High-adaptability adjustable acupuncture bed
By designing adjustable arm, leg, and head supports, and combining them with a moxibustion cover and electromagnetic wave therapy device, the problems of poor body position adaptability and limited functionality of existing acupuncture beds have been solved. This enables multi-angle fine adjustment and integrated treatment, improving treatment efficiency and safety.
Patent Information
- Application Number
- CN202511424594.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-30
- Publication Date
- 2025-11-18
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing acupuncture beds have fixed structures or limited height adjustment functions, making them difficult to adapt to different treatment methods. This results in poor body position adaptability, limited functionality, and inconvenient adjustment, affecting treatment efficiency and safety.
A highly adaptable adjustable acupuncture bed was designed, integrating independently adjustable arm support, leg support, and head support. Combined with a moxibustion cover and an embedded electromagnetic wave therapy device, it achieves multi-angle fine adjustment and integrated treatment through motor drive and track sliding structure.
It enables precise multi-angle positioning of the patient's limbs, improves the accuracy of acupoint selection and treatment effect, avoids clinic contamination, simplifies the operation process, adapts to patients of different body types and symptoms, and enhances the convenience and safety of treatment.
Smart Images

Figure CN120960012A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of therapeutic auxiliary equipment technology, specifically relating to a highly adaptable adjustable acupuncture bed. Background Technology
[0002] An acupuncture bed is a specialized medical bed designed specifically for acupuncture treatment. Its core objective is to provide patients with a comfortable, stable, and easy-to-operate treatment environment. The bed surface is usually covered with a soft, high-density sponge pad and waterproof and stain-resistant synthetic leather.
[0003] In current clinical acupuncture treatment and rehabilitation therapy, most treatment beds are fixed structures or only have basic height adjustment functions, which have significant limitations in adapting to complex treatment needs and have become a key bottleneck in improving efficacy and efficiency.
[0004] First, the bed's poor adaptability to patient positioning makes it difficult to precisely support specific therapies. Traditional treatment beds cannot provide independent, multi-angle, and precise adjustments for the patient's legs, hands, and head. However, when performing therapies such as bloodletting, acupuncture at joints, or relieving tension in specific muscle groups, it is often necessary to position the limbs in specific flexion, abduction, or elevation positions. Existing equipment forces the practitioner or patient to maintain a forced posture, which not only easily leads to fatigue but may also affect the accuracy of acupoint selection, needle insertion feel, and final therapeutic effect due to inaccurate positioning or compensatory muscle tension. It may even pose a risk of needle bending or retention.
[0005] Secondly, the functions are limited and insufficient in synergy with modern physical therapies. Acupuncture treatment is often combined with physical therapies such as moxibustion and electromagnetic wave therapy to enhance the effects of warming the meridians and promoting blood circulation. However, existing treatment beds are merely passive support platforms, and the smoke generated during moxibustion lacks a dedicated, adjustable smoke collection device, easily causing air pollution in the treatment room. At the same time, external electromagnetic wave therapy devices need to be placed separately on mobile supports, which is inconvenient to adjust, takes up space, and has messy wiring. They cannot form an integrated, streamlined treatment loop with the acupuncture process, seriously affecting the convenience of treatment and the overall experience.
[0006] Furthermore, inconvenient adjustments affect treatment efficiency and the implementation of personalized treatment plans. Even though some high-end treatment beds offer adjustment functions for certain areas, their adjustment mechanisms are often cumbersome (requiring manual tightening of multiple bolts), lack intuitive scales, or have unreliable locking mechanisms. This makes switching positions between different treatment stages time-consuming and laborious, unable to quickly respond to the real-time operational needs of physicians, and even more difficult to efficiently and repeatedly set personalized optimal treatment positions for patients of different body types or with different conditions, thus hindering the standardization and efficiency improvement of clinical diagnosis and treatment.
[0007] Therefore, there is an urgent need in the existing technology for a highly adaptable integrated treatment platform that can achieve precise adjustment of multiple parts of the body and deeply integrate the functions of moxibustion and physical therapy, in order to solve the pain points that have long existed in the clinical practice mentioned above. Summary of the Invention
[0008] To address the aforementioned problems in the prior art, this invention provides a highly adaptable adjustable acupuncture bed, aiming to solve the technical problem that most existing treatment beds are fixed structures or only have basic height adjustment functions, making it difficult to adapt to different treatment methods.
