Intelligent temperature control spring pad

WO2025209471A1PCT designated stage Publication Date: 2025-10-09XING QIUPING
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Patent Information

Application Number
PCT/CN2025/086601
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-04-06
Filing Date
2025-04-01
Publication Date
2025-10-09

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    Figure CN2025086601_09102025_PF_FP_ABST
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Abstract

The present invention provides an intelligent temperature control spring pad, comprising a bottom plate. A plurality of support springs are provided on the bottom plate, an elastic connecting layer is provided above the support springs, and an automatic temperature control device is provided below the bottom plate. According to the present invention, temperature control tubes are coiled and laid inside a spring pad, so that a cooling or heating device is not too close to a human body; the temperature inside the spring pad is controlled by means of the temperature control tubes, so that air at a temperature suitable for the human body is evenly emitted upwards, and thus the human body can feel a more comfortable cooling or heating effect, thereby facilitating rest and physical health; and for special groups, communication and remote control can also be achieved in a manner, such as a video, voice control, and a wireless signal.
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Description

Intelligent temperature control spring pad Technical Field

[0001] The invention belongs to the technical field of household products, and in particular relates to an intelligent temperature-controlled spring pad. Background Art

[0002] At present, most of the household items such as mattresses and sofa cushions on the market adopt the following methods to achieve the heating or cooling function: for example, the heating device is set on the surface of the product, such as electric blankets, heating pipes, etc., which are in close contact with the human body. This will make the human body feel uneven temperature of local heat or local cold, which is not conducive to rest and human health. When the heating pipeline is set on the surface of the mattress or sofa cushion, it will also affect the elastic lifting function of the spring pad, which will affect the comfortable soft support effect. Long-term use will damage the heating pipeline; if the cooling device is set on the surface of the product, the cooling water pipes are in close contact with the human body, which will make the human body feel uncomfortable with local overcooling, and long-term use will affect physical health; if the rest space is cooled by air conditioning, the uneven air flow will make most women, weak people, etc. feel uncomfortable, which is not conducive to rest and will also affect health. Summary of the Invention

[0003] In order to solve the above problems, the present invention provides an intelligent temperature-controlled spring pad.

[0004] The technical solution of the present invention is implemented as follows: the intelligent temperature control spring pad comprises a bottom plate, a plurality of support springs are provided on the bottom plate, an elastic connection layer is provided above the support springs, and an automatic temperature control device is provided below the bottom plate;

[0005] Preferably, the automatic temperature control device includes a liquid circulation device, which includes a water storage tank, a water supply pipe and a return pipe provided on the water storage tank, a liquid circulation pump provided on the water supply pipe, a heat dissipation pipe provided in the gap between adjacent support springs above the bottom plate, the heat dissipation pipe coiled and laid on the bottom of the support spring, an inlet and an outlet provided on the heat dissipation pipe, a solenoid valve provided on the inlet, the water supply pipe connected to the inlet of the heat dissipation pipe, the return pipe connected to the outlet of the heat dissipation pipe, and the water storage tank connected to the cooling and heating device;

[0006] Preferably, the elastic connecting layer is provided with ventilation holes;

[0007] Preferably, the temperature automatic control device includes a gas circulation device, the gas circulation device includes a gas storage tank, the gas storage tank is provided with an air supply pipe and an air intake pipe, the air supply pipe is provided with an air supply circulation pump and a solenoid valve, the air intake pipe is provided with an air intake circulation pump and a solenoid valve, the gas storage tank is provided with a filter, a heating pipe or a heat absorption pipe is vertically provided between adjacent support springs above the bottom plate, a heat dissipator is provided in the heating pipe and the heat absorption pipe, the heat dissipator is connected to the heat dissipation pipe laid at the bottom end of the support spring, the top ends of the heating pipe and the heat absorption pipe are connected to the air vents on the elastic connecting layer, the lower end of the heating pipe passes through the bottom plate and is connected to the air supply pipe, and the lower end of the heat absorption pipe passes through the bottom plate and is connected to the suction pipe;

[0008] Preferably, the cooling and heating device includes a compressor and a heater, and the compressor and heater are respectively connected to the water storage tank;

[0009] Preferably, the temperature automatic control device includes an intelligent electronic control device, and the intelligent electronic control device includes an electronic control host. The electronic control host is connected to the intelligent display, camera, temperature sensor and each solenoid valve, each circulation pump, compressor and heater through circuits. The camera is arranged on the upper edge of the bottom plate, the temperature sensor A is arranged on the water storage tank, and the temperature sensor B is arranged between the elastic connecting layer and the mask.

