Resonance qi and blood circulation balancing instrument for physical therapy
By designing physiotherapy plates, pedals, pedal connection plates and pressure monitoring mechanisms in the resonant qi-blood balancer, the problem of uninterrupted physical therapy when the user lifts his feet is solved, the stable operation of the equipment and the hygiene and safety of the physiotherapy process are achieved, and safety hazards and cross-infection risks are reduced.
Patent Information
- Application Number
- CN202510186618.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-05-30
AI Technical Summary
The existing resonant Qi and Blood Discipline Balancer will not be interrupted when the user lifts his feet, resulting in safety risks such as waste of energy and overheating of the equipment.
A resonant qi-blood balancer including a physiotherapy plate, a pedal, a pedal connecting plate and a pressure monitoring mechanism is designed. Through the cooperation of the pressure monitoring mechanism and a limiting component, the stable connection and automatic limit of the pedal are achieved, avoiding pedal shaking, and the design of the pedal connecting plate is simple to remove and clean.
It effectively solves the problem of uninterrupted physical therapy when users lift their feet, avoids the safety hazards of energy waste and equipment overheating, improves the stability and hygiene safety of the physical therapy process, and reduces the risk of cross-infection.
Smart Images

Figure CN120053878A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of physiotherapy, and more specifically, the present invention relates to a resonance qi and blood circulation balance instrument for physiotherapy. Background Art
[0002] A resonance qi and blood circulation balance instrument refers to a device that uses the resonance principle to promote the qi and blood circulation in the human body and achieve a physiotherapy effect. Through a specific structure and design, the device can generate resonance waves that match the frequency of the qi and blood circulation inside the human body, thereby stimulating and promoting the smooth operation of the qi and blood in the human body to achieve the purpose of regulating the body balance, relieving fatigue, and improving the health status. The resonance qi and blood circulation balance instrument has a wide application prospect in the field of physiotherapy and can provide a non-drug and non-invasive physiotherapy method for people to help improve their health status.
[0003] According to the patent document: CN210096330U, a resonance balance instrument for physiotherapy is disclosed. A display screen is inlaid on the front surface of the physiotherapy box, and a power button is inlaid on the front surface of the physiotherapy box on one side of the display screen. On the front surface of the physiotherapy box at the bottom of the display screen, an qi and blood circulation A button, a pain relief B button, and a self-regulation relaxation C button are sequentially inlaid; a microcontroller, a battery compartment, and a PCB circuit board are arranged inside the physiotherapy box. The qi and blood circulation A button, the pain relief B button, the self-regulation relaxation C button, and the strength adjustment button electrically control a function gear selection circuit, and the function gear selection circuit transmits signals to the microcontroller. Both the battery compartment and the microcontroller transmit electrical signals to a boost circuit, and the boost circuit is electrically connected to a signal line; the microcontroller is electrically connected to the display screen through a display driving circuit; it realizes the function of stimulating human acupoints and activating muscles and bones, achieving the effects of qi and blood connection and yin-yang harmony, and can promote the smooth flow of current in the body, achieving the functions of pain relief, anti-inflammatory, and soothing nerves and muscles.
[0004] The resonance qi and blood balance instrument usually requires the user to step on two pedals with bare feet, and then the staff starts it. After the microcontroller receives the signal transmitted by the function gear selection circuit, it controls the boost circuit to adjust the current intensity and frequency output by the signal line, so as to achieve precise stimulation of human acupoints. However, in this way, when the user lifts the feet, the physiotherapy will not be interrupted, and the balance instrument continues to start. This not only may cause waste of energy, but also may cause overheating of the device or other safety hazards due to forgetting to turn off and making the balance instrument continue to start. Summary of the Invention
[0005] In order to overcome the above-mentioned defects of the prior art, the present invention provides a resonance qi and blood circulation balance instrument for physiotherapy. The technical problem to be solved by the present invention is that when the user lifts the feet, the physiotherapy will not be interrupted, and the balance instrument continues to start. This not only may cause waste of energy, but also may cause overheating of the device or other safety hazards due to forgetting to turn off and making the balance instrument continue to start.
[0006] To solve the above technical problems, the technical solution adopted by the present invention is as follows:
[0007] A resonance qi and blood circulation balance instrument for physiotherapy, comprising a resonance qi and blood circulation balance instrument main body. A physiotherapy board is movably connected to the bottom of the front side of the resonance qi and blood circulation balance instrument main body. The left and right sides of the inner wall of the physiotherapy board are respectively movably connected with pedal connecting plates. The tops of the inner walls of the two pedal connecting plates are both movably connected with pedals. The bottoms of the two pedal connecting plates are both movably connected with pressure monitoring mechanisms. The bottoms of the two pressure monitoring mechanisms are respectively fixedly connected to the left and right sides of the bottom of the inner wall of the physiotherapy board.
[0008] The physiotherapy board includes a physiotherapy board housing. Pedal connection grooves are respectively formed on the left and right sides of the top of the physiotherapy board housing.
[0009] The two pedal connecting plates both include pedal connecting plate housings. The outer walls of the two pedal connecting plate housings are respectively slidably connected to the inner walls of the two pedal connection grooves formed on the top of the physiotherapy board housing. Four sides of the middle of the bottom of the two pedal connecting plate housings are all fixedly connected with limiting blocks. The middle and both sides of the bottom of the two groups of limiting blocks are designed with hollow-out. Four sides of the top of the inner walls of the two pedal connecting plate housings are all fixedly connected with connecting columns. The tops of the two groups of connecting columns are all fixedly connected with sliding columns. The tops of the two groups of sliding columns are all fixedly connected with conical discs. The outer walls of the two groups of sliding columns are all slidably connected with sliding shafts. The top and bottom of the two groups of sliding shafts are both conical sections.
[0010] As a further scheme of the present invention: The pressure monitoring mechanism includes a pressure monitoring mechanism bottom plate. The front and rear sides of the top of the pressure monitoring mechanism bottom plate are respectively fixedly connected with pressure monitoring components. The middle of the top of the pressure monitoring mechanism bottom plate is fixedly connected with a limiting component.
