Ice compress device for orthopedic nursing

By incorporating a hot and cold chamber within the ice pack device and utilizing a self-priming pump and circulation system to switch between cooling and heating, combined with a stable support and an elastic layer made of silicone, the problem of traditional ice pack devices being unable to switch temperatures is solved, thus improving treatment effectiveness and patient comfort.

CN223682698UActive Publication Date: 2025-12-19QIANJIANG CENT HOSPITAL
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Patent Information

Application Number
CN202422947976.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2025-12-19
Estimated Expiration
2034-12-02

AI Technical Summary

Technical Problem

Traditional ice pack devices cannot switch between heating and cooling according to the stage of treatment, which limits the flexibility and comprehensiveness of care and cannot meet the needs of promoting blood circulation and relieving muscle tension.

Method used

An ice pack device for orthopedic care was designed. It is equipped with a hot box and a cold box, and the coolant is circulated through a self-priming pump, an output pipe and an input pipe. Combined with components such as a compressor, condenser, liquid receiver, evaporator and circulation pump, it realizes the switching between cooling and heating modes. The combination structure of columns, flanges and bolts provides stable support for the ice pack. The elastic layer of silicone material improves fit and comfort.

Benefits of technology

It enables flexible temperature control according to different nursing needs, improves treatment effectiveness, enhances the uniformity of ice application and patient comfort, and improves work efficiency and the stability of ice application.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the field of orthopedic nursing, and discloses an ice compress device for orthopedic nursing, which comprises a box body, a control panel is arranged at the front position of the center of the upper end face of the box body, an observation window is arranged at the center of the front end face of the box body, a partition plate is arranged at the center in the box body, and a hot box is arranged in the box body on one side of the partition plate. A cold box is arranged in the box body on the other side of the partition plate, mounting plates are arranged at the positions, close to the two sides, of the center of the upper end face of the box body, supporting and protecting structures are arranged at the centers of the upper end faces of the two mounting plates, ice compress bags are arranged in the two supporting and protecting structures, and circulating structures are arranged in the box body. And refrigerating and heating structures are arranged in the hot box and the cold box. According to the utility model, the circulation of the cooling liquid is realized through the hot box, the cold box, the self-priming pump, the output pipe and the input pipe, and cooling or heating is carried out as required, so that different nursing requirements are met, different nursing scenes can be flexibly coped, and the treatment effect is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to orthopedics nursing field especially, a kind of ice compress device for orthopedics nursing. BACKGROUND

[0002] In orthopedics nursing, ice compress is a common physical therapy method, widely used in acute injury, postoperative recovery, muscle fatigue and inflammation relief, etc., the main role of ice compress is to reduce the temperature of local tissue through low temperature, so as to achieve the effect of hemostasis, reduce pain and swelling, prevent infection, promote recovery, ice compress device has made remarkable progress in improving treatment effect, reducing patient discomfort and reducing infection risk.

[0003] Since traditional ice compress device can usually only provide cold compress function, cannot switch heating according to different treatment stages, which makes it impossible to meet the needs in the case of needing to promote blood circulation, relieve muscle tension, etc., limits the flexibility and comprehensiveness of nursing, therefore, the person skilled in the art provides an ice compress device for orthopedics nursing to solve the problems raised in the above background art. SUMMARY

[0004] The utility model aims at solving the shortcomings in prior art, and provides an ice compress device for orthopedics nursing, by setting heat box and cold box, and realizing the circulation of cooling liquid through self-priming pump, output pipe and input pipe, refrigeration or heating can be carried out according to needs, different nursing needs are met, different nursing scenes can be flexibly coped with, treatment effect is improved, by adjusting valve and flow direction, refrigeration and heating mode switching can be realized through compressor, condenser, liquid accumulator, evaporator and circulating pump, etc., this multifunctional design provides more comprehensive temperature control options for orthopedics nursing, by adopting the combination structure of stand, flange and bolt to provide stable support for ice compress bag, assembly and disassembly are facilitated, work efficiency is improved, wear-resistant layer reduces friction, elastic layer adopts silica gel material, on the one hand, it can better adhere to patient's skin, making ice compress effect more uniform, on the other hand, it plays a buffering role when patient moves, improving patient comfort.