[0010] The beneficial effects of the present invention are: providing a mattress or sofa cushion that provides a comfortable temperature for resting, especially during hot summer months, without compromising health. This household item allows for both rest and health. The present invention coils a temperature control tube within the spring mattress, preventing the cooling or heating device from being too close to the human body. The temperature control tube controls the temperature within the spring mattress, evenly distributing air at a temperature suitable for the human body upward. This provides a more comfortable cooling or heating effect, promoting rest and health. For special needs, communication and remote control are also possible via video, voice control, wireless signals, and other methods. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] FIG1 is a schematic structural diagram of the present invention.

[0012] Parts description: 1. Bottom plate, 2. Edge, 3. Support spring, 4. Elastic connecting layer, 5. Connector, 6. Automatic temperature control device, 7. Fixing A, 8. Connection hole A, 9. Connection hole B, 10. Ventilation hole, 11. Elastic connecting net, 12. Tension spring, 13. Elastic interlayer A, 14. Elastic interlayer B, 15. Mask, 16. Pendant, 17. Cooling and heating device, 18. Compressor, 19. Heater, 20. Liquid circulation device, 21. Water storage tank, 22. Water supply pipe, 23. Return pipe, 24. Heat dissipation pipe, 25. Inlet Mouth, 26, outlet, 27, solenoid valve, 32, intelligent electronic control device, 33, electronic control host, 34, intelligent display, 35, circuit, 36, camera, 37, temperature sensor A, 38, temperature sensor B, 39, bracket, 40, liquid circulation pump, 41, gas circulation device, 42, gas storage tank, 43, air supply pipe, 44, air suction pipe, 45, air supply circulation pump, 46, air suction circulation pump, 47, filter, 48, air pipe hole A, 49, air pipe hole B, 50, heat dissipator, 51, heat supply pipe, 52, heat absorption pipe, 53, rubber support. DETAILED DESCRIPTION

[0013] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0014] In the description of the present invention, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inside", "outside", etc., indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and therefore should not be understood as limiting the present invention.

[0015] Example 1: Referring to FIG1 , an intelligent temperature-controlled spring pad includes a base plate 1, which is surrounded by a peripheral edge 2. A plurality of support springs 3 are disposed above the base plate 1. A fixing member A 7 is disposed at the top of each support spring 3 and is fixedly connected to the top of each support spring 3. The fixing member A 7 has a central connecting hole A 8. An elastic connecting layer 4 is fixedly connected to the fixing member A 7 via a connecting member A 5 and a connecting hole A 8. An elastic connecting layer 4 is disposed above the support springs 3 and is fixedly connected to the support springs 3 via a connecting member A 5. The elastic connecting layer 4 is connected to the peripheral edge 2 on all sides and has connecting holes B 9 and ventilation holes 10. The elastic connecting layer 4 includes an elastic connecting net 11, on which a tension spring 12 is disposed. The elastic connecting net 11 is fixedly connected to the fixing member A 7 via the connecting member A 5, the connecting hole B 9, and the connecting hole A 8. The elastic connecting layer 4 includes an elastic barrier layer A 13 and an elastic barrier layer B 14. Elastic barrier layer A 13 is positioned above the elastic connecting net 11, while elastic barrier layer B 14 is positioned below the elastic connecting net 11. Elastic barrier layer A 13, the elastic connecting net 11, and elastic barrier layer B 14 are all fixedly connected to fixing member A 7 via connector A 5, connecting hole B 9, and connecting hole A 8. A mask 15 is positioned above elastic barrier layer A 13, and its periphery is connected to the surrounding edge 2 via hangers 16. A bracket 39 is positioned within the support spring 3. The lower end of bracket 39 is fixedly connected to the base plate 1, and a rubber support 53 is fixedly mounted on the upper end of bracket 39.

[0016] An automatic temperature control device 6 is provided on the bottom plate 1 . The automatic temperature control device 6 includes a cooling and heating device 17 . The cooling and heating device 17 includes a compressor 18 and a heater 19 .

[0017] The automatic temperature control device 6 includes a liquid circulation device 20, which includes a water storage tank 21. A water supply pipe 22 and a return pipe 23 are led out from the water storage tank 21. The water supply pipe 22 is connected to a liquid circulation pump 40. The liquid circulation device 20 includes a heat dissipation pipe 24. The heat dissipation pipe 24 is provided with an inlet 25 and an outlet 26. The inlet 25 is connected to a solenoid valve 27. The heat dissipation pipe 24 is coiled and laid in the gap between the support springs 3 above the bottom plate 1. The water supply pipe 22 is connected to the inlet 25 of the heat dissipation pipe 24, and the return pipe 23 is connected to the outlet 26 of the heat dissipation pipe 24. The compressor 18 is connected to the water storage tank 21 through a pipeline.

