Hot compress and massage integrated treatment bed
By designing an integrated treatment bed for hot compress massage, the adaptive support layer and dynamic synergistic thermal-force effects are adopted to solve the shortcomings of existing equipment in thermal-force coordinated control, ergonomic adaptability, drive system efficiency and noise, and heat source safety, and the uniformity of hot compress temperature, accuracy of massage force, reduced energy consumption, noise reduction and treatment safety are achieved.
Patent Information
- Application Number
- CN202510633487.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-16
- Publication Date
- 2025-06-27
AI Technical Summary
The existing hot compress massage equipment has shortcomings in thermal-force coordination control, ergonomic adaptability, drive system efficiency and noise, and heat source safety, resulting in uneven heat compress temperature, unstable massage force, high energy consumption, high noise and low treatment safety.
A hot compress massage integrated treatment bed is designed, using hollow bed panel components, adaptive support layer, dynamic synergistic thermal-force action, low-noise driving system and safe heating parts. Through the combination of the support rod and the elastic support, the support rod is automatically lifted and lowered to adapt to the human body curve, and the massage hammer is heated through the electromagnetic induction coil to achieve dynamic coordination between massage and heat compress.
It achieves uniformity of hot compress temperature and accurate massage intensity, reduces the energy consumption and noise level of equipment operation, and improves treatment safety and patient experience.
Smart Images

Figure CN120203975A_ABST
Abstract
Description
Technical Field
[0001] The present invention specifically relates to a hot compress and massage integrated therapeutic bed. Background Art
[0002] Rehabilitation equipment that combines hot compress and massage has important application value in the field of medical rehabilitation and health management due to its synergistic effects in promoting blood circulation and relieving muscle fatigue. Existing hot compress massage equipment mostly uses an independent heat source module combined with a mechanical massage mechanism to achieve its function, but there are still the following technical bottlenecks in actual use:
[0003] 1. Insufficient thermal-mechanical synergistic control: The heating modules of traditional equipment (such as electric blankets and infrared heating plates) are usually fixed on the surface of the bed, while the mechanical massage components (such as cam-driven massage heads) move independently above them. This separate structure makes it impossible for the heat source to be adjusted in real time as the massage area moves, and it is difficult to accurately match the heated area on the patient's body surface with the massage action point. Especially during dynamic massage, local temperature drops or low heat conduction efficiency are prone to occur.
[0004] 2. Poor ergonomic adaptability: Most devices use a rigid support bed board with a fixed-height massage head design, which is difficult to adapt to the physiological curvature differences of patients of different body shapes. Although some improvement schemes try to adjust the support height through air bags or springs, such structures are prone to deformation or rebound lag when subjected to high-frequency impact loads, resulting in unstable massage strength, and long-term use may also cause fatigue failure of the support components.
[0005] 3. The contradiction between the efficiency and noise of the drive system: Mechanical massage devices often rely on multi-motor driven cam groups or gear transmission systems. Although they can achieve regular tapping movements, the parallel operation of multiple power sources leads to a significant increase in energy consumption, and the rigid collision between metal components will produce high-decibel noise (usually exceeding 60dB), which seriously affects the comfort of the treatment environment. In addition, complex transmission mechanisms have problems such as difficult lubrication and maintenance, and rapid wear of components.
[0006] 4. Limited safety of heat source: The current mainstream contact electric heating elements (such as carbon fiber heating wires) need to be isolated from the human body by an insulating layer, but during the reciprocating movement of the massage parts, the repeated bending of the wires can easily cause the insulation layer to break, posing a risk of leakage. Although non-contact heating solutions (such as far-infrared radiation) can improve safety, their heat penetration depth is limited (usually less than 2cm), which is difficult to meet the thermal therapy needs of deep muscle tissue. Summary of the invention
[0007] In view of the shortcomings of the prior art, the technical problem to be solved by the present invention is to provide an integrated hot compress and massage treatment bed, which can ensure the uniformity of hot compress temperature and the accuracy of massage mechanics, while reducing the energy consumption and noise level of equipment operation, thereby improving treatment safety and patient experience through dynamic coordination of thermal and mechanical effects.
