Improved ice compress device

Through the anti-leak ice-proof structure and communication pipe design, the problem of water condensation and infiltration of the ice-proof device during use is solved, and the waterproofness and melting speed of the ice pack are delayed, which improves the comfort of use and reduces the replacement frequency.

CN223220600UActive Publication Date: 2025-08-15THE FIRST MEDICAL CENT CHINESE PLA GENERAL HOSPITAL
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Patent Information

Application Number
CN202421453601.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-24
Publication Date
2025-08-15
Estimated Expiration
2034-06-24

AI Technical Summary

Technical Problem

During use, existing ice packing devices are prone to water condensation and seep into the inner side of the tie, causing discomfort and infection in the affected area. At the same time, the ice pack melts quickly and needs to be replaced frequently, which increases the cost of use.

Method used

The ice-proof structure and communication pipe design are adopted, including ice bag grooves, sealing layers, flip strips and communication pipes. The ice bag is fixed with magnetic suction buttons. The transparent plastic sealing layer prevents water from infiltration. The communication pipe conducts the cool air between the ice bags and slows down the melting speed.

Benefits of technology

It improves the waterproofness of the ice compressing device, reduces the risk of water condensation beads penetrate into the inner side of the tie belt, extends the use time of the ice pack, reduces the replacement frequency, improves the comfort of use and reduces the cost.

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Abstract

An improved ice compress device comprises a binding belt, an elastic belt and ice compress bags, a plurality of ice compress bags are fixedly installed at the front end of the binding belt, a plurality of anti-leakage ice compress structures are arranged on the inner sides of the plurality of ice compress bags, each anti-leakage ice compress structure comprises an ice bag groove, a sealing layer and an overturning strip, the plurality of ice bag grooves are fixedly formed in the inner sides of the ice compress bags, and the sealing layers are arranged on the inner sides of the ice compress bags. The multiple overturning strips are movably connected to one side of the upper portion of the ice bag groove, the top ends of the multiple overturning strips are movably connected with a buckle cover, and a magnetic suction button is fixedly installed on the inner side of the buckle cover. According to the improved ice compress device, the sealing layer is made of a transparent plastic material, the plastic material has certain waterproof capacity, when the ice bag is melted, ice water can be reserved in the sealing layer and is not prone to leakage, the sealing layer is used for enhancing the waterproof performance of the inner side of the ice bag of the ice compress device, and the situation that hydrogel beads permeate into the inner side of the binding belt is reduced; the comfort level is improved, the infection of water to the affected part is reduced, and the use effect of the improved ice compress device is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of kidney ablation ice compress, in particular to an improved ice compress device. Background Art

[0002] Ice compress is a commonly used treatment and care method. When the temperature drops, the spindle reflex of skeletal muscle will be inhibited, muscle tension will weaken, and pain nerve conduction will slow down or be blocked, producing an effective analgesic effect. Low temperature will strengthen collagen fibers, so that injured muscles and tendons will not continue to expand. The current clinical application of ice compress basically includes two methods. One is to wrap the ice pack with gauze and place it directly on the position that needs ice compress; the other is to wrap the ice pack with gauze first, and then fix it to the part of the patient that needs ice compress with tape or bandage.

[0003] For example, an ice compress device with patent number CN205322600U provides a corresponding cover at the upper opening of the ice bag, which facilitates the fixation of the ice pack placed in the ice bag. The second waterproof layer also includes a cotton layer on the outside to improve the comfort of the ice compress area.

[0004] However, there are still some problems when using the above-mentioned ice compress device. For example, the above-mentioned ice compress device needs to place the ice bag in multiple small pockets opened on the outside of the ice compress device, and then cover the top buckle cover and tie the ice compress device to the position where the patient needs ice compress. During the process of melting the ice bag for ice compress, the water vapor in the air will condense into liquid, so that water will be generated on the outside of the ice compress device. Because patients who have undergone surgery basically need to lie in bed and cannot maintain a standing posture, the ice compress device containing the ice bag needs to be placed horizontally, and the condensed water flows along the curvature of the human body, which not only easily wets the ice compress straps, but also the melted water and moisture condensation droplets easily penetrate into the interior of the ice compress device made of cloth, causing discomfort to the patient and infection of the affected area, thereby affecting the use effect of the ice compress device.

