Auxiliary temperature adjusting device of moxibustion box
By designing an auxiliary temperature regulation device for the moxibustion box, the problem of inaccurate temperature control in existing moxibustion boxes is solved, enabling safe moxibustion for patients with impaired skin temperature perception, adapting to the personalized needs of different patients and body parts, and improving the safety and versatility of moxibustion.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2026-03-06
AI Technical Summary
Existing moxibustion boxes have defects in temperature control and cannot be precisely adjusted, making them unsuitable for patients with impaired skin temperature perception and unable to meet personalized treatment needs.
A temperature regulation device for moxibustion boxes was designed, including a fixing part, a height adjustment part, a width adjustment part, and a support part. The control part monitors the temperature in real time and automatically adjusts the distance between the moxibustion box and the patient to ensure that the temperature is within a safe and effective range.
It achieves precise control of moxibustion temperature, reduces the risk of burns, adapts to the personalized needs of different patients and areas, and does not require modification of existing moxibustion boxes, thus improving safety and versatility.
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Figure CN223969290U_ABST
Abstract
Description
Technical Field
[0001] This utility model specifically relates to an auxiliary temperature regulation device for moxibustion boxes. Background Technology
[0002] Moxibustion is a traditional Chinese medicine therapy that primarily uses the heat generated by burning mugwort (a perennial herb) to apply warmth and stimulation to specific acupoints on the body in order to treat diseases. Moxibustion therapy has the following advantages:
[0003] 1. Promotes blood circulation: The warmth generated by moxibustion can dilate blood vessels, promote blood circulation, and help improve the nutrient supply to local tissues and the excretion of metabolic waste.
[0004] 2. Regulating Qi and Blood Circulation in the Meridians: According to Traditional Chinese Medicine theory, the human body has a meridian system responsible for transporting Qi and blood and connecting various internal organs. Moxibustion can regulate the flow of Qi and blood in the meridians, helping to restore bodily functions.
[0005] 3. Boost immunity: Moxibustion can activate the body's immune system by stimulating specific acupoints, thereby improving the body's ability to resist disease.
[0006] 4. Pain relief: The warming effect of moxibustion can help relax muscles and reduce inflammation, which can be effective in relieving chronic pain.
[0007] 5. Regulating endocrine system: Some studies suggest that moxibustion may affect the body's endocrine system, helping to regulate hormone levels and potentially aiding in the treatment of certain problems caused by endocrine disorders.
[0008] 6. Psychological adjustment: During moxibustion, the patient is in a relatively quiet state, which helps to relax the mind, reduce stress, and has a positive effect on maintaining physical and mental health.
[0009] Currently, the main method of moxibustion on the market involves using a moxibustion box. This involves placing the moxibustion box, containing moxa sticks, on the patient's body. To prevent burns, the box is usually wrapped in a towel for insulation. The thickness of the towel is adjusted based on the operator's perception or the patient's feedback. This method generally meets the needs of most users. However, for some patients, such as the elderly or diabetic patients, due to decreased skin temperature perception, they have difficulty accurately judging the temperature their skin is exposed to during moxibustion, which can easily lead to burns or poor moxibustion effects. Therefore, existing moxibustion boxes have the following shortcomings in the moxibustion process:
[0010] 1. Defects in temperature control: Existing moxibustion boxes rely on the patient's specific feelings to adjust the distance between the moxa stick and the skin and the thickness of the towel, thus failing to accurately control the moxibustion temperature.
[0011] 2. Significant safety risks: For patients with impaired skin temperature perception, excessively high moxibustion temperatures may cause severe burns, increasing the risks during treatment.
[0012] 3. Unable to meet personalized needs: Different patients and different parts of the body have different requirements for moxibustion temperature. Fixed moxibustion boxes cannot meet these personalized treatment needs. At the same time, towel-wrapped moxibustion affects the moxibustion effect.
[0013] Therefore, there is a need for a moxibustion auxiliary device with adjustable temperature that is suitable for different patients. Utility Model Content
[0014] The technical problem this invention aims to solve is that, as mentioned in the background art, the existing moxibustion process suffers from inconvenient temperature adjustment and control, and is unsuitable for patients with impaired skin temperature perception, thus failing to meet the needs of personalized treatment.
