Orthopedic ice compress device capable of massaging

By designing a massageable orthopedic ice packing device, the power adjustment of the pump is used to realize the circulation and massage of the ice pack. Combined with the water absorbent cloth cover and metal fiber filler, the problems of poor fit and uneven temperature of the ice pack are solved, and the uniformity and safety of the ice pack are improved.

CN120478035AInactive Publication Date: 2025-08-15BEIJING JISHUITAN HOSPITAL GUIZHOU HOSPITAL
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Patent Information

Application Number
CN202510929450.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-07
Publication Date
2025-08-15
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing ice bags have poor fit and poor temperature control effect, resulting in uneven ice compressing effects. The water droplets produced by the ice bags during the ice compressing process are prone to soak the wound dressing, increasing the risk of wound infection.

Method used

A massageable orthopedic ice packing device is designed, including an H-shaped ice pack, annular cold water bag, a return water micro pump and a water transfer micro pump, equipped with massage components and a water absorbing cloth cover, which realizes the circulation and massage of the ice pack by adjusting the power of the pump. The water absorbing cloth cover absorbs condensate, and the metal fiber filler improves temperature uniformity.

Benefits of technology

The uniformity and safety of the ice compress effect are achieved, which prevents condensation water from moistening the affected area, reduces the risk of infection, and provides a variety of ice compress methods to improve the therapeutic effect.

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Abstract

The invention discloses an orthopedic ice compress device capable of massaging, and relates to the technical field of orthopedic nursing. The device comprises an H-shaped ice bag, the periphery of the H-shaped ice bag is fixedly sleeved with an annular cold water bag, the top of the H-shaped ice bag is fixedly provided with a water return micro pump and a water delivery micro pump, and the water inlet end of the water return micro pump and the water inlet end of the water delivery micro pump are fixedly provided with a water return hose and a water pumping hose respectively; the water outlet end of the water return micro pump and the water outlet end of the water conveying micro pump are each fixedly provided with a water conveying hose, and the H-shaped ice bag is sleeved with a water absorption cloth sleeve. The massage assembly is arranged, a round head hollow column can stretch out and draw back regularly by repeatedly adjusting the power of a water return micro pump and a water delivery micro pump, uniform ice compress is conducted on an affected part through circulating cold compress water, meanwhile, regular massage is conducted on the affected part, and the better ice compress effect is obtained; the water absorption cloth sleeve can be used for absorbing condensate water generated in the ice compress process, and infection caused by the fact that the condensate water wets dressing on the affected part is prevented.
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Description

Technical Field

[0001] The present invention relates to the technical field of orthopedic nursing, and in particular to a massageable orthopedic ice compress device. Background Art

[0002] Ice compress is a commonly used, simple and effective acute physical therapy method in orthopedic care. It is often used in acute injuries, postoperative recovery, muscle fatigue and inflammation relief. Correct ice compress can effectively relieve pain, reduce swelling, control inflammation and promote recovery. It reduces swelling and pain by causing local blood vessels to constrict. It is currently the most widely used in orthopedic postoperative rehabilitation. It can reduce trauma and postoperative lower limb swelling. Ice compress can also be used in the acute phase of ankle sprains, knee sprains, and even closed fractures.

[0003] In clinical practice, bandages are often used to fix ice packs to the patient's affected area for ice compresses. However, current ice packs have poor adhesion and temperature control effects, and the contents of the ice packs are basically in a static state, resulting in different ice compress temperatures in different areas of the patient's affected area and uneven ice compress effects. In addition, water droplets generated by the ice pack during the ice compress process can easily soak the wound dressing, increasing the chance of wound infection. Therefore, a massageable orthopedic ice compress device is proposed. Summary of the Invention

[0004] The purpose of the present invention is to solve the problems of poor fit and temperature control of current ice packs, the ice pack contents being basically static, resulting in different ice compress temperatures in different areas of the patient's affected area and uneven ice compress effects, and the water droplets generated by the ice pack during the ice compress process easily soaking the wound dressing, increasing the chance of wound infection. The present invention provides a massageable orthopedic ice compress device.