[0011] As a further scheme of the present invention: The two pressure monitoring components both include two pressure monitoring component bottom plates. The middle of the top of the front and rear groups of pressure monitoring component bottom plates are all fixedly connected with sliding rods. The mutually remote sides of the tops of the front and rear groups of pressure monitoring component bottom plates are all fixedly connected with two side plates. The inner tops of the four groups of side plates are all fixedly connected with connecting cross plates. The middle of the inner sides of the front and rear groups of connecting cross plates are all fixedly connected with two inverted L-shaped hinge blocks. The inner bottoms of the four groups of side plates are all fixedly connected with circuit control boards. The bottoms of the front and rear groups of circuit control boards are all fixedly connected with two wires. The sides of the four groups of wires away from the circuit control boards are all fixedly connected to the bottom of the inner wall of the physiotherapy board housing. The middle of the bottoms of the four circuit control boards are all fixedly connected with a second wire.
[0012] As a further solution of the present invention: arc-shaped rotating rods are rotatably connected to the inner sides of the four groups of inverted L-shaped hinge blocks. Discs are rotatably connected to the tops of the four arc-shaped rotating rods. V-shaped rotating rods are rotatably connected to both sides of the outer walls of the four arc-shaped rotating rods. Pressure shafts are fixedly connected to the sides of the inner sides of the four groups of V-shaped rotating rods away from the arc-shaped rotating rods. Pressure rods are fixedly connected to the inner walls of the four pressure shafts. Springs are sleeved on the outer walls of the four pressure rods.
[0013] As a further solution of the present invention: vertical sliding rods are fixedly connected to the front and rear sides of the tops of the front and rear groups of pressure monitoring component bottom plates. V-shaped control rotating rod hinge blocks are fixedly connected to the tops of the front and rear groups of pressure monitoring component bottom plates on one side inside multiple side plates and the vertical sliding rods. V-shaped control rotating rods are rotatably connected to the inner walls of the four groups of V-shaped control rotating rod hinge blocks. Wheels are rotatably connected to the sides of the inner sides of the four groups of V-shaped control rotating rods close to the side plates. Elliptical sliding grooves are formed in the inner walls of the four groups of V-shaped control rotating rods away from the wheels.
[0014] As a further solution of the present invention: pressing plates are fixedly connected to the bottoms of the front and rear groups of pressure rods. Pressing plate sliders are fixedly connected to the front and rear sides of the front and rear groups of pressing plates. The inner walls of the four groups of pressing plate sliders are respectively slidably connected to the outer walls of the four vertical sliding rods. Electric connection male heads are fixedly connected to the middles of the bottoms of the front and rear groups of pressing plates. Male head circuits are fixedly connected to the sides of the front and rear groups of electric connection male heads close to each other. The sides of the front and rear groups of male head circuits away from the electric connection male heads extend to the inner wall of the pedal connecting plate housing.
[0015] As a further solution of the present invention: inverted L-shaped pressing rods are fixedly connected to the front and rear sides of the sides of the front and rear groups of pressing plates away from each other. The bottoms of the four groups of inverted L-shaped pressing rods are movably connected to the outer walls of the wheels. Female head side connecting rods are slidably connected to the inner walls of the elliptical sliding grooves opened in the four groups of wheels. Inverted concave female heads are fixedly connected to the inner sides of the four groups of female head side connecting rods. The middles of the bottoms of the front and rear groups of inverted concave female heads are slidably connected to the outer walls of the sliding rods. Female head interfaces are formed in the middles of the tops of the front and rear groups of inverted concave female heads. The sides of the front and rear groups of inverted concave female heads away from each other are fixedly connected to one end of the second circuit away from the circuit control board.
[0016] As a further solution of the present invention: the limiting component includes a limiting component bottom plate. Slide groove plates are fixedly connected to the four sides of the top of the limiting component bottom plate. Slide groove plate top grooves are formed in the tops of the front and rear groups of slide groove plates. Slide groove block connecting blocks are fixedly connected to the sides of the four sides of the top of the limiting component bottom plate away from the four slide groove plates. Slide groove blocks are fixedly connected to the tops of the front and rear groups of slide groove block connecting blocks. L-shaped connecting vertical rods are fixedly connected to the tops of the front and rear groups of slide groove blocks.
[0017] As a further solution of the present invention: on the inner walls of the chute board top grooves opened at the tops of the front and rear groups of the chute boards, there are sliding connections with inclined plate sliders. On the sides of the front and rear groups of the inclined plate sliders away from each other, there are fixedly connected inclined plate push rods. On the sides of the front and rear groups of the inclined plate push rods away from each other, there are respectively fixedly connected to the sides of the front and rear groups of inverted concave female heads close to each other. The outer walls of the front and rear groups of the inclined plate push rods are slidably connected to the inner walls of the chute blocks. On the tops of the front and rear groups of the inclined plate sliders, there are fixedly connected inclined plates. On the tops of the front and rear groups of the inclined plates, there are sliding connections with reverse inclined plates. On the tops of the front and rear groups of the reverse inclined plates, there are fixedly connected lifting vertical rods. On the tops of the front and rear groups of the lifting vertical rods, there are fixedly connected clamping blocks. On the front and rear sides of the inner walls of the front and rear groups of the clamping blocks, there are sliding connections with connecting blocks. The outer sides of the four groups of the connecting blocks are all semi-circular cut surfaces. On the inner sides of the four groups of the connecting blocks, there are fixedly connected connecting block springs. The outer walls of the front and rear groups of the lifting vertical rods are respectively slidably connected to the inner walls of the tops of the front and rear groups of L-shaped connecting vertical rods close to each other.
