Muscle-bone-joint pain rehabilitation treatment auxiliary device
By designing a molar and bone pain rehabilitation therapy auxiliary device with mobile massage airbags and hot and cold compress components, the problems of localized massage and thermal therapy risks in the prior art are solved, and the full massage and flexible treatment effects of the molar and bone joints are achieved.
Patent Information
- Application Number
- CN202510666604.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-22
- Publication Date
- 2025-08-15
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing auxiliary devices for rehabilitation treatment of muscle and bone pain can only massage a certain part, and cannot circulate massage. The rehabilitation effect is not ideal, and the appropriate rehabilitation treatment plan cannot be selected. The heat therapy may lead to the aggravation of the condition.
A auxiliary device for rehabilitation treatment of muscular and bone joint pain is designed. Through moving massage airbags and hot compress or cold compress components, the airbags are used to charge and deflate the airbags to achieve mobile massage of muscular and bone joints. Combined with electric heating or semiconductor refrigeration parts, it provides hot compress or cold compress effects to improve the rehabilitation effect.
Full massage of the muscles and bones is achieved. By combining the filling and deflation of the airbag and the hot and cold compress components of the mobile massage airbag, the effect of rehabilitation treatment is improved, the device is displaced, and the flexibility and safety of treatment are enhanced.
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Figure CN120478122A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of rehabilitation therapy, and more particularly to an auxiliary device for rehabilitation therapy of musculoskeletal and joint pain. Background Art
[0002] Musculoskeletal and joint pain is a major health problem affecting the quality of life worldwide. The technological development of its rehabilitation treatment auxiliary devices has experienced a leap from traditional physical therapy to intelligent and precise medical equipment. In the prior art, Chinese patent application number: 202122453715.0 discloses a rehabilitation treatment auxiliary device for musculoskeletal and joint pain, including a baseband and a strap, with straps symmetrically provided on both sides of the baseband; the baseband has two pieces, and the two basebands are connected by an elastic band; the top of the baseband is provided with a traction assembly, and the bottom of the baseband is symmetrically provided with multiple electric stimulation plates and multiple electromagnetic-moxibustion electrode plates, each of the electromagnetic-moxibustion electrode plates is installed with a temperature sensor, and the bottom of the baseband is also installed with a pressure sensor; the auxiliary device also includes a control box, which is equipped with a controller, a power supply, an air pump and a pressure valve. The air pump is connected to the traction assembly through a hose, and the hose is provided with a pressure valve; the power supply is electrically connected to the electric stimulation plates and the electromagnetic-moxibustion electrode plates. The utility model can perform traction, massage, electrical stimulation and moxibustion heat therapy on musculoskeletal joints, with diversified functions, easy portability and good reliability. However, the above application can only massage a certain part and cannot perform cyclic massage, resulting in unsatisfactory rehabilitation effect and inability to select a suitable rehabilitation treatment plan. Some rehabilitation treatments that are not suitable for heat therapy plans may cause the condition to worsen. Therefore, a rehabilitation treatment auxiliary device for musculoskeletal joint pain is proposed. Summary of the Invention
[0003] 1. The technical problem to be solved is that the existing technology can only massage a certain part of the body and cannot perform cyclic massage. The rehabilitation effect is not ideal, and it is impossible to choose a suitable rehabilitation treatment plan. Some rehabilitation treatments are not suitable for heat therapy plans, and the use of heat therapy rehabilitation plans may cause the condition to worsen.
[0004] In response to the problems existing in the prior art, the present invention provides an auxiliary device for rehabilitation treatment of musculoskeletal and joint pain, which performs mobile massage, cold compress or hot compress on the painful areas of the user's musculoskeletal and joints. The force applied by the massage airbag to the painful areas of the user's musculoskeletal and joints increases with the inflation of the massage airbag, and decreases with the deflation of the massage airbag, so that the painful areas of the user's musculoskeletal and joints are fully massaged, thereby improving the rehabilitation effect.
[0005] 2. Technical solution
[0006] To solve the above problems, the present invention adopts the following technical solutions.
[0007] A rehabilitation treatment aid for musculoskeletal and joint pain comprises a first rehabilitation mechanism, a second rehabilitation mechanism, a first restraining mechanism, a second restraining mechanism, and an air pump. The first and second rehabilitation mechanisms have identical structures. An elastic band is provided between the first and second rehabilitation mechanisms, and the elastic band is made of an elastic material. The first and second restraining mechanisms each comprise a restraining belt, the top of the restraining belt of the first restraining mechanism being provided with a Velcro, and the bottom of the restraining belt of the second restraining mechanism being provided with another Velcro. The first and second restraining mechanisms have identical structures. The bottoms of the first and second rehabilitation components are both provided with a massage component, and the two massage components have identical mechanisms. The first rehabilitation mechanism comprises a mounting member, the top of which is provided with an operation panel and a driving power supply. The interior of the mounting member is provided with two movable airbags, three hot compress components, and three cold compress components. A separator pad is provided between the two movable airbags. The three hot compress components and the three cold compress components are arranged alternately, and a separator pad is provided between the hot compress component and the cold compress component. The restraining belt is provided with a restraining airbag inside, and the bottom and top of the mounting member are provided with a plurality of exhaust holes.
