Adjustable anti-fall and hip-protective pants

CN224627640UActive Publication Date: 2026-08-14CHONGQING RUISU SPORTS GOODS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-13
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

现有防护装备多采用单一材料或简单结构,存在防护效果不足、透气性差、与人体贴合度低问题

Benefits of technology

[0014]裤结构采用弹性布料配合可调节束带,能适应不同体型且活动自如,裤裆拉链设计方便穿脱。臀部防护组件通过硅胶垫层与乳胶垫的组合,硅胶垫层的乳状硅胶防滑钉增加摩擦防滑,二者受压形变时,乳胶垫的缓冲孔与硅胶垫层的细孔协同作用,分散压力并透气散热,有效减轻跌坐冲击。膝部抗摔气囊的椭圆形橡胶囊固定于膝关节,受撞击时囊体形变,内部腔室气体压缩产生反向作用力,减缓膝盖碰撞,且两个橡胶囊独立工作,针对性保护双膝。整体技术方案通过多部件协同,实现防摔、防护多重有益效果。

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Abstract

This utility model discloses an adjustable anti-fall and hip-protective pant, comprising a pant structure, a hip protection component, and a knee anti-fall airbag. The pant structure consists of a pant body, pant legs, and a drawstring. The pant body and pant legs are sewn together, and the drawstring is sewn to the upper surface of the pant body. The waistband is adjusted with Velcro, and a zipper is located in the crotch for easy on and off. The hip protection component is fixed to the hip area of ​​the pant body and consists of a latex pad and a silicone pad layer. The latex pad has cushioning holes, and the silicone pad layer has fine pores and latex-shaped silicone anti-slip studs at the bottom, effectively cushioning impacts from falls and providing anti-slip and breathability. The knee anti-fall airbag is fixed to the knee joint of the pant body and consists of an oval rubber bladder and an internal chamber. Upon impact, the bladder deforms and the gas compresses, reducing knee injury from impact. This protective pant achieves its anti-fall and protective functions through the coordinated action of multiple components.
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Description

Technical Field

[0001] This utility model relates to the field of protective pants technology, specifically to an adjustable anti-fall and hip-protecting protective pant. Background Technology

[0002] Hip and knee injuries due to slips and falls are frequent in outdoor sports and daily activities, especially in sports such as skiing, ice skating, and roller skating, where the risk of hip and leg injuries increases significantly. Existing protective gear often uses a single material or a simple structure, resulting in insufficient protection, poor breathability, and poor fit to the body. For example, traditional hip-supporting pants often achieve cushioning through thickened fabric or sponge padding, but this struggles to balance impact resistance and wearing comfort. Some products, while using elastic materials, lack scientific structural design, failing to effectively disperse impact force, leading to limited protection and reduced effectiveness due to repeated deformation. Furthermore, existing knee protection technologies primarily focus on side impacts, neglecting the risk of impact to the rear when the knee is bent, and the reliability of the protective components' fixation to the pants remains unresolved, leading to displacement or detachment during strenuous activity and affecting protective effectiveness. Therefore, this paper proposes an adjustable anti-fall hip-supporting pant to address these issues. Utility Model Content

[0003] The purpose of this utility model is to provide a technical solution for adjustable anti-fall and hip-protecting pants to overcome the shortcomings mentioned in the background art. To address the drawbacks and defects described in the background art, this technical solution includes the following:

[0004] The pant structure includes a buttock protection component fixed to the buttocks area with adhesive, and a knee anti-fall airbag fixed to the knee area with adhesive; the pant structure includes a pant body, two pant legs sewn to the left end of the pant body, and a drawstring sewn to the upper surface of the pant body.

[0005] The buttock protection component includes two latex pads fixed to the buttocks of the pants, and a silicone pad layer adhered and fixed to the lower surface of the latex pads, with multiple latex silicone anti-slip studs fixed to the bottom surface of the silicone pad layer.

[0006] The knee-supporting airbag includes two oval rubber bladders fixed at the knee joint bend position of the pants, and a chamber disposed inside the oval rubber bladders.

[0007] As a preferred embodiment of this utility model: the waistband of the trousers is sewn with a Velcro lining, and the inner surface of the drawstring is sewn with a Velcro hook lining.

[0008] As a preferred embodiment of this utility model: both the pant body and the pant legs are made of elastic fabric, and a zipper is provided at the crotch position of the pant body.

[0009] As a preferred embodiment of this utility model: the interior of the latex pad is provided with multiple buffer holes in a rectangular array to allow for ventilation in the buttock area and to provide space for the latex pad to contract.

[0010] As a preferred embodiment of this utility model, the silicone pad layer has multiple fine pores that communicate with the buffer holes inside.

[0011] As a preferred embodiment of this utility model, the emulsion silicone anti-slip studs are all fixed in a rectangular array on the bottom surface of the silicone pad layer.