[0018] As a further solution of the present invention: the pedal includes a pedal main body. On the four sides of the bottom of the pedal main body, there are respectively fixedly connected pedal connecting pipes. On one side of the outer walls of the front and rear groups of the pedal connecting pipes, there are opened clamping block grooves. On the inner walls of the front and rear groups of the clamping block grooves, there are sliding connections with rectangular clamping blocks. On the sides of the front and rear groups of the rectangular clamping blocks close to the clamping block grooves, they extend to the inner walls of the pedal connecting pipes. On the bottom sides of the sides of the front and rear groups of the rectangular clamping blocks extending to the inner walls of the pedal connecting pipes, they are all inclined cut surfaces. On the outer walls of the sides of the front and rear groups of the rectangular clamping blocks away from the pedal connecting pipes, there are sleeved rectangular clamping block springs.
[0019] The beneficial effects of the present invention are as follows:
[0020] 1. By setting a physiotherapy board, a pedal, a pedal connecting plate, and a pressure monitoring mechanism, the present invention solves the problem that when the user lifts the foot, the physiotherapy does not interrupt and the balance meter continues to start. This not only may cause waste of energy, but also may cause overheating of the device or other safety hazards due to forgetting to turn off and the balance meter continuing to start. Specifically, when the patient needs to perform physiotherapy, first, the patient applies a special physiotherapy ointment on the instep. The patient steps on the left and right pedals with both feet. The pedals drive the turntable and the arc-shaped rotating rod to rotate, and then the V-shaped rotating rod and the pressing rod move downward. The pressing plate moves stably under the action of the slider, and pushes the inverted L-shaped pressing rod to rotate the rotating wheel. The rotating wheel drives the V-shaped control rotating rod and the female head side connecting rod to realize the connection between the electrical connection male head and the inverted concave female head, and starts the physiotherapy device;
[0021] 2. The present invention is provided with a pressure monitoring mechanism and a limit assembly to prevent the pedal connecting plate from shaking during use, thereby improving the stability during physical therapy, and the patient does not need to continuously step on the pedal during use, and the stability of the physical therapy process can be maintained by the gravity of both feet. Specifically, the inverted concave female head moves and pulls the inclined plate push rod, pushes the inclined plate and the reverse inclined plate, and makes the lifting rod rise, and the block moves into the limit groove accordingly, and the pedal connecting plate is fixed by the connecting block spring to prevent shaking;
[0022] 3. The present invention provides a pedal and a pedal connecting plate, so that the disassembly and installation of the pedal becomes simple and quick, which greatly improves the efficiency of cleaning and disinfection, and effectively ensures the hygiene and safety during physical therapy, and reduces the risk of cross infection. Specifically, after physical therapy, in order to prevent cross infection, the staff can press down the pedal body, drive the connecting pipe and the rectangular block to slide down, and get stuck at the bottom of the sliding shaft. The conical surface of the sliding shaft contacts the block, pushing it to slide along the inner wall of the groove, compressing the spring, making it easy to remove the pedal for cleaning and disinfection. After cleaning, align the pedal with the connecting column and press down the pedal. The rectangular block is stuck into the conical disk under the action of the spring, and the beveled surface allows the block to slide in and be fixed easily, completing the installation of the pedal. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a schematic diagram of the main three-dimensional structure of the present invention;
[0024] Figure 2 It is a schematic diagram of the three-dimensional structure of the physiotherapy board of the present invention;
[0025] Figure 3 It is a schematic diagram of the three-dimensional separation structure of the main part of the present invention;
[0026] Figure 4 It is a schematic diagram of the three-dimensional separation structure of the pedal, the pedal connecting plate and the pressure monitoring mechanism of the present invention;
[0027] Figure 5 It is a schematic diagram of the three-dimensional separation structure of the pedal connecting plate of the present invention;
[0028] Figure 6 It is a schematic diagram of the three-dimensional structure of the pressure monitoring mechanism of the present invention;
[0029] Figure 7 It is a schematic diagram of the three-dimensional structure of the pressure monitoring component of the present invention;
[0030] Figure 8 It is a schematic diagram of the three-dimensional separation structure of the pressure monitoring component of the present invention;
[0031] Figure 9 It is a schematic diagram of the three-dimensional structure of the limiting component of the present invention;
[0032] Figure 10Schematic diagram of the three-dimensional separation structure of the pedal of the present invention.
[0033] In the figure: 1. Resonance qi and blood circulation balance instrument main body; 2. Physiotherapy board; 21. Physiotherapy board outer shell; 22. Pedal connection groove; 3. Pedal; 31. Pedal main body; 32. Pedal connection pipe; 33. Clamp block groove; 34. Rectangular clamp block; 35. Rectangular clamp block spring; 4. Pedal connection plate; 41. Pedal connection plate outer shell; 42. Limit block; 43. Connection column; 44. Slide column; 45. Conical disk; 46. Slide shaft; 5. Pressure monitoring mechanism; 51. Pressure monitoring mechanism bottom plate; 52. Pressure monitoring component; 521. Pressure monitoring component bottom plate; 522. Slide bar; 523. Side plate; 524. Connection cross plate; 525. Inverted L-shaped hinge block; 526. Circuit control board; 527. Circuit; 528. Second circuit; 529. Arc-shaped rotating rod; 5210. Turntable; 5211. V-shaped rotating rod; 5212. Pressing shaft; 5213. Pressing rod; 5214. Spring; 5215. Vertical slide bar; 5216. V-shaped control rotating rod hinge block; 5217. V-shaped control rotating rod; 5218. Runner; 5219. Elliptical chute; 5220. Pressing plate; 5221. Pressing plate slider; 5222. Inverted L-shaped pressing rod; 5223. Electric connection male head; 5224. Male head circuit; 5225. Inverted concave female head; 5226. Female head interface; 5227. Female head side connecting rod; 53. Limit component; 531. Limit component bottom plate; 532. Chute plate; 533. Chute plate top groove; 534. Chute block connecting block; 535. Chute block; 536. L-shaped connecting vertical rod; 537. Inclined plate slider; 538. Inclined plate push rod; 539. Inclined plate; 5310. Reverse inclined plate; 5311. Lifting vertical rod; 5312. Clamp block; 5313. Connecting block spring; 5314. Connecting block. Detailed implementation mode
[0034] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0035] As Figure 1-4 shown, the present invention provides a resonance qi and blood circulation balance instrument for physiotherapy, including a resonance qi and blood circulation balance instrument main body 1. The bottom of the front side of the resonance qi and blood circulation balance instrument main body 1 is movably connected with a physiotherapy board 2. The left and right sides of the inner wall of the physiotherapy board 2 are respectively movably connected with a pedal connection plate 4. The tops of the inner walls of the two pedal connection plates 4 are both movably connected with a pedal 3. The bottoms of the two pedal connection plates 4 are both movably connected with a pressure monitoring mechanism 5. The bottoms of the two pressure monitoring mechanisms 5 are respectively fixedly connected to the left and right sides of the bottom of the inner wall of the physiotherapy board 2.