[0009] To achieve the above objectives, the present invention provides the following technical solution: a highly adaptable adjustable acupuncture bed, comprising a bed frame, wherein a main back pad is provided on the top of the bed frame, and two arm support members are symmetrically distributed on both sides of the main back pad near the vertical section of the bed frame;
[0010] Two leg supports are symmetrically distributed at the end of the main back cushion away from the vertical section of the bed; a head support is provided at the end of the main back cushion near the vertical section of the bed, and a moxibustion cover is provided at the end of the bed near the head support;
[0011] The bed has mounting slots on both sides away from the main backrest, and an electromagnetic wave therapy device is installed on the inner wall of the mounting slot.
[0012] Furthermore, the main back pad is slidably connected to the inner walls on both sides near the arm support member, and the inner wall of the moving link is threaded with an adjusting screw. Both ends of the adjusting screw are rotatably connected to the inner wall of the main back pad, and the adjusting screw is driven by a motor.
[0013] The inner wall of the moving connector has two symmetrically distributed limiting posts that slide together, and both ends of the limiting posts are fixed to the inner wall of the main back pad.
[0014] Furthermore, a rotating shaft is fixed to the end of the moving link away from the main back pad, and an arm reserved groove is opened on the side of the arm support near the rotating shaft. The inner wall of the arm reserved groove is rotatably connected to the circumferential surface of the rotating shaft. An adjusting column is fixed to the side of the arm support away from the bed, and a gripping groove that surrounds the adjusting column is opened on the circumferential surface of the adjusting column near the arm support.
[0015] Furthermore, the head support is fixed with multiple fixed columns on the side near the bed, and an end shaft is fixed at the end of the fixed column near the main back pad, the surface of the end shaft being rotatably connected to the inner wall of the main back pad.
[0016] Furthermore, the main backrest is provided with a transport track on the side near the bed body, and a support slide is slidably connected to the surface of the transport track. A base component is fixed on the side of the support slide away from the transport track, and a leg support component is provided on the top of the base component.
[0017] Furthermore, a rotating reserved groove is provided on the side of the leg support near the base and the end near the main back pad. An angle adjustment shaft is fixed to the inner wall of the rotating reserved groove, and the circumferential surface of the angle adjustment shaft is fixed to the side of the base near the leg support.
[0018] Furthermore, a bottom shaft is rotatably connected to the side of the transport track near the main back pad, and the other end of the bottom shaft is provided with the main back pad.
[0019] Furthermore, a bottom moving groove is provided on the side of the main back pad near the bottom shaft component. A limiting rectangular plate is slidably connected to the inner wall of the bottom moving groove. The bottom shaft component is fixed on the side of the limiting rectangular plate away from the main back pad. A drive screw is threadedly connected to the inner wall of the limiting rectangular plate. The drive screw is driven by a motor.
[0020] Furthermore, the arm support has an elbow groove on the side away from the bed, the leg support has a leg groove on the side away from the bed, and the end of the leg support away from the main backrest is set as an inclined surface.
[0021] Furthermore, multiple spring plates are fixed in a circumferential array at both ends of the rotating shaft, on the circumferential surface of the end shaft, on the circumferential surface of the bottom shaft, and on the circumferential surface of the angle adjustment shaft;
[0022] The inner wall of the arm reserved groove, the inner wall where the main back pad fits with the end shaft, the inner wall where the main back pad fits with the circumferential surface of the bottom shaft, and the surface of the base component near the rotation reserved groove are all provided with arc grooves that match the spring sheet, and the inner wall of the arc groove is nested with the surface of the spring sheet.
[0023] Compared with the prior art, the beneficial effects of the present invention are:
[0024] 1. In this invention, independently adjustable arm, leg, and head supports enable multi-angle and precise positioning adjustments for the patient's limbs and head. This not only meets the specific positioning requirements of different acupuncture therapies, such as bloodletting and joint acupuncture, but also reduces muscle tension caused by discomfort in the patient's posture, improves the accuracy of acupoint selection and the stability of needle insertion, thereby enhancing the therapeutic effect and safety.
