Temperature adjusting mattress
By adopting a combined structure of semiconductor temperature regulating plate and radiator in the temperature regulating host and mattress module of the temperature regulating mattress, the problem that existing temperature regulating mattresses cannot achieve independent temperature regulating and low heat dissipation efficiency is solved, and efficient heat exchange and multi-region temperature regulating are achieved to meet user needs and save energy.
Patent Information
- Application Number
- CN202510278540.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2025-05-30
AI Technical Summary
The existing temperature mattresses cannot achieve independent work and temperature regulating in different areas, resulting in waste of energy and inability to meet the different usage needs of users. At the same time, the efficiency of the heat dissipation device is low, resulting in low heat exchange efficiency of the temperature control system.
A temperature control mattress is designed, adopting a combined structure of a temperature control host and a mattress module. The temperature control host includes a water storage tank, a transfer box and a temperature control component. The temperature control component improves heat exchange efficiency by setting a semiconductor temperature control plate and a radiator on the temperature control shell, and controls the temperature control in different areas through two independent water circuit boards.
It realizes efficient heat exchange of the temperature-regulating shell, can independently control different areas of the mattress module, meet users' diverse needs, avoid energy waste, and realizes the recycling and reuse of water energy through the design of water circuit boards, saving energy.
Smart Images

Figure CN120052681A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of mattresses, and particularly to a temperature-adjustable mattress. Background Art
[0002] For existing temperature-adjustable mattresses, see Chinese Utility Model Patent CN203388571U, titled: Intelligent Water Temperature Control Mattress, Authorization Publication Date: January 15, 2014. It includes a stress layer, with upper and lower filling layers respectively arranged on the upper and lower surfaces of the stress layer. An upper fabric layer is arranged on the upper surface of the upper filling layer, and a lower fabric layer is arranged on the lower surface of the lower filling layer. It also includes a water temperature control device, which includes a water temperature controller and a heat exchange coil placed in the upper fabric layer. The water inlet of the heat exchange coil extends out of the upper fabric layer and is connected to the water inlet of the water temperature controller, and the water outlet of the heat exchange coil extends out of the upper fabric layer and is connected to the water outlet of the water temperature controller. The intelligent water temperature control mattress of the present invention can be adjusted to the temperature required for healthy human sleep, and it is low-carbon, environmentally friendly, safe, and energy-saving.
[0003] However, the temperature-adjustable mattress with the above structure still has the following deficiencies: (1) Only a coiled heat exchange coil is arranged inside the above fabric layer, that is, the above water temperature control mattress can only realize the overall operation or not of the entire heat exchange coil, and cannot realize the independent operation and temperature adjustment of different regions, which not only causes a certain amount of energy waste but also cannot meet the different usage requirements of users; (2) A heat dissipation device for assisting the water temperature controller to work is arranged on the water temperature controller, but the existing heat dissipation devices are usually single heat dissipation devices, and their heat dissipation efficiency is low, resulting in a low heat exchange efficiency of the temperature control system. Summary of the Invention
[0004] The purpose of the present invention is to solve the deficiencies existing in the above prior art, and to provide a temperature-adjustable mattress that improves the heat exchange efficiency of the temperature-adjusting housing, and the temperature-adjusting host can separately control the independent operation of two water circuit boards to realize the regional temperature adjustment of the mattress module.