[0036] such as Figure 5-9As shown in the figure, the physiotherapy board 2 includes a physiotherapy board housing 21. On the left and right sides of the top of the physiotherapy board housing 21, pedal connection grooves 22 are respectively provided. Each of the two pedal connection plates 4 includes a pedal connection plate housing 41. The outer walls of the two pedal connection plate housings 41 are respectively slidably connected to the inner walls of the two pedal connection grooves 22 provided on the top of the physiotherapy board housing 21. On the four sides of the middle part of the bottom of the two pedal connection plate housings 41, limit blocks 42 are fixedly connected. The middle part and both sides of the inner wall of the bottom of the two groups of limit blocks 42 are designed with hollow openings. On the four sides of the top of the inner wall of the two pedal connection plate housings 41, connecting columns 43 are fixedly connected. On the top of the two groups of connecting columns 43, sliding columns 44 are fixedly connected. On the top of the two groups of sliding columns 44, conical discs 45 are fixedly connected. The outer walls of the two groups of sliding columns 44 are respectively slidably connected with sliding shafts 46. The top and bottom of the two groups of sliding shafts 46 are conical sections. The pressure monitoring mechanism 5 includes a pressure monitoring mechanism bottom plate 51. On the front and back sides of the top of the pressure monitoring mechanism bottom plate 51, pressure monitoring components 52 are respectively fixedly connected. In the middle of the top of the pressure monitoring mechanism bottom plate 51, a limit component 53 is fixedly connected. Each of the two pressure monitoring components 52 includes two pressure monitoring component bottom plates 521. In the middle of the top of the front and back groups of pressure monitoring component bottom plates 521, sliding rods 522 are fixedly connected. On the side far from each other on the top of the front and back groups of pressure monitoring component bottom plates 521, two side plates 523 are respectively fixedly connected. On the inner top of the four groups of side plates 523, connecting cross plates 524 are fixedly connected. In the middle of the inner side of the front and back groups of connecting cross plates 524, two inverted L-shaped hinge blocks 525 are fixedly connected. On the inner bottom of the four groups of side plates 523, circuit control boards 526 are fixedly connected. On the bottom of the front and back groups of circuit control boards 526, two circuits 527 are respectively fixedly connected. On the side far from the circuit control board 526 of the four groups of circuits 527, they are respectively fixedly connected to the inner bottom wall of the physiotherapy board housing 21. In the middle of the bottom of the four circuit control boards 526, second circuits 528 are fixedly connected. On the inner side of the four groups of inverted L-shaped hinge blocks 525, arc-shaped rotating rods 529 are rotatably connected. On the top of the four arc-shaped rotating rods 529, turntables 5210 are rotatably connected. On both sides of the outer walls of the four arc-shaped rotating rods 529, V-shaped rotating rods 5211 are rotatably connected. On the side far from the arc-shaped rotating rod 529 on the inner side of the four groups of V-shaped rotating rods 5211, pressing shafts 5212 are fixedly connected. On the inner walls of the four pressing shafts 5212, pressing rods 5213 are fixedly connected. On the outer walls of the four pressing rods 5213, springs 5214 are sleeved. On the front and back sides of the top of the front and back groups of pressure monitoring component bottom plates 521, vertical sliding rods 5215 are fixedly connected. On the side of the top of the front and back groups of pressure monitoring component bottom plates 521 on the side of the inner side of the multiple groups of side plates 523 and the vertical sliding rods 5215, V-shaped control rotating rod hinge blocks 5216 are fixedly connected. On the inner walls of the four groups of V-shaped control rotating rod hinge blocks 5216, V-shaped control rotating rods 5217 are rotatably connected. On the side close to the side plate 523 on the inner side of the four groups of V-shaped control rotating rods 5217, rotating wheels 5218 are rotatably connected.On the inner walls of the sides of the four groups of V-shaped control lever rods 5217 away from the runner 5218, elliptical chutes 5219 are respectively provided. At the bottom ends of the front and rear groups of pressure lever rods 5213, pressure plates 5220 are fixedly connected. On the front, rear, left, and right sides of the front and rear groups of pressure plates 5220, pressure plate sliders 5221 are fixedly connected. The inner walls of the four groups of pressure plate sliders 5221 are respectively slidably connected to the outer walls of the four groups of vertical slide rods 5215. In the middle of the bottoms of the front and rear groups of pressure plates 5220, electrical connection male connectors 5223 are fixedly connected. On the sides of the front and rear groups of electrical connection male connectors 5223 close to each other, male connector circuits 5224 are fixedly connected. On the sides of the front and rear groups of male connector circuits 5224 away from the electrical connection male connectors 5223, they extend to the inner wall of the pedal connecting plate housing 41. On the front, rear, left, and right sides of the sides of the front and rear groups of pressure plates 5220 away from each other, inverted L-shaped pressure lever rods 5222 are fixedly connected. At the bottoms of the four groups of inverted L-shaped pressure lever rods 5222, they are movably connected to the outer wall of the runner 5218. Inside the elliptical chutes 5219 provided in the four groups of runners 5218, female head side connecting rods 5227 are respectively slidably connected. Inside the four groups of female head side connecting rods 5227, inverted concave female heads 5225 are fixedly connected. In the middle of the bottoms of the front and rear groups of inverted concave female heads 5225, they are slidably connected to the outer wall of the slide rod 522. In the middle of the tops of the front and rear groups of inverted concave female heads 5225, female head interfaces 5226 are provided. On the sides of the front and rear groups of inverted concave female heads 5225 away from each other, they are fixedly connected to one end of the second circuit 528 away from