[0005] To achieve the above object, the utility model provides the following technical scheme: an ice compress device for orthopedics nursing, including box, the box upper end face center place is equipped with control panel, the box front end face center place is equipped with observation window, the box inside center place is equipped with baffle, the baffle one side box inside is equipped with heat box, the baffle other side box inside is equipped with cold box, the box upper end face center place is equipped with mounting plate on both sides, the mounting plate upper end face center place is equipped with support protection structure, two support protection structures inside are equipped with ice compress bag, the box inside is equipped with circulation structure, the heat box and cold box inside are equipped with refrigeration and heating structure;

[0006] By the above technical scheme, the hot tank and the cold tank are arranged, and the circulation of the cooling liquid is realized through the self-priming pump, the output pipe and the input pipe, refrigeration or heating can be realized according to the needs, different nursing needs can be met, different nursing scenes can be flexibly coped with, the treatment effect is improved, the refrigeration and heating modes can be switched by adjusting the valves and the flow direction through the components such as the compressor, the condenser, the liquid accumulator, the evaporator and the circulating pump, the multifunctional design provides more comprehensive temperature control options for orthopedic nursing, the combination structure of the stand, the flange and the bolt is adopted to provide stable support for the ice compress bag, the ice compress bag is convenient to assemble and disassemble, the work efficiency is improved, the wear-resistant layer reduces friction, the elastic layer is made of silica gel material, on the one hand, the ice compress effect is more uniform, on the other hand, the comfort of the patient is improved when the patient moves.

[0007] Further, the two support protection structures include four stands, eight flanges, eight bolts, four wear-resistant layers and four elastic layers, the four stands are respectively arranged in two groups, the two groups of stands are arranged at the center of the upper end faces of the two mounting plates and close to the two sides, the eight flanges are arranged in two rows on the upper end faces of the two groups of stands, the eight bolts are respectively arranged in four groups, the four groups of bolts are arranged in two rows on the upper end faces of the four flanges close to the upper part, the two groups of wear-resistant layers are arranged on the lower end faces of the four flanges close to the lower part and the upper end faces of the four flanges close to the upper part, the four elastic layers are respectively sleeved on the inner side walls of the four wear-resistant layers, and the two ice compress bags are respectively sleeved on the inner side walls of the four elastic layers;

[0008] Through the above technical scheme, the two groups of stands provide support for the whole structure, the flanges are fixedly connected through the bolts, the wear-resistant layers reduce friction, and the elastic layers have good elasticity and flexibility, on the one hand, the ice compress effect is more uniform, on the other hand, the comfort of the patient is improved when the patient moves.

[0009] Further, the two circulation structures include two self-priming pumps, two output pipes and two input pipes, the two self-priming pumps are arranged on the inner walls of the hot tank and the cold tank close to the upper part, the two output pipes are arranged on the output ends of the two self-priming pumps, the output ends of the two output pipes are respectively arranged in the two ice compress bags through the upper inner walls of the hot tank, the cold tank and the box body in sequence, and the front end faces of the two ice compress bags, and the two input pipes are arranged at the center of the rear end faces of the two ice compress bags, and one end of each of the two input pipes is arranged in the hot tank and the cold tank through the upper end faces of the box body, the cold tank and the hot tank in sequence;

[0010] Through the technical scheme, when the device needs to be used for ice compress, the self-suction pump is started, the cooling liquid in the cold tank is output through the output pipe, the cooling liquid is delivered to the inside of the ice compress bag, after the cooling liquid exchanges heat with the injured part of the patient in the ice compress bag, the cooling liquid flows into the cold tank through the input pipe arranged at the center of the rear end face of the ice compress bag, the circulation of the cooling liquid is completed, and the arrangement of the hot tank and the cold tank enables the device to perform refrigeration or heating according to needs, thereby meeting different nursing requirements.