[0018] The temperature automatic control device 6 includes an intelligent electronic control device 32, which includes an electronic control host 33, an intelligent display 34, a circuit 35, a camera 36, ​​a temperature sensor A 37 and a temperature sensor B 38. The main control machine 33 is connected to the intelligent display 34, the camera 36, ​​the temperature sensor A 37, the temperature sensor B 38, the solenoid valve 27, the circulating pump 40, the compressor 18 and the heater 19 through the circuit 35. The heater 19 is connected to the water tank 21 through the circuit. The temperature sensor A 37 is connected to the water tank 21. The temperature sensor B 38 is arranged between the top of the base plate 1 and the bottom of the mask 15. The camera 36 is arranged above the base plate 1.

[0019] Example 2: The difference between Example 2 and Example 1 is that the temperature automatic control device 6 is different.

[0020] The temperature automatic control device 6 includes a gas circulation device 41, which includes a gas storage tank 42. A gas supply pipe 43 and an air intake pipe 44 are drawn out from the gas storage tank 42. The gas supply pipe 43 is connected to an air supply circulation pump 45 and a solenoid valve, and the air intake pipe 44 is connected to an air intake circulation pump 46 and a solenoid valve. The gas supply pipe 43 and the air intake pipe 44 are both fixed below the bottom plate 1. A filter 47 is provided in the gas storage tank 42. An air pipe hole A 48 and an air pipe hole B 49 are provided on the bottom plate 1. A heat sink 50 is provided above the air pipe hole A 48. The heat sink 50 is connected to the heat dissipation pipe 24. A heat delivery pipe 51 is provided on the outside of the heat sink 50. The top of the heat delivery pipe 51 is connected to the air vent 10 provided on the elastic connecting layer 4, and the bottom end passes through the air pipe hole A 48 is connected to the air supply pipe 43, and the air intake pipe 44 is connected to the heat absorption pipe 52. The heat absorption pipe 52 is also provided with a heat sink, and the heat sink is connected to the heat dissipation pipe 24. The heat absorption pipe 52 passes through the trachea hole B49 and is connected to the air vent 10 provided on the elastic connecting layer 4. The solenoid valve, the air supply circulation pump 45 and the air intake circulation pump 46 are all connected to the electronic control host 33 through the circuit 35.

[0021] Example 3: The difference between Example 3 and the above two examples is that the temperature automatic control device 6 is provided with a liquid circulation device 20 and a gas circulation device 41 at the same time.

[0022] Specifically: a thermal insulation layer is set on the bottom plate 1 and the surrounding edge 2 of the spring pad, a plurality of tension springs 12 are arranged and woven into an elastic connecting net 11, and an elastic interlayer A 13 and an elastic interlayer B 14 are made of elastic rubber sheets. The lateral elastic stretching function of the elastic connecting net 11, the elastic interlayer A 13 and the elastic interlayer B 14 ensures that the supporting spring 3 has an independent lifting function, so as to achieve the purpose of providing balanced support force to various curved parts of the user's body. Because the main support and connecting components of the spring pad are made of springs, the rebound force is long-lasting and not easy to be damaged. The elastic interlayer A 13 prevents the supporting spring 3 and the elastic connecting net 11 from wearing and producing abnormal noise. The elastic interlayer B 14 prevents the mask 15 and the elastic connecting net 11 from wearing and auxiliary supporting the mask 15. The compressor 18 can be placed outdoors and connected to the indoor water tank 21 through a pipeline, which is conducive to reducing noise generation.

[0023] After the electronic control host 33 is powered on, the intelligent display 34 receives the electronic control host 33, the camera 36, ​​the temperature control sensor A 37, the temperature sensor B The signal of 38 is controlled by the electronic control host 33 through touch operation or remote wireless signal control, etc. The compressor 18 or the heater 19 is controlled to work through the electronic control host 33, and the electronic control host 33 controls the circulation pump 40 and the solenoid valve 27 to work. The circulating water after temperature control in the water storage tank 21 enters the heat dissipation pipe 24 from the water supply pipe 22 through the solenoid valve 27 and the inlet 25, and then flows back to the water storage tank 21 from the outlet 26 and the return pipe 23. The heat exchange between the heat dissipation pipe 24 and the air in the spring pad generates gas with a suitable temperature, which is evenly distributed to the mask 15 or the human body through the air vent 10, so as to achieve the purpose of comfortable temperature control for the user's body. When two people use the spring pad, the temperature of each area can be controlled by adjusting multiple solenoid valves in two different areas to control the switching of the heat dissipation pipe respectively. The rubber support 40 provided on the bracket 39 can prevent the internal structure of a certain part of the spring pad from being damaged when it is under too much pressure, such as damaging the tension spring 12, the support spring 3 or the heat dissipation pipe 24.