the circuit control board 526. The limiting component 53 includes a limiting component bottom plate 531. On the four sides of the top of the limiting component bottom plate 531, chute plates 532 are respectively fixedly connected. On the tops of the front and rear groups of chute plates 532, chute plate top grooves 533 are provided. On the four sides of the top of the limiting component bottom plate 531, on the sides away from the four chute plates 532 respectively, chute block connecting blocks 534 are fixedly connected. On the tops of the front and rear groups of chute block connecting blocks 534, chute blocks 535 are fixedly connected. On the tops of the front and rear groups of chute blocks 535, L-shaped connecting vertical rods 536 are fixedly connected. Inside the chute plate top grooves 533 provided on the tops of the front and rear groups of chute plates 532, inclined plate sliders 537 are respectively slidably connected. On the sides of the front and rear groups of inclined plate sliders 537 away from each other, inclined plate push rods 538 are fixedly connected. On the sides of the front and rear groups of inclined plate push rods 538 away from each other, they are respectively fixedly connected to the sides of the front and rear groups of inverted concave female heads 5225 close to each other. On the outer walls of the front and rear groups of inclined plate push rods 538, they are slidably connected to the inner walls of the chute blocks 535. On the tops of the front and rear groups of inclined plate sliders 537, inclined plates 539 are fixedly connected. On the tops of the front and rear groups of inclined plates 539, reverse inclined plates 5310 are slidably connected. On the tops of the front and rear groups of reverse inclined plates 5310, lifting vertical rods 5311 are fixedly connected. On the tops of the front and rear groups of lifting vertical rods 5311, clamping blocks 5312 are fixedly connected. On the front and rear sides of the inner walls of the front and rear groups of clamping blocks 5312, connecting blocks 5314 are slidably connected. The outer sides of the four groups of connecting blocks 5314 are semi-circular cut surfaces. On the inner sides of the four groups of connecting blocks 5314, connecting block springs 5313 are fixedly connected.The outer walls of the front and rear sets of lifting vertical rods 5311 are respectively slidably connected to the inner walls of the tops of the mutually adjacent sides of the front and rear sets of L-shaped connecting vertical rods 536;
[0037] When the patient needs physical therapy, first, the patient applies a special physical therapy ointment on the instep, and then places both feet on the tops of the left and right pedals 3 respectively and steps down slightly forcefully. The patient stepping on the pedals 3 drives the two pedal connecting plates 4 to slide downward along the inner walls of the pedal connecting grooves 22, so that the bottoms of the two pedal connecting plates 4 respectively press two groups of turntables 5210. The two groups of turntables 5210 slide at the bottoms of the pedal connecting plates 4 and press the arc-shaped rotating rod 529 downward and make the other side thereof rotate. The rotation of the arc-shaped rotating rod 529 drives the V-shaped rotating rod 5211 to rotate and press the pressing shaft 5212 to drive the pressing rod 5213 to move downward, so that the bottom end of the pressing rod 5213 presses the pressing plate 5220 to move downward. Since the pressing plate sliders 5221 on both sides of the pressing plate 5220 are slidably connected to the outer walls of the two vertical sliding rods 5215, it is ensured that the pressing plate 5220 will not shift when moving downward. When the pressing plate 5220 moves downward, it drives the two inverted L-shaped pressing rods 5222 to press the rotating wheel 5218. After being pressed by the inverted L-shaped pressing rods 5222, the rotating wheel 5218 drives the V-shaped control rotating rod 5217 to rotate around the inner wall of the V-shaped control rotating rod hinge block 5216, and then pulls the female head side connecting rod 5227 and the inverted concave female head 5225 at the inner ends of the two female head side connecting rods 5227 to move toward the bottom of the electrical connection male head 5223 through the other side of the V-shaped control rotating rod 5217. When the pedal connecting plate 4 reaches the bottom completely, at this time, the bottom of the electrical connection male head 5223 is inserted into the inner wall of the female head interface 5226 opened at the top of the inverted concave female head 5225, so that the electrical connection male head 5223 and the inverted concave female head 5225 are electrically connected. At this time, the physical therapy device starts. After starting, the resonance device inside the device starts to work, and through specific frequencies and waveforms, precise resonance stimulation is performed on the acupoints of the patient's feet;
[0038] At the same time, when the concave female head 5225 moves, its bottom will pull the inclined plate push rod 538, the inclined plate push rod 538 slides on the inner wall of the slide block 535 and pulls the inclined plate slider 537 to slide on the inner wall of the slide plate top groove 533 toward one side of the slide plate 532, the inclined plate slider 537 slides to drive the inclined plate 539 to move, the inclined plate 539 moves to push the reverse inclined plate 5310, the reverse inclined plate 5310 is pushed by the inclined plate 539 to drive the lifting rod 5311 to move upward, the lifting rod 5311 moves upward to drive the block 5312 to move upward, at this time, the connecting block 53 on the inner wall of the block 5312 14 is squeezed by the limit block 42 and slides on the inner wall of the clamping block 5312 by the elastic force of the connecting block spring 5313 until the clamping block 5312 moves into the limit groove opened by the limit block 42 at the bottom of the pedal connecting plate shell 41. At this time, the connecting block 5314 is clamped into the inner wall of the limit block 42 under the elastic force of the connecting block spring 5313, thereby completing the limitation of the pedal connecting plate 4, avoiding the shaking of the pedal connecting plate 4 during use, improving the stability during the physical therapy process, and ensuring that the patient does not need to continuously step on the pedal 3 downward during use, and the stability of the physical therapy process can be maintained by the gravity of both feet alone.