[0008] Furthermore, a control processor is provided inside the operation panel, and the control processor is a single chip microcomputer. The driving power supply is equipped with a charging interface and two power output interfaces.
[0009] Furthermore, both ends of the mobile airbag are provided with a connecting plate, and the connecting plate and the mobile airbag are connected by a pipe. The connecting plate is hollow, and a first air intake pipe is provided on one side of one of the connecting plates close to the outside of the mounting piece, the first air intake pipe passes through the connecting piece and extends to the outside of the connecting piece, an electromagnetic valve is provided inside the first air intake pipe, and the first air intake pipe is connected to the air pump through a pipe, and a first air discharge pipe is provided on the other side of the connecting plate close to the outside of the mounting piece, the first air discharge pipe passes through the connecting piece and extends to the outside of the connecting piece, another electromagnetic valve is provided inside the first air discharge pipe, and both the first air intake pipe and the first air discharge pipe are connected to the mobile airbag through the connecting plate.
[0010] Furthermore, two restraint airbags are provided, and connecting pipes are provided at both ends of the two restraint airbags. The two restraint airbags are connected by the connecting pipe. A second air intake pipe is provided on the side of one of the connecting pipes close to the outside of the restraint belt, and an electromagnetic valve is provided inside the second air intake pipe. A second air discharge pipe is provided on the side of the other connecting pipe close to the outside of the restraint belt, and another electromagnetic valve is provided inside the second air discharge pipe. The second air intake pipe and the second air discharge pipe are both connected to the restraint airbag through the connecting pipe.
[0011] Furthermore, the three hot compress components all include an electric heating tube, an electric heating wire is arranged inside the electric heating tube, a first circuit board is arranged on the top of the electric heating tube, a heating element connecting wire is arranged between the three first circuit boards, the three first circuit boards are electrically connected through the heating element connecting wire, a heating element electrical interface is provided on the surface of one of the first circuit boards, the heating element electrical interface is electrically connected to one of the power output interfaces of the driving power supply, a first connecting pad is provided on the top of the three first circuit boards, and the three first circuit boards are connected to the top of the inner cavity of the connector through the first connecting pad.
[0012] Furthermore, a first support pad is provided at the bottom of each of the three electric heating tubes, a first connecting pad is provided at the bottom of each of the three first support pads, and the three first support pads are connected to the bottom of the inner cavity of the connector through the first connecting pad.
[0013] Furthermore, the three cold compress assemblies all include semiconductor refrigeration elements, and each of the semiconductor refrigeration elements is respectively provided with a plurality of heat conduction elements and cold conduction elements. A second circuit board is provided on the top of the heat conduction element, and refrigeration element connecting wires are provided between the three second circuit boards. The three second circuit boards are electrically connected through the refrigeration element connecting wires. A refrigeration element electrical interface is provided on the surface of one of the second circuit boards, and the refrigeration element electrical interface is electrically connected to one of the power output interfaces of the driving power supply. A second connecting pad is provided on the top of the three second circuit boards, and the three second circuit boards are connected to the top of the inner cavity of the connector through the second connecting pad.
[0014] Furthermore, the bottoms of the three cold conduction members are each provided with a second support pad, the bottoms of the three second support pads are each provided with a second connecting pad, and the three second support pads are connected to the bottom of the inner cavity of the connector through the second connecting pad.
[0015] Furthermore, the massage component includes side bands, two of which are provided, and the two side bands are fixedly connected to the side of the connecting piece, the side bands are hollow, and a number of massage airbags are provided between the two side bands, and a connecting tube is provided between each massage airbag and the side band, and each massage airbag is connected to the inner cavity of the side band through the connecting tube. A third air inlet pipe is provided on the side of one of the side bands away from the massage airbag, and an electromagnetic valve is provided inside the third air inlet pipe, and a third air discharge pipe is provided on the side of the other side band away from the massage airbag, and another electromagnetic valve is provided inside the third air discharge pipe. The third air discharge pipe and the third air inlet pipe are both connected to the massage airbag through the side bands.