[0005] The purpose of the present invention is achieved as follows: A temperature-adjustable mattress includes a temperature-adjusting host and a mattress module, and is characterized in that: the temperature-adjusting host includes a chassis, and a water storage tank, a first transfer tank, a second transfer tank, a first temperature-adjusting component, and a second temperature-adjusting component are arranged inside the chassis. Both ends of the second transfer tank are respectively connected to the water storage tank and the second temperature-adjusting component. The first temperature-adjusting component includes a temperature-adjusting housing, two semiconductor temperature-adjusting sheets, and two radiators. The two semiconductor temperature-adjusting sheets are respectively attached to the upper and lower surfaces of the temperature-adjusting housing, and the two radiators are respectively abutted against the corresponding semiconductor temperature-adjusting sheets. A temperature-adjusting channel is arranged inside the temperature-adjusting housing, and an inlet and an outlet communicating with the temperature-adjusting channel are arranged on the temperature-adjusting housing. Both ends of the first transfer tank are respectively connected to the water storage tank and the inlet of the temperature-adjusting housing; The mattress module includes an upper cushion body, a first water circuit board, and a second water circuit board. The first water circuit board and the second water circuit board are fixed to the bottom surface of the upper cushion body side by side. A partition portion is provided on the first water circuit board, and the partition portion divides the first water circuit board into a water inlet area and a water outlet area. Water circuit channels are provided on both the water inlet area and the water outlet area. A first water inlet interface communicating with the water circuit channel is provided at one end of the water inlet area, and a first water outlet interface communicating with the water circuit channel is provided at one end of the water outlet area. The other end of the water inlet area communicates with the other end of the water outlet area. A second water inlet interface and a second water outlet interface are provided on the second water circuit board; It further includes a first water outlet pipeline, a first recovery pipeline, a second water outlet pipeline, and a second recovery pipeline. The two ends of the first water outlet pipeline are respectively connected to the outlet of the temperature control housing and the first water inlet interface, and the two ends of the first recovery pipeline are respectively connected to the first water outlet interface and the first transfer tank; the two ends of the second water outlet pipeline are respectively connected to the second temperature control component and the second water inlet interface, and the two ends of the second recovery pipeline are respectively connected to the second water outlet interface and the second transfer tank.
[0006] For this temperature control mattress, the first temperature control component is provided with semiconductor temperature control chips and radiators on both the upper and lower surfaces of the temperature control housing, enabling heat exchange on both the upper and lower surfaces of the temperature control housing, greatly improving the heat exchange efficiency of the temperature control housing; at the same time, the first temperature control component on the temperature control host cooperates with the first water circuit board of the mattress module, and the second temperature control component on the temperature control host cooperates with the second water circuit board of the mattress module, enabling the temperature control host to simultaneously control different areas of the mattress module, realizing the sub-region operation and temperature control of the mattress module to meet more usage requirements of users without causing energy waste; furthermore, the structural setting of the first water circuit board is simple and reasonable, enabling the water in the temperature control host to sequentially pass through the first water inlet interface, the water inlet area, the water outlet area, and the first water outlet interface and finally return to the temperature control host to achieve the recycling of water energy and play a certain role in saving energy.
[0007] The object of the present invention can also be solved by the following technical measures: Specifically further, it further includes a fixing frame body. A hollow concave portion is provided on the fixing frame body, and the temperature control housing is placed in the hollow concave portion. The two radiators are respectively connected to the fixing frame body, so that the semiconductor temperature control chips are clamped between the radiators and the temperature control housing; the temperature control housing, the two semiconductor temperature control chips, and the two radiators are fixed together through the fixing frame body, facilitating the installation and fixation of the entire first temperature control component in the chassis. At the same time, the structure of the entire first temperature control component is also relatively compact.
[0008] Specifically, further, the radiator includes a heat conduction block, a heat conduction tube group, two heat sink groups and a cooling fan. The heat conduction block is connected to the fixing frame body. The heat conduction tube group is embedded on the heat conduction block and both ends of the heat conduction tube group extend out of the heat conduction block respectively. The two heat sink groups are respectively connected to both ends of the heat conduction tube group. Both ends of the cooling fan are respectively connected to the corresponding heat sink groups and the cooling fan is located above the heat conduction block. The cooling fan can cooperate with the two heat sink groups to improve the overall heat dissipation efficiency of the radiator. At the same time, the overall structure of this radiator is ingeniously arranged. It realizes the connection with the fixing frame body through the heat conduction block, and its connection area is small, which is beneficial to the installation of two radiators on the fixing frame body at the same time.
[0009] Specifically, further, both ends of the heat conduction block respectively extend outwards to form connection arms with connection through holes. Both ends of the fixing frame body are respectively provided with fixing plates. Connection screw holes are provided on the fixing plates. The connection arms are placed on the fixing plates. A connection screw passes through the connection through hole and is connected to the connection screw hole. This fixing method is simple and convenient to operate and has a good fixing effect.