[0011] Further, the refrigeration and heating structure comprises a compressor, a condenser, a liquid accumulator, an evaporator and a circulating pump, the compressor is arranged at the center of one side wall of the tank body, the condenser is arranged at the output end of the compressor, the liquid accumulator is arranged at the output end of the condenser, the evaporator is arranged at the output end of the liquid accumulator, and the circulating pump is arranged at the input end of the evaporator, and the output end of the circulating pump is arranged at the input end of the compressor.

[0012] Through the technical scheme, in the refrigeration mode, the compressor compresses the refrigerant into high-temperature and high-pressure gas, which is delivered to the condenser, in the condenser, the high-temperature and high-pressure gas exchanges heat with the outside air to be cooled into high-pressure liquid, then flows into the liquid accumulator, the liquid accumulator plays a role of stabilizing the flow of the refrigerant and storing excess refrigerant, the high-pressure liquid flows out of the liquid accumulator and enters the evaporator, in the evaporator, the refrigerant absorbs heat in the hot tank and the cold tank to be evaporated into low-temperature and low-pressure gas, the circulating pump delivers the low-temperature and low-pressure gas back to the compressor to complete the refrigeration cycle, in the heating mode, by adjusting the valves and flow directions in the refrigeration and heating structure, the flow direction of the refrigerant is reversed, the compressor compresses the low-temperature and low-pressure gas into high-temperature and high-pressure gas, which is delivered to the evaporator, in the evaporator, the high-temperature and high-pressure gas exchanges heat with the medium in the hot tank and the cold tank to release heat, so that the temperature in the hot tank and the cold tank is increased, then the refrigerant flows through the liquid accumulator, the condenser and the circulating pump in turn, and finally returns to the compressor to complete the heating cycle.

[0013] Further, one end of each of the eight bolts is arranged to pass through the upper end face of the upper four bolts and the lower end face of the lower four bolts in sequence, and a nut is arranged at the end of each of the eight bolts.

[0014] Through the technical scheme, the device is convenient to assemble and disassemble, and the working efficiency is improved.

[0015] Further, the four elastic layers are made of silica gel.

[0016] Through the technical scheme, the elasticity of the silica gel enables the elastic layer to be closely attached to the ice compress bag, reduces the shaking and displacement of the ice compress bag during use, and ensures the stability of the ice compress effect.

[0017] Further, liquid inlets are arranged at the centers of the two side walls of the hot tank and the cold tank.

[0018] Through the technical scheme, when the cooling liquid needs to be added, the cooling liquid can be injected into the hot tank and the cold tank through the liquid inlet.

[0019] The orthopedic nursing ice compress device has the following beneficial effects:

[0020] 1、The orthopedic nursing ice compress device in the utility model, through the setting of the hot tank and the cold tank, and through the circulation of the cooling liquid realized by the self-priming pump, the output pipe and the input pipe, refrigeration or heating can be carried out according to the needs, different nursing needs are met, different nursing scenes can be flexibly coped with, and the treatment effect is improved.

[0021] 2、The orthopedic nursing ice compress device in the utility model, through the components such as the compressor, the condenser, the liquid accumulator, the evaporator and the circulating pump, the switching of the refrigeration and heating modes can be realized through the adjustment of the valve and the flow direction, and the multifunctional design provides more comprehensive temperature control options for orthopedic nursing.