[0005] In order to achieve the above-mentioned purpose, the present invention specifically adopts the following technical solutions: A massageable orthopedic ice compress device comprises an H-shaped ice bag, wherein the peripheral side of the H-shaped ice bag is fixedly sleeved with an annular cold water bag, the top of the H-shaped ice bag is fixedly installed with a return water micro pump and a water delivery micro pump, the water inlet ends of the return water micro pump and the water delivery micro pump are respectively fixedly installed with a return water hose and a water suction hose, and the water outlet ends of the return water micro pump and the water delivery micro pump are fixedly installed with a water delivery hose, the outer surface of the H-shaped ice bag is sleeved with a water-absorbing cloth sleeve, the bottom of the water-absorbing cloth sleeve is fixedly installed with a plurality of evenly distributed straps, the top of the H-shaped ice bag is provided with a mounting hole, the top and bottom of the water-absorbing cloth sleeve are provided with a third clearance hole corresponding to the position of the mounting hole, the top and bottom of the water-absorbing cloth sleeve are adhered with a water-absorbing disc adapted to the third clearance hole, the inner part of the H-shaped ice bag is fixed A plurality of evenly distributed shaping plates are installed, and the plurality of shaping plates are respectively distributed on both sides of the mounting holes, and a hard tube is fixedly installed on the bottom of the shaping plates, and one end of each of the two water hoses extends to the interior of the H-shaped ice bag and is respectively fixedly connected to two of the hard tubes, and a plurality of staggered transition hoses are provided inside the H-shaped ice bag, and the two ends of the transition hose located at the same place are respectively fixedly connected to one end of two adjacent hard tubes, wherein one end of each of the two hard tubes is fixedly installed with a circulation hose, and the other ends of the two circulation hoses are fixedly installed with the same annular hose, and the annular hose is coaxial with the mounting hole, and a plurality of evenly distributed internal support grids are fixedly installed inside the water hose, the transition hose, the circulation hose and the annular hose; The bottom of the hard tube is provided with a plurality of evenly distributed massage components, and the massage components can massage the patient's ice compress area as the power of the return water micro pump and the water delivery micro pump changes. The massage component includes a tubular valve seat fixedly mounted on the bottom of the hard tube, a round-headed hollow column is slidably mounted inside the tubular valve seat, and the round-headed hollow column is connected to the interior of the hard tube, the bottom end of the round-headed hollow column extends to the outside of the tubular valve seat and is fixedly sleeved with an outer sleeve, and the top end of the outer sleeve is slidably sleeved on the tubular valve seat. On the tubular valve seat, a return spring is provided inside the outer sleeve, and the return spring is sleeved on the bottom end of the tubular valve seat. The two ends of the return spring are fixedly connected to the tubular valve seat and the outer sleeve respectively. A plurality of evenly distributed Velcro surfaces are fixedly installed on the bottom of the H-shaped ice bag. The positions of the plurality of Velcro surfaces correspond to the positions of the plurality of round-headed hollow columns respectively. An arc-surface circular plate is adhered to the bottom of the Velcro surfaces. The return water micro pump, the water supply micro pump and the arc-surface circular plate are all located inside the water-absorbing cloth cover.

[0006] Furthermore, a circular ice bag is placed inside the mounting hole, and two cloth buckles are fixedly installed on the top of the circular ice bag, and the cloth buckles are fixedly connected to the top of the H-shaped ice bag, and two docking hoses are fixedly installed on the top of the circular ice bag, and one end of the two docking hoses extends to the inside of the circular ice bag and is fixedly installed with the same mesh hose, and the connection between the two circulation hoses and the annular hose is fixedly installed with a three-way threaded pipe, and one end of the three-way threaded pipe extends to the top of the H-shaped ice bag and is rotatably installed with a threaded outer pipe, and the end of the docking hose located at the top of the H-shaped ice bag is rotatably installed with a docking threaded inner pipe that matches the threaded outer pipe, and a threaded cover that matches the threaded outer pipe is fixedly installed on the top of the H-shaped ice bag, and the circular ice bag is located between the two water-absorbing discs, and the cloth buckles, the docking hoses and the threaded cover are all located inside the water-absorbing cloth cover.

