Double-power-state human body microcirculation regulation and control instrument
Through the dual-function human microcirculation regulator, using palm negative pressure control and semiconductor refrigeration system, the problem of slow physical recovery after high-intensity exercise is solved, and the effect of rapid physical recovery and fatigue reduction is achieved.
Patent Information
- Application Number
- CN202422261519.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-09-14
AI Technical Summary
Existing technologies make it difficult to quickly and effectively restore physical fitness after high-intensity exercise, especially by improving the human body's microcirculation system to reduce blood retention and accelerate the elimination of metabolic waste to prevent the development of fatigue.
A dual-function human microcirculation regulator has been designed, which uses the palm as the control part. By constructing a negative pressure control chamber and a semiconductor refrigeration system, efficient heat exchange is achieved, over-open capillaries are closed, and blood is promoted to return to core organs. Microcirculation regulation is carried out simultaneously with both palms, enhancing blood circulation and the elimination of metabolic waste.
It achieves rapid recovery of physical fitness, reduces muscle soreness after exercise, promotes blood flow back to the heart, brain, lungs, kidneys and other organs, stops the development of fatigue, and improves recovery efficiency after exercise.
Smart Images

Figure CN223453382U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of double performance state human microcirculation regulating and control instrument, mainly for the physical fitness of high-intensity exercise after quick recovery, it utilizes the medical theory that microcirculation is equivalent to the "second heart" of human body, palm is used as the regulating and control part of human microcirculation, and high-efficiency heat exchange is implemented to the microcirculation system of palm component by constructing negative pressure control bin, to the human microcirculation after high-intensity exercise from human external physical intervention, to reduce the temperature of human internal environment, reduce microcirculation detour passage, close excessive open true capillary network, prevent the unbalanced condition that blood is too much and remains in tissue muscle after high-intensity training, make the blood flow of local body and whole body circulation blood flow uniform, promote blood to quickly return to heart, brain, lung, kidney and other human core organs, accelerate the removal of metabolic waste, terminate the development of fatigue, promote physical fitness quick recovery. BACKGROUND
[0002] On September 30, 2009, the inventor of the present application applied for a "rapid temperature regulating instrument" (CN201529199U) utility model patent, which first proposed the technical idea of "reducing exercise injury and quickly recovering physical fitness" through temperature regulation, and carried out a series of scientific research and experimental demonstration. On this basis, in 2011, the inventor of the present application successively published "Research on the effect of human limb microcirculation improvement on physical recovery - Discussion on the effect of "human physical fitness quick recovery device" on limbs" and "Effect evaluation of human physical fitness quick recovery device" in "Journal of Military Sports College". After years of repeated experiments and continuous research and improvement, in 2016, the inventor of the present application applied for a "human microcirculation regulating instrument" (CN205885779U), which, based on years of research and innovation and practical verification, repositioned the basic theory on the improvement and regulation of human limb microcirculation, and focused the technical solution on accelerating the blood return rate of limb microcirculation. The essence is to adopt negative pressure pulse mode on human limb microcirculation (inner side of palm) and limbs, so as to regulate the temperature of human internal core (heart, brain, lung, kidney), make it quickly return to normal temperature of quiet state, and ensure the blood and oxygen supply of main organs of human body. SUMMARY
[0003] Through continuous research, continuous improvement, and great research and transformation of the inventor in recent years, a new improved double-mode human microcirculation regulating instrument product is officially landed. The technical solution of the utility model: the regulating instrument comprises a cover, a body, a base and a refrigeration system; the cover has a circular opening, which is a palm inlet, and the edge of the palm inlet has an annular air bag; the body has an upper cover, and the upper cover has a heat exchange panel, which is a good conductor of heat; the cover is installed on the body and forms a regulating chamber with the upper cover; the body is installed on the base, and the internal space of the body is an instrument chamber; the instrument chamber has a semiconductor refrigeration piece, a cooling fin, a fan, an air bag pump and a chamber pump; the cold end of the semiconductor refrigeration piece is in contact with the bottom of the heat exchange panel, and the cooling fin is in contact with the hot end of the semiconductor refrigeration piece, forming a refrigeration system; the air bag pump is communicated with the air bag through an air pipe, and the chamber pump is communicated with the regulating chamber through an air pipe. The low-temperature conduction of the cold end of the semiconductor refrigeration piece is transmitted to the heat exchange panel, and a low temperature of 3-15 DEG C is formed on the heat exchange panel. The regulating instrument has two, which are installed on the left and right armrests of a sofa or a massage chair. The cover has a second circular opening, which is a second palm inlet, and the edge of the second palm inlet has an annular air bag, which is a second air bag, forming a double-mode regulating instrument; the