[0015] To address the aforementioned technical problems, an auxiliary temperature regulation device for moxibustion boxes is proposed; implemented through the following technical solution: An auxiliary temperature regulation device for moxibustion boxes, comprising a moxibustion box, characterized in that it further comprises a moxibustion box fixing part, a height adjustment part, a width adjustment part, and a support part. The support part is placed on the working surface on both sides of the patient's body. The height adjustment part is disposed on the support part. The width adjustment part is connected to the height adjustment part. The moxibustion box fixing part is disposed on the width adjustment part. The moxibustion box spans the patient and is detachably connected to the moxibustion box fixing part. The width of the moxibustion box spanning the patient is controllably adjustable through the width adjustment part. A control part is provided on the moxibustion box fixing part. The control part automatically detects the moxibustion temperature and automatically adjusts the distance between the moxibustion box and the patient according to the temperature using the height adjustment part.
[0016] In a preferred embodiment of the present invention, the moxibustion box fixing part includes a fixed clamp and a movable clamp. The movable clamp is disposed on the fixed clamp, and the side plate of the moxibustion box is placed between the movable clamp and the fixed clamp. The distance between the two is adjustable by adjusting screws. The moxibustion box fixing part facilitates the fixing of the moxibustion box, ensuring the smooth progress of the moxibustion process. It also facilitates the adjustment of the distance between the moxibustion box and the patient by cooperating with the height adjustment part.
[0017] In a preferred embodiment of the present invention, an anti-slip plate is provided on the contact surface between the movable clamp and the fixed clamp. The anti-slip plate contacts the moxibustion box, and the anti-slip plate improves the stability of the moxibustion box on the fixed part of the moxibustion box.
[0018] In a preferred embodiment of the present invention, the width adjustment part includes a guide rod assembly and an adjusting gas strut. The two ends of the guide rod assembly and the adjusting gas strut are respectively connected to the support part and the moxibustion box fixing part. The distance between the moxibustion box fixing part and the support part can be controlled and adjusted by the width adjustment part. The width adjustment part facilitates the adjustment of the horizontal position of the moxibustion box as needed, making it suitable for moxibustion in different positions. It also makes the device suitable for moxibustion boxes of different specifications and sizes, improving the overall versatility and ease of use.
[0019] In a preferred embodiment of the present invention, the guide rod assembly includes an outer rod connected to the support portion and an inner rod connected to the moxibustion box fixing portion. The inner rod is inserted into the outer rod, and the depth of the inner rod inserted into the outer rod changes synchronously with the adjustment of the air support rod. The guide rod assembly facilitates the support of the moxibustion box and ensures the stability of the moxibustion box.
[0020] In a preferred embodiment of the present invention, the height adjustment unit includes a lead screw motor module, a second fixed plate, and a linear slide rail pair. The second fixed plate is connected to the width adjustment unit, the linear slide rail pair is mounted on the support unit, and the slider in the linear slide rail pair is mounted on the second fixed plate. The lead screw motor module is mounted on the support unit and connected to the second fixed plate. The second fixed plate can be controlled to rise and fall under the action of the lead screw motor module. The height adjustment unit facilitates the adjustment of the height of the moxibustion box as needed, thereby adjusting the moxibustion temperature. It is suitable for different patients and is convenient and versatile.
[0021] In a preferred embodiment of the present invention, the support part includes a support plate, on which a height adjustment guide hole is provided. The second fixing plate in the height adjustment part moves up and down along the height adjustment guide hole. The support part facilitates the support of the moxibustion box and also facilitates the installation of the height adjustment part, making it convenient to use.
[0022] In a preferred embodiment of the present invention, the control unit includes a control box and a power supply for power supply. An infrared temperature sensor is installed inside the control box. The infrared temperature sensor monitors the body temperature of the patient's moxibustion site in real time. The installation of the infrared temperature sensor facilitates real-time monitoring of the patient's moxibustion site temperature, and makes it convenient to adjust the position of the moxibustion box according to the monitored temperature, thus facilitating the control of the moxibustion temperature.