[0016] 3. Beneficial effects
[0017] Compared with the prior art, the advantages of the present invention are:
[0018] (1) This solution wraps the device around the painful part of the user's musculoskeletal joints, and then provides power to the driving power supply and the control panel through an external power supply, and selects hot compress or cold compress mode as needed. If the hot compress mode is used, an external air pump is used to connect the air pump's air outlet interface to the first air inlet pipe, the second air inlet pipe and the third air inlet pipe, and then the control processor inside the operation panel controls the solenoid valve inside the second air inlet pipe to open, so that the air pump inflates the restraint airbag, so that the restraint airbag restrains and fixes the painful part of the user's musculoskeletal joints to prevent the device from shifting. After fixation, the solenoid valve inside the second air inlet pipe is closed, and then the wiring port of the driving power supply is electrically connected to the electrical interface of the heating element to provide power to the electric heating tube, and the temperature of the electric heating tube is controlled by the temperature control device, and then the solenoid valves inside the first air inlet pipe and the second air inlet pipe are opened, so that the air pump inflates the moving airbag and the massage airbag, and the moving airbag is inflated. During the inflation process of the airbag, the mobile airbag will swell, which will force the first rehabilitation mechanism or the second rehabilitation mechanism to move and stretch the elastic band, thereby changing the massage position of the massage airbag. The hot air generated by the electric heating tube will be transmitted to the massage airbag through the exhaust hole, so that the massage airbag has the effect of hot compress. The massage airbag and the mobile airbag are inflated and unloaded at the same time, that is, when the massage airbag is inflated, the mobile airbag is inflated synchronously, and the user's musculoskeletal joint painful areas are subjected to mobile massage and hot compress while moving. When deflated, the massage airbag and the mobile airbag are deflated synchronously, and the massage airbag rebounds under the elastic force of the restraint band, and again performs mobile massage and hot compress on the user's musculoskeletal joint painful areas. The force applied by the massage airbag to the user's musculoskeletal joint painful areas increases from small to large as the massage airbag is inflated, and decreases from large to small as the massage airbag is deflated, so that the user's musculoskeletal joint painful areas are fully massaged, thereby improving the rehabilitation effect.
[0019] (2) This solution wraps the device around the painful part of the user's musculoskeletal joints, and then provides power to the driving power supply and the control panel through an external power supply, and selects the hot compress or cold compress mode according to the need. If the cold compress mode is used, an external air pump is connected to the air pump outlet interface and the first air inlet pipe, the second air inlet pipe and the third air inlet pipe, and then the control processor inside the operation panel controls the electromagnetic valve inside the second air inlet pipe to open, so that the air pump inflates the restraint airbag, so that the restraint airbag restrains and fixes the painful part of the user's musculoskeletal joints to prevent the device from shifting. After fixation, the electromagnetic valve inside the second air inlet pipe is closed, and then the wiring port of the driving power supply is electrically connected to the electrical interface of the refrigeration component to provide power to the semiconductor refrigeration component, and the temperature of the semiconductor refrigeration component is controlled by the temperature control device, and then the electromagnetic valve inside the first air inlet pipe and the second air inlet pipe is opened, so that the air pump inflates the moving airbag and the massage airbag. During the inflation process, the moving airbag will swell, which will force the first The rehabilitation mechanism or the second rehabilitation mechanism moves and stretches the elastic band, thereby changing the massage position of the massage airbag. The cold air generated by the semiconductor refrigeration component will be transferred to the second support pad through the cold conduction component and transferred to the massage airbag through the exhaust hole. The hot air generated by the semiconductor refrigeration component is transferred to the exhaust hole on the top of the mounting component through the heat conduction component for heat dissipation, so that the massage airbag has a cold compress effect. The massage airbag and the mobile airbag are inflated and unloaded simultaneously, that is, when the massage airbag is inflated, the mobile airbag is inflated synchronously, and the user's musculoskeletal joint pain is performed while moving. When deflated, the massage airbag and the mobile airbag are deflated synchronously, and the massage airbag rebounds under the elastic force of the restraint belt, and again performs a mobile massage cold compress on the user's musculoskeletal joint pain. The force applied by the massage airbag to the user's musculoskeletal joint pain increases from small to large as the massage airbag is inflated, and decreases from large to small as the massage airbag is deflated, so that the user's musculoskeletal joint pain is fully massaged, thereby improving the rehabilitation effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 The overall structure of the present invention is viewed from above Figure 1 ;
[0021] Figure 2 The overall structure of the present invention is viewed from above Figure 2 ;
[0022] Figure 3 It is a bottom view of the overall structure of the present invention;
[0023] Figure 4 It is a partial cross-sectional structural schematic diagram of the present invention;
[0024] Figure 5 Schematic diagram of the structure of the hot compress assembly of the present invention;
[0025] Figure 6 It is a structural schematic diagram of the cold compress component in the present invention.