[0007] Furthermore, a metal fiber filler is placed inside the H-shaped ice bag, a circular ice bag corresponding to the position of the circular ice bag is opened at the bottom of the metal fiber filler, a first makeshift hole corresponding to the position of the circular ice bag and multiple second makeshift holes corresponding to the positions of the round-headed hollow columns are opened at the bottom of the metal fiber filler, and multiple ice storage bags evenly distributed along the circular ice bag are fixedly installed inside the H-shaped ice bag, the tops of the ice storage bags extend to the top of the H-shaped ice bag and are screwed with screw caps, the screw caps are all located inside the absorbent cloth cover, and the hard tube, the transition hose, the circulation hose and the ice storage bag are all located inside the metal fiber filler.

[0008] The beneficial effects of the present invention are as follows: 1. The present invention provides a massage component, so that the round-headed hollow column can be regularly expanded and contracted by repeatedly adjusting the power of the return water micropump and the water supply micropump. This allows the affected area to be evenly iced with circulating cold compress water while also being regularly massaged, achieving a better ice compress effect. In addition, the absorbent cloth can be used to absorb the condensed water generated during the ice compress process, preventing the condensed water from wetting the dressing on the affected area and causing infection. 2. The present invention provides a circular ice pack, so that the patient's limbs with affected parts can be passed through the mounting hole, and the H-shaped ice pack can be placed on the patient's limbs for ice compressing. Alternatively, the circular ice pack can be placed in the mounting hole, so that the circular ice pack and the H-shaped ice pack form a complete ice pack. In this case, the ice pack can be tied to the patient's affected part for ice compressing, so that the circular ice pack can also produce a circulating ice compress effect, increasing the ice compress area, thereby achieving different ice compressing methods and ice compressing effects; 3. The present invention provides a metal fiber filler so that the cold compress water transported in the pipeline can conduct the heat of the affected area through the metal fiber filler, making the ice compress effect more uniform. At the same time, the ice cubes placed inside the ice storage bag can also absorb the heat of the cold compress water in the internal pipelines of the H-shaped ice bag and the round ice bag through the metal fiber filler, so that the cold compress water always maintains a sufficient ice compress effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0009] Figure 1 This is a schematic diagram of the three-dimensional structure of the present invention from a first viewing angle; Figure 2 is a schematic diagram of the three-dimensional structure of the present invention from a second viewing angle; Figure 3 This is a schematic diagram of the three-dimensional structure of the H-shaped ice bag and the metal fiber filler of the present invention; Figure 4 This is a schematic diagram of the internal three-dimensional structure of the H-shaped ice bag of the present invention; Figure 5 It is a schematic diagram of the three-dimensional structure of the massage component of the present invention; Figure 6 This is a schematic diagram of the three-dimensional structure of the circular ice bag of the present invention; Figure 7 This is a schematic diagram of the internal three-dimensional structure of the circular ice bag of the present invention; Figure 8 This is a schematic diagram of the internal three-dimensional structure of the circulation hose of the present invention; Figure 9 This is a schematic diagram of the three-dimensional structure of the water-absorbing cloth cover of the present invention; Figure 1: 1. H-shaped ice pack; 101. Mounting hole; 2. Annular cold water bag; 3. Return water micro pump; 4. Water delivery micro pump; 5. Return water hose; 6. Suction hose; 7. Water delivery hose; 8. Forming plate; 9. Hard pipe; 10. Transition hose; 11. Circulation hose; 12. Annular hose; 13. Tubular valve seat; 14. Round hollow column; 15. Outer sleeve; 1501. Return spring; 16. Circular ice pack; 17. Cloth strip Buckle; 18. Docking hose; 19. Mesh hose; 20. Docking threaded inner tube; 21. Three-way threaded tube; 22. Metal fiber filler; 2201. First clearance hole; 2202. Second clearance hole; 23. Ice storage bag; 24. Screw cap; 25. Threaded cap; 26. Velcro surface; 27. Arc circular plate; 28. Internal support grid; 29. Water-absorbing cloth cover; 2901. Third clearance hole; 30. Strap; 31. Water-absorbing disc. DETAILED DESCRIPTION

[0010] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings herein can be arranged and designed in various different configurations.

[0011] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the invention as claimed, but rather merely represents selected embodiments of the present invention. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without creative effort shall fall within the scope of protection of the present invention.