[0025] 2. In this invention, the bed integrates a moxibustion cover and an embedded electromagnetic wave therapy device, which allows acupuncture, moxibustion and physical therapy to be seamlessly connected on the same platform. The moxibustion smoke is centrally treated to avoid pollution in the clinic. The electromagnetic wave therapy device does not require external equipment, saves space and is easy to operate, forming an efficient integrated treatment loop and enhancing the overall therapeutic effect of warming the meridians and promoting blood circulation.
[0026] 3. This invention employs a motor-driven adjusting screw, track sliding, and shaft structure to achieve rapid and stable adjustment of each supporting component. The physician can easily switch patient positions without cumbersome manual adjustments, significantly shortening treatment preparation time, supporting the efficient implementation of personalized treatment plans, and is suitable for patients of different body types and various conditions.
[0027] 4. In this invention, the nested design of spring plates and arc grooves, along with structures such as limiting posts and limiting rectangular plates, ensures the locking stability of each support component after adjustment. This avoids accidental movement caused by loosening of the support components during treatment, ensuring the safety of both patients and medical personnel, while also improving the durability and reliability of the equipment. Attached Figure Description
[0028] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used in conjunction with embodiments of the invention to explain the invention and do not constitute a limitation thereof. In the drawings:
[0029] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0030] Figure 2 This is a schematic diagram of the arm support component in this invention;
[0031] Figure 3 This is an exploded view of the rotating shaft component in this invention;
[0032] Figure 4 This is an exploded view of the moving link in this invention;
[0033] Figure 5 This is a schematic diagram of the transport track in this invention;
[0034] Figure 6 This is a schematic diagram of the fixed connecting column in this invention;
[0035] Figure 7 This is a schematic diagram of the leg support member in this invention;
[0036] Figure 8 This is a schematic diagram of the basic components in this invention;
[0037] Figure 9 This is a cross-sectional view of the drive screw in this invention.
[0038] Legend:
[0039] 1. Bed frame; 101. Main backrest;
[0040] 201. Arm support; 202. Leg support; 203. Head support; 204. Moxibustion cover; 205. Electromagnetic wave therapy device;
[0041] 3. Moving link; 301. Rotating shaft; 302. Adjusting screw; 303. Limiting post; 304. Arm pre-reserved slot;
[0042] 4. Spring sheet;
[0043] 5. Adjustment column; 501. Grip groove;
[0044] 6. Elbow groove; 601. Leg groove; 602. Incline;
[0045] 7. Fixed connecting column; 701. End shaft;
[0046] 8. Supporting sliding parts; 801. Transport track;
[0047] 9. Basic components; 901. Angle adjustment shaft; 902. Rotation reserved slot;
[0048] 10. Bottom shaft component;
[0049] 11. Bottom moving groove; 1101. Drive screw; 1102. Restricting rectangular plate. Detailed Implementation
[0050] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0051] Example 1:
[0052] Please see Figures 1-9 This embodiment provides the following technical solution: A highly adaptable adjustable acupuncture bed, including a bed body 1, a main back pad 101 at the top of the bed body 1, two arm supports 2 symmetrically distributed on both sides of the main back pad 101 near the vertical section of the bed body 1; two leg supports 201 symmetrically distributed at the end of the main back pad 101 away from the vertical section of the bed body 1; a head support 202 is provided at the end of the main back pad 101 near the vertical section of the bed body 1, and a moxibustion cover 203 is provided at the end of the bed body 1 near the head support 202; mounting grooves are provided on both sides of the bed body 1 away from the main back pad 101, and an electromagnetic wave therapy device 204 is provided on the inner wall of the mounting groove.
[0053] Specifically, the bed frame 1 serves as the core support structure, with the main backrest 101 at its top providing primary support for the patient's torso. Arm supports 2, leg supports 201, and head supports 202 are symmetrically arranged on both sides, one end, and the other end of the main backrest 101, forming a complete support system that can be independently adjusted for each limb.
