An ice compress
Patent Information
- Application Number
- CN202520886536.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-07
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-05-07
AI Technical Summary
[0003]在骨科治疗中,如扭伤、拉伤、骨折早期,伤后24-72小时内冰敷,通过收缩血管减少出血、渗出,缓解肿胀和疼痛,为后续治疗创造条件;术后恢复时通过冰敷控制手术部位肿胀,降低组织代谢率,减轻炎症反应,同时麻痹神经末梢以缓解疼痛;常见的冰敷方法有是采用冰敷袋,将清水冰袋放入冰敷袋的袋体中,但是冰敷袋多为一个大的袋体,而患者脚腕、膝盖等区域多为不规则弧面,这种冰敷袋不能很好地与弧面区域的患处相匹配,使得患者在佩戴过程中,冰敷袋与弧面区域的患处不够贴合,致使患处的冰敷范围过小,患处的部分区域温度过高,导致冰敷效果偏低,影响对患者的治疗效果
将冰敷袋穿装在安装带上的通孔内,通过安装组件将其固定在安装带上;之后将安装带套装在患者的身体上,让冰敷袋与患处对齐,通过绑带将安装带绑扎在患者的身上,使安装带对冰敷袋施加压力,冰敷袋通过自身的弹性根据贴合区域的形状变形,让冰敷袋能够更好的贴合在患处皮肤上,以提高冰敷效果。
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Figure CN224655509U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of ice compress, and in particular relates to an ice compress belt. Background Technology
[0002] Orthopedics is an important branch of clinical medicine, belonging to the surgical discipline, and specializes in the study of diseases and injuries of bones, joints, muscles, and related soft tissues. Its core areas encompass skeletal structural abnormalities, trauma repair, treatment of degenerative diseases, and reconstruction of motor function. Treatment scope includes fractures, arthritis, scoliosis, bone tumors, and other diseases, involving various pathogenic factors such as congenital malformations, trauma, and infection.
[0003] In orthopedic treatment, such as sprains, strains, and early-stage fractures, ice is applied within 24-72 hours after the injury. This reduces bleeding and exudation by constricting blood vessels, relieving swelling and pain, and creating conditions for subsequent treatment. During postoperative recovery, ice is used to control swelling at the surgical site, reduce tissue metabolism, alleviate inflammation, and numb nerve endings to relieve pain. A common method of ice application is using ice packs, where water is placed inside the ice pack. However, ice packs are often large, and areas like the ankle and knee are often irregularly curved. Such ice packs cannot fit the curved surface of the affected area well, resulting in an insufficient ice application area and excessively high temperatures in some areas, leading to a lower ice application effect and affecting the patient's treatment outcome. Utility Model Content
[0004] The purpose of this invention is to provide an ice pack that can better fit the affected area and improve the ice pack effect.
[0005] The ice pack includes an installation strap with a binding strap connecting its two ends. The installation strap has several through holes, and an ice pack is independently inserted into each through hole. A portion of the ice pack passes through the corresponding through hole and is located inside the installation strap. An installation component is provided between each ice pack and the installation strap for positioning and detachable fixation.
[0006] Furthermore, the mounting assembly includes Velcro, and a positioning ring is fitted onto the bag body inside the mounting strap of the ice pack, with the positioning ring being secured to the mounting strap via Velcro.
[0007] Furthermore, the positioning ring is made of an elastic material.
[0008] Furthermore, the mounting belt is fixed with a barrier cloth to prevent the ice pack from coming into contact with human skin.
[0009] Furthermore, the isolation cloth is made of a breathable fabric material.
[0010] Furthermore, the ice pack is provided with an inner and outer feeding port, and the feeding port is detachably fitted with a bag cap for alignment and sealing.
[0011] Furthermore, the ice pack is made of an elastic material.