[0039] like Figure 5 and 10 As shown, the top four sides of the inner wall of the two pedal connecting plate shells 41 are fixedly connected with connecting columns 43, the tops of the two groups of connecting columns 43 are fixedly connected with sliding columns 44, the tops of the two groups of sliding columns 44 are fixedly connected with conical disks 45, the outer walls of the two groups of sliding columns 44 are slidably connected with sliding shafts 46, and the tops and bottoms of the two groups of sliding shafts 46 are both conical sections. The pedal 3 includes a pedal body 31, and the bottom four sides of the pedal body 31 are respectively fixedly connected with a pedal connecting tube 32, and one side of the outer wall of the front and rear groups of pedal connecting tubes 32 is provided with a block groove 33, and the inner walls of the front and rear groups of block grooves 33 are slidably connected with rectangular blocks 34, and the sides of the front and rear groups of rectangular blocks 34 close to the block groove 33 extend to the inner wall of the pedal connecting tube 32, and the bottoms of the front and rear groups of rectangular blocks 34 extending to the inner wall of the pedal connecting tube 32 are both beveled, and the outer walls of the front and rear groups of rectangular blocks 34 away from the pedal connecting tube 32 are sleeved with rectangular block springs 35;
[0040] After the physiotherapy is completed, in order to prevent the patient from having athlete's foot or other infectious viruses attached to the top surface of the pedal 3, which may cause cross-infection when subsequent physiotherapy patients use it, the staff can press down through the pedal main body 31. The downward pressing of the pedal main body 31 drives multiple pedal connecting pipes 32 to press down. The downward pressing of the multiple pedal connecting pipes 32 drives the rectangular block 34 to press down, so that the rectangular block 34 abuts against the sliding shaft 46 at the bottom of the inner wall of the pedal connecting pipe 32 and is stuck at the bottom of the outer wall of the sliding shaft 46. Since the top and bottom of the sliding shaft 46 are both conical sections, when the pedal 3 is lifted upward as a whole, the conical section of the sliding shaft 46 will conflict with the rectangular block 34, thereby pushing the rectangular block 34 to slide along the inner wall of the block groove 33 and squeezing the rectangular block spring 35. At this time, the pedal 3 can be easily removed, facilitating the staff to clean and disinfect the top surface of the pedal 3, effectively avoiding the risk of cross-infection. When it needs to be installed after cleaning, at this time, just align the pedal connecting pipe 32 with the connecting column 43 and press down. At this time, the rectangular block 34 will be stuck at the bottom of the conical disc 45 under the elastic force of the rectangular block spring 35. Since one side of the rectangular block 34 is an inclined section, the rectangular block 34 can easily slide in and be stuck, thus completing the installation of the pedal. This design not only makes the disassembly and installation of the pedal simple and fast, greatly improving the efficiency of cleaning and disinfection, but also effectively ensures the hygiene and safety during the physiotherapy process and reduces the risk of cross-infection.
[0041] Working principle of the present invention: When a patient needs physical therapy, first, the patient applies a special physical therapy ointment on the instep, and then places both feet on the tops of the left and right pedals 3 respectively and steps down slightly forcefully. The patient stepping on the pedals 3 drives the two pedal connecting plates 4 to slide downward along the inner wall of the pedal connecting groove 22, so that the bottoms of the two pedal connecting plates 4 respectively press two groups of turntables 5210. The two groups of turntables 5210 slide at the bottoms of the pedal connecting plates 4 and cause the arc-shaped rotating rod 529 to be pressed downward and the other side thereof to rotate. The rotation of the arc-shaped rotating rod 529 drives the V-shaped rotating rod 5211 to rotate and press the pressure shaft 5212 to drive the pressure rod 5213 to move downward, so that the bottom end of the pressure rod 5213 presses the pressing plate 5220 to move downward. Since the pressing plate sliders 5221 on both sides of the pressing plate 5220 are slidably connected to the outer walls of the two vertical sliding rods 5215, it is ensured that the pressing plate 5220 does not deviate when moving downward. When the pressing plate 5220 moves downward, it drives two inverted L-shaped pressure rods 5222 to press the runner 5218. After the runner 5218 is pressed by the inverted L-shaped pressure rod 5222, it drives the V-shaped control rod 5217 to rotate around the inner wall of the V-shaped control rod hinge block 5216, and then pulls the female head side connecting rod 5227 and the inverted concave female head 5225 at the inner ends of the two female head side connecting rods 5227 to move toward the bottom of the electrical connection male head 5223 through the other side of the V-shaped control rod 5217. When the pedal connecting plate 4 reaches the bottom completely, at this time, the bottom of the electrical connection male head 5223 is inserted into the inner wall of the female head interface 5226 opened at the top of the inverted concave female head 5225, so that the electrical connection male head 5223 and the inverted concave female head 5225 are electrically connected. At this time, the physical therapy device is started. At the same time, when the inverted concave female head 5225 moves, its bottom will pull the inclined plate push rod 538. The inclined plate push rod 538 slides in the inner wall of the chute block 535 and pulls the inclined plate slider 537 to slide in the top groove 533 of the chute plate toward one side of the chute plate 532. The sliding of the inclined plate slider 537 drives the movement of one side of the inclined plate 539. The movement of the inclined plate 539 pushes the anti-inclined plate 5310. After the anti-inclined plate 5310 is pushed by the inclined plate 539, it drives the lifting vertical rod 5311 to move upward. The upward movement of the lifting vertical rod 5311 drives the block 5312 to move upward. At this time, the connecting block 5314 inside the block 5312 is squeezed by the limiting block 42 and slides inside the block 5312 under the elastic force of the connecting block spring 5313 until the block 5312 moves into the limiting groove opened in the limiting block 42 at the bottom of the pedal connecting plate housing 41. At this time, the connecting block 5314 is clamped into the inner wall of the limiting block 42 under the elastic force of the connecting block spring 5313, so as to complete the limitation of the pedal connecting plate 4 and prevent the pedal connecting plate 4 from shaking during use;
[0042] When the physical therapy is completed, in order to prevent the patient's athlete's foot or other infectious viruses from attaching to the top surface of the pedal 3, causing cross infection when the subsequent physical therapy patients use it, the staff can press down the pedal body 31, and the pedal body 31 presses down to drive the multiple pedal connecting tubes 32 to press down, and the multiple pedal connecting tubes 32 press down to drive the rectangular clamping block 34 to press down so that the rectangular clamping block 34 is pressed against the sliding shaft 46 at the bottom of the inner wall of the pedal connecting tube 32 and is stuck at the bottom of the outer wall of the sliding shaft 46. Since the top and bottom of the sliding shaft 46 are both conical sections, when the pedal 3 is lifted upward as a whole, the conical section of the sliding shaft 46 The surface will come into conflict with the rectangular block 34, thereby pushing the rectangular block 34 to slide along the inner wall of the block groove 33 and squeezing the rectangular block spring 35. At this time, the pedal 3 can be easily removed, which is convenient for the staff to clean and disinfect the top surface of the pedal 3, effectively avoiding the risk of cross infection. When it needs to be installed after cleaning, it is only necessary to align the pedal connecting tube 32 with the connecting column 43 and press downward. At this time, the rectangular block 34 will be stuck into the bottom of the conical disk 45 under the elastic force of the rectangular block spring 35. Since one side of the rectangular block 34 is a beveled surface, the rectangular block 34 can easily slide in and get stuck, thereby completing the installation of the pedal.