[0026] Description of the numbers in the figure:
[0027] 1. First rehabilitation mechanism; 101. Mounting member; 102. First air inlet pipe; 103. First air release pipe; 104. Mobile airbag; 105. Separation pad; 106. Exhaust hole; 107. Hot compress assembly; 1071. First circuit board; 1072. First support pad; 1073. First connecting pad; 1074. Electric heating tube; 1075. Heating element connecting wire; 1076. Heating element electrical interface; 108. Cold compress assembly; 1081. Semiconductor cooling element; 1082. Second circuit board; 1083. Second support pad; 1084. Second connecting pad Connecting pad; 1085, refrigeration component connecting wire; 1086, refrigeration component electrical interface; 1087, heat conduction component; 1088, cold conduction component; 2, first restraint mechanism; 201, restraint belt; 202, second air inlet pipe; 203, second air discharge pipe; 204, restraint airbag; 3, elastic belt; 4, massage component; 401, side belt; 402, third air inlet pipe; 403, third air discharge pipe; 404, massage airbag; 405, connecting pipe; 5, operation panel; 6, driving power supply; 7, Velcro; 8, second rehabilitation mechanism; 9, second restraint mechanism. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention; it is obvious that the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0029] In the description of the present invention, it should be noted that the terms "upper," "lower," "inner," "outer," "top / bottom," and the like, indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate and simplify the description of the present invention. They are not intended to indicate or imply that the devices or components referred to must have, be constructed, or operate in a specific orientation, and therefore should not be construed as limitations on the present invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0030] In the description of the present invention, it should be noted that, unless otherwise expressly specified or limited, the terms "installed," "provided with," "mounted / connected," and "connected" should be understood in a broad sense. For example, "connected" can mean a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be internal communication between two components. Those skilled in the art will be able to understand the specific meanings of the above terms in the present invention in specific circumstances.
[0031] Example 1
[0032] Reference Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 5 , which is the first embodiment of the present invention, provides a musculoskeletal joint pain rehabilitation treatment auxiliary device, including a first rehabilitation mechanism 1, a second rehabilitation mechanism 8, a first restraining mechanism 2, a second restraining mechanism 9 and an air pump. The structures of the first rehabilitation mechanism 1 and the second rehabilitation mechanism 8 are exactly the same. An elastic band 3 is arranged between the first rehabilitation mechanism 1 and the second rehabilitation mechanism 8. The elastic band 3 is made of elastic material. The first restraining mechanism 2 and the second restraining mechanism 9 both include a restraining band 201. The top of the restraining band 201 of the first restraining mechanism 2 is provided with a Velcro 7, and the bottom of the restraining band 201 of the second restraining mechanism 9 is provided with another Velcro. The structures of the surgical patch 7, the first restraint mechanism 2 and the second restraint mechanism 9 are exactly the same, the bottom of the first rehabilitation component and the second rehabilitation component are both provided with a massage component 4, the structures of the two massage components 4 are exactly the same, the first rehabilitation mechanism 1 includes a mounting part 101, the top of the mounting part 101 is provided with an operation panel 5 and a driving power supply 6, the interior of the mounting part 101 is provided with two mobile airbags 104 and three hot compress components 107, a separation pad 105 is provided between the two mobile airbags 104, the interior of the restraint belt 201 is provided with a restraint airbag 204, and a plurality of exhaust holes 106 are provided at the bottom and top of the mounting part 101.
[0033] Specifically, a control processor is provided inside the operation panel 5 , and the control processor is a single chip microcomputer. The driving power supply 6 is equipped with a charging interface and two power output interfaces.
[0034] Furthermore, connecting plates are provided at both ends of the mobile airbag 104, and the connecting plates are connected to the mobile airbag 104 through pipes. The connecting plates are hollow, and a first air inlet pipe 102 is provided on one side of one of the connecting plates close to the outside of the mounting member 101. The first air inlet pipe 102 passes through the connecting member and extends to the outside of the connecting member. A solenoid valve is provided inside the first air inlet pipe 102, and the first air inlet pipe 102 is connected to the air pump through a pipe. A first air discharge pipe 103 is provided on one side of the other connecting plate close to the outside of the mounting member 101. The first air discharge pipe 103 passes through the connecting member and extends to the outside of the connecting member. Another solenoid valve is provided inside the first air discharge pipe 103. Both the first air inlet pipe 102 and the first air discharge pipe 103 are connected to the mobile airbag 104 through the connecting plate.