[0054] In addition, a moxibustion cover 203 is integrated at one end of the bed 1 to collect smoke when moxibustion is performed on the head or upper body to keep the environment clean; electromagnetic wave therapy device 204 is embedded in the mounting slots on both sides of the bed 1, so that it is integrated with the acupuncture bed without the need for additional support, realizing a high degree of integration of acupuncture, moxibustion and physical therapy functions.
[0055] By incorporating adjustable arm support 2, leg support 201, and head support 202, and integrating a moxibustion cover 203 with an electromagnetic wave therapy device 204, the system achieves integrated treatment functions and high adaptability to patient positioning. It provides independent support for the main parts of the body—arms, legs, and head—and allows for simultaneous acupuncture and moxibustion. Through the smoke collection function of the moxibustion cover 203 and electromagnetic wave physical therapy, it effectively solves the problems of traditional treatment beds—limited functionality, fixed positioning, and dispersed equipment—significantly improving the convenience, synergy, and space utilization of treatment.
[0056] The inner walls of the main back pad 101 near the arm support 2 are slidably connected to moving links 3. The inner walls of the moving links 3 are threaded with adjusting screws 302. Both ends of the adjusting screws 302 are rotatably connected to the inner walls of the main back pad 101. The adjusting screws 302 are driven by a motor. The inner walls of the moving links 3 are slidably connected to two symmetrically distributed limiting posts 303. Both ends of the limiting posts 303 are fixed to the inner walls of the main back pad 101.
[0057] The moving link 3 is fixed with a rotating shaft 301 at the end away from the main back pad 101. The arm support 2 is provided with an arm reserved groove 304 on the side near the rotating shaft 301. The inner wall of the arm reserved groove 304 is rotatably connected to the circumferential surface of the rotating shaft 301. The arm support 2 is fixed with an adjusting column 5 on the side away from the bed 1. The adjusting column 5 is provided with a gripping groove 501 around the adjusting column 5 on the circumferential surface near the arm support 2.
[0058] Specifically, by driving the adjusting screw 302 to rotate by the motor, the moving link 3 connected to it by the threaded connection slides smoothly along the direction defined by the limiting post 303 on the inner wall of the main back pad 101, thereby achieving precise control of the height adjustment of the arm support 2.
[0059] The moving link 3 rotates with the arm support 2 via the rotating shaft 301 at its end, allowing the arm support 2 to rotate around the rotating shaft 301. The adjusting column 5 and its grip groove 501 provide a good grip point for doctors and users, facilitating manual fine-tuning of the angle of the arm support 2 and applying torque to lock the position. Together, they achieve a combination of electric and manual adjustment of the position and angle of the arm support 2.
[0060] By using an adjusting screw 302 driven by a motor to slide the moving link 3, and through the rotational engagement of the rotating shaft 301 and the arm pre-reserved slot 304, the position and angle of the arm support 2 can be electrically and precisely adjusted. This allows doctors to quickly and effortlessly adjust the support position and angle of the patient's arm, and to fine-tune or fix it using the gripping slot 501 on the adjusting column 5. This meets the precise requirements of different acupuncture therapies for arm position, improving adjustment efficiency and treatment accuracy.
[0061] The head support 202 is fixed with multiple fixed columns 7 on the side near the bed 1. The fixed column 7 is fixed with an end shaft 701 at the end near the main back pad 101. The surface of the end shaft 701 is rotatably connected to the inner wall of the main back pad 101.
[0062] Specifically, the head support 202 is rotatably connected to the main back pad 101 via multiple fixed connecting posts 7 and end shafts 701 at its ends. This allows the head support 202 to be adjusted in pitch around the axis of the end shafts 701, thereby adapting to different cervical curvature requirements or treatment needs of patients and ensuring that the head is always at a comfortable angle that facilitates exposure of the treatment area.
[0063] The head support 202 is rotatably connected to the main back pad 101 via the end shaft 701, enabling flexible adjustment of the head support 202's angle. This allows for convenient adjustment of the head support's tilt angle according to treatment needs or patient comfort, helping to fully expose neck acupoints and maintain a clear airway, thus improving the suitability of head and neck treatments and the patient experience.