[0010] Specifically, further, it further includes a first outer shell and a second outer shell. Concave cavities are provided on the opposite sides of the first outer shell and the second outer shell. The first outer shell is connected to one side of the second outer shell and the concave cavity of the first outer shell and the concave cavity of the second outer shell enclose an installation space. The first temperature control component and the second temperature control component are fixed on the installation space in a left-right side-by-side manner, so that the first temperature control component, the second temperature control component, the first outer shell and the second outer shell form an integral temperature control module. By connecting the first temperature control component and the second temperature control component together through the first outer shell and the second outer shell and forming an integral temperature control module, it is convenient for the installation of the first temperature control component and the second temperature control component in the chassis. At the same time, this integral temperature control module can also be applied to other different chassis, and has a wide application range.
[0011] Specifically, further, a circuit board is further provided on the other side of the first outer shell, and a power module is further provided on the other side of the second outer shell. The circuit board is electrically connected to the power module, the first temperature control component and the second temperature control component respectively. The first outer shell and the second outer shell also respectively provide installation carriers for the circuit board and the power module, which is convenient for the installation of the circuit board and the power module in the chassis. At the same time, it can also make the positions of each component more compact and the overall volume smaller.
[0012] Specifically further, the chassis includes a base and a square cover body connected to the base. A partition board is arranged inside the square cover body, and the partition board divides the interior into a first placement area and a second placement area. The water storage tank is placed on the first placement area. The first transfer tank and the second transfer tank are placed side by side on the base, and the first transfer tank and the second transfer tank are located in the second placement area below the water storage tank. The temperature regulation module is placed on the base and is located in the second placement area on one side of the water storage tank. The partition board can separate the water storage tank from other components, achieving a certain effect of separating water and electricity, which is beneficial to the stable operation of each component. At the same time, the water storage tank is arranged in an up-and-down position relationship with the first transfer tank and the second transfer tank, and the temperature regulation module is arranged in a left-and-right position relationship with the water storage tank. This position relationship setting is simple and reasonable, facilitating the water connection between each component and playing a certain separation effect.
[0013] Specifically further, the first water circuit board is provided with partition strips and a number of evenly spaced blocking blocks. The partition strips constitute the partition part, and a coiled water circuit channel is formed between the partition strips and the number of blocking blocks. The structures of the partition strips and the blocking blocks are simple and easy to implement. At the same time, the path of the coiled water circuit channel is relatively long, and the temperature control area of the entire water circuit board is relatively large, making the temperature change of the mattress module obvious.
[0014] Specifically further, the first water circuit board is in a cuboid shape, and a first blocking frame and a second blocking frame are sequentially arranged on the four peripheries of the first water circuit board. The blocking effects of the first blocking frame and the second blocking frame are relatively good, and can well prevent the water in the water circuit channel from leaking out of the first water circuit board.
[0015] Specifically further, it further includes a lower cushion body. The bottom surfaces of the first water circuit board and the second water circuit board are placed side by side on the lower cushion body, and the lower cushion body has the same shape and size as the upper cushion body. The lower cushion body plays a certain role in protecting the first water circuit board and the second water circuit board.
[0016] The beneficial effects of the present invention are as follows: (1) For this temperature-regulating mattress, the first temperature-regulating component is provided with semiconductor temperature-regulating chips and radiators on both the upper and lower surfaces of the temperature-regulating housing, enabling heat exchange to be achieved on both the upper and lower surfaces of the temperature-regulating housing, greatly improving the heat exchange efficiency of the temperature-regulating housing. At the same time, the first temperature-regulating component on the temperature-regulating main unit cooperates with the first water circuit board of the mattress module, and the second temperature-regulating component on the temperature-regulating main unit cooperates with the second water circuit board of the mattress module, enabling the temperature-regulating main unit to simultaneously control different areas of the mattress module, realizing the sub-region operation and temperature regulation of the mattress module to meet more usage needs of users without causing energy waste. Moreover, the structure of the first water circuit board is simple and reasonable, enabling the water in the temperature-regulating main unit to sequentially pass through the first water inlet interface, the water inlet area, the water outlet area, and the first water outlet interface and finally return to the temperature-regulating main unit to achieve the recycling and reuse of water energy, playing a certain role in saving energy.