[0035] Furthermore, two restraining airbags 204 are provided, and both ends of the two restraining airbags 204 are provided with connecting pipes. The two restraining airbags 204 are connected by the connecting pipes. A second air inlet pipe 202 is provided on the side of one connecting pipe close to the outside of the restraint belt 201, and a solenoid valve is provided inside the second air inlet pipe 202. A second air discharge pipe 203 is provided on the side of the other connecting pipe close to the outside of the restraint belt 201, and another solenoid valve is provided inside the second air discharge pipe 203. They are all connected to the restraint airbag 204 through a connecting tube, and an external air pump is used to connect the air outlet interface of the air pump to the first air inlet pipe 102, the second air inlet pipe 202 and the third air inlet pipe 402. Then, the control processor inside the operation panel 5 controls the solenoid valve inside the second air inlet pipe 202 to open, so that the air pump inflates the restraint airbag 204, so that the restraint airbag 204 restrains and fixes the user's musculoskeletal joint pain to prevent the device from shifting. After fixation is completed, the solenoid valve inside the second air inlet pipe 202 is closed.
[0036] Furthermore, the three hot compress components 107 each include an electric heating tube 1074, an electric heating wire is provided inside the electric heating tube 1074, a first circuit board 1071 is provided on the top of the electric heating tube 1074, a heating element connecting wire 1075 is provided between the three first circuit boards 1071, the three first circuit boards 1071 are electrically connected through the heating element connecting wire 1075, a heating element electrical interface 1076 is provided on the surface of one of the first circuit boards 1071, and the heating element electrical interface 1076 is electrically connected to one of the power output interfaces of the driving power supply 6, and the three first circuit boards 1071 are electrically connected to each other. A first connecting pad 1073 is provided on the top of each board 1071, and the three first circuit boards 1071 are connected to the top of the inner cavity of the connector through the first connecting pad 1073. A first support pad 1072 is provided on the bottom of each of the three electric heating tubes 1074, and a first connecting pad 1073 is provided on the bottom of each of the three first support pads 1072. The three first support pads 1072 are connected to the bottom of the inner cavity of the connector through the first connecting pad 1073. The heating tube is equipped with a temperature control device, which adopts the temperature control device in the prior art, and the temperature control device is located in the control panel.
[0037] Furthermore, the massage component 4 includes a side belt 401, which is provided with two side belts 401. The two side belts 401 are fixedly connected to the side of the connector. The side belt 401 is hollow. A plurality of massage airbags 404 are provided between the two side belts 401. A connecting tube 405 is provided between each massage airbag 404 and the side belt 401. Each massage airbag 404 is connected to the inner cavity of the side belt 401 through the connecting tube 405. A third air inlet pipe 402 is provided on the side of one of the side belts 401 away from the massage airbag 404. The third air inlet pipe 402 is provided in the inner cavity of the third air inlet pipe 402. The third air release pipe 403 is provided on the side of the other side band 401 away from the massage airbag 404, and another solenoid valve is provided inside the third air release pipe 403. The third air release pipe 403 and the third air inlet pipe 402 are both connected to the massage airbag 404 through the side band 401. By electrically connecting the wiring port of the driving power supply 6 with the electrical interface 1076 of the heating element, power is provided to the electric heating pipe 1074, and the temperature of the electric heating pipe 1074 is controlled by the temperature control device, and then the solenoid valves inside the first air inlet pipe 102 and the second air inlet pipe 202 are opened to make the air The pump inflates the mobile airbag 104 and the massage airbag 404. During the inflation process, the mobile airbag 104 will swell, which will force the first rehabilitation mechanism 1 or the second rehabilitation mechanism 8 to move and stretch the elastic band 3, thereby changing the massage position of the massage airbag 404. The hot air generated by the electric heating tube 1074 will be transferred to the massage airbag 404 through the exhaust hole 106, so that the massage airbag 404 has a hot compress effect. The inflation and degassing of the massage airbag 404 and the mobile airbag 104 are carried out simultaneously, that is, the massage airbag 404 is inflated and the massage airbag 404 is moved. The dynamic airbag 104 is inflated synchronously, and performs a mobile massage and hot compress on the painful part of the user's musculoskeletal joints while moving. When deflated, the massage airbag 404 and the mobile airbag 104 are deflated synchronously, and the massage airbag 404 rebounds under the elastic force of the restraint belt 201, and performs a mobile massage and hot compress on the painful part of the user's musculoskeletal joints again. The force applied by the massage airbag 404 to the painful part of the user's musculoskeletal joints increases with the inflation of the massage airbag 404, and decreases with the deflation of the massage airbag 404, so that the painful part of the user's musculoskeletal joints is fully massaged, thereby improving the rehabilitation effect.