[0005] At the same time, the existing ice compress device requires that a pre-frozen ice bag be placed in a pocket tied around the patient's waist to achieve the ice compress effect. However, the patient's body has a certain body temperature, and the indoor temperature of the ward is also higher than the temperature of the ice in the ice bag. Therefore, the ice bag applied to the patient will melt little by little during use. Usually, an ice bag can only be used for a short period of time before losing its low temperature, and thus losing the ice compress effect. This requires medical staff and patients' families to frequently check and replace new ice bags to ensure the ice compress effect. Therefore, the cost of using the existing ice compress device is relatively high. Summary of the Invention

[0006] The present invention aims to solve the problems existing in the above-mentioned prior art and provide an improved ice compress device to achieve the function and effect of improving the use effect and reducing the use cost.

[0007] The utility model solves its technical problems by adopting the following technical solutions: an improved ice compress device, including a binding belt, an elastic belt and an ice compress bag, the front end of the binding belt is provided with a plurality of ice compress bags fixedly installed, the inner sides of the plurality of ice compress bags are provided with a plurality of leak-proof ice compress structures, the leak-proof ice compress structure includes an ice bag groove, a sealing layer and a flip bar, the plurality of ice bag grooves are fixedly opened on the inner side of the ice compress bag, the plurality of flip bars are movably connected to the upper side of the ice bag groove, the tops of the plurality of flip bars are movably connected to a buckle cover, the inner side of the buckle cover is fixedly installed with a magnetic button, the outer walls of the plurality of ice bag grooves are fixedly connected with a plurality of magnetic buttons, the plurality of magnetic buttons are arranged relative to each other, and the plurality of sealing layers are provided. The sealing layer is fixedly installed on the inner wall of the ice bag slot, and the ice bag slot is used to put in the pre-frozen ice bag. The flip bar is made of nylon cloth. The fabric of the flip bar is relatively soft and can be flipped and moved at will. When the ice bag is put into the ice bag slot, the buckle cover will be buckled on the top of the ice bag slot along the flip bar. There are magnetic buttons on the buckle cover and the outside of the ice bag slot. The magnetic buttons are fixed by their own magnetic attraction. The sealing layer is made of transparent plastic material. The plastic has a certain waterproof ability. When the ice bag melts, the ice water will remain inside the sealing layer and is not easy to leak out. The sealing layer is used to enhance the waterproofness of the inside of the ice bag of the ice compress device, reduce the penetration of water condensation beads into the inside of the binding strap, improve comfort and reduce water infection of the affected area.

[0008] Further improvement, the outer side of the binding belt is provided with a plurality of ice packs for ice compress and heat preservation;

[0009] The ice pack heat preservation structure comprises a water absorption layer, a connecting tube and a gauze layer;

[0010] The plurality of water-absorbing layers are fixedly mounted on the outer wall of the binding strap, and one end of the plurality of connecting tubes is fixedly connected to the interior of the ice bag groove, and the other end of the plurality of connecting tubes is fixedly connected to the interior of the ice bag groove on the other side, and the gauze layer is fixedly mounted on the inner side of the binding strap, and an isolation layer is fixedly mounted on the inner side of the plurality of gauze layers, and the inner side of the isolation layer is fixedly connected to the heat-conducting layer, and the inner side of the heat-conducting layer is connected to the inner side of the ice bag groove. The water-absorbing layer is made of sponge material, and the water-absorbing layer will absorb and adsorb water droplets condensed on the outer side of the ice compress bag, thereby reducing the water droplets from seeping downward into the binding strap. The connecting tube is made of a plastic hose that can be retracted and bent, and the connecting tube connects the plurality of ice bag grooves containing ice bags in turn. When the buckle cover is buckled, each ice bag groove is in a relatively independent environment, and the cool air emitted by the ice bag will flow along the connecting tubes on both sides to the inside of other ice bag grooves, so that the ice bags in the three ice bag grooves can transport cool air to each other, which can slow down the melting speed of the ice bag.