[0043] The above shows and describes the basic principles and main features of the present invention and the advantages of the present invention. It should be understood by those skilled in the art that the present invention is not limited to the above embodiments. The above embodiments and descriptions are only for explaining the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention may have various changes and improvements, which fall within the scope of the present invention to be protected. The scope of protection of the present invention is defined by the attached claims and their equivalents.
Claims
1. A resonance Qi and blood balance instrument for physical therapy, characterized in that: The invention comprises a resonance qi and blood balancing instrument body (1), wherein the front bottom of the resonance qi and blood balancing instrument body (1) is movably connected to a physical therapy board (2), the left and right sides of the inner wall of the physical therapy board (2) are respectively movably connected to pedal connecting plates (4), the inner wall tops of the two pedal connecting plates (4) are both movably connected to pedals (3), the bottoms of the two pedal connecting plates (4) are both movably connected to pressure monitoring mechanisms (5), and the bottoms of the two pressure monitoring mechanisms (5) are respectively fixedly connected to the left and right sides of the bottom of the inner wall of the physical therapy board (2); The physiotherapy board (2) comprises a physiotherapy board housing (21), and pedal connection grooves (22) are respectively provided on the left and right sides of the top of the physiotherapy board housing (21); The two pedal connection plates (4) each include a pedal connection plate shell (41), the outer walls of the two pedal connection plate shells (41) are respectively slidably connected to the inner walls of the two pedal connection grooves (22) opened at the top of the therapy board shell (21), the four sides of the middle of the bottom of the two pedal connection plate shells (41) are fixedly connected to the limiting blocks (42), the middle of the bottom of the two groups of limiting blocks (42) and the two sides of the inner wall are hollowed out, the four sides of the top of the inner wall of the two pedal connection plate shells (41) are fixedly connected to the connecting columns (43), the tops of the two groups of connecting columns (43) are fixedly connected to the sliding columns (44), the tops of the two groups of sliding columns (44) are fixedly connected to the conical disks (45), the outer walls of the two groups of sliding columns (44) are slidably connected to the sliding shafts (46), and the tops and bottoms of the two groups of sliding shafts (46) are conical sections.
2. A resonance Qi and blood balance instrument for physical therapy according to claim 1, characterized in that: The pressure monitoring mechanism (5) comprises a pressure monitoring mechanism bottom plate (51), the front and rear sides of the top of the pressure monitoring mechanism bottom plate (51) are respectively fixedly connected with pressure monitoring components (52), and the middle part of the top of the pressure monitoring mechanism bottom plate (51) is fixedly connected with a limiting component (53).
3. A resonance Qi and blood balance instrument for physical therapy according to claim 2, characterized in that: The two pressure monitoring components (52) each include two pressure monitoring component bottom plates (521), the middle parts of the tops of the front and rear groups of the pressure monitoring component bottom plates (521) are fixedly connected with a slide bar (522), the sides of the tops of the front and rear groups of the pressure monitoring component bottom plates (521) away from each other are fixedly connected with two side plates (523), the inner tops of the four groups of side plates (523) are fixedly connected with a connecting cross plate (524), and the inner middle parts of the front and rear groups of the connecting cross plates (524) are fixedly connected with a connecting cross plate (524). Two inverted L-shaped hinge blocks (525) are fixedly connected, the inner bottom of the four groups of side panels (523) are fixedly connected to a circuit control board (526), the bottom of the front and rear groups of circuit control boards (526) are fixedly connected to two circuits (527), the side of the four groups of circuits (527) away from the circuit control board (526) is fixedly connected to the bottom of the inner wall of the physiotherapy board housing (21), and the middle of the bottom of the four circuit control boards (526) is fixedly connected to a second circuit (528).
4. A resonance Qi and blood balance instrument for physical therapy according to claim 3, characterized in that: The inner sides of the four groups of inverted L-shaped hinge blocks (525) are rotatably connected to arc-shaped rotating rods (529), the tops of the four arc-shaped rotating rods (529) are rotatably connected to rotating disks (5210), the outer walls of the four arc-shaped rotating rods (529) are rotatably connected to V-shaped rotating rods (5211) on both sides, the inner sides of the four groups of V-shaped rotating rods (5211) away from the arc-shaped rotating rods (529) are fixedly connected to pressure shafts (5212), the inner walls of the four pressure shafts (5212) are fixedly connected to pressure rods (5213), and the outer walls of the four pressure rods (5213) are sleeved with springs (5214).