[0024] The air supply circulation pump 45, the air intake circulation pump 46 and the electromagnetic valve are controlled by the electronic control host 33. The gas in the air storage tank 42 is extracted and pressurized by the air supply circulation pump 45 and then sent to the air supply pipe 43 through the electromagnetic valve. The high-pressure gas exchanges the temperature of the heat sink 50 with the temperature of the heat sink 50 through the heat supply pipe 51 and is sent to the air pipe hole A. Above 48, the gas exchanges temperature with the elastic barrier 4 and the mask 15, and the low-pressure gas formed is sucked back into the intake pipe 44 through the heat absorption pipe 52, and is sucked through the solenoid valve and the intake circulation pump 46 and then sent back to the gas storage tank 42. The gas sent in is filtered by the filter 47 to remove moisture and impurities before being reused. Most of the gas circulating in the upper layer of the spring pad will form a circulating state, and the loss is very small. The temperature control method of other areas when used by two people is the same as above, and is controlled by the switch conversion of the solenoid valve. The above gas circulation device 41 is mainly arranged in the middle of the spring pad, such as the area frequently touched by the human body. The temperature control time through gas conversion is fast and comfortable, which can purify surface moisture and impurities. The appropriate weak airflow has a good comfort feeling for the body. The above device achieves the purpose of controlling the temperature of the spring pad through gas. Through the voice control function of the smart display, the wireless signal receiving function and the visual function of the camera, the content structure of the spring pad is observed and the temperature is controlled, so that vulnerable people can better rest and ensure their health when using the spring pad.

[0025] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.

Claims

1. An intelligent temperature-controlled spring pad, comprising a base plate (1), a plurality of support springs (3) being provided on the base plate (1), an elastic connection layer (4) being provided above the support springs (3), and characterized in that An automatic temperature control device (6) is provided below the bottom plate (1).

2. The intelligent temperature control spring pad according to claim 1, characterized in that The temperature automatic control device (6) includes a liquid circulation device (20), and the liquid circulation device (20) includes a water storage tank (21). The water storage tank (21) is provided with a water supply pipe (22) and a water return pipe (23). The water supply pipe (22) is provided with a liquid circulation pump (40). A heat dissipation pipe (24) is provided in the gap between adjacent support springs (3) above the bottom plate (1). The heat dissipation pipe (24) is coiled and laid on the bottom of the support spring (3). An inlet (25) and an outlet (26) are respectively provided on the heat dissipation pipe (24). A solenoid valve (27) is provided on the inlet (25). The water supply pipe (22) is connected to the inlet (25) of the heat dissipation pipe (24), and the water return pipe (23) is connected to the outlet (26) of the heat dissipation pipe (24). The water storage tank (21) is connected to the cooling and heating device (17).

3. The intelligent temperature control spring pad according to claim 1 or 2, characterized in that The elastic connection layer (4) is provided with ventilation holes (10).

4. The intelligent temperature control spring pad according to claim 3, characterized in that The temperature automatic control device (6) includes a gas circulation device (41), and the gas circulation device (41) includes a gas storage tank (42). The gas storage tank (42) is provided with a gas supply pipe (43) and an air suction pipe (44). The gas supply pipe (43) is provided with a gas supply circulation pump (45) and a solenoid valve. The air suction pipe (44) is provided with an air suction circulation pump (46) and a solenoid valve. A filter (47) is provided inside the gas storage tank (42). A temperature delivery pipe is vertically provided between adjacent support springs (3) above the bottom plate (1). (51) or a heat absorbing pipe (52), a heat sink (50) is provided in each of the heat delivery pipe (51) and the heat absorbing pipe (52), the heat sink (50) is connected to a heat dissipation pipe (24) laid on the bottom end of the support spring (3), the top ends of the heat delivery pipe (51) and the heat absorbing pipe (52) are connected to the air vents (10) on the elastic connection layer (4), the lower end of the heat delivery pipe (51) passes through the bottom plate (1) and is connected to the air supply pipe (43), and the lower end of the heat absorbing pipe (52) passes through the bottom plate (1) and is connected to the air intake pipe (44).

5. The intelligent temperature control spring pad according to claim 2, characterized in that The cooling and heating device (17) comprises a compressor (18) and a heater (19), and the compressor (18) and the heater (19) are respectively connected to the water storage tank (17).

6. The intelligent temperature control spring pad according to claim 4 or 5, characterized in that The temperature automatic control device (6) includes an intelligent electric control device (32), and the intelligent electric control device (32) includes an electric control host (33). The electric control host (33) is respectively connected to an intelligent display (34), a camera (36), temperature sensors (37, 38), each solenoid valve, each circulating pump, a compressor (18) and a heater (19) through a circuit (35). The camera (36) is arranged on the upper edge of the bottom plate (1), the temperature sensor A (37) is arranged on the water storage tank (21), and the temperature sensor B (38) is arranged between the upper part of the elastic connection layer (4) and the mask.

Citation Information

Patent Citations

  • Intelligent temperature control spring cushion

    CN118303730A

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