double-mode regulating instrument further comprises: the upper cover has a second heat exchange panel, which is a good conductor of heat; the instrument chamber has a second semiconductor refrigeration piece and a second cooling fin, and the cold end of the second semiconductor refrigeration piece is in contact with the bottom of the second heat exchange panel; the second cooling fin is in contact with the hot end of the second semiconductor refrigeration piece. The upper cover is designed in a triangular shape, and the heat exchange panel and the second heat exchange panel are located on the two upward surfaces of the triangular upper cover respectively, and the triangular upper cover and the body form an independent air duct after combination, and the fan inhales air from the bottom of the base and blows into the air duct, and then discharges from the rear side of the body. BRIEF DESCRIPTION OF DRAWINGS
[0004] In order to more clearly illustrate the technical scheme of the utility model, the following description of the drawings is one of the several embodiments of the utility model, and obviously, the appearance features drawn in the drawings are not the limited features of the utility model, and other drawings and other appearance features can be obtained according to the drawings without creative labor for the ordinary skilled in the art.
[0005] Figure 1 is one of the exploded views of one of the embodiments of the utility model
[0006] Figure 2 is the second exploded view of one of the embodiments of the utility model
[0007] Figure 3 is the appearance perspective view of one of the embodiments of the utility model
[0008] Figure 4 is the application product perspective view of one of the embodiments of the utility model
[0009] Figure 5 is one of the exploded view of the embodiment two of the utility model
[0010] Figure 6 is the second exploded view of the embodiment two of the utility model
[0011] Figure 7 is the third exploded view of the embodiment two of the utility model
[0012] Figure 8 is the appearance perspective view of the embodiment two of the utility model
[0013] Mark explanation:
[0014] 100, regulating instrument
[0015] 101, bin cover
[0016] 102, bin body
[0017] 103, base
[0018] 104, palm inlet
[0019] 105, air bag
[0020] 106, upper cover
[0021] 107, heat exchange panel
[0022] 108, semiconductor refrigeration piece
[0023] 109, heat dissipation fin
[0024] 110, fan
[0025] 111, air bag pump
[0026] 112, bin pump
[0027] 113, power supply
[0028] 200, double-mode regulating instrument
[0029] 204, second palm inlet
[0030] 205, second air bag
[0031] 207, second heat exchange panel
[0032] 208, second semiconductor refrigeration piece
[0033] 209, second heat dissipation fin
[0034] 300, sofa or massage chair Specific implementation
[0035] Fig. 1 is a perspective view of the present application, Figure 1 , 2 , 3, Figure 1 Fig. 1 is a perspective view of the present application, Figure 2 Fig. 1 is a perspective view of the present application, Figure 3 Fig. 1 is a perspective view of the present application.
[0036] Fig. 1 is a perspective view of the present application, Figure 1 , Figure 2 , in order to clearly show the components of the present application product, the assembly, the relationship, we use Figure 1 the complete exploded view and Figure 2 the module exploded view shown in the following description. From Figure 1 , Figure 2As can be seen, the regulation instrument shown in the embodiment comprises a cover 101, a body 102 and a base 103. The cover 101 has a circular opening, which is called palm inlet 104. The edge of the palm inlet 104 has an annular air bag 105. The body 102 has an upper cover 106. The upper cover 106 has a heat exchange panel 107, which is a good conductor of heat. The cover 101 is installed on the body 102 to form a regulation chamber with the upper cover 106. The body 102 is installed on the base 103. The internal space of the body 102 is an instrument chamber. The instrument chamber has a semiconductor refrigeration sheet 108, a heat dissipation sheet 109, a fan 110, an air bag pump 111, a chamber pump 112 and a power supply 113. The cold end of the semiconductor refrigeration sheet 108 is in contact with the bottom of the heat exchange panel 107. The heat dissipation sheet 109 is in contact with the hot end of the semiconductor refrigeration sheet 108. The fan 110 dissipates heat from the hot end of the semiconductor refrigeration sheet 108 to form a refrigeration system. The air bag pump 111 is in communication with the air bag 105 through an air pipe. The chamber pump 112 is in communication with the regulation chamber through an air pipe. The power supply 113 supplies power to the equipment in the regulation instrument 100. When we put our hand into the regulation chamber from the palm inlet 104, the air bag pump 111 inflates the air bag 105 to press the arm to form an airtightness to seal the regulation chamber so that external air cannot enter the regulation chamber. After the palm enters the regulation chamber, it is placed on the heat exchange panel 107, which is a half-elliptical spherical structure with a size and shape suitable for the palm, so that the heat exchange panel 107 can be well attached to the palm to ensure that the low temperature of the heat exchange panel 107 can quickly cool the capillary blood vessels of the palm. The semiconductor refrigeration sheet 108 can transmit the low temperature of the cold end to the heat exchange panel 107 through precise circuit control and form a low temperature of 3-15℃ on the heat exchange panel 107. The low temperature in this interval can quickly and efficiently cool the capillary blood vessels on the palm, significantly reduce the internal environment temperature of the human body, reduce the microcirculation detour, close the capillary blood vessels that are excessively opened due to high-intensity exercise, prevent excessive blood from remaining in the muscle tissue of the far end, and will not cause frostbite or a tingling sensation in the human body. The chamber pump 112 is in communication with the regulation chamber through an air pipe.