[0064] The main backrest 101 is provided with a transport track 801 on the side near the bed frame 1. A support slide 8 is slidably connected to the surface of the transport track 801. A base component 9 is fixed on the side of the support slide 8 away from the transport track 801. A leg support component 201 is provided on the top of the base component 9.
[0065] A rotating reserved groove 902 is provided on the side of the leg support 201 near the base 9 and the end near the main back pad 101. An angle adjustment shaft 901 is fixed on the inner wall of the rotating reserved groove 902. The circumference of the angle adjustment shaft 901 is fixed to the side of the base 9 near the leg support 201.
[0066] The transport track 801 is rotatably connected to the bottom shaft 10 on one side near the main back pad 101, and the other end of the bottom shaft 10 is provided with the main back pad 101.
[0067] The main back pad 101 has a bottom moving groove 11 on the side near the bottom shaft 10. A limiting rectangular plate 1102 is slidably connected to the inner wall of the bottom moving groove 11. The bottom shaft 10 is fixed to the side of the limiting rectangular plate 1102 away from the main back pad 101. A drive screw 1101 is threadedly connected to the inner wall of the limiting rectangular plate 1102. The drive screw 1101 is driven by a motor.
[0068] Specifically, the leg support 201 is connected to the transport track 801 through the base component 9 and the support slide 8, so that it can slide along the length of the bed 1 to accommodate patients of different heights.
[0069] The leg support 201 is hinged to the base 9 via a rotation reserved groove 902 and an angle adjustment shaft 901, allowing it to be rotated up and down.
[0070] The motor drives the screw 1101 to rotate, causing the limiting rectangular plate 1102 to move within the bottom moving groove 11. This adjusts the height of the bottom shaft 10, which is fixed to the limiting rectangular plate 1102. The bottom shaft 10 can change the angle of the transport track 801, allowing the entire leg support assembly on the transport track 801 to slide smoothly. This system comprehensively achieves the adjustment of the distance between the leg support 201 and the main back pad 101, as well as the adjustment of its own angle.
[0071] The leg support 201 achieves dual adjustment functions—position movement and angle rotation—through the transport track 801, support slide 8, angle adjustment shaft 901, and bottom shaft 10 controlled by drive screw 1101. This allows the leg support 201 to slide along the bed 1 to accommodate patients of different heights and to adjust its angle to achieve various treatment positions such as leg flexion and leg elevation, greatly enhancing its ability to adapt to lower limb and lumbar abdominal treatments, resulting in concentrated and stable operation.
[0072] The arm support 2 has an elbow groove 6 on the side away from the bed 1, the leg support 201 has a leg groove 601 on the side away from the bed 1, and the end of the leg support 201 away from the main back pad 101 is set as an inclined surface 602.
[0073] Specifically, the elbow groove 6 opened on the arm support 2 provides a natural space for the patient's elbow joint, increasing the stability and comfort of arm placement;
[0074] The leg groove 601 on the leg support 201 also provides fitting support for the knee bend and distributes pressure. In addition, the distal end face of the leg support 201 is designed as a slope 602, which effectively avoids hard pressure on the patient's Achilles tendon or distal calf when the leg is raised, improving the comfort of long-term treatment.
[0075] By creating elbow grooves 6 and leg grooves 601 on the arm support 2 and leg support 201 respectively, and designing the end of the leg support 201 as a bevel 602, the ergonomic design of the support components is improved. The elbow grooves 6 and leg grooves 601 provide natural and stable accommodation space for the elbow joint and knee, increasing comfort and stability; the bevel 602 design avoids pressure on the patient's Achilles tendon or calf at the end of the leg support 201, reducing potential discomfort during prolonged treatment.
[0076] Multiple spring plates 4 are fixed in a circular array at both ends of the rotating shaft 301, on the circumference of the end shaft 701, on the circumference of the bottom shaft 10, and on the circumference of the angle adjustment shaft 901. The inner wall of the arm reserved groove 304, the inner wall where the main back pad 101 fits with the end shaft 701, the inner wall where the main back pad 101 fits with the circumference of the bottom shaft 10, and the surface of the base 9 near the rotating reserved groove 902 are all provided with arc grooves that match the spring plates 4. The inner wall of the arc groove is nested with the surface of the spring plate 4.