[0012] It should be noted that similar reference numerals and letters represent similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined or explained in subsequent drawings. In addition, the terms "first," "second," etc. are used only to distinguish the descriptions and are not to be understood as indicating or implying relative importance.

[0013] In the description of the embodiments of the present invention, it should be noted that the terms "inside", "outside", "upper", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, or are the orientations or positional relationships in which the inventive product is usually placed when in use. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as limitations on the present invention.

[0014] like Figures 1 to 9 As shown, a massageable orthopedic ice compress device includes an H-shaped ice pack 1, as shown in FIG. Figure 1 、 Figure 9 As shown, an annular cold water bag 2 is fixedly sleeved on the circumference of the H-shaped ice bag 1, a return water micro pump 3 and a water delivery micro pump 4 are fixedly installed on the top of the H-shaped ice bag 1, a return water hose 5 and a water suction hose 6 are fixedly installed on the water inlet ends of the return water micro pump 3 and the water delivery micro pump 4, respectively, and a water delivery hose 7 is fixedly installed on the water outlet ends of the return water micro pump 3 and the water delivery micro pump 4. The outer surface of the H-shaped ice bag 1 is sleeved with a water-absorbing cloth cover 29; In this embodiment, the "top" of each component is the side away from the patient's affected area, and the "bottom" is the side facing the patient's affected area. The power regulation of the return water micro pump 3 and the water supply micro pump 4 is controlled by the built-in PLC controller; like Figure 9As shown, specifically, a plurality of evenly distributed straps 30 are fixedly mounted on the bottom of the absorbent cloth cover 29, a mounting hole 101 is formed on the top of the H-shaped ice pack 1, and third clearance holes 2901 corresponding to the positions of the mounting holes 101 are formed on the top and bottom of the absorbent cloth cover 29. Water-absorbing discs 31 adapted to the third clearance holes 2901 are adhered to the top and bottom of the absorbent cloth cover 29. In this embodiment, the fleece side or hook side of Velcro is provided between the contact surface of the absorbent cloth cover 29 and the absorbent disc 31, for adhering the absorbent disc 31 to the absorbent cloth cover 29; More specifically, the absorbent cloth cover 29 can be used to absorb the condensed water generated during the ice compress process to prevent the condensed water from wetting the dressing on the affected area and causing infection. like Figure 4 As shown, specifically, a plurality of evenly distributed shaping plates 8 are fixedly installed inside the H-shaped ice bag 1, and the plurality of shaping plates 8 are respectively distributed on both sides of the mounting hole 101. A hard tube 9 is fixedly installed at the bottom of the shaping plate 8. One end of each of the two water hoses 7 extends into the interior of the H-shaped ice bag 1 and is respectively fixedly connected to two of the hard tubes 9. A plurality of staggered transition hoses 10 are provided inside the H-shaped ice bag 1. The two ends of the transition hose 10 located at the same place are respectively fixedly connected to one end of two adjacent hard tubes 9, wherein one end of each of the two hard tubes 9 is fixedly installed with a circulation hose 11, and the two circulation hoses 11 are symmetrical along the center of the mounting hole 101. The other ends of the two circulation hoses 11 are fixedly installed with the same annular hose 12, and the annular hose 12 is coaxial with the mounting hole 101. In this embodiment, one end of the two water supply hoses 7 is connected to the two hard tubes 9 farthest from the mounting hole 101, and one end of the two circulation hoses 11 is connected to the two hard tubes 9 closest to the mounting hole 101. The annular hose 12 is sleeved on the circular inner wall of the H-shaped ice pack 1 surrounding the mounting hole 101. The multiple hard tubes 9 and the transition hose 10 form a wavy folded pipeline. The water-absorbing cloth cover 29 is opened and closed by a zipper. More specifically, when using the massageable orthopedic ice compress device, the H-shaped ice bag 1, which is sheathed in the absorbent cloth cover 29, is first directly wrapped around the affected area, or the patient's limbs at the affected area are passed through the mounting hole 101 and fixed with a strap 30. Then the water delivery micro pump 4 starts to operate, and draws cold compress water from the annular cold water bag 2 through the water suction hose 6, and then delivers it to the annular hose 12 through the folded pipeline composed of the water delivery hose 7, the hard pipe 9, and the transition hose 10. At the same time, the return water micro pump 3 starts to operate, draws cold water from the folded pipeline and the water delivery hose 7 on the other side, and delivers it back to the annular cold water bag 2 through the return water hose 5, completing the circulation of the cold compress water.