[0023] In a preferred embodiment of the present invention, the moxibustion box has two sets of fixing parts, height adjustment parts, width adjustment parts, and support parts, which are arranged opposite each other on both sides of the patient's body. This arrangement facilitates the fixing of the moxibustion box and also makes it easy to adjust the position of the moxibustion box, making it suitable for different patients and convenient to use.
[0024] The advantages of this utility model compared with the prior art are:
[0025] The technical solution of this utility model utilizes a moxibustion box fixing part to fix the moxibustion box. During use, the moxibustion box is placed on the fixing part, and the moxibustion temperature is set and reminded by the control part. During use, the control part monitors the temperature of the patient's moxibustion site in real time. When the temperature deviates from the set value, the control part drives the height adjustment part to move and adjust the height of the entire moxibustion box to prevent the temperature from being too high and burning the patient, or the temperature from being too low and affecting the moxibustion effect. The operation is simple and ensures that the temperature is always within a safe and effective range during the moxibustion process.
[0026] Furthermore, this utility model utilizes a width adjustment section to adjust the horizontal position of the moxibustion box, making it suitable for moxibustion in different positions. It also makes the device compatible with moxibustion boxes of different specifications and sizes, requiring no modification to existing moxibustion boxes for installation and use, thus improving overall versatility and making it convenient and highly applicable. Attached Figure Description
[0027] Figure 1 This is a three-dimensional schematic diagram of the present invention;
[0028] Figure 2 A three-dimensional schematic diagram of the fixing part of the moxibustion box;
[0029] Figure 3 Exploded view of the fixing part of the moxibustion box;
[0030] Figure 4 A three-dimensional schematic diagram of the width adjustment part (excluding the protective cover of the width adjustment part);
[0031] Figure 5 Exploded view of the width adjustment section;
[0032] Figure 6 3D schematic diagram of the support section Figure 1 Includes height adjustment mechanism;
[0033] Figure 7 3D schematic diagram of the support section Figure 2 Includes height adjustment mechanism;
[0034] Figure 8 The exploded view of the support section includes the height adjustment section;
[0035] Figure 9 This is a diagram showing the height of the moxibustion box after adjustment.
[0036] Figure 10 This is an exploded view of the present invention;
[0037] Explanation of reference numerals in the attached drawings: 1-Moxibustion box, 2-Moxibustion box fixing part, 21-Fixing clamp, 22-Moving clamp, 23-Screw mounting slot, 24-Slide groove, 25-Slider, 26-Adjusting screw, 27-Anti-slider, 28-Screw limit block, 29-Screw mounting block, 210-First fixing plate, 3-Height adjustment part, 31-Screw motor module, 32-Second fixing plate, 33-Motor protective cover, 34-Connecting frame, 35-Flange nut, 36-Flange nut mounting hole, 37-Nut fixing plate, 38-Straight slide 4-Wide adjustment section, 41-Guide rod assembly, 42-Adjusting gas strut, 43-Wide adjustment protective cover, 44-Outer rod, 45-Inner rod, 46-Hinge seat, 47-Outer protective cover, 48-Inner protective cover, 49-Gas strut adjusting pressure plate, 5-Control section, 51-Power supply, 52-Control box, 53-Infrared temperature sensor, 54-Temperature measuring hole, 55-Control panel, 56-Control board, 6-Support section, 61-Support plate, 62-Height adjustment guide hole, 63-Slide rail mounting slot, 64-Support plate connecting rod. Detailed Implementation
[0038] The following will refer to the appendix in the embodiments of this utility model. Figure 1-10 The technical solutions in the embodiments of this utility model will be described in detail below. Example
[0039] like Figure 1 As shown, an auxiliary temperature adjustment device for a moxibustion box includes a moxibustion box fixing part 2, a height adjustment part 3, a width adjustment part 4, a control part 5, and a support part 6. The moxibustion box fixing part 2, which is used to fix the moxibustion box 1, is connected to the width adjustment part 4. The width adjustment part 4 is disposed on the height adjustment part 3, and the height adjustment part 3 is disposed on the support part 6.