[0022] 3、The orthopedic nursing ice compress device in the utility model, through the combination structure of the stand, the flange and the bolt, stable support is provided for the ice compress bag, assembly and disassembly are facilitated, work efficiency is improved, the wear-resistant layer reduces friction, the elastic layer is made of silica gel material, on the one hand, the ice compress effect is more uniform, on the other hand, the silica gel material plays a buffering role when the patient moves, and the comfort of the patient is improved. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 A perspective view of the orthopedic nursing ice compress device is provided for the utility model;

[0024] Figure 2 A perspective view of the orthopedic nursing ice compress device is provided for the utility model;

[0025] Figure 3 A perspective view of the orthopedic nursing ice compress device is provided for the utility model;

[0026] Figure 4 A perspective view of the orthopedic nursing ice compress device is provided for the utility model;

[0027] LEGEND:

[0028] 1, tank; 2, control panel; 3, observation window; 4, mounting plate; 5, support protection structure; 501, stand; 502, flange; 503, bolt; 504, wear-resistant layer; 505, elastic layer; 6, ice compress bag; 7, circulation structure; 701, self-priming pump; 702, output pipe; 703, input pipe; 8, refrigeration and heating structure; 801, compressor; 802, condenser; 803, liquid accumulator; 804, evaporator; 805, circulating pump; 9, partition; 10, hot tank; 11, cold tank. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.

[0030] With reference to Figures 1-4 The utility model provides an embodiment: an ice compress device for orthopedics nursing, including box 1, the upper end face center of box 1 is equipped with control panel 2, and the upper end face center of box 1 is equipped with observation window 3, and the inside center of box 1 is equipped with baffle 9, and the inside of baffle 9 one side box 1 is equipped with hot box 10, and the inside of baffle 9 other side box 1 is equipped with cold box 11, and the upper end face center of box 1 is equipped with mounting plate 4 on both sides, and the inside of two mounting plate 4 upper end face center is equipped with support protection structure 5, and the inside of two support protection structure 5 is equipped with ice compress bag 6, and the inside of box 1 is equipped with circulation structure 7, and the inside of hot box 10 and cold box 11 is equipped with refrigeration heating structure 8.

[0031] Through refrigeration heating structure 8, the temperature of hot box 10 and cold box 11 is adjusted respectively, when needing ice compress, refrigeration heating structure 8 reduces the temperature in cold box 11, makes the cooling liquid in cold box 11 to be in low temperature state, when needing hot compress, refrigeration heating structure 8 heats hot box 10, makes the cooling liquid in hot box 10 reach appropriate hot compress temperature, circulation structure 7 can circulate and transport the cooling liquid in cold box 11 or the cooling liquid in hot box 10 to ice compress bag 6, to keep the temperature of ice compress bag 6, when ice compress is carried out, circulation structure 7 transports the low temperature cooling liquid in cold box 11 to ice compress bag 6, makes ice compress bag 6 keep low temperature state, carries out ice compress to the injured part of patient, when hot compress is carried out, circulation structure 7 transports the high temperature cooling liquid in hot box 10 to ice compress bag 6, makes ice compress bag 6 keep high temperature state, carries out hot compress to the injured part of patient, through the control panel 2 on the upper end face of box 1, refrigeration heating structure 8 and circulation structure 7 can be controlled, temperature and circulation speed parameters are adjusted, support protection structure 5 is used for supporting and protecting ice compress bag 6, prevents ice compress bag 6 from being extruded or damaged by external force, also simultaneously facilitates ice compress bag 6 to be fixed at the injured part of patient, and the center of both side walls of hot box 10 and cold box 11 is equipped with liquid inlet, when needing to add cooling liquid, can inject cooling liquid into hot box 10 and cold box 11 through liquid inlet.

[0032] The two support protection structures 5 comprise four stand columns 501, eight flanges 502, eight bolts 503, four wear-resistant layers 504 and four elastic layers 505. The four stand columns 501 are respectively arranged in two groups, and the two groups of stand columns 501 are arranged at the center of the upper end faces of the two mounting plates 4 and close to the sides. The eight flanges 502 are arranged in two rows on the upper end faces of the two groups of stand columns 501. The eight bolts 503 are respectively arranged in two groups, and the four groups of bolts 503 are arranged in two rows on the upper end faces of the four flanges 502 close to the top. The four wear-resistant layers 504 are respectively arranged in two groups, and the two groups of wear-resistant layers 504 are arranged on the lower end faces of the four flanges 502 close to the bottom and the upper end faces of the four flanges 502 close to the top. The four elastic layers 505 are respectively sleeved on the inner side walls of the four wear-resistant layers 504. The two ice packs 6 are respectively sleeved on the inner side walls of the four elastic layers 505.