[0077] Specifically, multiple spring plates 4 are arranged in an array on the circumference of multiple rotating components, such as the rotating shaft 301, the end shaft 701, the bottom shaft 10, and the angle adjustment shaft 901. Matching arc grooves are also formed on the surfaces of the parts that cooperate with them, such as the inner wall of the arm reserved groove 304, the inner wall of the main back pad 101, and the base component 9.
[0078] When these components are rotated, the spring plate 4 will undergo elastic deformation; when rotated to the position where the spring plate 4 is aligned with the arc groove, the spring plate 4 will be embedded into the arc groove under the action of restoring force, producing a clear sense of positioning and providing a certain self-locking force, thereby effectively preventing the support from rotating unexpectedly due to external force during treatment, ensuring the stability and safety of the treatment position.
[0079] By incorporating spring plates 4 on rotating components such as the rotating shaft 301, end shaft 701, bottom shaft 10, and angle adjustment shaft 901, and by creating arc grooves on the corresponding mating surfaces, multi-position precise locking of the rotation angle is achieved. The nested structure of the spring plates 4 and the arc grooves provides a clear sense of the position during adjustment, and achieves self-locking through elastic force after adjustment, preventing changes in the angle of the support components due to accidental force during treatment, thus ensuring the stability and safety of the treatment position.
[0080] Example 2:
[0081] Please see Figures 1-9 In this embodiment, the staff used the device disclosed in this invention in a separate treatment room of the acupuncture department of a traditional Chinese medicine hospital;
[0082] A male patient with cervical spondylosis and lumbar disc herniation, who is 175 cm tall and weighs 70 kg, is being treated on a highly adaptable adjustable acupuncture bed.
[0083] The patient lies prone on the main backrest of the bed. The doctor first operates the control panel to start the motor, which drives the adjusting screws inside both sides of the main backrest to rotate, causing the moving parts to rise smoothly along the limit post, and adjusting the double arm support to a height of 35 cm from the bed surface.
[0084] The physician then holds the grip groove on the adjustment column, abducts and fixes the patient's arms 30 degrees, allowing the elbow joints to naturally fit into the elbow groove of the arm support. Next, the physician manually adjusts the head support, rotating it 15 degrees around the end axle, so that the patient's forehead comfortably fits against the headrest, fully exposing the Fengchi and Jiaji acupoints at the back of the neck.
[0085] For lower limb adjustment, the physician drives the drive screw in the bottom moving groove through the control system, pushes the limiting rectangular plate to drive the bottom shaft component to rise, so that the leg support component on the transport track tilts 20 degrees as a whole; then the leg support component is manually lifted, so that it rotates 40 degrees around the angle adjustment axis, the patient's knee bend is inserted into the leg groove, and the lower leg is supported by the inclined surface to form a knee-flexed position.
[0086] After the patient's position was set, the physician placed moxa cones on the patient's Yaoyangguan acupoint and lowered the moxibustion cover. At the same time, the electromagnetic wave therapy device installed in the slots on both sides of the bed was activated to irradiate the Shenshu acupoint area. During the treatment, the physician applied needles precisely, and because the patient's position was stable and comfortable, no needle bending occurred.
[0087] The treatment ended after 25 minutes. The equipment was reset to a horizontal position, the collection of moxa smoke was effective, and the electromagnetic wave therapy device automatically shut off. This treatment increased the acupuncture arrival rate to 98% through multi-dimensional body position adjustment. The patient reported significant relief from neck and lower back tension, and no discomfort from pressure in the popliteal fossa was observed due to the inclined design of the leg support.
[0088] The working principle of this invention is as follows:
[0089] Step 1: At the start of treatment, the patient lies prone or supine on the main backrest 101 of bed 1. At this time, all support components are in their initial positions. The physician plans the required position according to the treatment plan.