[0040] The main function of the moxibustion box fixing part 2 is to fix the moxibustion box 1. The tightness of the fixing part 2 is adjustable. This design facilitates the fixing of the moxibustion box 1 and is also suitable for fixing moxibustion boxes 1 of different sizes, making it highly versatile.
[0041] The width adjustment part 4 is set to adjust the position of the moxibustion box 1 as needed. For example, the span of the moxibustion box is different when performing moxibustion on the back and legs. Therefore, the placement position of the moxibustion box 1 on the same fixed device is also different. The width adjustment part 4 can play this adjustment role.
[0042] The height adjustment unit 3 is used to adjust the distance between the bottom of the moxibustion box 1 and the patient's body. The height adjustment unit 3 works in conjunction with the control unit 5. During the moxibustion process, the infrared temperature sensor 53 in the control unit 5 monitors the skin temperature at the moxibustion site in real time. When the temperature differs from the preset temperature, the control unit 5 can control the height of the moxibustion box 1 through the height adjustment unit 3, thereby controlling the distance between the moxibustion box 1 and the patient's skin, and thus controlling the moxibustion temperature.
[0043] The support part 6 is used for the installation of the height adjustment part 3, and also serves as a carrier to support the moxibustion box 1. The entire device is placed on the working surface through the support part 6.
[0044] like Figure 1 , 2 As shown in Figures 3, 4, and 10, the moxibustion box fixing part 2 includes a fixed clamp 21, a movable clamp 22, and a first fixing plate 210. The fixed clamp 21 is mounted on the first fixing plate 210, and the movable clamp 22 is movably mounted on the fixed clamp 21. The side wall of the lower port of the moxibustion box 1 is placed in the clamping opening between the movable clamp 22 and the fixed clamp 21, and the distance between the clamping openings, i.e., the degree of clamping of the moxibustion box 1 by the movable clamp 22 and the fixed clamp 21, is controllably adjustable.
[0045] The fixing plate 21 is an L-shaped plate. In this embodiment, the fixing plate 21 is preferably made of engineering plastic with good weather resistance, high strength and heat resistance, such as PVC plastic. The smaller vertical plate of the fixing plate 21 is the clamping plate. The clamping plate and the movable clamping plate 22 cooperate to form the clamping opening for holding the moxibustion box 1.
[0046] To facilitate the installation and adjustment of the movable clamping plate 22, a screw mounting groove 23 and two sliding grooves 24 are recessed into the surface of the larger horizontal plate of the fixed clamping plate 21. The screw mounting groove 23 is located in the middle of the horizontal plate of the fixed clamping plate 21, and the sliding grooves 24 are located on both sides of the screw mounting groove 23. The sliding grooves 24 can cooperate with the slider 25 fixed on the movable clamping plate 22, and the slider 25 can move along the sliding groove 24.
[0047] The screw mounting groove 23 is a rectangular groove with a depth equal to half the thickness of the fixed clamping plate 21. To facilitate the adjustment of the position of the movable clamping plate 22 on the fixed clamping plate 21, an adjusting screw 26 is screwed onto the movable clamping plate 22. To facilitate the installation and limiting of the adjusting screw 26, a rectangular plastic block is screwed onto the adjusting screw 26. This plastic block is named the screw mounting block 29. The screw mounting block 29 is screwed onto the adjusting screw 26, and the adjusting screw 26 can rotate freely on the screw mounting block 29.
[0048] To facilitate the installation and positioning of the adjusting screw 26, two rectangular blocks protrude outwards from the middle of the screw mounting groove 23 perpendicular to the bottom surface of the screw mounting groove 23. These rectangular blocks are named screw positioning blocks 28. The two screw positioning blocks 28 are distributed opposite each other in the screw mounting groove 23, and the distance between them is slightly larger than the diameter of the adjusting screw 26 but smaller than the size of the screw mounting block 29. The screw mounting block 29 is fixed to the screw positioning block 28 with glue, thereby fixing the adjusting screw 26 in the screw mounting groove 23.