[0017] (2) The temperature control housing, two semiconductor temperature regulators, and two radiators are fixed together by a fixing frame, which facilitates the installation and fixation of the entire first temperature control component in the chassis. At the same time, the structure of the entire first temperature control component is relatively compact.
[0018] (3) The first temperature control component and the second temperature control component are connected together by a first outer housing and a second outer housing to form an integrated temperature control module, which facilitates the installation of the first temperature control component and the second temperature control component in the chassis. At the same time, this integrated temperature control module can also be applied to other different chassis, with a wide range of applications.
[0019] (4) The structures of the partition bars and the barrier blocks are simple and easy to implement. At the same time, the path of the coiled water channel is relatively long, and the temperature control area of the entire water circuit board is relatively large, making the temperature change of the mattress module obvious.
[0020] (5) The first barrier frame and the second barrier frame have good barrier effects and can effectively prevent the water in the water channel from leaking out of the first water circuit board. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a schematic diagram of the temperature control mattress of the present invention.
[0022] Figure 2 It is a schematic diagram of the mattress module of the present invention.
[0023] Figure 3 It is an exploded view of the mattress module of the present invention.
[0024] Figure 4 It is Figure 3 an enlarged view of part A of
[0025] Figure 5 It is a sectional view of the temperature control main unit of the present invention.
[0026] Figure 6 It is an exploded view of the temperature control main unit of the present invention.
[0027] Figure 7 It is a schematic diagram of the temperature control main unit of the present invention with the square cover removed.
[0028] Figure 8 It is a perspective view of the temperature control module of the present invention.
[0029] Figure 9 It is an exploded view of the temperature control module of the present invention.
[0030] Figure 10 It is a perspective view of the square cover of the present invention. DETAILED DESCRIPTION OF THE INVENTION
[0031] The present invention will be further described below in conjunction with the accompanying drawings and embodiments: Embodiment, in combination with Figures 1 to 10 As shown, a temperature-adjustable mattress includes a mattress module and a temperature-adjustment main unit, and is characterized in that: the mattress module includes an upper cushion body 1, a first waterway board 2 and a second waterway board 3. The first waterway board 2 and the second waterway board 3 are fixed to the bottom surface of the upper cushion body 1 in a side-by-side manner. A partition portion 21 is provided on the first waterway board 2. The partition portion 21 divides the first waterway board 2 into a water inlet area 22 and a water outlet area 23. Waterway channels 24 are provided on both the water inlet area 22 and the water outlet area 23. One end of the water inlet area 22 is provided with a first water inlet interface 25 communicating with the waterway channel 24. One end of the water outlet area 23 is provided with a first water outlet interface 26 communicating with the waterway channel 24. The other end of the water inlet area 22 is communicated with the other end of the water outlet area 23. A second water inlet interface 31 and a second water outlet interface 32 are provided on the second waterway board 3; The temperature-adjustment main unit includes a chassis 4. A water storage tank 5, a first transfer tank 6, a second transfer tank 7, a first temperature-adjustment component 8 and a second temperature-adjustment component 9 are provided in the chassis 4. Both ends of the second transfer tank 7 are respectively connected to the water storage tank 5 and the second temperature-adjustment component 9. The first temperature-adjustment component 8 includes a temperature-adjustment housing 81, two semiconductor temperature-adjustment chips 82 and two radiators 83. The two semiconductor temperature-adjustment chips 82 are respectively attached to the upper and lower surfaces of the temperature-adjustment housing 81. The two radiators 83 are respectively abutted against the corresponding semiconductor temperature-adjustment chips 82. A temperature-adjustment channel is provided in the temperature-adjustment housing 81. An inlet 811 and an outlet 812 communicating with the temperature-adjustment channel are provided on the temperature-adjustment housing 81. Both ends of the first transfer tank 6 are respectively connected to the water storage tank 5 and the inlet 811 of the temperature-adjustment housing 81, (the temperature-adjustment channel is not shown); It further includes a first water outlet pipeline 10, a first recovery pipeline 20, a second water outlet pipeline 30 and a second recovery pipeline 40. Both ends of the first water outlet pipeline 10 are respectively connected to the outlet 812 of the temperature-adjustment housing 81 and the first water inlet interface 25. Both ends of the first recovery pipeline 20 are respectively connected to the first water outlet interface 26 and the first transfer tank 6; Both ends of the second water outlet pipeline 30 are respectively connected to the second temperature-adjustment component 9 and the second water inlet interface 31. Both ends of the second recovery pipeline 40 are respectively connected to the second water outlet interface 32 and the second transfer tank 7.