[0090] Step 2: When the physician needs to adjust the angle of the head support 202, appropriate force can be applied manually. The head support 202 is rotatably connected to the main back pad 101 via the end shaft 701 at the end of the fixed connecting column 7. During rotation, the spring plates 4 arranged in a circular array on the circumference of the end shaft 701 interact with the arc grooves in their mating surfaces, sliding and engaging. When rotated to the predetermined angle, the spring plates 4 embed into the arc grooves, providing a self-locking force, thereby stably fixing the head support 202.
[0091] Step 3: The physician starts the control motor, driving the adjusting screws 302 located on both sides of the main back pad 101 to rotate. The moving link 3, which is threaded to the adjusting screw 302, converts the rotational motion of the motor into its own linear motion under the constraint of the limiting post 303, thereby driving the rotating shaft 301 fixed thereto and the entire arm support 2 to rise or fall.
[0092] Once the position is determined, the physician can grasp the grip groove 501 on the adjustment column 5 and manually rotate the arm support 2. The arm support 2 rotates around the rotating shaft 301 on the connecting member 3 via the arm reserved groove 304 on it. The spring plates 4 at both ends of the rotating shaft 301 cooperate with the arc grooves on the inner wall of the arm reserved groove 304 to achieve gear locking when rotated to the appropriate angle. The design of the elbow groove 6 makes the patient's elbow more stable.
[0093] Step 4: The physician starts the control motor, driving the drive screw 1101 to rotate. The limiting rectangular plate 1102, which is threadedly connected to the drive screw 1101, moves linearly within the bottom moving groove 11, thereby raising or lowering the entire transport track 801 and its supporting slide 8, base 9, and leg support 201. Subsequently, the medical staff manually rotates the leg support 201, causing it to rotate around the bottom shaft 10.
[0094] The leg support 201 is hinged to the angle adjustment shaft 901 on the base component 9 via a rotating pre-drilled groove 902 at one end. The physician can directly raise or lower the leg support 201, allowing it to rotate around the angle adjustment shaft 901. The spring plate 4 on the circumference of the angle adjustment shaft 901 engages with the arc groove on the surface of the base component 9, enabling multi-position angle locking. The leg groove 601 and the inclined surface 602 design enhance comfort.
[0095] Step 5: After the body position is adjusted, treatment can begin. When moxibustion is needed, the moxibustion cover 203 can be placed at the predetermined position at the head end of the bed 1 to effectively collect moxa smoke. The electromagnetic wave therapy device 204, integrated into the mounting slots on both sides of the bed 1, can be activated at any time to achieve synchronous or sequential treatment.
[0096] Step 6: After a single treatment session, the physician can reverse the steps described above to restore each adjustment mechanism to its initial or safe position, making it easier for the patient to leave and preparing for the next patient's treatment.
[0097] In short:
[0098] The patient is positioned on the main back support 101, and the doctor has planned the patient's position.
[0099] The manual rotating head support 202 uses the spring plate 4 on the end shaft 701 to engage with the arc groove to achieve angle locking.
[0100] The electric drive adjusting screw 302 controls the up and down movement of the arm support 2; the manual rotation of the arm support 2 and the use of the spring plate 4 on the rotating shaft 301 to lock the angle.
[0101] The electric drive screw 1101 controls the sliding of the leg support 201; the leg support 201 is manually flipped and the angle is locked by using the spring plate 4 on the angle adjustment shaft 901.
[0102] Moxibustion is performed using the integrated moxibustion cover 203, and physical therapy is performed by activating the built-in electromagnetic wave therapy device 204.
[0103] After the treatment is completed, all support components will be returned to their designated positions.
[0104] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A highly adaptable adjustable acupuncture bed, comprising a bed frame (1), wherein the top of the bed frame (1) is provided with a main backrest (101), characterized in that: The main back pad (101) has two arm support members (2) symmetrically distributed on both sides of the vertical section near the bed frame (1); Two leg supports (201) are symmetrically distributed at one end of the main back cushion (101) away from the vertical section of the bed body (1); a head support (202) is provided at one end of the main back cushion (101) near the vertical section of the bed body (1), and a moxibustion cover (203) is provided at one end of the bed body (1) near the head support (202); The bed (1) has mounting slots on both sides away from the main backrest (101), and the inner wall of the mounting slot is equipped with an electromagnetic wave therapy device (204).