[0011] For further improvement, the outer walls of the binding straps are fixedly connected with extension straps on both sides, one side of the two extension straps is fixedly connected with a Velcro hook surface, and the outer wall of the other side of the extension strap is fixedly connected with a Velcro fleece surface, and the Velcro hook surface and the Velcro fleece surface are movably connected. When wearing the improved ice compress device, the binding strap is wrapped around the patient's waist and tightened, and the extension strap on one side is pulled toward the extension strap on the other side, and is pasted to the outside of the Velcro fleece surface through the Velcro hook surface.

[0012] For further improvement, elastic bands are fixedly connected to the upper and lower sides of the binding belt, and the two elastic bands are arranged parallel to each other. The two ends of the two elastic bands are flush with the two ends of the outer wall of the binding belt. The elastic band is made of natural rubber material with a certain elasticity that can be easily stretched. The elastic band is convenient for stretching the binding belt to adapt to the different waist sizes of patients.

[0013] For further improvement, a plurality of reinforcing ribs are fixedly installed on the inner side of the binding belt, and the plurality of reinforcing ribs are arranged parallel to each other and equidistantly, and the two ends of the plurality of reinforcing ribs are fixedly connected to the two ends of the inner wall of the binding belt, and the reinforcing ribs are made of relatively slender and bendable metal wires, and the reinforcing ribs vertically penetrate the inner side of the binding belt, so that the reinforcing ribs can ensure that the binding belt is in a vertical and easy-to-wear state, and the patient does not need to make too much adjustment when using it.

[0014] For further improvement, the outer walls of the left and right ends of the binding belt are movably connected, and the inner sides of the multiple water-absorbing layers are fixedly connected to the side edges of the outer walls of the ice pack.

[0015] The beneficial effects of the present invention are as follows: the present invention can buckle the cover along the flip strip to fit over the ice bag slot, the buckle cover and the outer side of the ice bag slot are both provided with magnetic buttons, the sealing layer is made of a transparent plastic material, and the plastic has a certain waterproof ability, when the ice bag melts, the ice water will remain inside the sealing layer and will not easily leak out, the sealing layer is utilized to enhance the waterproofness of the inner side of the ice bag of the ice compress device, reduce the penetration of condensation beads into the inner side of the binding strap, improve comfort, reduce water infection of the affected area, and improve the use effect of the improved ice compress device.

[0016] Multiple ice bag slots containing ice bags are connected in sequence through connecting pipes. When the buckle cover is buckled, each ice bag slot is in a relatively independent environment. The cool air emitted by the ice bag will flow to the inside of other ice bag slots along the connecting pipes on both sides. In this way, the ice bags in the three ice bag slots transmit cool air to each other, which can slow down the melting speed of the ice bags. The design of the connecting pipes allows the cool air from the ice bags to be transmitted to each other to slow down the melting speed. There is no need to replace the ice bags too frequently, thereby reducing the use cost of the improved ice compress device. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a three-dimensional schematic diagram of the utility model;

[0018] Figure 2 for Figure 1 A front cross-sectional schematic diagram of ;

[0019] Figure 3 for Figure 1 A schematic cross-sectional view of the top surface;

[0020] Figure 4 for Figure 2 A magnified cross-sectional view of part A;

[0021] Figure 5 for Figure 3 An enlarged cross-sectional view of part B;

[0022] Figure 6 for Figure 3 Enlarged cross-sectional view of part C.