[0015] like Figure 8As shown, specifically, a plurality of evenly distributed inner support grids 28 are fixedly installed inside the water delivery hose 7, the transition hose 10, the circulation hose 11 and the annular hose 12; More specifically, the internal support grid 28 inside the water supply hose 7, transition hose 10, circulation hose 11, etc. can support the inside of the pipeline to prevent the H-shaped ice bag 1 from bending, causing the pipeline to be compressed and deformed, thereby affecting the delivery of cold compress water.

[0016] The bottom of the hard tube 9 is provided with a plurality of evenly distributed massage components; Figure 4 、 Figure 5 As shown, specifically, the massage component can massage the patient's ice compress area as the power of the return water micro pump 3 and the water delivery micro pump 4 changes. The massage component includes a tubular valve seat 13 fixedly mounted on the bottom of the hard tube 9. A round-headed hollow column 14 is slidably mounted inside the tubular valve seat 13. The round-headed hollow column 14 is connected to the interior of the hard tube 9. The bottom end of the round-headed hollow column 14 extends to the outside of the tubular valve seat 13 and is fixedly sleeved with an outer sleeve 15. The top end of the outer sleeve 15 is slidably sleeved on the tubular valve seat 13. The inside of the outer sleeve 15 A return spring 1501 is provided, and the return spring 1501 is sleeved on the bottom end of the tubular valve seat 13. The two ends of the return spring 1501 are fixedly connected to the tubular valve seat 13 and the outer sleeve 15 respectively. A plurality of evenly distributed Velcro surfaces 26 are fixedly installed on the bottom of the H-shaped ice pack 1. The positions of the plurality of Velcro surfaces 26 correspond to the positions of the plurality of round-headed hollow columns 14 respectively. A curved circular plate 27 is adhered to the bottom of the Velcro surfaces 26. The return water micro pump 3, the water delivery micro pump 4 and the curved circular plate 27 are all located inside the water-absorbing cloth cover 29. In this embodiment, the top of the arc-shaped circular plate 27 is provided with a Velcro hook surface for adhering the arc-shaped circular plate 27 to the bottom of the Velcro surface 26. The size of the Velcro surface 26 is much larger than that of the arc-shaped circular plate 27. The outer diameter of the arc-shaped circular plate 27 is larger than the outer diameter of the round-headed hollow column 14. More specifically, when the cold compress water passes through each water supply hose 7, the water pressure will cause each round-headed hollow column 14 to overcome the elastic force of the reset spring 1501 and slide downward along the tubular valve seat 13, thereby slightly pressing the patient's affected area through the H-shaped ice bag 1, the Velcro surface 26 and the arc-surface circular plate 27 in turn, and then adjust the power of the return water micro pump 3 and the water supply micro pump 4 so that the power of the return water micro pump 3 is greater than the power of the water supply micro pump 4, thereby maintaining the circulation of the cold compress water while reducing the water pressure in the pipeline, and the round-headed hollow column 14 retracts under the elastic force of the reset spring 1501. Repeatedly adjusting the power of the return water micro pump 3 and the water supply micro pump 4 can realize the regular expansion and contraction of the round-headed hollow column 14, so that the affected area can be evenly iced with circulating cold compress water while being regularly massaged to obtain a better ice compress effect.

[0017] More specifically, by providing the Velcro surface 26 and the arcuate circular plate 27, the arcuate circular plate 27 can be used to increase the area of the round-headed hollow column 14 when pressing, thereby reducing the pressure on the affected area and alleviating the discomfort during pressing. At the same time, the arcuate circular plate 27 can be torn off and re-adhered after adjusting the position, thereby adjusting the massage position.