[0038] Example 2
[0039] Reference Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 6, which is the second embodiment of the present invention. This embodiment is based on the previous embodiment. Two mobile airbags 104, three hot compress components 107 and three cold compress components 108 are provided inside the mounting member 101. A separator 105 is provided between the two mobile airbags 104. The three hot compress components 107 and the three cold compress components 108 are arranged alternately. A separator 105 is provided between the hot compress component 107 and the cold compress component 108. A restraining airbag 204 is provided inside the restraint belt 201. A plurality of exhaust holes 106 are provided at the bottom and top of the mounting member 101.
[0040] Specifically, the three cold compress components 108 all include a semiconductor refrigeration element 1081, and each semiconductor refrigeration element 1081 is respectively provided with a plurality of heat conduction elements 1087 and cold conduction elements 1088 on the top and bottom. A second circuit board 1082 is provided on the top of the heat conduction element 1087, and a refrigeration element connecting wire 1085 is provided between the three second circuit boards 1082. The three second circuit boards 1082 are electrically connected through the refrigeration element connecting wire 1085. A refrigeration element electrical interface 1086 is provided on the surface of one of the second circuit boards 1082, and the refrigeration element electrical interface 1086 is electrically connected to one of the power output interfaces of the driving power supply 6. A second connection pad 1084 is provided on the top of the three second circuit boards 1082, and the three second circuit boards 1082 are connected to the top of the inner cavity of the connector through the second connection pad 1084.
[0041] Furthermore, a second support pad 1083 is provided at the bottom of each of the three cold conduction members 1088 , and a second connecting pad 1084 is provided at the bottom of each of the three second support pads 1083 . The three second support pads 1083 are connected to the bottom of the inner cavity of the connector through the second connecting pad 1083 .
[0042] It should be further explained that the above-mentioned solenoid valves are all electrically connected to the control processor, and the power source of the driving power supply 6 is an external power supply.
[0043] Working principle:
[0044] Hot compress mode: Wrap the device around the painful part of the user's musculoskeletal joints, and then provide power to the driving power supply 6 and the control panel through an external power supply, and select hot compress or cold compress mode as needed. If the hot compress mode is used, connect the external air pump and connect the air outlet interface of the air pump to the first air inlet pipe 102, the second air inlet pipe 202 and the third air inlet pipe 402, and then control the electromagnetic valve inside the second air inlet pipe 202 to open through the control processor inside the operation panel 5, so that the air pump inflates the restraint airbag 204, thereby making the restraint airbag The bag 204 is used to restrain and fix the painful part of the user's musculoskeletal joints to prevent the device from shifting. After the fixation is completed, the electromagnetic valve inside the second air inlet pipe 202 is closed, and then the wiring port of the driving power supply 6 is electrically connected to the heating element electrical interface 1076 to provide power to the electric heating tube 1074, and the temperature of the electric heating tube 1074 is controlled by the temperature control device. Then, the electromagnetic valves inside the first air inlet pipe 102 and the second air inlet pipe 202 are opened, and the air pump is used to inflate the mobile air bag 104 and the massage air bag 404. The mobile air bag 104 During the inflation process, the mobile airbag 104 will swell, which will force the first rehabilitation mechanism 1 or the second rehabilitation mechanism 8 to move and stretch the elastic band 3, thereby changing the massage position of the massage airbag 404. The hot air generated by the electric heating tube 1074 will be transferred to the massage airbag 404 through the exhaust hole 106, so that the massage airbag 404 has a hot compress effect. The massage airbag 404 and the mobile airbag 104 are inflated and unloaded at the same time, that is, when the massage airbag 404 is inflated, the mobile airbag 104 is inflated synchronously. At the same time, a mobile massage and hot compress is performed on the painful part of the user's musculoskeletal joints. When the air is deflated, the massage airbag 404 and the mobile airbag 104 are deflated simultaneously. The massage airbag 404 rebounds under the elastic force of the restraint belt 201, and a mobile massage and hot compress is performed on the painful part of the user's musculoskeletal joints again. The force applied by the massage airbag 404 to the painful part of the user's musculoskeletal joints increases with the inflation of the massage airbag 404, and decreases with the deflation of the massage airbag 404, so that the painful part of the user's musculoskeletal joints is fully massaged, thereby improving the rehabilitation effect.