[0023] Explanation of the accompanying drawings: In the figure: 1. Binding belt, 2. Elastic belt, 3. Ice compress bag, 4. Extension belt, 5. Reinforcement ribs, 6. Leak-proof ice compress structure, 61. Ice bag slot, 62. Sealing layer, 63. Flip strip, 64. Buckle cover, 65. Magnetic button, 7. Ice bag ice compress insulation structure, 71. Water absorption layer, 72. Connecting tube, 73. Heat conductive layer, 74. Gauze layer, 75. Isolation layer, 81. Velcro hook surface, 82. Velcro fleece surface. DETAILED DESCRIPTION

[0024] The present invention will be further described below with reference to the accompanying drawings:

[0025] Refer to the attached Figure 1-6: An improved ice compress device, including a binding strap 1, an elastic strap 2 and an ice compress bag 3, a front end of the binding strap 1 is provided with a plurality of ice compress bags 3 fixedly mounted thereon, a plurality of leak-proof ice compress structures 6 are provided on the inner sides of the plurality of ice compress bags 3, the leak-proof ice compress structure 6 includes an ice bag groove 61, a sealing layer 62 and a flip bar 63, a plurality of ice bag grooves 61 are fixedly opened on the inner side of the ice compress bag 3, the ice bag groove 61 is used to put ice bags that have been frozen in advance, a plurality of flip bars 63 are movably connected to the upper side of the ice bag groove 61, the flip bar 63 is made of nylon cloth, the fabric of the flip bar 63 is relatively soft and can be flipped and moved at will, and the top of the plurality of flip bars 63 is movably connected with a buckle cover 64. When the ice bag is placed in the ice bag slot 61, the buckle cover 64 will be buckled onto the top of the ice bag slot 61 along the flip bar 63. There are magnetic buttons 65 on the outside of the buckle cover 64 and the ice bag slot 61. The magnetic buttons 65 are fixed by their own magnetic attraction. The inner side of the buckle cover 64 is fixedly installed with a magnetic button 65. The outer walls of multiple ice bag slots 61 are fixedly connected with multiple magnetic buttons 65. The multiple magnetic buttons 65 are arranged opposite to each other. Multiple sealing layers 62 are fixedly installed on the inner wall of the ice bag slot 61. The sealing layer 62 is made of transparent plastic material. The plastic has a certain waterproof ability. When the ice bag melts, the ice water will remain inside the sealing layer 62 and is not easy to leak out.

[0026] The ice bag slot 61 is used to place pre-frozen ice bags, and the flip bar 63 is made of nylon cloth. The fabric of the flip bar 63 is relatively soft and can be flipped and moved at will. When the ice bag is placed in the ice bag slot 61, the buckle cover 64 will be buckled on the top of the ice bag slot 61 along the flip bar 63. There are magnetic buttons 65 on the outside of the buckle cover 64 and the ice bag slot 61. The magnetic button 65 is fixed by its own magnetic attraction. The sealing layer 62 is made of transparent plastic material, and the plastic has a certain waterproof ability. When the ice bag melts, the ice water will remain inside the sealing layer 62 and is not easy to leak out. The sealing layer 62 is used to enhance the waterproofness of the inner side of the ice bag of the ice compress device, reduce the penetration of water condensation beads into the inner side of the binding belt 1, improve comfort and reduce water infection of the affected area, and improve the use effect of the improved ice compress device.

[0027] The outer side of the binding belt 1 is provided with multiple ice pack ice compress insulation structures 7, which include a water absorption layer 71, a connecting tube 72 and a gauze layer 74. The multiple water absorption layers 71 are fixedly installed on the outer wall of the binding belt 1. The water absorption layer 71 is made of sponge material. The water absorption layer 71 will absorb and adsorb the water droplets condensed on the outer side of the ice pack 3, thereby reducing the water droplets from seeping downward into the binding belt 1. One end of the multiple connecting tubes 72 is fixedly connected to the interior of the ice pack groove 61, and the other end of the multiple connecting tubes 72 is fixedly connected to the interior of the ice pack groove 61 on the other side. The connecting tubes 72 are made of a plastic hose that can be retracted and bent. The connecting tubes 72 connect the multiple ice pack grooves 61 with the ice packs in turn. When the buckle cover 64 is buckled, each ice pack groove 61 is in a relatively independent environment. The cool air emitted by the ice bag will flow along the connecting tubes 72 on both sides to the inside of other ice pack grooves 61. In this way, the ice bags in the three ice pack grooves 61 transport cool air to each other, which can slow down the melting speed of the ice bags.