[0032] As a specific solution, it further includes a fixing frame body 60. A hollow concave portion 601 is provided on the fixing frame body 60. The temperature-adjustment housing 81 is placed in the hollow concave portion 601. The two radiators 83 are respectively connected to the fixing frame body 60, so that the semiconductor temperature-adjustment chip 82 is clamped between the radiator 83 and the temperature-adjustment housing 81.
[0033] In this embodiment, the radiator 83 includes a heat conducting block 831, a heat conducting tube group 832, two heat sink groups 833, and a cooling fan 834. The heat conducting block 831 is connected to the fixing frame 60. The heat conducting tube group 832 is embedded in the heat conducting block 831, and both ends of the heat conducting tube group 832 extend out of the heat conducting block 831. The two heat sink groups 833 are respectively connected to both ends of the heat conducting tube group 832. Both ends of the cooling fan 834 are respectively connected to the corresponding heat sink group 833, and the cooling fan 834 is located above the heat conducting block 831.
[0034] In this embodiment, both ends of the heat conducting block 831 respectively extend outwards to form connecting arms 835 with connecting through holes 836. Both ends of the fixing frame 60 are respectively provided with fixing plates 602. Connecting screw holes 603 are provided on the fixing plates 602. The connecting arms 835 are placed on the fixing plates 602. A connecting screw passes through the connecting through hole 836 and is connected to the connecting screw hole 603; (the connecting screw is not shown).
[0035] As a better implementation, there are also a first outer shell 70 and a second outer shell 80. Concave cavities are provided on one side of the first outer shell 70 and the second outer shell 80 that face each other. The first outer shell 70 is connected to one side of the second outer shell 80, and the concave cavity of the first outer shell 70 and the concave cavity of the second outer shell 80 enclose an installation space 701. The first temperature control component 8 and the second temperature control component 9 are fixed in the installation space 701 in a left-right side-by-side manner so that the first temperature control component 8, the second temperature control component 9, the first outer shell 70, and the second outer shell 80 form an integral temperature control module 90; the second temperature control component 9 has the same shape and size as the first temperature control component 8, which will not be elaborated here.
[0036] In this embodiment, a number of hollow holes 702 are provided on both the first outer shell 70 and the second outer shell 80.
[0037] In this embodiment, a circuit board 703 is further provided on the other side of the first outer shell 70, and a power supply module 801 is further provided on the other side of the second outer shell 80. The circuit board 703 is electrically connected to the power supply module 801, the first temperature control component 8, and the second temperature control component 9 respectively; more specifically, the circuit board 703 is electrically connected to the semiconductor temperature control chip 82 on the temperature control component and the cooling fan 834 on the radiator 83; the semiconductor temperature control chip 82 is a common semiconductor refrigeration chip. A heating surface and a cooling surface are provided on the semiconductor refrigeration chip. By reversing the connection position of the electrodes of the semiconductor refrigeration chip, the positions of the heating surface and the cooling surface can be reversed, realizing heating or cooling of the temperature control housing 81.
[0038] As a more specific solution, the chassis 4 includes a base 41 and a square cover 42 connected to the base 41. A partition plate 43 is arranged inside the square cover 42. The partition plate 43 divides the inside into a first placement area 44 and a second placement area 45. The water storage tank 5 is placed on the first placement area 44. The first transfer tank 6 and the second transfer tank 7 are placed side by side on the base 41 and are located in the second placement area 45 below the water storage tank 5. The temperature control module 90 is placed on the base 41 and is located in the second placement area 45 on one side of the water storage tank 5.
[0039] As a more specific solution, it further includes a connecting pipeline 100. A water pump 61 is also connected to the lower part of the first transfer tank 6. The two ends of the connecting pipeline 100 are respectively connected to the water pump 61 and the inlet 811 of the temperature control housing 81.