5. The resonance Qi and blood balance instrument for physical therapy according to claim 3, characterized in that: The front and rear sides of the top of the two groups of pressure monitoring component bottom plates (521) are fixedly connected with vertical sliding rods (5215); the top of the two groups of pressure monitoring component bottom plates (521) is fixedly connected with a V-shaped control rotating rod hinge block (5216) on one side of the inner side of the multiple groups of side plates (523) and the vertical sliding rod (5215); the inner walls of the four groups of V-shaped control rotating rod hinge blocks (5216) are rotatably connected with V-shaped control rotating rods (5217); the inner sides of the four groups of V-shaped control rotating rods (5217) are rotatably connected with a rotating wheel (5218) on one side close to the side plate (523); and the inner walls of the four groups of V-shaped control rotating rods (5217) away from the rotating wheel (5218) are provided with an elliptical sliding groove (5219).
6. A resonance Qi and blood balance instrument for physical therapy according to claim 4, characterized in that: The bottom ends of the front and rear groups of pressure rods (5213) are fixedly connected with pressure plates (5220), the front and rear sides of the front and rear groups of pressure plates (5220) are fixedly connected with pressure plate sliders (5221), the inner walls of the four groups of pressure plate sliders (5221) are respectively slidably connected to the outer walls of the four groups of vertical slide rods (5215), the middle parts of the bottoms of the front and rear groups of pressure plates (5220) are fixedly connected with electrical connection male connectors (5223), the sides of the front and rear groups of electrical connection male connectors (5223) close to each other are fixedly connected with male connector circuits (5224), and the sides of the front and rear groups of male connector circuits (5224) away from the electrical connection male connector (5223) extend to the inner wall of the pedal connection plate housing (41).
7. A resonance Qi and blood balance instrument for physical therapy according to claim 6, characterized in that: The front and rear sides of the two groups of pressure plates (5220) away from each other are fixedly connected with an inverted L-shaped pressure rod (5222), the bottoms of the four groups of inverted L-shaped pressure rods (5222) are movably connected to the outer wall of the rotating wheel (5218), the inner walls of the elliptical slide grooves (5219) opened by the four groups of rotating wheels (5218) are slidably connected with female side connecting rods (5227), and the inner sides of the four groups of female side connecting rods (5227) are fixed. A concave female head (5225) is fixedly connected, the bottom middle parts of the front and rear groups of the concave female heads (5225) are slidably connected to the outer wall of the slide bar (522), the top middle parts of the front and rear groups of the concave female heads (5225) are provided with a female head interface (5226), and the sides of the front and rear groups of the concave female heads (5225) that are away from each other are fixedly connected to the end of the second line (528) away from the circuit control board (526).
8. The resonance Qi and blood balance instrument for physical therapy according to claim 2, characterized in that: The limiting assembly (53) comprises a limiting assembly bottom plate (531), the top four sides of the limiting assembly bottom plate (531) are respectively fixedly connected with slide plates (532), the tops of the front and rear groups of the slide plates (532) are both provided with slide plate top grooves (533), the top four sides of the limiting assembly bottom plate (531) away from the four slide plates (532) are respectively fixedly connected with slide block connecting blocks (534), the tops of the front and rear groups of the slide block connecting blocks (534) are both fixedly connected with slide blocks (535), and the tops of the front and rear groups of the slide blocks (535) are both fixedly connected with L-shaped connecting vertical rods (536).
9. A resonance Qi and blood balance instrument for physical therapy according to claim 8, characterized in that: The inner walls of the top grooves (533) of the two groups of front and rear slide plates (532) are slidably connected with inclined plate sliders (537), and the sides of the two groups of front and rear inclined plate sliders (537) that are away from each other are fixedly connected with inclined plate push rods (538). The sides of the two groups of front and rear inclined plate push rods (538) that are away from each other are respectively fixedly connected to the sides of the two groups of front and rear concave female heads (5225) that are close to each other. The outer walls of the two groups of front and rear inclined plate push rods (538) are slidably connected to the inner walls of the slide block (535), and the tops of the two groups of front and rear inclined plate sliders (537) are fixedly connected with inclined plates (539), and the tops of the two groups of front and rear inclined plates (539) are slidably connected with inclined plates. The reverse inclined plate (5310) is fixedly connected to the top of the front and rear groups of the reverse inclined plates (5310) with a lifting rod (5311), and the top of the front and rear groups of the lifting rod (5311) is fixedly connected to the clamping block (5312), and the front and rear sides of the inner walls of the front and rear groups of the clamping block (5312) are slidably connected to the connecting blocks (5314), the outer sides of the four groups of the connecting blocks (5314) are semicircular cross-sections, and the inner sides of the four groups of the connecting blocks (5314) are fixedly connected to the connecting block spring (5313), and the outer walls of the front and rear groups of the lifting rod (5311) are respectively slidably connected to the inner walls of the tops of the front and rear two groups of L-shaped connecting rods (536) on the sides close to each other.
10. The resonance Qi and blood balancing instrument for physical therapy according to claim 1, characterized in that: The pedal (3) comprises a pedal body (31), the four sides of the bottom of the pedal body (31) are respectively fixedly connected to a pedal connecting tube (32), a block groove (33) is provided on one side of the outer wall of the front and rear groups of the pedal connecting tube (32), the inner walls of the front and rear groups of the block groove (33) are slidably connected to a rectangular block (34), the sides of the front and rear groups of the rectangular block (34) close to the block groove (33) are extended to the inner wall of the pedal connecting tube (32), the bottoms of the sides of the front and rear groups of the rectangular block (34) extending to the inner wall of the pedal connecting tube (32) are both chamfered, and the outer walls of the front and rear groups of the rectangular block (34) away from the pedal connecting tube (32) are sleeved with a rectangular block spring (35).
Citation Information
Patent Citations
Resonance balancing instrument for physiotherapy
CN210096330U