[0028] The gauze layer 74 is fixedly mounted on the inner side of the binding belt 1. The gauze layer 74 is made of sterilized medical gauze material. The gauze layer 74 is the innermost layer of the binding belt 1 and can contact the patient's body to ensure comfort and hygiene. An isolation layer 75 is fixedly mounted on the inner side of the multiple gauze layers 74. The isolation layer 75 is made of pure cotton fabric. The isolation layer 75 separates the gauze layer 74 that is in direct contact with the human body from the heat-conducting layer 73 that transmits the low temperature of the ice bag. The isolation layer 75 protects the human body from frostbite caused by low temperature. The inner side of the isolation layer 75 is fixedly connected with the heat-conducting layer 73. The heat-conducting layer 73 is made of a synthetic fiber material with a good low-temperature transmission effect. The heat-conducting layer 73 can quickly transfer the low temperature of the ice bag to the affected part of the external patient. The inner side of the heat-conducting layer 73 is connected to the inner side of the ice bag groove 61.

[0029] The water-absorbing layer 71 is made of sponge material, and the water-absorbing layer 71 will absorb and adsorb the water droplets condensed on the outside of the ice pack 3, thereby reducing the water droplets from seeping downward into the inside of the binding belt 1. The connecting pipe 72 is made of a plastic hose that can be retracted and bent. The connecting pipe 72 connects multiple ice bag slots 61 with ice bags in turn. When the buckle cover 64 is buckled, each ice bag slot 61 is in a relatively independent environment. The cool air emitted by the ice bag will flow along the connecting pipes 72 on both sides to the inside of other ice bag slots 61. In this way, the ice bags in the three ice bag slots 61 can transport cool air to each other, which can slow down the melting speed of the ice bag. The gauze layer 74 is made of Sterilized medical gauze material is used, and the gauze layer 74 at the innermost layer of the binding belt 1 can contact the patient's body to ensure comfort and hygiene. The isolation layer 75 is made of pure cotton fabric. The isolation layer 75 separates the gauze layer 74 that directly contacts the human body from the heat-conducting layer 73 that transmits the low temperature of the ice bag. The heat-conducting layer 73 is made of artificial fiber material with good low-temperature transmission effect. The heat-conducting layer 73 can quickly transfer the low temperature of the ice bag to the external patient's affected area. The design of the connecting pipe allows the cool air of the ice bag to be transferred to each other to slow down the melting speed. There is no need to replace the ice bag too frequently, thereby reducing the use cost of the improved ice compress device.

[0030] Extension straps 4 are fixedly connected to the outer walls of the binding strap 1 on both sides, and one side of the two extension straps 4 is fixedly connected to a Velcro hook surface 81, and the outer wall of the other side of the extension strap 4 is fixedly connected to a Velcro fleece surface 82. When wearing the improved ice compress device, the binding strap 1 is wrapped around the patient's waist and tightened, and the extension strap 4 on one side is pulled toward the extension strap 4 on the other side, and the Velcro hook surface 81 is pasted on the outer side of the Velcro fleece surface 82. The Velcro hook surface 81 and the Velcro fleece surface 82 are movably connected. Elastic straps 2 are fixedly connected to the upper and lower sides of the binding strap 1. The elastic strap 2 is made of natural rubber material with a certain elasticity that can be easily stretched. The elastic strap 2 is convenient for stretching the binding strap 1 to adapt to the different waist sizes of patients. The two elastic bands 2 are arranged parallel to each other, and the two ends of the two elastic bands 2 are flush with the two ends of the outer wall of the binding band 1. A plurality of reinforcing ribs 5 are fixedly installed on the inner side of the binding band 1. The reinforcing ribs 5 are made of relatively slender and bendable metal wire. The reinforcing ribs 5 vertically penetrate the inner side of the binding band 1, so that the reinforcing ribs 5 can ensure that the binding band 1 is in a vertical and easy-to-wear state. When the patient uses it, it can be put on without too much adjustment. The multiple reinforcing ribs 5 are arranged parallel to each other and equidistantly. The two ends of the multiple reinforcing ribs 5 are fixedly connected to the two ends of the inner wall of the binding band 1, and the left and right outer walls of the binding band 1 are movably connected. The inner side of the multiple water-absorbing layers 71 is fixedly connected to the outer wall side of the ice compress bag 3.