[0049] To facilitate the rotation of the adjusting screw 26 and prevent positional interference, a rectangular clearance hole is provided at one end of the screw mounting groove 23 near the edge, perpendicular to the fixed clamp 21. The position of the clearance hole corresponds to the position of the nut on the adjusting screw 26.
[0050] The movable clamp 22 is a plastic plate with a rectangular cross-section. Two sliders 25 are fixed to the side of the movable clamp 22 with screws. At the same time, the movable clamp 22 is screwed to the adjusting screw 26. When the adjusting screw 26 rotates, it can drive the movable clamp 22 to move linearly along the slide groove 24, thereby adjusting the clamping degree of the movable clamp 22 and the fixed clamp 21 on the moxibustion box 1.
[0051] To improve the clamping tightness, a rubber anti-slip piece 27 is fixed with screws on the opposing surfaces of the movable clamp 22 and the fixed clamp 21. The anti-slip piece 27 can improve the fixation of the moxibustion box 1 after the movable clamp 22 and the fixed clamp 21 are clamped, prevent slippage, and improve the stability of the fixation.
[0052] The first fixing plate 210 is a plate with a rectangular cross-section. The main function of the first fixing plate 210 is to fix the clamping plate 21. The first fixing plate 210 is connected to the clamping plate 21 by screws. Four support rods protrude from the side of the first fixing plate 210. The support rods are located on the lower surface of the clamping plate 21, supporting the clamping plate 21 and improving the stability of the connection between the clamping plate 21 and the first fixing plate 210.
[0053] like Figure 1 , 4 As shown in Figures 5, 7, and 10, the width adjustment part 4 includes a guide rod assembly 41 and an adjusting gas strut 42. One end of the guide rod assembly 41 and the adjusting gas strut 42 is connected to the first fixing plate 210, and the other end is fixed to the second fixing plate 32 on the height adjustment part 3. By adjusting the gas strut 42, the distance between the moxibustion box fixing part 2 and the height adjustment part 3 can be adjusted, thereby adjusting the position of the moxibustion box 1.
[0054] The main function of adjusting the gas strut 42 is to adjust the distance between the moxibustion box fixing part 2 and the height adjustment part 3. The adjusting gas strut 42 is an existing manually adjustable air pressure push rod. In order to facilitate the installation of the adjusting gas strut 42, a hinge seat 46 is hinged to each end of the adjusting gas strut 42. One end of the hinge seat 46 is fixed to the first fixing plate 210 by screws, and the other end of the hinge seat 46 is fixed to the second fixing plate 32 by screws.
[0055] Two gas struts 42 are provided, and the two gas struts 42 are distributed at intervals on the first fixed plate 210. In order to facilitate the control of the length of the gas struts 42, the gas strut adjusting plates 49 on the gas struts 42 are fixed to the first fixed plate 210 with screws. In order to facilitate synchronous adjustment, the gas strut adjusting plates 49 of the two gas struts 42 are connected together, and the two gas struts 42 are adjusted synchronously.
[0056] The main function of the guide rod assembly 41 is to support the moxibustion box fixing part 2 and the moxibustion box 1, and also to guide the direction of movement. When the length of the gas strut 42 is adjusted, the first fixing plate 210 can move along the guide rod assembly 41.
[0057] The guide rod assembly 41 includes an outer rod 44 and an inner rod 45, both of which are made of aluminum alloy. The inner rod 45 can be inserted into the outer rod 44, and the depth of the inner rod 45 inserted into the outer rod 44 can be adjusted at will.
[0058] A fixing skirt is integrally provided at the ends of the outer rod 44 and the inner rod 45. The outer rod 44 is fixed to the second fixing plate 32 by screws through the fixing skirt, and the inner rod 45 is fixed to the first fixing plate 210 by screws through the fixing skirt.