[0037] The regulation instrument 100 is shown in the attached Figure 3 , Figure 3 is a perspective view of the regulation instrument 100, which is an assembled appearance view of the product. The appearance view clearly shows the overall appearance of the regulation instrument 100. It should be noted that the product is a completely automated device with multiple built-in sensors that can automatically enter the corresponding work flow according to the data detected by the sensors. Therefore, the external control of the regulation instrument 100 only has a "power switch", which is usually located on the back side of the body 102. The front side only has "start" and "stop" touch switches. Since the layout position can be flexibly set according to the appearance of the cover 101 and the body 102, this is a known solution for those skilled in the art, and therefore it is not explicitly shown in the figure.
[0038] Referring to the accompanying drawings Figure 4 , Figure 4 is one of the application products of the embodiment of the utility model, the sofa or massage chair is from Figure 4 It can be seen that the sofa or massage chair 300 has one control instrument 100 on each of the two armrests on the left hand. As a physical recovery and conditioning device after high-intensity exercise, we combine it with the sofa or massage chair, so that the athlete can obtain the control of the control instrument 100 on the microcirculation of both hands at the same time when relaxing and resting, thereby achieving the purpose of quickly recovering physical fitness, reducing exercise fatigue, and preventing muscle soreness.
[0039] Further, from Figure 4 It is obvious that we can solve the problem of controlling the microcirculation of both palms in one control instrument to realize a faster and more efficient dual-function mode.
[0040] Referring to the accompanying drawings Figure 5 , 6 , 7, 8, Figure 5 is one of the exploded views of the second embodiment of the utility model, Figure 6 is the second exploded view of the second embodiment of the utility model, Figure 7 is the third exploded view of the second embodiment of the utility model, Figure 8 is the appearance perspective view of the second embodiment of the utility model. In this embodiment, we further use three exploded views to fully and clearly explain the components and structure of the control instrument.
[0041] Referring to the accompanying drawings Figure 5 , 6 , 7, 8 can be seen that in this embodiment, the second circular opening is provided on the cover 101, which is the second palm inlet 204, and the circular opening edge has an annular air bag, which is the second air bag 205, forming a dual-function control instrument 200.
[0042] From Figure 5 , 6 It can be seen that the dual-function control instrument 200 further comprises: the second heat exchange panel 207 is provided on the upper cover 106, the second heat exchange panel 207 is a good conductor of heat; the second semiconductor refrigeration sheet 208 and the second heat dissipation fin 209 are provided in the instrument compartment, the cold end of the second semiconductor refrigeration sheet 208 is in contact with the bottom of the second heat exchange panel 207, and the second heat dissipation fin 209 is in contact with the hot end of the second semiconductor refrigeration sheet 208. The fan 110 simultaneously dissipates heat for the heat dissipation fin 109 and the second heat dissipation fin 209.