[0031] Working principle:

[0032] After the improved ice compress device is tied to the waist of a patient who has undergone renal ablation surgery, the improved ice compress device is used to apply ice to the affected area of the patient:

[0033] Improved anti-leakage structure of ice compress device:

[0034] A plurality of ice bag slots 61 are fixedly provided on the inner side of the ice pack 3. The ice bag slots 61 are used to place ice bags that have been frozen in advance. The flip strips 63 are made of nylon cloth. The fabric of the flip strips 63 is relatively soft and can be flipped and moved at will. When the ice bag is placed in the ice bag slot 61, the buckle cover 64 will be buckled on the top of the ice bag slot 61 along the flip strip 63. The buckle cover 64 and the outer side of the ice bag slot 61 are both provided with magnetic buttons 65. The magnetic buttons 65 are fixed by their own magnetic attraction. The sealing layer 62 is made of transparent plastic material. The plastic has a certain waterproof ability. When the ice bag melts, the ice water will remain inside the sealing layer 62 and is not easy to leak out. The sealing layer 62 is used to enhance the waterproofness of the inner side of the ice bag of the ice pack device, reduce the penetration of condensation beads into the inner side of the binding belt 1, improve comfort and reduce water infection to the affected area;

[0035] Improved ice pack device with heat preservation and anti-rapid melting structure:

[0036] The water-absorbing layer 71 is made of sponge material, and the water-absorbing layer 71 absorbs and adsorbs the water droplets condensed on the outside of the ice pack 3, thereby reducing the water droplets from seeping downward into the binding belt 1. The connecting pipe 72 is made of a plastic hose that can be retracted and bent. The connecting pipe 72 sequentially connects multiple ice bag slots 61 containing ice bags. When the buckle cover 64 is buckled, each ice bag slot 61 is in a relatively independent environment. The cool air emitted by the ice bag will flow along the connecting pipes 72 on both sides to the inside of other ice bag slots 61. In this way, the ice bags in the three ice bag slots 61 transmit cool air to each other, which can slow down the melting speed of the ice bags.

[0037] The gauze layer 74 is made of sterilized medical gauze material. The gauze layer 74 is the innermost layer of the binding belt 1 and can contact the patient's body to ensure comfort and hygiene. The isolation layer 75 is made of pure cotton fabric. The isolation layer 75 separates the gauze layer 74 that directly contacts the human body from the heat-conducting layer 73 that transmits the low temperature of the ice bag. The heat-conducting layer 73 is made of a synthetic fiber material with a good low-temperature transmission effect. The heat-conducting layer 73 can quickly transfer the low temperature of the ice bag to the external patient's affected area. The design of the connecting tube allows the cool air of the ice bag to be transferred to each other to slow down the melting speed, and there is no need to replace the ice bag too frequently.