[0040] As a specific solution, partition strips and a number of evenly spaced barrier blocks 27 are arranged on the first water circuit board 2. The partition strips form the partition part 21, and a coiled water circuit channel 24 is formed between the partition strips and the number of barrier blocks 27.
[0041] In this embodiment, the first water circuit board 2 is in a cuboid shape, and a first barrier frame 28 and a second barrier frame 29 are sequentially arranged on the four peripheries of the first water circuit board 2.
[0042] In this embodiment, the partition strip is in a Z shape, and one end of the partition strip extends to the first barrier frame 28. The first water inlet interface 25 and the first water outlet interface 26 are respectively located on both sides of one end of the partition strip.
[0043] As a more specific solution, the first water circuit board 2 includes an upper film layer and a lower film layer. The first barrier frame 28, the second barrier frame 29, the partition strips and the number of barrier blocks 27 are all formed by hot melting; (the upper film layer and the lower film layer are not shown).
[0044] As a better implementation solution, the second water circuit board 3 has the same shape and size as the first water circuit board 2.
[0045] As a more specific solution, it further includes a lower cushion body 50. The bottom surfaces of the first water circuit board 2 and the second water circuit board 3 are placed side by side on the lower cushion body 50, and the lower cushion body 50 has the same shape and size as the upper cushion body 1; the upper cushion body 1 and the lower cushion body 50 can be made of foam material or sponge material.
[0046] As a more specific solution, it further includes a mattress cover. The mattress cover is sleeved on the outer periphery of the lower cushion body 50 and the upper cushion body 1; (the mattress cover is not shown).
Claims
1. A temperature-regulating mattress, comprising a mattress module and a temperature-regulating host, characterized in that: The mattress module comprises an upper cushion body (1), a first waterway plate (2) and a second waterway plate (3), the first waterway plate (2) and the second waterway plate (3) being fixed on the bottom surface of the upper cushion body (1) in a side-by-side manner, the first waterway plate (2) being provided with a partition (21), the partition (21) partitioning the first waterway plate (2) into a water inlet area (22) and a water outlet area (23), the water inlet area (22) and the water outlet area (23) being provided with a waterway channel (24), one end of the water inlet area (22) being provided with a first water inlet interface (25) communicating with the waterway channel (24), one end of the water outlet area (23) being provided with a first water outlet interface (26) communicating with the waterway channel (24), the other end of the water inlet area (22) being communicated with the other end of the water outlet area (23), the second waterway plate (3) being provided with a second water inlet interface (31) and a second water outlet interface (32); The temperature control host comprises a chassis (4), wherein a water storage tank (5), a first transfer box (6), a second transfer box (7), a first temperature control component (8) and a second temperature control component (9) are arranged in the chassis (4), wherein two ends of the second transfer box (7) are respectively connected to the water storage tank (5) and the second temperature control component (9), wherein the first temperature control component (8) comprises a temperature control housing (81), two semiconductor temperature control sheets (82) and two heat sinks (83), wherein the two semiconductor temperature control sheets (82) are respectively attached to the upper and lower surfaces of the temperature control housing (81), and the two heat sinks (83) are respectively abutted against the corresponding semiconductor temperature control sheets (82), wherein a temperature control channel is arranged in the temperature control housing (81), and an inlet (811) and an outlet (812) communicating with the temperature control channel are arranged on the temperature control housing (81), and wherein two ends of the first transfer box (6) are respectively connected to the water storage tank (5) and the inlet (811) of the temperature control housing (81); It also comprises a first water outlet pipeline (10), a first recovery pipeline (20), a second water outlet pipeline (30) and a second recovery pipeline (40); the two ends of the first water outlet pipeline (10) are respectively connected to the outlet (812) of the temperature regulating housing (81) and the first water inlet interface (25); the two ends of the first recovery pipeline (20) are respectively connected to the first water outlet interface (26) and the first transfer box (6); the two ends of the second water outlet pipeline (30) are respectively connected to the second temperature regulating component (9) and the second water inlet interface (31); the two ends of the second recovery pipeline (40) are respectively connected to the second water outlet interface (32) and the second transfer box (7).