[0018] like Figure 1 As shown, a circular ice pack 16 is placed inside the mounting hole 101; Figure 6 、 Figure 7 As shown, specifically, two cloth buckles 17 are fixedly installed on the top of the circular ice bag 16, and the cloth buckles 17 are fixedly connected to the top of the H-shaped ice bag 1, and two docking hoses 18 are fixedly installed on the top of the circular ice bag 16. One end of the two docking hoses 18 extends to the inside of the circular ice bag 16 and is fixedly installed with the same mesh hose 19. The connection between the two circulation hoses 11 and the annular hose 12 is fixedly installed with a three-way threaded pipe 21, one end of the three-way threaded pipe 21 extends to the top of the H-shaped ice bag 1 and is rotatably installed with a threaded outer pipe. The end of the docking hose 18 located at the top of the H-shaped ice bag 1 is rotatably installed with a docking threaded inner pipe 20 adapted to the threaded outer pipe, and a threaded cover 25 adapted to the threaded outer pipe is fixedly installed on the top of the H-shaped ice bag 1. The circular ice bag 16 is located between the two water-absorbing discs 31, and the cloth buckle 17, the docking hose 18 and the threaded cover 25 are all located inside the water-absorbing cloth cover 29. In this embodiment, the cloth strip buckle 17 can be any type of button fixedly connected to the cloth strip, such as a snap button, a snap button, etc. The top of the H-shaped ice pack 1 is provided with a buckle seat or a buckle seam adapted to the cloth strip buckle 17, and the threaded cover 25 is connected to the top of the H-shaped ice pack 1 by a string or a cloth strip; More specifically, by setting up a circular ice bag 16, the patient's limbs with affected parts can be passed through the mounting hole 101, and the H-shaped ice bag 1 can be put on the patient's limbs for ice compress, or the circular ice bag 16 can be placed in the mounting hole 101 and fixed with a cloth buckle 17, and then the two sets of docking hoses 18 and three-way threaded pipes 21 are connected respectively by using the docking threaded inner tube 20 and the threaded outer tube, and then the absorbent discs 31 are adhered to both sides of the absorbent cloth cover 29 for covering, so that the circular ice bag 16 and the H-shaped ice bag 1 form a complete ice bag. At this time, the ice bag is tied to the patient's affected part for ice compress, and the cold compress water is transported to the mesh hose 19 through the circulating hose 11, the three-way threaded pipe 21 and the docking hose 18, so that the circular ice bag 16 can also produce a circulating ice compress effect, thereby increasing the ice compress area, thereby obtaining different ice compress methods and ice compress effects.

[0019] like Figure 2As shown, specifically, a metal fiber filler 22 is placed inside the H-shaped ice pack 1. A circular ice pack 16 corresponding to the position of the circular ice pack 16 is opened at the bottom of the metal fiber filler 22. A first clearance hole 2201 corresponding to the position of the circular ice pack 16 and a plurality of second clearance holes 2202 corresponding to the positions of the round-headed hollow columns 14 are opened at the bottom of the metal fiber filler 22. More specifically, by providing a metal fiber filler 22, the hard tube 9, transition hose 10, circulation hose 11 and ice storage bag 23 inside the H-shaped ice bag 1 are all wrapped in the metal fiber filler 22. The cold compress water transported in the pipeline can conduct heat to the affected area through the metal fiber filler 22, making the ice compress effect more uniform.

[0020] like Figure 4 As shown, specifically, a plurality of ice storage bags 23 evenly distributed along the circular ice bag 16 are fixedly installed inside the H-shaped ice bag 1. The tops of the ice storage bags 23 extend to the top of the H-shaped ice bag 1 and are screwed with screw caps 24. The screw caps 24 are all located inside the water-absorbing cloth cover 29. The hard tube 9, the transition hose 10, the circulation hose 11 and the ice storage bags 23 are all located inside the metal fiber filler 22. More specifically, the ice cubes placed inside the ice storage bag 23 can also absorb the heat of the cold compress water in the internal pipes of the H-shaped ice bag 1 and the round ice bag 16 through the metal fiber filler 22, so that the cold compress water always maintains a sufficient ice compress effect.