[0033] The two groups of stand columns 501 provide support for the entire structure. The flanges 502 are fixedly connected through the bolts 503. The wear-resistant layers 504 reduce friction. The elastic layers 505 have good elasticity and flexibility. On the one hand, the elastic layers 505 can better fit the skin of the patient, so that the ice compressing effect is more uniform. On the other hand, the elastic layers 505 can play a certain buffering role when the patient moves, thereby improving the comfort of the patient. One end of the eight bolts 503 is respectively sequentially inserted through the upper end faces of the four bolts 503 close to the top and the lower end faces of the four bolts 503 close to the bottom, and the other end is inserted into the lower end of the four bolts 503 close to the bottom. Nut is arranged at the end, which facilitates assembly and disassembly, and improves work efficiency. The four elastic layers 505 are made of silica gel. The elasticity of the silica gel enables the elastic layers 505 to be closely attached to the ice packs 6, thereby reducing the shaking and displacement of the ice packs 6 during use and ensuring the stability of the ice compressing effect.

[0034] Two circulation structures 7 include two self-priming pumps 701, two output pipes 702 and two input pipes 703, the two self-priming pumps 701 are arranged at the upper center of the front inner wall of the hot tank 10 and the cold tank 11, the two output pipes 702 are arranged at the output ends of the two self-priming pumps 701 respectively, the output ends of the two output pipes 702 pass through the upper inner wall of the hot tank 10, the upper inner wall of the cold tank 11 and the upper inner wall of the box body 1 in sequence and pass into the two ice compresses 6 respectively, the two input pipes 703 are arranged at the center of the rear end face of the two ice compresses 6 respectively, one end of the two input pipes 703 passes through the upper end face of the box body 1, the upper end face of the cold tank 11 and the upper end face of the hot tank 10 in sequence and passes into the hot tank 10 and the cold tank 11 respectively, when the device needs to be used for ice compress, the self-priming pump 701 is started, the cooling liquid in the cold tank 11 is output through the output pipe 702, the cooling liquid is transported into the ice compress 6, after the cooling liquid exchanges heat with the injured part of the patient in the ice compress 6, the cooling liquid flows into the cold tank 11 through the input pipe 703 arranged at the center of the rear end face of the ice compress 6, the circulation of the cooling liquid is completed, the arrangement of the hot tank 10 and the cold tank 11 enables the device to refrigerate or heat as needed, so as to meet different nursing requirements.

[0035] The refrigeration and heating structure 8 includes a compressor 801, a condenser 802, a liquid accumulator 803, an evaporator 804 and a circulating pump 805, the compressor 801 is arranged at the front center of one side wall of the box body 1, the condenser 802 is arranged at the output end of the compressor 801, the liquid accumulator 803 is arranged at the output end of the condenser 802, the evaporator 804 is arranged at the output end of the liquid accumulator 803, and the circulating pump 805 is arranged at the input end of the evaporator 804, and the output end of the circulating pump 805 is arranged at the input end of the compressor 801, in the refrigeration mode, the compressor 801 compresses the refrigerant into high-temperature and high-pressure gas, which is transported to the condenser 802, in the condenser 802, the high-temperature and high-pressure gas exchanges heat with the outside air and is cooled into high-pressure liquid, then flows into the liquid accumulator 803, the liquid accumulator 803 plays a role of stabilizing the flow of the refrigerant and storing excess refrigerant, the high-pressure liquid flows out of the liquid accumulator 803 and enters the evaporator 804, in the evaporator 804, the refrigerant absorbs the heat in the hot tank 10 and the cold tank 11 and evaporates into low-temperature and low-pressure gas, the circulating pump 805 transports the low-temperature and low-pressure gas back to the compressor 801, and the refrigeration cycle is completed, in the heating mode, the flow direction of the refrigerant is reversed by adjusting the valves and flow directions in the refrigeration and heating structure 8, the compressor 801 compresses the low-temperature and low-pressure gas into high-temperature and high-pressure gas, which is transported to the evaporator 804, in the evaporator 804, the high-temperature and high-pressure gas exchanges heat with the medium in the hot tank 10 and the cold tank 11 and releases heat, so that the temperature in the hot tank 10 and the cold tank 11 rises, then the refrigerant flows through the liquid accumulator 803, the condenser 802 and the circulating pump 805 in sequence and finally returns to the compressor 801, and the heating cycle is completed.