[0045] Cold compress mode: Wrap the device around the painful part of the user's musculoskeletal joints, and then provide power to the driving power supply 6 and the control panel through an external power supply. Select hot compress or cold compress mode as needed. If the cold compress mode is used, connect the air pump to the outside and connect the air pump's outlet interface to the first air inlet pipe 102, the second air inlet pipe 202, and the third air inlet pipe 402. Then, control the solenoid valve inside the second air inlet pipe 202 to open through the control processor inside the operation panel 5, so that the air pump inflates the restraint airbag 204, so that the restraint airbag 204 restrains and fixes the painful part of the user's musculoskeletal joints. , to avoid the device from shifting, after the fixation is completed, close the solenoid valve inside the second air inlet pipe 202, and then electrically connect the wiring port of the driving power supply 6 to the refrigeration component electrical interface 1086 to provide power to the semiconductor refrigeration component 1081, and control the temperature of the semiconductor refrigeration component 1081 through the temperature control device, and then open the solenoid valves inside the first air inlet pipe 102 and the second air inlet pipe 202, so that the air pump inflates the mobile airbag 104 and the massage airbag 404. During the inflation process, the mobile airbag 104 will swell, which will force the first rehabilitation mechanism 1 or the second rehabilitation mechanism 1 to The structure 8 moves and stretches the elastic band 3, thereby changing the massage position of the massage airbag 404. The cold air generated by the semiconductor refrigeration component 1081 is transferred to the second support pad 1083 through the cold conduction component 1088 and is transferred to the massage airbag 404 through the exhaust hole 106. The hot air generated by the semiconductor refrigeration component 1081 is transferred to the exhaust hole 106 at the top of the mounting component 101 through the heat conduction component 1087 for heat dissipation, thereby making the massage airbag 404 have a cold compress effect. The charging and unloading work of the massage airbag 404 and the mobile airbag 104 is carried out simultaneously, that is, the massage airbag 404 04 When inflated, the mobile airbag 104 is inflated synchronously, and while moving, a mobile massage and cold compress is performed on the painful areas of the user's musculoskeletal joints. When deflated, the massage airbag 404 and the mobile airbag 104 are deflated synchronously, and the massage airbag 404 rebounds under the elastic force of the restraint belt 201, and a mobile massage and cold compress is performed on the painful areas of the user's musculoskeletal joints again. The force applied by the massage airbag 404 to the painful areas of the user's musculoskeletal joints increases from small to large as the massage airbag 404 is inflated, and decreases from large to small as the massage airbag 404 is deflated, so that the painful areas of the user's musculoskeletal joints are fully massaged, thereby improving the rehabilitation effect.
[0046] The above description is merely a preferred embodiment of the present invention; however, the scope of protection of the present invention is not limited thereto. Any person skilled in the art who, within the technical scope disclosed by the present invention, makes equivalent substitutions or modifications based on the technical solutions and improved concepts of the present invention shall be covered by the scope of protection of the present invention.
Claims
1. A musculoskeletal joint pain rehabilitation treatment auxiliary device, comprising a first rehabilitation mechanism (1), a second rehabilitation mechanism (8), a first restraining mechanism (2), a second restraining mechanism (9) and an air pump, characterized in that: The structures of the first rehabilitation mechanism (1) and the second rehabilitation mechanism (8) are completely identical. An elastic band (3) is provided between the first rehabilitation mechanism (1) and the second rehabilitation mechanism (8), and the elastic band (3) is made of elastic material. The first restraining mechanism (2) and the second restraining mechanism (9) both include restraining bands (201). The top of the restraining band (201) of the first restraining mechanism (2) is provided with a Velcro (7), and the bottom of the restraining band (201) of the second restraining mechanism (9) is provided with another Velcro (7). The structures of the first restraining mechanism (2) and the second restraining mechanism (9) are completely identical. The bottoms of the first rehabilitation component and the second rehabilitation component are both provided with a massage component (4), and the structures of the two massage components (4) are completely identical. The first rehabilitation mechanism (1) includes a mounting member (101), an operating panel (5) and a driving power supply (6) are provided on the top of the mounting member (101), two movable airbags (104), three hot compress assemblies (107) and three cold compress assemblies (108) are provided inside the mounting member (101), a separation pad (105) is provided between the two movable airbags (104), the three hot compress assemblies (107) and the three cold compress assemblies (108) are arranged alternately, a separation pad (105) is provided between the hot compress assemblies (107) and the cold compress assemblies (108), a restraining airbag (204) is provided inside the restraining belt (201), and a plurality of exhaust holes (106) are provided at the bottom and top of the mounting member (101).
2. The musculoskeletal and joint pain rehabilitation auxiliary device according to claim 1, characterized in that: A control processor is provided inside the operation panel (5), and the control processor is a single chip microcomputer. The driving power supply (6) is equipped with a charging interface and two power output interfaces.
3. The musculoskeletal and joint pain rehabilitation auxiliary device according to claim 1, characterized in that: Both ends of the mobile airbag (104) are provided with a connecting plate, and the connecting plate and the mobile airbag (104) are connected through a pipeline. The connecting plate is hollow, and a first air intake pipe (102) is provided on one side of the connecting plate close to the outside of the mounting member (101), and the first air intake pipe (102) passes through the connecting member and extends to the outside of the connecting member. A solenoid valve is provided inside the first air intake pipe (102), and the first air intake pipe (102) is connected to the air pump through a pipeline. A first air discharge pipe (103) is provided on the other side of the connecting plate close to the outside of the mounting member (101), and the first air discharge pipe (103) passes through the connecting member and extends to the outside of the connecting member. Another solenoid valve is provided inside the first air discharge pipe (103), and both the first air intake pipe (102) and the first air discharge pipe (103) are connected to the mobile airbag (104) through the connecting plate.