[0043] Further, although in this embodiment, the dual-mode regulator 200 adds the second heat exchange panel 207, and thus adds the second semiconductor refrigeration sheet 208 and the second heat dissipation sheet 209. Comparing with the first embodiment, the dual-mode regulator 200 has the same structure as the first embodiment, and the second heat exchange panel 207 is added to the dual-mode regulator 200. Figure 7 We can also see that, at this time, although there are two heat exchange panels, we can obviously make a heat exchange panel with a larger surface area, so that both palms can be placed on the heat exchange panel. Therefore, the dual-mode regulator 200 can use only one set of refrigeration system, which only needs to appropriately increase the surface area of the heat exchange panel and reasonably increase the power of the semiconductor refrigeration sheet according to technical requirements. This is a technical solution that can be obviously implemented by those skilled in the art without creative labor, and thus will not be described in detail.
[0044] Comparing with the first embodiment, the dual-mode regulator 200 has the same structure as the first embodiment, and the second heat exchange panel 207 is added to the dual-mode regulator 200. Figure 6 7 It can also be seen that, in order to make the two palms placed on the heat exchange panel 107 and the second heat exchange panel 207 at the same time more natural and comfortable, the upper cover 106 is designed in a triangular shape, and the heat exchange panel 107 and the second heat exchange panel 207 are respectively located on the two upward surfaces of the triangular upper cover 106. After the triangular upper cover 106 is combined with the cabinet 102, an independent air duct is formed, the fan 110 sucks air from the bottom of the base 103 and blows it into the air duct, and then discharges it from the rear side of the cabinet 102, greatly improving the heat dissipation effect.
Claims
1. A dual-mode human microcirculation regulating device, characterized in that: The regulating instrument (100) comprises a cover (101), a body (102), a base (103), and a refrigeration system; the cover (101) has a circular opening, which is a palm inlet (104), and the edge of the palm inlet (104) has an annular air bag (105); the body (102) has an upper cover (106), and the upper cover (106) has a heat exchange panel (107), which is a good conductor of heat; the cover (101) is installed on the body (102) to form a regulating chamber with the upper cover (106); the body (102) is installed on the base (103), and the internal space of the body (102) is an instrument chamber; The instrument chamber has a semiconductor refrigeration sheet (108), a heat dissipation sheet (109), a fan (110), an air bag pump (111), and a chamber pump (112); the cold end of the semiconductor refrigeration sheet (108) is in contact with the bottom of the heat exchange panel (107), and the heat dissipation sheet (109) is in contact with the hot end of the semiconductor refrigeration sheet (108) to form a refrigeration system; the air bag pump (111) is in communication with the air bag (105) through an air pipe, and the chamber pump (112) is in communication with the regulating chamber through an air pipe.
2. The dual-mode human microcirculation regulating device according to claim 1, characterized in that: The low-temperature conduction of the cold end of the semiconductor refrigeration sheet (108) is transmitted to the heat exchange panel (107) to form a low temperature of 3-15℃ on the heat exchange panel (107).
3. The dual-mode human microcirculation regulating device according to claim 1, characterized in that: The regulating instrument (100) has two, which are installed on the left and right armrests of a sofa or a massage chair (300).
4. The dual-mode human microcirculation regulating instrument according to claim 1, characterized in that: The cover (101) has a second circular opening, which is a second palm inlet (204), and the edge of the second palm inlet (204) has an annular air bag, which is a second air bag (205), to form a double-working-state regulating instrument (200).
5. The dual-mode human microcirculation regulating device according to claim 4, characterized in that: The double-working-state regulating instrument (200) further comprises a second heat exchange panel (207) on the upper cover (106), which is a good conductor of heat; and a second semiconductor refrigeration sheet (208) and a second heat dissipation sheet (209) in the instrument chamber, and the cold end of the second semiconductor refrigeration sheet (208) is in contact with the bottom of the second heat exchange panel (207), and the second heat dissipation sheet (209) is in contact with the hot end of the second semiconductor refrigeration sheet (208).
6. The dual-mode human microcirculation regulating device according to claim 5, characterized in that: The upper cover (106) is designed in a triangular shape, and the heat exchange panel (107) and the second heat exchange panel (207) are respectively located on the two upward faces of the triangular upper cover (106); after the triangular upper cover (106) is combined with the body (102), an independent air duct is formed, the fan (110) inhales air from the bottom of the base (103) and blows it into the air duct, and then discharges it from the back side of the body (102).
Citation Information
Patent Citations
Rapid body temperature regulating instrument
CN201529199U
Microcirculation regulates and control appearance
CN205885779U