[0012] Compared with the prior art, the present invention has the following beneficial effects: Insert the ice pack into the through-hole on the mounting strap and secure it to the mounting strap using the mounting components. Then, put the mounting strap on the patient's body, aligning the ice pack with the affected area. Secure the mounting strap to the patient's body with the strap, applying pressure to the ice pack. The ice pack, through its own elasticity, deforms according to the shape of the area it is in contact with, allowing it to better conform to the skin of the affected area and improve the ice pack's effectiveness. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 for Figure 1 Sectional view at point AA; Figure 3 for Figure 2 Enlarged view of region a in the middle; Figure 4 This is a perspective view of the present utility model; Figure 5 This is an exploded view of the present invention; The components shown in the diagram are as follows: 1. Ice pack; 2. Installation strap; 3. Positioning ring; 4. Bag cap; 5. Isolation cloth; 6. Strap; 7. Velcro; 7.1. Hook side; 7.2. Textured side. Detailed Implementation
[0014] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, but this is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention. Example
[0015] The ice pack described in this embodiment, such as Figure 1 , Figure 4 and Figure 5 As shown, it includes an installation belt 2, which is made of materials such as cotton, linen, nylon, and polypropylene. These materials have the characteristics of wear resistance, high tensile strength, and anti-slip properties. The two ends of the mounting strap 2 are connected by a strap 6, such as Figure 1 , Figure 4 and Figure 5As shown, the bandage 6 is an existing product. The bandage 6 is equipped with a connecting buckle. The tightness of the bandage 6 can be adjusted by the connecting buckle to adapt to different sizes of affected areas. When the installation strap 2 is attached to the affected area, the bandage 6 is connected by the connecting buckle, thereby binding the installation strap 2 to the patient's body. The mounting strip 2 has several through holes, such as... Figure 2 , Figure 4 and Figure 5 As shown, all through holes on mounting strip 2 are evenly distributed along the length of mounting strip 2; Each through-hole contains an ice pack 1, such as Figure 3 As shown, there is a gap between the outer surface of the ice pack 1 and the wall of the through hole, allowing the ice pack 1 to freely enter and exit the through hole; the ice pack 1 is provided with an inner and outer connecting inlet, and a detachable cap 4 for alignment and sealing is fitted onto the inlet, such as... Figure 2 and Figure 5 As shown, water and ice can be added to the ice pack 1 through the filling port. The bag cap 4 is connected to the filling port by threads, thereby sealing the filling port through the bag cap 4. The ice pack 1 is made of natural rubber, synthetic rubber, silicone, polyethylene and other materials. The elastic ice pack 1 can deform according to the shape of the contact area when it is in contact with the body, so that the ice pack 1 can better fit the skin of the affected area and improve the ice pack effect. Each ice pack 1 has a portion of its body passing through the corresponding through hole and located inside the mounting strap 2, such as... Figure 1 , Figure 2 and Figure 3 As shown, the end of the ice pack 1 away from the filling port passes through the through hole and is located inside the mounting strap 2. This part of the bag body is a reserved deformation area. Therefore, when the mounting strap 2 is worn on the patient, by tightening the mounting strap 2, the mounting strap 2 applies pressure to the ice pack 1, causing the ice pack 1 to move towards the human skin. This allows the side of the ice pack 1 facing the human body to adhere tightly to the skin of the affected area. The deformation area of the ice pack 1 deforms according to the shape of the contact area through its own elasticity, allowing the ice pack 1 to better fit the skin of the affected area and improve the ice pack effect. To elaborate further, such as Figure 3 and Figure 5 As shown, in this embodiment, the preferred embodiment includes Velcro 7, and the ice pack 1 is fitted with a positioning ring 3 on the bag body located inside the mounting strap 2, as shown. Figure 2 and Figure 3As shown, the positioning ring 3 is made of natural rubber, synthetic rubber, silicone, polyethylene, etc. These materials are elastic, can bend and deform, and can recover after deformation. Therefore, the positioning ring 3 can bend and deform along with the ice pack 1. When the end of the ice pack 1 away from the filling port passes through the through hole and is located inside the mounting strap 2, the positioning ring 3 will fit against the side wall of the mounting strap 2 facing the human body. The side wall of the mounting strap 2 blocks the positioning ring 3 to position the ice pack 1 and prevent the ice pack 1 from being squeezed and falling out of the through hole during use. The positioning ring 3 and the mounting strap 2 are fixed together by Velcro 7. Figure 3 and Figure 5 As shown, a rough surface 7.2 is fixed on the side wall of the mounting strap 2 facing the human body, and a hook surface 7.1 is fixed on the positioning ring 3. When the positioning ring 3 is attached to the mounting strap 2, the hook surface 7.1 will stick to the rough surface 7.2, thereby fixing the ice pack 1 and installing the ice pack 1 on the mounting strap 2. The ice pack 1 is also installed by Velcro 7, which makes it easy to install and remove the ice pack 1. The whole solution constitutes an installation component for positioning and detachably fixing the ice pack 1 to the mounting strap 2. Of course, the installation component can also use a magnet. The positioning ring 3 is fitted on the bag body of the ice pack 1 located inside the mounting strap 2, and the magnet is fixed on the positioning ring 3. An iron piece is fixed on the mounting strap 2. When the mounting strap 2 is inserted into the through hole, the magnet will attract the iron piece, thereby installing the ice pack 1 on the mounting strap 2.