[0038] Improved ice pack device fixed binding structure:

[0039] When wearing the improved ice compress device, wrap the binding strap 1 around the patient's waist and tighten it, pull the extension strap 4 on one side toward the extension strap 4 on the other side, and stick it to the outside of the Velcro fleece surface 82 through the Velcro hook surface 81. The Velcro hook surface 81 and the Velcro fleece surface 82 are movably connected. The elastic band 2 is made of natural rubber material with a certain elasticity that can be easily stretched. The elastic band 2 is convenient for stretching the binding strap 1 to adapt to the different waist sizes of patients. A plurality of reinforcing ribs 5 are fixedly installed on the inner side of the binding strap 1. The reinforcing ribs 5 are made of relatively slender and bendable metal wire. The reinforcing ribs 5 vertically penetrate the inner side of the binding strap 1. In this way, the reinforcing ribs 5 can ensure that the binding strap 1 is in a vertical and easy-to-wear state. When the patient uses it, it can be put on without too much adjustment.

[0040] While the present invention has been shown and described with reference to preferred embodiments, it will be understood by those skilled in the art that various changes in form and details may be made therein within the scope of the claims.

Claims

1. An improved ice compress device, comprising a binding belt (1), an elastic belt (2) and an ice compress bag (3), characterized in that: The front end of the binding belt (1) is provided with a plurality of ice packs (3) fixedly installed thereon, and the inner sides of the plurality of ice packs (3) are provided with a plurality of leak-proof ice pack structures (6), and the leak-proof ice pack structures (6) include an ice pack groove (61), a sealing layer (62) and a flip bar (63), the plurality of ice pack grooves (61) are fixedly opened on the inner side of the ice pack (3), the plurality of flip bars (63) are movably connected to the upper side of the ice pack groove (61), the top ends of the plurality of flip bars (63) are movably connected to a buckle cover (64), the inner side of the buckle cover (64) is fixedly provided with a magnetic button (65), the outer walls of the plurality of ice pack grooves (61) are fixedly provided with a plurality of magnetic buttons (65), and the plurality of magnetic buttons (65) are arranged relative to each other, the plurality of sealing layers (62) are fixedly provided on the inner wall of the ice pack groove (61), and the outer side of the binding belt (1) is provided with a plurality of ice pack ice insulation structures (7); The ice pack heat preservation structure (7) comprises a water absorption layer (71), a connecting tube (72) and a gauze layer (74); The plurality of water-absorbing layers (71) are fixedly mounted on the outer wall of the binding belt (1), one end of the plurality of connecting tubes (72) is fixedly connected to the inside of the ice bag groove (61), and the other end of the plurality of connecting tubes (72) is fixedly connected to the inside of the ice bag groove (61) on the other side. The gauze layer (74) is fixedly mounted on the inner side of the binding belt (1), and an isolation layer (75) is fixedly mounted on the inner side of the plurality of gauze layers (74). The inner side of the isolation layer (75) is fixedly connected to a heat-conducting layer (73), and the inner side of the heat-conducting layer (73) is connected to the inner side of the ice bag groove (61).

2. The improved ice compress device according to claim 1, characterized in that: Extension straps (4) are fixedly connected to both sides of the outer wall of the binding strap (1); one side of the two extension straps (4) is fixedly connected to a Velcro hook surface (81); the other side of the outer wall of the extension strap (4) is fixedly connected to a Velcro fleece surface (82); the Velcro hook surface (81) and the Velcro fleece surface (82) are movably connected.

3. The improved ice compress device according to claim 2, characterized in that: Elastic bands (2) are fixedly connected to the upper and lower sides of the binding band (1), and the two elastic bands (2) are arranged parallel to each other, and the two ends of the two elastic bands (2) are flush with the two ends of the outer wall of the binding band (1).

4. The improved ice compress device according to claim 3, characterized in that: A plurality of reinforcing ribs (5) are fixedly installed on the inner side of the binding belt (1), and the plurality of reinforcing ribs (5) are arranged parallel to each other and equidistantly, and the two ends of the plurality of reinforcing ribs (5) are fixedly connected to the two ends of the inner wall of the binding belt (1).

5. The improved ice compress device according to claim 4, characterized in that: The outer walls of the left and right ends of the binding belt (1) are movably connected, and the inner sides of the multiple water-absorbing layers (71) are fixedly connected to the outer wall side of the ice pack (3).

Citation Information

Patent Citations

  • Ice compression device

    CN205322600U