[0008] In order to achieve the above object, the present invention is implemented through the following technical solutions: a hot compress massage integrated treatment bed, comprising:
[0009] The bed board assembly is a hollow body, and the top surface of the bed board assembly is provided with through holes connected to the inner cavity thereof and arranged in a matrix shape;
[0010] The adaptive support layer includes a plurality of support rods and elastic support members, each of the perforations is slidably plugged with a support rod, and each of the support rods is supported on the inner bottom surface of the bed board assembly through the elastic support member;
[0011] A position fixing member connected to all the support rods and used to lock the support rods to prevent them from moving up and down;
[0012] A massage hammer, wherein the top of the support rod is an open hollow rod, the massage hammer is slidably arranged in the support rod, and the top end of the massage hammer can extend from the support rod;
[0013] A driving member connected to all of the massage hammers, and used to regularly drive the massage hammers to slide upward to massage the patient located on the adaptive support layer; and
[0014] A heating element is used to heat the massage hammer.
[0015] Furthermore, the position fixing part includes a plurality of clamping elastic membranes and a first inflating device, an installation cavity is opened in the top plate of the bed board assembly, the through hole is connected to the installation cavity, each of the support rods is provided with a clamping elastic membrane, and the clamping elastic membrane is located in the installation cavity; the upper and lower ends of the clamping elastic membrane are respectively sealed and connected with the installation cavity and the through hole to form an interface, and the first inflating device is used to inflate the installation cavity.
[0016] Furthermore, the driving member includes a second inflation device, the massage hammer is slidably and sealingly arranged in the support rod, and forms an air storage cavity with the inner wall of the support rod. The second inflation device is connected to all the air storage cavities and can intermittently inflate or inhale air into the air storage cavity.
[0017] Furthermore, the second inflatable device performs massage by driving the massage hammers in two adjacent rows to rise alternately.
[0018] Further, the second inflation device includes a plurality of air storage bags, a pressing plate, a connecting frame, and a reciprocating linear motion driving mechanism. One air storage bag is correspondingly arranged below each supporting rod, and the air storage bag is communicated with the corresponding air storage cavity. When the air storage bag is in a natural state, the massage hammer is located within the supporting rod. Two adjacent rows of the air storage bags form an air bag group. A pressing plate is arranged between the two rows of air storage bags in each air bag group, and all the pressing plates are connected into a whole through the connecting frame. The reciprocating linear motion driving mechanism is connected to the connecting frame and is used for repeatedly driving the connecting frame to perform linear motion along the bed board assembly, so as to drive the pressing plate to alternately press the two rows of air storage bags.
[0019] Further, the driving member further includes a baffle plate. One fixed baffle plate is correspondingly arranged for each air storage bag, and the baffle plate is located on the other side of the air storage bag relative to the pressing plate.
[0020] Further, the heating member includes a plurality of electromagnetic induction coils. One electromagnetic induction coil is coaxially embedded in each supporting rod, and all the electromagnetic induction coils are connected in parallel to an external AC power supply. The massage hammer includes a metal rod at the top end and an insulating rod at the lower end. The insulating rod is slidably and sealingly connected to the inner wall of the supporting rod. During the up-and-down sliding process of the massage hammer, the metal rod can pass through the electromagnetic induction coil and generate heat.
[0021] Further, the outer diameter of the metal rod is smaller than the inner diameter of the supporting rod, and a limiting block is arranged on the inner wall of the top end of the supporting rod.
[0022] Advantages of the present invention:
[0023] When the above-mentioned hot compress and massage integrated treatment bed is in use, first unlock the position fixing member to make the supporting rod in a free state. Subsequently, the patient lies on the adaptive support layer. Under the action of the human body weight, the supporting rod will automatically rise and fall along with the human body curve, so as to ensure that each supporting rod is in contact with the human body. Then, fix the position of the supporting rod through the position fixing member. Next, start the heating member and the driving member. The heating member heats the massage hammer, and the driving member regularly drives the massage hammer to slide upward to massage the patient located on the adaptive support layer.
[0024] By adopting the above treatment bed, through adapting to the human body curve, it can ensure the uniformity of the hot compress temperature and the accuracy of the massage mechanics, improve the massage and hot compress curative effects. In addition, through structural innovation, the dynamic coordination of the heat-mechanical action is realized, while reducing the equipment operation energy consumption and noise level, and improving the treatment safety and patient experience. By realizing the dynamic coordination of the heat-mechanical action, while reducing the equipment operation energy consumption and noise level, and improving the treatment safety and patient experience. Description of the Drawings
[0025] In order to more clearly illustrate the specific implementation of the present invention, the following will briefly introduce the drawings required for use in the specific implementation. In all the drawings, each element or part is not necessarily drawn according to the actual scale.