[0059] To protect the width adjustment part 4, a width adjustment part protective cover 43 is provided on the outside of the width adjustment part 4. The width adjustment part protective cover 43 includes an outer protective cover 47 and an inner protective cover 48. The outer protective cover 47 is fixed to the second fixing plate 32 by screws, and the inner protective cover 48 is fixed to the first fixing plate 210 by screws. The inner protective cover 48 is inserted into the outer protective cover 47, and the depth of the inner protective cover 48 inserted into the outer protective cover 47 changes synchronously with the adjustment of the length of the gas strut 42.
[0060] Both the outer protective cover 47 and the inner protective cover 48 are made of four aluminum alloy thin plates. The four aluminum alloy plates of the outer protective cover 47 are fixed around the second fixed plate 32 by screws. The four aluminum alloy plates of the inner protective cover 48 are fixed around the first fixed plate 210 by screws. In order to facilitate pressing the gas strut adjusting plate 49, a corresponding clearance hole is provided at the gas strut adjusting plate 49 on the inner protective cover 48.
[0061] like Figure 1 , 6 As shown in Figures 7 and 8, the support part 6 includes a support plate 61, which is a rectangular plastic plate. The support plate 61 is placed vertically on the working surface (generally on a moxibustion bed). A rectangular through hole is opened in the middle of the support plate 61, which is named the height adjustment guide hole 62. The second fixing plate 32, which is connected to the lead screw motor module 31 in the height adjustment part 3, can move up and down along the height adjustment guide hole 62, thereby driving the moxibustion box 1 to move up and down.
[0062] To facilitate the installation of the linear slide rail pair 38 in the height adjustment section 3, two rectangular grooves are recessed at intervals on one side of the support plate 61. These grooves are named slide rail mounting grooves 63. The slide rails in the linear slide rail pair 38 are installed in the slide rail mounting grooves 63 by screws.
[0063] like Figure 1 , 6 As shown in Figures 7, 8, 9, and 10, the height adjustment unit 3 includes a lead screw motor module 31, a second fixed plate 32, and a linear slide rail pair 38. The second fixed plate 32 is a plastic plate with a rectangular cross-section. The second fixed plate 32 is connected to the width adjustment unit 4. The slide rail in the linear slide rail pair 38 is mounted on the support plate 61. The slider in the linear slide rail pair 38 is fixed to the second fixed plate 32 by screws. The second fixed plate 32 can move up and down along the slide rail in the linear slide rail pair 38.
[0064] The lead screw motor module 31 is an existing motor with a lead screw. The lead screw motor module 31 is connected to the second fixed plate 32. To facilitate the connection between the two, a rectangular boss protrudes perpendicularly to the surface on the side of the second fixed plate 32 where the slider is mounted. This boss is named the connecting frame 34. The width of the connecting frame 34 is the same as the width of the height adjustment guide hole 62. An arc-shaped flange nut mounting hole 36 is recessed at the end of the connecting frame 34. The flange nut 35, which is fitted on the lead screw in the lead screw motor module 31, is fixed to the connecting frame 34 by screws.
[0065] The flange nut 35 is a flanged nut used on the existing screw. To facilitate the fixing of the flange nut 35, a rectangular metal plate is welded on the arc surface of the flange nut 35. This metal plate is named the nut fixing plate 37. The flange nut 35 can be fixed to the connecting frame 34 with screws through the nut fixing plate 37. The screw motor module 31 can drive the second fixing plate 32 to move up and down, thereby driving the moxibustion box 1 to move up and down and adjusting the distance between the moxibustion box 1 and the patient.
[0066] In order to protect the lead screw motor module 31, a motor protective cover 33 is fixed to the lead screw motor module 31 on the support plate 61 with screws, and the entire lead screw motor module 31 is protected by the motor protective cover 33.
[0067] In this device, the moxibustion box fixing part 2, the height adjustment part 3, the width adjustment part 4, and the support part 6 are each provided in two sets, and the two sets are distributed opposite each other to realize the fixing of the moxibustion box 1 and the adjustment of its position.
[0068] To improve the stability of the support part 6, support plate connecting rods 64 can be added to the two opposing support plates 61. The support plate connecting rods 64 are similar to the guide rod assembly 41, both including an inner rod and an outer rod. The inner rod is inserted into the outer rod, and the insertion depth can be adjusted.