[0021] In summary: Before use: the patient's limbs with affected parts can be passed through the mounting holes 101, and the H-shaped ice pack 1 can be placed on the patient's limbs for ice compress. Alternatively, the round ice pack 16 can be placed in the mounting holes 101 and fixed with the cloth buckle 17. Then, the two sets of docking hoses 18 and the three-way threaded tube 21 can be connected respectively using the docking threaded inner tube 20 and the threaded outer tube. Then, absorbent discs 31 can be adhered to both sides of the absorbent cloth cover 29 to cover it. Thus, the round ice pack 16 and the H-shaped ice pack 1 form a complete ice pack. At this time, the ice pack can be tied to the patient's affected part for ice compress. During use: the water delivery micro pump 4 starts to operate, and draws cold compress water from the annular cold water bag 2 through the water extraction hose 6, and then delivers it to the annular hose 12 through the folded pipeline composed of the water delivery hose 7, the hard pipe 9, and the transition hose 10. At the same time, the return water micro pump 3 starts to operate, and draws cold water from the folded pipeline and the water delivery hose 7 on the other side and re-delivers it to the annular cold water bag 2 through the return water hose 5. When the circular ice bag 16 is installed, the cold compress water is delivered to the mesh hose 19 through the circulation hose 11, the three-way threaded pipe 21 and the docking hose 18, so that the circular ice bag 16 can also produce a circulating ice compress effect, completing the circulation of the cold compress water. When the cold compress water passes through each water delivery hose 7, the water pressure will cause each round-headed hollow column 14 to overcome the repeated The elastic force of the reset spring 1501 is released and the cylindrical valve seat 13 is downwardly moved, thereby slightly pressing the affected part of the patient through the H-shaped ice pack 1, the Velcro surface 26 and the arc-surface circular plate 27 in sequence. The power of the return water micro pump 3 and the water delivery micro pump 4 is then adjusted so that the power of the return water micro pump 3 is greater than that of the water delivery micro pump 4. This reduces the water pressure in the pipeline while maintaining the circulation of the cold compress water. The round-headed hollow column 14 retracts under the elastic force of the reset spring 1501. Repeated adjustment of the power of the return water micro pump 3 and the water delivery micro pump 4 allows the round-headed hollow column 14 to regularly expand and contract, thereby achieving a uniform ice compress on the affected part using the circulating cold compress water and a regular massage of the affected part, thereby achieving a better ice compress effect. After use: the absorbent cloth cover 29 absorbs the condensed water generated during the ice compress process to prevent the condensed water from wetting the dressing on the affected area and causing infection.

[0022] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions merely illustrate the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. A massageable orthopedic ice compress device, characterized in that: The invention comprises an H-shaped ice bag (1), wherein an annular cold water bag (2) is fixedly sleeved on the peripheral side of the H-shaped ice bag (1), a return water micro pump (3) and a water delivery micro pump (4) are fixedly installed on the top of the H-shaped ice bag (1), a return water hose (5) and a water extraction hose (6) are fixedly installed on the water inlet ends of the return water micro pump (3) and the water delivery micro pump (4), respectively, and a water delivery hose (7) is fixedly installed on the water outlet ends of the return water micro pump (3) and the water delivery micro pump (4), a mounting hole (101) is opened on the top of the H-shaped ice bag (1), and a plurality of uniformly distributed shaping plates (8) are fixedly installed inside the H-shaped ice bag (1), the plurality of shaping plates (8) are respectively distributed on both sides of the mounting hole (101), and a hard pipe (9) is fixedly installed on the bottom of each of the shaping plates (8), and two of the water delivery hoses (7) are fixedly installed. One end of each extends into the interior of the H-shaped ice bag (1) and is fixedly connected to two of the hard tubes (9), and a plurality of staggered transition hoses (10) are provided inside the H-shaped ice bag (1). The two ends of the transition hose (10) located at the same location are fixedly connected to one end of two adjacent hard tubes (9), wherein one end of each of the two hard tubes (9) is fixedly mounted with a circulation hose (11), and the other end of each of the two circulation hoses (11) is fixedly mounted with the same annular hose (12), and the annular hose (12) is coaxial with the mounting hole (101). The bottom of each of the hard tubes (9) is provided with a plurality of evenly distributed massage components, and the massage components can massage the patient's ice compress area as the power of the return water micro pump (3) and the water delivery micro pump (4) changes.