2. The temperature regulating mattress according to claim 1, characterized in that: It also includes a fixed frame (60), the fixed frame (60) being provided with a hollow inner recess (601), the temperature regulating shell (81) being disposed in the hollow inner recess (601), and two heat sinks (83) being respectively connected to the fixed frame (60) so that the semiconductor temperature regulating sheet (82) is clamped between the heat sink (83) and the temperature regulating shell (81).
3. The temperature regulating mattress according to claim 2, characterized in that: The heat sink (83) comprises a heat conducting block (831), a heat conducting pipe group (832), two heat sink groups (833) and a heat dissipation fan (834); the heat conducting block (831) is connected to a fixed frame (60); the heat conducting pipe group (832) is embedded in the heat conducting block (831) and two ends of the heat conducting pipe group (832) respectively extend out of the heat conducting block (831); the two heat sink groups (833) are respectively connected to two ends of the heat conducting pipe group (832); two ends of the heat dissipation fan (834) are respectively connected to corresponding heat sink groups (833) and the heat dissipation fan (834) is located above the heat conducting block (831).
4. The temperature regulating mattress according to claim 3, characterized in that: Connecting arms (835) with connecting through holes (836) are respectively extended outward from both ends of the heat conducting block (831); fixing plates (602) are respectively provided at both ends of the fixing frame (60); connecting screw holes (603) are provided on the fixing plates (602); the connecting arms (835) are placed on the fixing plates (602); and a connecting screw passes through the connecting through hole (836) and is connected to the connecting screw hole (603).
5. The temperature regulating mattress according to any one of claims 1 to 4, characterized in that: The invention also comprises a first outer shell (70) and a second outer shell (80), wherein a concave cavity is arranged on opposite sides of the first outer shell (70) and the second outer shell (80), the first outer shell (70) is connected to one side of the second outer shell (80), and the concave cavity of the first outer shell (70) and the concave cavity of the second outer shell (80) enclose an installation space (701), and the first temperature adjustment component (8) and the second temperature adjustment component (9) are fixed in the installation space (701) in a left-right side-by-side manner so that the first temperature adjustment component (8), the second temperature adjustment component (9), the first outer shell (70) and the second outer shell (80) form an integrated temperature adjustment module (90).
6. The temperature regulating mattress according to claim 5, characterized in that: A circuit board (703) is also provided on the other side of the first outer shell (70), and a power module (801) is also provided on the other side of the second outer shell (80), and the circuit board (703) is electrically connected to the power module (801), the first temperature adjustment component (8), and the second temperature adjustment component (9), respectively.
7. The temperature regulating mattress according to claim 5, characterized in that: The chassis (4) comprises a base (41) and a square cover (42) connected to the base (41); a partition plate (43) is arranged in the square cover (42); the partition plate (43) is divided into a first placement area (44) and a second placement area (45); the water storage tank (5) is placed in the first placement area (44); the first transfer box (6) and the second transfer box (7) are placed on the base (41) in a side-by-side manner, and the first transfer box (6) and the second transfer box (7) are located in the second placement area (45) below the water storage tank (5); the temperature control module (90) is placed on the base (41), and the temperature control module (90) is located in the second placement area (45) on one side of the water storage tank (5).
8. The temperature regulating mattress according to claim 1, characterized in that: The first waterway plate (2) is provided with a dividing strip and a plurality of evenly spaced barrier blocks (27); the dividing strip constitutes the dividing portion (21); and the dividing strip and the plurality of barrier blocks (27) form a winding waterway channel (24).
9. The temperature regulating mattress according to claim 8, characterized in that: The first waterway plate (2) is in the shape of a rectangular parallelepiped, and a first blocking frame (28) and a second blocking frame (29) are sequentially arranged on four sides of the first waterway plate (2).
10. The temperature regulating mattress according to claim 8, characterized in that: It also includes a lower cushion body (50), wherein the bottom surface of the first waterway plate (2) and the bottom surface of the second waterway plate (3) are placed side by side on the lower cushion body (50), and the lower cushion body (50) and the upper cushion body (1) have the same shape and size.
Citation Information
Patent Citations
Intelligent water temperature regulating mattress
CN203388571U