hole opened on the blocking plate 25 is misaligned with the slot hole opened on the chest cushion 22 or the backrest cushion 4. Due to the misalignment between the through hole and the slot hole, the blocking plate 25 can effectively block the slot hole on the chest cushion 22 or the backrest cushion 4, thereby preventing the hot compress steam from leaking internally. This process ensures that the hot compress steam is not wasted when it does not contact the patient's body, and at the same time prepares for the subsequent hot compress treatment;
[0078] However, when the trigger plate 23 further approaches the chest cushion 22 or the backrest cushion 4, due to the continuous abutment between the contact rod 28 and the inclined groove 26, the contact rod 28 will push the blocking plate 25 to slide forcedly. The blocking plate 25 slides along the inclined surface of the inclined groove 26 and gradually moves towards one end of the second spring 27. This sliding process will squeeze the second spring 27 to keep it having a certain elastic force. As the blocking plate 25 slides, the through hole opened on it gradually aligns with the slot hole opened on the chest cushion 22 or the backrest cushion 4. At the same time, the through hole opened on the trigger plate 23 also aligns with the slot hole.
[0079] When these through holes and slot holes are completely aligned, the hot compress steam inside the chest cushion 22 or the backrest cushion 4 can smoothly leak out through these channels. The steam passes through the through hole on the trigger plate 23 and directly acts on the patient's kidney area, thereby realizing precise steam hot compress. This design not only ensures that the hot compress steam starts to be released when it contacts the patient's body, but also can automatically adjust the release amount of the steam according to the patient's body contour and contact force, further improving the comfort and effectiveness of the hot compress treatment.
[0080] The above embodiments are exemplary rather than restrictive. Therefore, without departing from the spirit or basic characteristics of the present invention, all technical solutions that can implement the present invention in other specific forms are included in the present invention.
Claims
1. A daily hot compress physiotherapy device for kidney disease rehabilitation, comprising a mobile base (1) and a seat cushion (2) arranged on the mobile base (1), characterized in that: The seat cushion (2) is provided with an adaptive patch structure, and the adaptive patch structure comprises: A backrest cushion (4) connected to the seat cushion (2) and a driving member connected to the seat cushion (2), wherein the driving member is further provided with a chest cushion (22), and when the driving member is actuated, the backrest cushion (4) can be driven to rotate on the seat cushion (2), and the chest cushion (22) can be driven to rotate and move closer to or away from the seat cushion (2); The backrest cushion (4) and the chest cushion (22) are both provided with a self-conducting mechanism. When the self-conducting mechanism on the backrest cushion (4) and the chest cushion (22) touches the patient's body and the resistance force reaches a preset pressure value, the self-conducting mechanism is turned on. At this time, the steam inside the steam hot compress machine provided on the mobile base (1) is transmitted to the backrest cushion (4) and the chest cushion (22) through the connecting pipe and is discharged from the inside thereof; The self-conducting mechanism comprises a resistance component that slides on the backrest cushion (4) or the chest cushion (22) and an elastic blocking component that is arranged in the backrest cushion (4) or the chest cushion (22) and is connected to the resistance component; The interference component comprises a trigger plate (23) and a plurality of interference rods (28) fixed to one side of the trigger plate (23); through holes are distributed on the trigger plate (23); The elastic blocking component includes a blocking plate (25) sliding in the backrest cushion (4) or the chest cushion (22), an inclined groove (26) provided on the blocking plate (25), and a plurality of second springs (27) provided at one end of the blocking plate (25); The inclined groove (26) abuts against the abutting rod (28), and a plurality of corresponding through holes are provided on the blocking plate (25) to match the through holes on the trigger plate (23); one end of the second spring (27) abuts against the blocking plate (25), and the other end abuts against the inner wall of the backrest cushion (4) or the chest cushion (22); A slotted hole is provided on the backrest cushion (4) or the chest cushion (22) to match the through hole.
2. The daily hot compress physiotherapy device for kidney disease rehabilitation according to claim 1, wherein, The driving member comprises a guide mechanism fixed to one side of the seat cushion (2), a power source mounted on the guide mechanism, and a transmission mechanism connected to the power source; The guide mechanism comprises a sliding frame (3) fixed to one side of the seat cushion (2) and a connecting rod (9) fixed to the sliding frame (3), wherein the connecting rod (9) is provided with a spiral groove; The power source comprises a motor (7) mounted on the sliding frame (3), a second helical gear (6) fixed on the output shaft of the motor (7), and a transmission shaft (8) fixed on the second helical gear (6); A rotation-stop guide groove is provided on the transmission shaft (8), and the second helical gear (6) is meshed with the first helical gear (5) fixed to one side of the backrest cushion (4); The transmission mechanism comprises a transverse movement component connected to the sliding frame (3), a linkage component connected to the transverse movement component, and a flipping component connected to the linkage component.
3. The daily hot compress physiotherapy device for kidney disease rehabilitation according to claim 2, characterized in that, The transverse movement component includes a sliding bar (10) sliding within the sliding frame (3), a first rotating seat (11) fixed to the sliding bar (10), and a second rotating seat (12) fixed to one end of the sliding bar (10); The linkage component includes a transmission rod (13) rotating within the sliding bar (10), a sleeve rod (14) connected to the transmission rod (13) and rotating on the first rotating seat (11), and a third bevel gear (15) fixed to one end of the sleeve rod (14); The convex ball on the inner wall of the transmission rod (13) abuts against the spiral groove on the outer wall of the sliding frame (3). A transmission wheel is fixed to one end of the transmission rod (13), and the transmission wheel is connected to the transmission wheel at the other end of the sleeve rod (14) through a transmission belt. The sleeve rod (14) is inserted into the transmission shaft (8); The flipping component includes a mounting plate (17) rotatable on one side on the second rotating seat (12), a guiding hole (18) opened on the mounting plate (17), and a fourth bevel gear (16) fixed to one side of the mounting plate (17); The fourth bevel gear (16) meshes with the third bevel gear (15).
4. The daily hot compress physiotherapy device for kidney disease rehabilitation according to claim 3, wherein, A plurality of guiding columns (19) are fixed to the bottom of the chest cushion (22), and the guiding columns (19) are slidably inserted into the guiding holes (18); A first spring (21) is sleeved on the guiding column (19). One end of the first spring (21) abuts against the chest cushion (22), and the other end abuts against the mounting plate (17). A limiting disc (20) is fixed to one end of the guiding column (19), and the limiting disc (20) abuts against the mounting plate (17).
5. The daily hot compress physiotherapy device for kidney disease rehabilitation according to claim 4, characterized in that, A plugging hole (24) is opened on the backrest cushion (4) or the chest cushion (22) corresponding to the abutting rod (28).
Citation Information
Patent Citations
Kidney warming chair for nephrology department
CN109820681A
Automatic hot compress device for traditional Chinese medicine
CN119454330A