[0036] Working principle: in the refrigeration mode, the compressor 801 compresses the refrigerant into high-temperature and high-pressure gas, which is delivered to the condenser 802. In the condenser 802, the high-temperature and high-pressure gas exchanges heat with the outside air, and is cooled into high-pressure liquid, which then flows into the liquid reservoir 803. The liquid reservoir 803 functions to stabilize the flow of refrigerant and store excess refrigerant. The high-pressure liquid flows out of the liquid reservoir 803 and enters the evaporator 804, where it absorbs heat from the hot box 10 and the cold box 11, and evaporates into low-temperature and low-pressure gas. The circulating pump 805 delivers the low-temperature and low-pressure gas back to the compressor 801, completing the refrigeration cycle. In the heating mode, by adjusting the valves and flow direction in the refrigeration and heating structure 8, the flow direction of the refrigerant is reversed. The compressor 801 compresses the low-temperature and low-pressure gas into high-temperature and high-pressure gas, which is delivered to the evaporator 804. In the evaporator 804, the high-temperature and high-pressure gas exchanges heat with the medium in the hot box 10 and the cold box 11, releasing heat and raising the temperature in the hot box 10 and the cold box 11. Then, the refrigerant flows through the liquid reservoir 803, the condenser 802, and the circulating pump 805 in turn, and finally returns to the compressor 801, completing the heating cycle.

[0037] When ice compress is needed, the refrigeration and heating structure 8 lowers the temperature in the cold box 11, so that the cooling liquid in the cold box 11 is in a low-temperature state. When hot compress is needed, the refrigeration and heating structure 8 heats the hot box 10, so that the cooling liquid in the hot box 10 reaches a suitable hot compress temperature. The circulating structure 7 can circulate and deliver the cooling liquid in the cold box 11 or the cooling liquid in the hot box 10 to the ice compress bag 6, to maintain the temperature of the ice compress bag 6. When the device needs to be used for ice compress, the self-suction pump 701 is started, and the cooling liquid in the cold box 11 is output through the output pipe 702, and delivered to the inside of the ice compress bag 6. After the cooling liquid exchanges heat with the injured part of the patient in the ice compress bag 6, it flows into the cold box 11 through the input pipe 703 arranged at the center of the rear end face of the ice compress bag 6, completing the circulation of the cooling liquid. By delivering the low-temperature cooling liquid in the cold box 11 to the ice compress bag 6, the ice compress bag 6 is kept in a low-temperature state, and the injured part of the patient is subjected to ice compress. When hot compress is performed, the circulating structure 7 delivers the high-temperature cooling liquid in the hot box 10 to the ice compress bag 6, so that the ice compress bag 6 is kept in a high-temperature state, and the injured part of the patient is subjected to hot compress.

[0038] The control panel 2 on the upper end face of the box 1 can control the refrigeration and heating structure 8 and the circulation structure 7, adjust temperature and circulation speed and the like, two groups of columns 501 provide support for the whole structure, the flanges 502 are fixedly connected through the bolts 503, the wear-resistant layers 504 reduce friction, the elastic layers 505 have good elasticity and flexibility, on the one hand, the ice compressing effect can be more uniform, on the other hand, when the patient moves, the elastic layers 505 can play a certain buffering role, improve the comfort of the patient, prevent the ice compressing bag 6 from being extruded or damaged by external force, and meanwhile, the ice compressing bag 6 can be conveniently fixed at the injured part of the patient.