[0026] Figure 1 A schematic top view of a hot compress and massage integrated treatment bed provided in one embodiment of the present invention;
[0027] Figure 2 for Figure 1 A schematic diagram of a driving component of a heat compress and massage integrated treatment bed is shown;
[0028] Figure 3 for Figure 1 A schematic cross-sectional view of a heat compress and massage integrated treatment bed is shown;
[0029] Figure 4 for Figure 1 A schematic diagram showing that the elastic film in the integrated hot compress and massage treatment bed is in a relaxed state and the air storage bag is not compressed;
[0030] Figure 5 for Figure 1 A schematic diagram showing a hot compress and massage integrated treatment bed in which the elastic film is in a clamped state;
[0031] Figure 6 for Figure 1 The schematic diagram of the air storage bag in the integrated hot compress and massage treatment bed being forced to drive the massage hammer to rise;
[0032] Figure 7 for Figure 1 A schematic diagram of a heating element in a heat compress and massage integrated treatment bed is shown;
[0033] Reference numerals:
[0034] 100, bed board assembly; 200, adaptive supporting layer; 210, support rod; 220, elastic supporting member; 300, position fixing member; 310, holding elastic membrane; 320, first inflatable device; 400, driving member; 410, second inflatable device; 411, air storage bag; 412, pressing plate; 413, connecting frame; 414, reciprocating linear motion driving mechanism; 420, baffle; 500, heating member; 600, massage hammer. DETAILED DESCRIPTION
[0035] To make the above objects, features, and advantages of the present invention more apparent and understandable, the following detailed description of the specific embodiments of the present invention will be given in conjunction with the accompanying drawings. Many specific details are set forth in the following description to facilitate a full understanding of the present invention. However, the present invention can be implemented in many other ways different from those described herein, and those skilled in the art can make similar improvements without departing from the spirit of the present invention. Therefore, the present invention is not limited by the specific embodiments disclosed below.
[0036] Please refer to Figures 1 to 7 , the present invention provides a hot compress and massage integrated treatment bed, including a bed board assembly 100, an adaptive support layer 200, a position fixing member 300, a massage hammer 600, a driving member 400, and a heating member 500.
[0037] Specifically, the bed board assembly 100 is a hollow body, and the top surface of the bed board assembly 100 is provided with perforations arranged in a matrix shape and communicating with its inner cavity. The adaptive support layer 200 includes a plurality of support rods 210 and elastic support members 220. Each perforation is slidably inserted with a support rod 210, and each support rod 210 is supported on the inner bottom surface of the bed board assembly 100 through an elastic support member 220.
[0038] The position fixing member 300 is connected to all the support rods 210 and is used to lock the support rods 210 to prevent them from moving up and down. The top of the support rod 210 is an open hollow rod, and the massage hammer 600 is slidably arranged in the support rod 210, and the top end of the massage hammer 600 can extend out of the support rod 210. The driving member 400 is connected to all the massage hammers 600 and is used to regularly drive the massage hammers 600 to slide upward to massage the patient located on the adaptive support layer 200. The heating member 500 is used to heat the massage hammer 600.
[0039] During use, first unlock the position fixing member 300 to make the support rods 210 in a free state. Subsequently, the patient lies on the adaptive support layer 200. Under the action of the human body's own weight, the support rods 210 will automatically rise and fall along with the human body curve, so as to ensure that each support rod 210 is in contact with the human body. Subsequently, fix the positions of the support rods 210 through the position fixing member 300. Then, start the heating member and the driving member 400. The heating member heats the massage hammer 600, and the driving member 400 regularly drives the massage hammer 600 to slide upward to massage the patient located on the adaptive support layer 200.
[0040] By adopting the above treatment bed, through adapting to the human body curve, it can ensure the uniformity of the hot compress temperature and the accuracy of the massage mechanics, improve the massage and hot compress curative effects. In addition, through structural innovation, the dynamic coordination of the thermal-mechanical effect is realized, while reducing the equipment operation energy consumption and noise level, and improving the treatment safety and patient experience. By realizing the dynamic coordination of the thermal-mechanical effect, while reducing the equipment operation energy consumption and noise level, and improving the treatment safety and patient experience.