[0016] The mounting strap 2 is fixed with an isolation cloth 5 to isolate the ice pack 1 from the human skin. The isolation cloth 5 is made of materials such as long-staple cotton, organic cotton, and bamboo fiber. The isolation cloth 5 made of these materials has excellent water absorption and breathability. The isolation cloth 5 isolates the ice pack 1 from the skin to prevent the mounting strap 2 from directly contacting the skin and causing local frostbite. Especially when applying ice for a long time, the isolation cloth 5 acts as a physical barrier to buffer the low temperature stimulation and avoid damage to the skin and subcutaneous tissue. In addition, when there is a wound on the skin, the isolation cloth 5 can protect the wound.
[0017] In actual use, the ice pack 1 is inserted into the through hole on the mounting strap 2 until the positioning ring 3 is flush with the side wall of the mounting strap 2 facing the body. The side wall of the mounting strap 2 blocks the positioning ring 3, thus positioning the ice pack 1. The hook side 7.1 and the rough side 7.2 are adhered, thereby connecting and fixing the positioning ring 3 to the mounting strap 2, thus securing the ice pack 1 to the mounting strap 2. Then, the mounting strap 2 is placed on the patient's body, aligning the ice pack 1 with the affected area. The isolation cloth 5 is placed between the mounting strap 2 and the skin, blocking the ice pack 1 from the skin and preventing damage to the skin and subcutaneous tissue. Finally, the mounting strap 2 is secured with the strap 6. The ice pack 1 is strapped to the patient's body (such as legs, arms, knees, ankles, wrists, etc.). The tightness of the strap 6 is adjusted so that the installation strap 2 applies pressure to the ice pack 1, causing the ice pack 1 to move towards the skin and press the side of the ice pack 1 against the skin of the affected area. The deformable area of the ice pack 1 deforms according to the shape of the contact area through its own elasticity, allowing the ice pack 1 to better fit the skin of the affected area and improve the ice pack effect. If the temperature of the ice pack 1 is insufficient, the water and ice inside the ice pack 1 can be replaced. Alternatively, the ice pack 1 can be disassembled and replaced with a new one. The used ice pack 1 can be placed directly in the freezer for cooling.
Claims
1. An ice pack, comprising an installation strap (2), characterized in that: The two ends of the mounting belt (2) are connected by a strap (6). The mounting belt (2) has several through holes, and an ice pack (1) is independently inserted into each through hole. Part of the body of each ice pack (1) passes through the corresponding through hole and is located inside the mounting belt (2). An installation component is provided between each ice pack (1) and the mounting belt (2) for positioning and detachable fixing.
2. The ice pack according to claim 1, characterized in that: The mounting assembly includes Velcro (7), and the ice pack (1) is fitted with a positioning ring (3) on the bag body inside the mounting strap (2). The positioning ring (3) is fixed to the mounting strap (2) by Velcro (7).
3. The ice pack according to claim 2, characterized in that: The positioning ring (3) is made of an elastic material.
4. The ice pack according to claim 1, characterized in that: The mounting belt (2) is fixed with an isolation cloth (5) for separating the ice pack (1) from human skin.
5. The ice pack according to claim 4, characterized in that: The isolation cloth (5) is made of breathable fabric.
6. The ice pack according to claim 1, characterized in that: The ice pack (1) is provided with an inner and outer feeding port, and the feeding port is detachably fitted with a bag cap (4) for alignment and sealing.
7. The ice pack according to claim 1, characterized in that: The ice pack (1) is made of elastic material.