[0069] like Figure 1 , 5 As shown in Figure 10, the control unit 5 includes a power supply 51 for power supply, a control box 52 and a control panel 55. The power supply 51 and the control panel 55 are mounted on the support plate 61 on the left side of the support unit 6. The power supply 51 can supply power to the entire device, and the control panel 55 can control the entire device. The control box 52 is mounted on the side of the first fixing plate 210 by screws and is located below the fixing clamp 21.
[0070] The control box 52 is a rectangular hollow plastic box. A control board 56 is fixed inside the control box 52 with screws. There are six rectangular through holes spaced apart on the lower surface of the control box 52. These through holes are named temperature measuring holes 54. An infrared temperature sensor 53, used to monitor the temperature of the moxibustion site in real time, is mounted on the control board 56 at one end and passes through the temperature measuring hole 54 and points to the patient at the other end. The infrared temperature sensor 53 is an existing temperature sensor and an existing device that can be purchased and used directly.
[0071] The main function of the control board 56 is to receive the temperature monitored by the infrared temperature sensor 53 and compare it with the moxibustion temperature preset by the control screen 55. When the moxibustion temperature is too high, the control board 56 controls the screw motor module 31 to move, thereby increasing the distance between the moxibustion box 1 and the patient and lowering the moxibustion temperature. When the moxibustion temperature is lower than the preset value, the control board 56 controls the screw motor module 31 to move, thereby increasing the distance between the moxibustion box 1 and the patient and raising the moxibustion temperature.
[0072] To alert the operator that the moxibustion temperature deviates from the preset temperature, a buzzer can be installed on the control board 56 in this embodiment. When there is a temperature deviation, the lead screw motor module 31 adjusts the height of the moxibustion box 1, and the buzzer will also sound an alarm.
[0073] The temperature of moxibustion and the distance between the moxibustion box 1 and the patient change regularly. The specific calculation method is to divide the change in height by the difference in the change in moxibustion temperature within this range. This result can be preset into the control panel to achieve accurate adjustment of the moxibustion temperature.
[0074] The usage process of this embodiment is as follows: First, place the two support plates 61 across the patient's body and place the lower end of the support plates 61 on the moxibustion bed. At this time, the two support plates 61 are stably placed on the moxibustion bed under the action of the support plate connecting rod 64. Then, according to the moxibustion position, press the gas strut adjustment plate 49 to adjust the length of the gas strut 42 and pre-adjust the position of the moxibustion box 1. Then, rotate the adjusting screw 26 to enlarge the clamp on the moxibustion box fixing part 2. Then, place the moxibustion box 1 containing moxibustion into the clamp on the moxibustion box fixing part 2. Then, rotate the adjusting screw 26 to fix the moxibustion box 1. After fixing, input the moxibustion temperature (45℃-50℃), for example, 46℃, on the control screen 55. At this time, the infrared temperature sensor 53 starts to monitor the temperature of the moxibustion site in real time. When the temperature is higher or lower than the set value, the screw motor module 31 is automatically turned on under the action of the control board 56 to adjust the height of the moxibustion box 1 and complete the temperature adjustment.
[0075] Advantages of this utility model:
[0076] 1. More flexible temperature control: Through the height adjustment unit 3 and the control unit 5, the device can conveniently and accurately adjust the height of the moxibustion box 1 according to the temperature of the moxibustion site, thereby achieving precise control of the moxibustion temperature.
[0077] 2. Enhanced safety: This device significantly reduces the risk of burns caused by excessively high moxibustion temperatures, making it particularly suitable for patients with impaired skin temperature perception.
[0078] 3. Personalized needs met: This device can precisely adjust the moxibustion temperature according to the different needs of different patients and different parts of the body, which improves the pertinence and effectiveness of moxibustion treatment.
[0079] 4. High versatility: This device is suitable for all types of moxibustion boxes and can be installed and used without any modification to the moxibustion box. It is suitable for the production of new products and the modification of old products, which greatly saves the user's usage costs.