[0039] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, it still can modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part of the technical features, any modification, equivalent replacement, improvement and the like made within the spirit and principles of the present application, should be included in the protection scope of the present application.

Claims

1. An ice pack device for orthopedic care comprising a box (1), characterized in that: The upper end face of the box (1) is provided with a control panel (2) in the front center, the front end face of the box (1) is provided with an observation window (3) in the center, the inside of the box (1) is provided with a partition (9) in the center, the inside of the box (1) is provided with a hot box (10) on one side of the partition (9), the inside of the box (1) is provided with a cold box (11) on the other side of the partition (9), the upper end face of the box (1) is provided with a mounting plate (4) on both sides of the center, the upper end face of the two mounting plates (4) is provided with a support protection structure (5) in the center, the inside of the two support protection structures (5) is provided with an ice bag (6), and the inside of the box (1) is provided with a circulation structure (7), and the inside of the hot box (10) and the cold box (11) is provided with a refrigeration and heating structure (8).

2. An ice pack for orthopedic care according to claim 1, characterized in that: The two support protection structures (5) include four columns (501), eight flanges (502), eight bolts (503), four wear-resistant layers (504) and four elastic layers (505), the four columns (501) are respectively arranged in two groups, two groups of columns (501) are arranged on the upper end face of the two mounting plates (4) on both sides of the center, eight flanges (502) are arranged in two rows on the upper end face of the two groups of columns (501), eight bolts (503) are arranged in two groups, four groups of bolts (503) are arranged in front of and behind the upper four flanges (502) on the upper end face of the center, four wear-resistant layers (504) are arranged in two groups, two groups of wear-resistant layers (504) are arranged on the lower end face of the lower four flanges (502) and the upper end face of the upper four flanges (502), four elastic layers (505) are arranged on the inner side wall of the four wear-resistant layers (504), and two ice bags (6) are arranged on the inner side wall of the four elastic layers (505).

3. An ice pack for orthopedic care according to claim 1, wherein: The two circulation structures (7) include two self-priming pumps (701), two output pipes (702) and two input pipes (703), the two self-priming pumps (701) are arranged on the front inner wall of the hot box (10) and the cold box (11) in the upper center, the two output pipes (702) are arranged on the output ends of the two self-priming pumps (701), and the output ends of the two output pipes (702) are sequentially penetrated through the upper inner wall of the hot box (10), the upper inner wall of the cold box (11), the upper inner wall of the box (1) and the front end face of the two ice bags (6) to the inside of the two ice bags (6), respectively, and the two input pipes (703) are arranged in the center of the rear end face of the two ice bags (6), and one end of the two input pipes (703) is sequentially penetrated through the upper end face of the box (1), the upper end face of the cold box (11) and the upper end face of the hot box (10) and reaches the inside of the hot box (10) and the cold box (11), respectively.

4. An ice pack for orthopedic care according to claim 1, characterized in that: The refrigeration and heating structure (8) comprises a compressor (801), a condenser (802), a liquid accumulator (803), an evaporator (804) and a circulating pump (805), the compressor (801) is arranged at the center of one side wall of the cabinet (1) and in front, the condenser (802) is arranged on the output end of the compressor (801), the liquid accumulator (803) is arranged on the output end of the condenser (802), the evaporator (804) is arranged on the output end of the liquid accumulator (803), the circulating pump (805) is arranged on the input end of the evaporator (804), and the output end of the circulating pump (805) is arranged on the input end of the compressor (801).

5. An ice pack for orthopedic care according to claim 2, wherein: One end of each of the eight bolts (503) penetrates the upper end face of the upper four bolts (503) and the lower end face of the lower four bolts (503) in sequence, and nuts are arranged at the ends.

6. An ice pack for orthopedic care according to claim 2, wherein: The four elastic layers (505) are all made of silica gel.

7. An ice pack for orthopedic care according to claim 1, wherein: The central part of the two side walls of the hot box (10) and the cold box (11) is provided with a liquid inlet.