[0041] In this embodiment, the position fixing member 300 includes a plurality of clamping elastic membranes 310 and a first inflating device 320. An installation cavity is opened in the top plate of the bed board assembly 100, and the through hole is connected to the installation cavity. A clamping elastic membrane 310 is sleeved on each support rod 210, and the clamping elastic membrane 310 is located in the installation cavity. The upper and lower ends of the clamping elastic membrane 310 are respectively sealed with the installation cavity and the through hole to form an interface. The first inflating device 320 is used to inflate the installation cavity.
[0042] In a normal state, the holding elastic membrane 310 is in a free state. When air is inflated into the installation cavity, the holding elastic membrane 310 expands outward to hold the support rod 210 tightly, so that the position of the support rod 210 is fixed.
[0043] In this embodiment, the driving member 400 includes a second inflation device 410, and the massage hammer 600 is slidably and sealingly arranged in the support rod 210, and forms an air storage cavity with the inner wall of the support rod 210. The second inflation device 410 is connected to all the air storage cavities and can inflate or inhale air into the air storage cavity intermittently.
[0044] In a normal state, the massage hammer 600 is retracted in the support rod 210. When sufficient gas is quickly injected into the support rod 210, the massage hammer 600 can be driven to rise upward to massage the human body.
[0045] As a preferred embodiment, the second inflatable device 410 performs massage by driving two adjacent rows of massage hammers 600 to rise alternately, thereby improving the comfort of the patient.
[0046] Specifically, the second inflation device 410 includes a plurality of air bags 411, a pressure plate 412, a connecting frame 413 and a reciprocating linear motion drive mechanism 414. An air bag 411 is correspondingly arranged under each support rod 210, and the air bag 411 is connected to the corresponding air storage cavity. When the air bag 411 is in a natural state, the massage hammer 600 is located in the support rod 210, and two adjacent rows of air bags 411 constitute an air bag group. A pressure plate 412 is arranged between the two rows of air bags 411 of each air bag group, and all the pressure plates 412 are connected as a whole through a connecting frame 413. The reciprocating linear motion drive mechanism 414 is connected to the connecting frame 413, and is used to repeatedly drive the connecting frame 413 to perform linear motion along the bed board assembly 100, thereby driving the pressure plate 412 to alternately squeeze the two rows of air bags 411.
[0047] During specific implementation, the reciprocating linear motion driving mechanism 414 may be an electric telescopic rod, a gear rack mechanism, etc. commonly used in the prior art.
[0048] As a more preferred embodiment, the driving member 400 further includes a baffle 420, and each air storage bag 411 is correspondingly provided with a fixed baffle 420, and the baffle 420 is located on the other side of the air storage bag 411 relative to the pressure plate 412. The baffle 420 can cooperate with the pressure plate 412 through the abutment to improve the squeezing effect of squeezing the air storage bag 411.
[0049] In this embodiment, the heating element 500 includes multiple electromagnetic induction coils, each support rod 210 is coaxially embedded with an electromagnetic induction coil, all the electromagnetic induction coils are connected in parallel to an external AC power supply, and the massage hammer 600 includes a metal rod at the top and an insulating rod at the bottom, and the insulating rod and the inner wall of the support rod 210 can be slidably and sealedly connected. When the massage hammer 600 slides up and down, the metal rod can pass through the electromagnetic induction coil and generate heat.
[0050] When in use, the massage hammer 600 is usually located below the support rod 210 and is separated from the electromagnetic induction coil. When air is inflated into the support rod 210, the massage hammer 600 rises and inserts into the electromagnetic induction coil. During the up and down movement of the massage hammer 600, an alternating magnetic field is generated, thereby generating eddy current heat. When the metal rod extends out of the top of the support rod 210, a heating massage effect can be formed on the human body, thereby improving the human body's comfort and therapeutic effect.
[0051] In specific implementation, the outer diameter of the metal rod is smaller than the inner diameter of the support rod 210, and a limit block is provided on the inner wall of the top end of the support rod 210. The limit block prevents the massage hammer 600 from moving out of the top of the support rod 210.