2. The highly adaptable adjustable acupuncture bed according to claim 1, characterized in that: The main back pad (101) is slidably connected to the inner walls of both sides near the arm support (2) by a moving link (3). The inner wall of the moving link (3) is threaded with an adjusting screw (302). Both ends of the adjusting screw (302) are rotatably connected to the inner wall of the main back pad (101). The adjusting screw (302) is driven by a motor. The inner wall of the moving link (3) has two symmetrically distributed limiting posts (303) that are slidably connected, and both ends of the limiting posts (303) are fixed to the inner wall of the main back pad (101).
3. The highly adaptable adjustable acupuncture bed according to claim 2, characterized in that: The moving link (3) is fixed with a rotating shaft (301) at one end away from the main back pad (101). The arm support (2) is provided with an arm reserved groove (304) on the side near the rotating shaft (301). The inner wall of the arm reserved groove (304) is rotatably connected to the circumferential surface of the rotating shaft (301). The arm support (2) is fixed with an adjusting column (5) on the side away from the bed (1). The adjusting column (5) is provided with a gripping groove (501) around the adjusting column (5) on the circumferential surface near the arm support (2).
4. The highly adaptable adjustable acupuncture bed according to claim 1, characterized in that: The head support (202) is fixed with a plurality of fixed columns (7) on the side near the bed (1). The fixed column (7) is fixed with an end shaft (701) at the end near the main back pad (101). The surface of the end shaft (701) is rotatably connected to the inner wall of the main back pad (101).
5. The highly adaptable adjustable acupuncture bed according to claim 1, characterized in that: The main back pad (101) is provided with a transport track (801) on the side near the bed body (1). A support slide (8) is slidably connected to the surface of the transport track (801). A base component (9) is fixed on the side of the support slide (8) away from the transport track (801). A leg support component (201) is provided on the top of the base component (9).
6. The highly adaptable adjustable acupuncture bed according to claim 5, characterized in that: The leg support (201) has a rotating reserved groove (902) on the side near the base (9) and the end near the main back pad (101). An angle adjustment shaft (901) is fixed on the inner wall of the rotating reserved groove (902). The circumference of the angle adjustment shaft (901) is fixed to the side of the base (9) near the leg support (201).
7. The highly adaptable adjustable acupuncture bed according to claim 6, characterized in that: The transport track (801) is rotatably connected to a bottom shaft (10) on the side near the main back pad (101), and the other end of the bottom shaft (10) is provided with the main back pad (101).
8. The highly adaptable adjustable acupuncture bed according to claim 7, characterized in that: The main back pad (101) has a bottom moving groove (11) on the side near the bottom shaft (10). A limiting rectangular plate (1102) is slidably connected to the inner wall of the bottom moving groove (11). The bottom shaft (10) is fixed to the side of the limiting rectangular plate (1102) away from the main back pad (101). A drive screw (1101) is threadedly connected to the inner wall of the limiting rectangular plate (1102). The drive screw (1101) is driven by a motor.
9. The highly adaptable adjustable acupuncture bed according to claim 1, characterized in that: The arm support (2) has an elbow groove (6) on the side away from the bed (1), the leg support (201) has a leg groove (601) on the side away from the bed (1), and the end of the leg support (201) away from the main back pad (101) is set as an inclined surface (602).
10. The highly adaptable adjustable acupuncture bed according to claim 1, characterized in that: Multiple spring plates (4) are fixed in a circular array at both ends of the rotating shaft (301), on the circumference of the end shaft (701), on the circumference of the bottom shaft (10), and on the circumference of the angle adjustment shaft (901); The inner wall of the arm reserved groove (304), the inner wall where the main back pad (101) fits with the end shaft (701), the inner wall where the main back pad (101) fits with the circumferential surface of the bottom shaft (10), and the surface of the base part (9) near the rotation reserved groove (902) are all provided with arc grooves that correspond to the spring sheet (4), and the inner wall of the arc groove is nested with the surface of the spring sheet (4).