2. The massageable orthopedic ice compress device according to claim 1, characterized in that: The massage component includes a tubular valve seat (13) fixedly mounted on the bottom of the hard tube (9), a round-headed hollow column (14) is slidably mounted inside the tubular valve seat (13), the round-headed hollow column (14) is communicated with the inside of the hard tube (9), the bottom end of the round-headed hollow column (14) extends to the outside of the tubular valve seat (13) and is fixedly sleeved with an outer sleeve (15), the top end of the outer sleeve (15) is slidably sleeved on the tubular valve seat (13), a reset spring (1501) is provided inside the outer sleeve (15), the reset spring (1501) is sleeved on the bottom end of the tubular valve seat (13), and the two ends of the reset spring (1501) are fixedly connected to the tubular valve seat (13) and the outer sleeve (15), respectively.

3. The massageable orthopedic ice compress device according to claim 2, characterized in that: A plurality of evenly distributed Velcro surfaces (26) are fixedly mounted on the bottom of the H-shaped ice pack (1), the positions of the plurality of Velcro surfaces (26) respectively corresponding to the positions of the plurality of round-headed hollow columns (14), and a curved circular plate (27) is adhered to the bottom of each of the Velcro surfaces (26).

4. The massageable orthopedic ice compress device according to claim 3, characterized in that: The H-shaped ice bag (1) is externally sleeved with a water-absorbing cloth sleeve (29); the return water micro pump (3), the water delivery micro pump (4) and the arc-surface circular plate (27) are all located inside the water-absorbing cloth sleeve (29); a plurality of evenly distributed straps (30) are fixedly mounted on the bottom of the water-absorbing cloth sleeve (29); a third clearance hole (2901) corresponding to the position of the mounting hole (101) is provided on the top and bottom of the water-absorbing cloth sleeve (29); and a water-absorbing disc (31) adapted to the third clearance hole (2901) is adhered to the top and bottom of the water-absorbing cloth sleeve (29).

5. The massageable orthopedic ice compress device according to claim 4, characterized in that: A circular ice bag (16) is placed inside the mounting hole (101), and two cloth buckles (17) are fixedly mounted on the top of the circular ice bag (16), and the cloth buckles (17) are fixedly connected to the top of the H-shaped ice bag (1). Two docking hoses (18) are fixedly mounted on the top of the circular ice bag (16), and one end of each of the two docking hoses (18) extends into the interior of the circular ice bag (16) and is fixedly mounted with the same mesh hose (19). A three-way threaded pipe (21) is fixedly mounted at the connection between the two circulation hoses (11) and the annular hose (12). One end of the three-way threaded tube (21) extends to the top of the H-shaped ice bag (1) and is rotatably mounted with a threaded outer tube. One end of the docking hose (18) located at the top of the H-shaped ice bag (1) is rotatably mounted with a docking threaded inner tube (20) that matches the threaded outer tube. A threaded cover (25) that matches the threaded outer tube is fixedly mounted on the top of the H-shaped ice bag (1). The circular ice bag (16) is located between the two water-absorbing discs (31). The cloth buckle (17), the docking hose (18) and the threaded cover (25) are all located inside the water-absorbing cloth cover (29).

6. The massageable orthopedic ice compress device according to claim 5, characterized in that: A plurality of ice storage bags (23) evenly distributed along the circular ice bag (16) are fixedly installed inside the H-shaped ice bag (1), and the tops of the ice storage bags (23) all extend to the top of the H-shaped ice bag (1) and are screwed with screw caps (24), and the screw caps (24) are all located inside the water-absorbing cloth sleeve (29).

7. The massageable orthopedic ice compress device according to claim 6, characterized in that: A metal fiber filler (22) is placed inside the H-shaped ice bag (1); the hard tube (9), the transition hose (10), the circulation hose (11) and the ice storage bag (23) are all located inside the metal fiber filler (22); a circular ice bag (16) corresponding to the position of the circular ice bag (16) is opened at the bottom of the metal fiber filler (22); a first clearance hole (2201) corresponding to the position of the circular ice bag (16) and a plurality of second clearance holes (2202) corresponding to the positions of the round-headed hollow columns (14) are opened at the bottom of the metal fiber filler (22).

8. The massageable orthopedic ice compress device according to claim 1, characterized in that: A plurality of evenly distributed internal support grids (28) are fixedly installed inside the water delivery hose (7), the transition hose (10), the circulation hose (11), and the annular hose (12).