4. The musculoskeletal and joint pain rehabilitation auxiliary device according to claim 1, characterized in that: Two restraining airbags (204) are provided, and connecting pipes are provided at both ends of the two restraining airbags (204). The two restraining airbags (204) are connected through the connecting pipes. A second air intake pipe (202) is provided on the side of one of the connecting pipes close to the outside of the restraining belt (201), and a solenoid valve is provided inside the second air intake pipe (202). A second air discharge pipe (203) is provided on the side of the other connecting pipe close to the outside of the restraining belt (201), and another solenoid valve is provided inside the second air discharge pipe (203). Both the second air intake pipe (202) and the second air discharge pipe (203) are connected to the restraining airbag (204) through the connecting pipes.
5. The musculoskeletal and joint pain rehabilitation auxiliary device according to claim 1, characterized in that: The three hot compress components (107) each include an electric heating tube (1074), an electric heating wire is provided inside the electric heating tube (1074), a first circuit board (1071) is provided on the top of the electric heating tube (1074), a heating element connecting wire (1075) is provided between the three first circuit boards (1071), the three first circuit boards (1071) are electrically connected through the heating element connecting wire (1075), a heating element electrical interface (1076) is provided on the surface of one of the first circuit boards (1071), the heating element electrical interface (1076) is electrically connected to one of the power output interfaces of the driving power supply (6), a first connecting pad (1073) is provided on the top of the three first circuit boards (1071), and the three first circuit boards (1071) are connected to the top of the inner cavity of the connector through the first connecting pad (1073).
6. The musculoskeletal and joint pain rehabilitation auxiliary device according to claim 5, characterized in that: The bottoms of the three electric heating tubes (1074) are each provided with a first support pad (1072), the bottoms of the three first support pads (1072) are each provided with a first connecting pad (1073), and the three first support pads (1072) are connected to the bottom of the inner cavity of the connector through the first connecting pad (1073).
7. The musculoskeletal and joint pain rehabilitation auxiliary device according to claim 1, characterized in that: The three cold compress components (108) all include semiconductor refrigeration components (1081), and a plurality of heat conducting components (1087) and cold conducting components (1088) are respectively provided on the top and bottom of each semiconductor refrigeration component (1081). A second circuit board (1082) is provided on the top of the heat conducting component (1087), and refrigeration component connecting wires (1085) are provided between the three second circuit boards (1082). The three second circuit boards (1082) are electrically connected through the refrigeration component connecting wires (1085). A refrigeration component electrical interface (1086) is provided on the surface of one of the second circuit boards (1082), and the refrigeration component electrical interface (1086) is electrically connected to one of the power output interfaces of the driving power supply (6). A second connecting pad (1084) is provided on the top of the three second circuit boards (1082), and the three second circuit boards (1082) are connected to the top of the inner cavity of the connector through the second connecting pad (1084).
8. The musculoskeletal and joint pain rehabilitation auxiliary device according to claim 7, characterized in that: The bottoms of the three cold conduction members (1088) are each provided with a second support pad (1083), the bottoms of the three second support pads (1083) are each provided with a second connecting pad (1084), and the three second support pads (1083) are connected to the bottom of the inner cavity of the connector via the second connecting pad (1083).
9. The musculoskeletal and joint pain rehabilitation auxiliary device according to claim 1, characterized in that: The massage component (4) includes a side band (401), two side bands (401) are provided, and the two side bands (401) are fixedly connected to the side of the connecting member, the side band (401) is hollow, and a plurality of massage airbags (404) are provided between the two side bands (401), and a connecting tube (405) is provided between each massage airbag (404) and the side band (401), and each massage airbag (404) is connected to the inner cavity of the side band (401) through the connecting tube (405). The side strips (401) are connected to the massage airbag (404), and a third air inlet pipe (402) is provided on the side away from the massage airbag (404), and a solenoid valve is provided inside the third air inlet pipe (402); the side strips (401) are connected to the massage airbag (404), and a third air discharge pipe (403) is provided on the side away from the massage airbag (404), and another solenoid valve is provided inside the third air discharge pipe (403); the third air discharge pipe (403) and the third air inlet pipe (402) are both connected to the massage airbag (404) through the side strips (401).
Citation Information
Patent Citations
Muscle-bone-joint pain rehabilitation treatment auxiliary device
CN216294640U