[0052] How to use the above-mentioned integrated hot compress and massage treatment bed:
[0053] When in use, the holding elastic film 310 is first placed in a natural state, and then the patient lies on the adaptive support layer 200, and then the first inflating device 320 is used to inflate the installation cavity until the holding elastic film 310 holds the support rod 210 tightly and fixes it, and then the inflation is stopped and the air pressure is kept unchanged;
[0054] Next, the reciprocating linear motion drive mechanism 414 and the AC power supply are started, and alternating hot compress massage can be performed on the patient.
[0055] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or replace some or all of the technical features therein by equivalents. These modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present invention, and they should all be included in the scope of the claims and specification of the present invention.
Claims
1. A hot compress and massage integrated treatment bed, characterized in that: include: The bed board assembly is a hollow body, and the top surface of the bed board assembly is provided with through holes connected to the inner cavity thereof and arranged in a matrix shape; The adaptive support layer includes a plurality of support rods and elastic support members, each of the perforations is slidably plugged with a support rod, and each of the support rods is supported on the inner bottom surface of the bed board assembly through the elastic support member; A position fixing member connected to all the support rods and used to lock the support rods to prevent them from moving up and down; A massage hammer, wherein the top of the support rod is an open hollow rod, the massage hammer is slidably arranged in the support rod, and the top end of the massage hammer can extend from the support rod; A driving member connected to all the massage hammers, and used for regularly driving the massage hammers to slide upward to massage the patient located on the adaptive support layer; and A heating element is used to heat the massage hammer.
2. The hot compress and massage integrated treatment bed according to claim 1, characterized in that: The position fixing part includes a plurality of clamping elastic membranes and a first inflating device. An installation cavity is opened in the top plate of the bed board assembly. The through hole is connected to the installation cavity. Each of the support rods is provided with a clamping elastic membrane, and the clamping elastic membrane is located in the installation cavity. The upper and lower ends of the clamping elastic membrane are respectively sealed and connected with the installation cavity and the through hole to form an interface. The first inflating device is used to inflate the installation cavity.
3. The hot compress and massage integrated treatment bed according to claim 2, characterized in that: The driving member includes a second inflation device. The massage hammer is slidably and sealedly arranged in the support rod and forms an air storage cavity with the inner wall of the support rod. The second inflation device is connected to all the air storage cavities and can inflate or absorb air into the air storage cavities intermittently.
4. The hot compress and massage integrated treatment bed according to claim 3, characterized in that: The second inflatable device performs massage by driving the massage hammers in two adjacent rows to rise alternately.
5. The hot compress and massage integrated treatment bed according to claim 4, characterized in that: The second inflation device includes a plurality of air bags, a pressure plate, a connecting frame and a reciprocating linear motion driving mechanism. An air bag is correspondingly arranged under each support rod, and the air bag is communicated with the corresponding air storage cavity. When the air bag is in a natural state, the massage hammer is located in the support rod. Two adjacent rows of air bags constitute an air bag group. A pressure plate is arranged between the two rows of air bags in each air bag group, and all the pressure plates are connected as a whole through the connecting frame. The reciprocating linear motion driving mechanism is connected to the connecting frame, and is used to repeatedly drive the connecting frame to perform linear motion along the bed board assembly, thereby driving the pressure plate to alternately squeeze the two rows of air bags.
6. The hot compress and massage integrated treatment bed according to claim 5, characterized in that: The driving member also includes a baffle, and each of the air storage bags is correspondingly provided with a fixed baffle, and the baffle is located on the other side of the air storage bag relative to the pressure plate.
7. The hot compress and massage integrated treatment bed according to claim 1, characterized in that: The heating element includes a plurality of electromagnetic induction coils, each of the support rods is coaxially embedded with an electromagnetic induction coil, all of the electromagnetic induction coils are connected in parallel to an external AC power supply, the massage hammer includes a metal rod at the top and an insulating rod at the bottom, the insulating rod is slidably and hermetically connected to the inner wall of the support rod, and during the up and down sliding process of the massage hammer, the metal rod can pass through the electromagnetic induction coil and generate heat.
8. The hot compress and massage integrated treatment bed according to claim 7, characterized in that: The outer diameter of the metal rod is smaller than the inner diameter of the support rod, and a limit block is arranged on the inner wall of the top end of the support rod.