[0080] The above embodiments are only for illustrating the technical concept of this utility model and should not be construed as limiting the scope of protection of this utility model. Any modifications made to the technical solution based on the technical concept proposed by this utility model shall fall within the scope of protection of this utility model.
Claims
1. A moxa box auxiliary temperature adjusting device, comprising a moxa box (1), characterized in that: The moxibustion box fixing part (2), the height adjusting part (3), the width adjusting part (4) and the support part (6) are also included, the support part (6) is placed on the working surface and located on both sides of the patient's body, the height adjusting part (3) is arranged on the support part (6), the width adjusting part (4) is connected with the height adjusting part (3), the moxibustion box fixing part (2) is arranged on the width adjusting part (4), the moxibustion box (1) is detachably connected with the moxibustion box fixing part (2) across the patient, the width of the moxibustion box (1) across the patient is controllably adjusted through the width adjusting part (4), the control part (5) is arranged on the moxibustion box fixing part (2), the control part (5) automatically detects the moxibustion temperature, and automatically adjusts the distance between the moxibustion box (1) and the patient according to the temperature through the height adjusting part (3).
2. The moxibustion box auxiliary temperature adjusting device according to claim 1, characterized in that: The moxibustion box fixing part (2) includes a fixed clamping plate (21) and a movable clamping plate (22), the movable clamping plate (22) is arranged on the fixed clamping plate (21), the side plate of the moxibustion box (1) is placed between the movable clamping plate (22) and the fixed clamping plate (21), and the distance between the two is adjustable through an adjusting screw (26).
3. The moxibustion box auxiliary temperature adjusting device according to claim 2, characterized in that: Anti-skid pieces (27) are arranged on the contact surfaces of the movable clamping plate (22) and the fixed clamping plate (21), and the anti-skid pieces (27) are in contact with the moxibustion box (1).
4. The moxibustion box auxiliary temperature adjusting device according to claim 1, characterized in that: The width adjusting part (4) includes a guide rod assembly (41) and an adjusting air strut (42), the two ends of the guide rod assembly (41) and the adjusting air strut (42) are respectively connected with the support part (6) and the moxibustion box fixing part (2), and the distance between the moxibustion box fixing part (2) and the support part (6) is controllably adjusted through the width adjusting part (4).
5. The moxibustion box auxiliary temperature adjusting device according to claim 4, characterized in that: The guide rod assembly (41) includes an outer rod (44) connected with the support part (6) and an inner rod (45) connected with the moxibustion box fixing part (2), the inner rod (45) is inserted into the outer rod (44), and the depth of the inner rod (45) inserted into the outer rod (44) changes synchronously with the adjusting air strut (42).
6. The moxibustion box auxiliary temperature adjusting device according to claim 1, characterized in that: The height adjusting part (3) includes a lead screw motor module (31), a second fixed plate (32) and a linear slide rail pair (38), the second fixed plate (32) is connected with the width adjusting part (4), the linear slide rail pair (38) is arranged on the support part (6), the slider in the linear slide rail pair (38) is arranged on the second fixed plate (32), the lead screw motor module (31) is arranged on the support part (6) and connected with the second fixed plate (32), and the second fixed plate (32) is controllably lifted under the action of the lead screw motor module (31).
7. The moxibustion box auxiliary temperature adjusting device according to claim 1, characterized in that: The support part (6) includes a support plate (61), the support plate (61) is provided with a height adjusting guide hole (62), and the second fixed plate (32) in the height adjusting part (3) moves up and down along the height adjusting guide hole (62).
8. The moxibustion box auxiliary temperature adjusting device according to claim 1, characterized in that: The control part (5) includes a control box (52) and a power supply (51) for power supply, an infrared temperature sensor (53) is arranged in the control box (52), and the infrared temperature sensor (53) monitors the body temperature of the patient in the moxibustion area in real time.
9. The moxibustion box auxiliary temperature adjusting device according to claim 1, characterized in that: The moxibustion box fixing part (2), the height adjusting part (3), the width adjusting part (4) and the supporting part (6) are respectively provided with two groups, and the two groups are oppositely distributed and arranged on the two sides of the patient's body.