[0012] As a preferred embodiment of this utility model, the bottom surface of the elliptical rubber bladder is fixedly connected to the knee bend position of the trousers by an adhesive.

[0013] The technical effects and advantages provided by this utility model in the above technical solution are as follows:

[0014] The pants feature an elastic fabric and adjustable straps, adaptable to different body types and allowing for freedom of movement. A crotch zipper makes them easy to put on and take off. The hip protection component combines a silicone pad and a latex pad. The silicone pad's latex-shaped anti-slip studs increase friction and prevent slipping. When both are compressed and deformed, the cushioning holes in the latex pad and the fine pores in the silicone pad work together to distribute pressure and allow for ventilation and heat dissipation, effectively reducing the impact of falls. The knee-impact airbags consist of oval rubber bladders fixed to the knee joint. Upon impact, the bladder deforms, compressing the gas inside to generate a counterforce, mitigating the impact on the knee. Both airbags work independently, providing targeted protection for both knees. The overall technical solution achieves multiple beneficial effects of fall protection and safety through the coordinated use of multiple components. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this utility model. For those skilled in the art, other drawings can be obtained based on these drawings.

[0016] Figure 1 This is a schematic diagram of the overall structure of the protective pants;

[0017] Figure 2 This is a diagram showing the protective pants after disassembly.

[0018] Figure 3 This is a schematic diagram of the protective pants after they have been cut open.

[0019] Figure 4 This is a schematic diagram of a hip protection component;

[0020] Figure 5This is a schematic diagram of a knee impact-resistant airbag.

[0021] Explanation of reference numerals in the attached figures:

[0022] 1. Pants structure; 101. Pants body; 102. Drape; 103. Pants leg; 2. Buttock protection component; 201. Silicone pad; 202. Latex pad; 203. Buffer hole; 204. Latex silicone anti-slip studs; 3. Knee anti-fall airbag; 301. Oval rubber bladder; 302. Chamber. Detailed Implementation

[0023] To provide a clearer explanation and illustration of the technical solution and implementation of this utility model, several preferred specific embodiments for implementing the technical solution of this utility model are described below. The following description is merely exemplary and not intended to limit the scope, application, or use of this disclosure. It should be understood that in all these drawings, the same or similar reference numerals indicate the same or similar parts and features. The various drawings only schematically illustrate the concept and principle of the embodiments of this disclosure and do not necessarily show the specific dimensions and proportions of the various embodiments of this disclosure. The technical solution of this utility model will be clearly and completely described below in conjunction with embodiments of this utility model. Obviously, the described embodiments are only a part of the embodiments of this utility model.

[0024] Example 1: An adjustable anti-fall and hip-protecting protective pant. Its pant structure 1 is made of elastic fabric to form a pant body 101 and two pant legs 103. The pant legs 103 are sewn to the left end of the pant body 101 to form a complete pant shape. An adjustable-length drawstring 102 is sewn onto the upper surface of the pant body 101. A Velcro lining is sewn onto the waistband, and a Velcro hook lining is sewn onto the inside of the drawstring 102. The waistband tightness is adjusted by bonding the hook lining to the loop lining. A zipper is provided at the crotch for easy on and off. The hip protection component 2 is fixed to the hip area of ​​the pant body 101 with adhesive. It includes two rectangular latex pads 202. Each latex pad 202 has multiple buffer holes 203 arranged in a rectangular array inside. A silicone pad layer 201 is adhered to its lower surface. The silicone pad layer 201 has fine holes communicating with the buffer holes 203 inside. Multiple latex-shaped silicone anti-slip studs 204 are fixed in a rectangular array on the bottom surface. The knee anti-fall airbag 3 uses an adhesive to fix two oval rubber bladders 301 to the knee joint of the pants body 101. Each rubber bladder 301 has an independent chamber 302 inside, and the bottom surface of the bladder is reinforced and fixed to the contact surface with the pants body 101 by an adhesive.

[0025] Example 2: Based on Example 1, the material of the trouser structure 1 is improved. The trouser body 101 and trouser legs 103 adopt a double-layer elastic fabric composite structure, with the outer layer being abrasion-resistant nylon and the inner layer being breathable cotton. The latex pad 202 of the buttock protection component 2 adopts a honeycomb-shaped buffer hole 203 arrangement. The diameter of the fine holes in the silicone pad layer 201 is increased to be the same as the width of the buffer holes 203, and the height of the latex silicone anti-slip studs 204 is increased by 20%. The elliptical rubber bladder 301 of the knee anti-fall airbag 3 is changed to a double-chamber 302 structure. The two chambers 302 are connected by an internal channel, and the outer layer is wrapped with a scratch-resistant polyester fabric cover.

[0026] Example 3: Designed for children, the pants body 101 of the trouser structure 1 uses elastic fabric with cartoon prints, the leg length 103 is shortened to a three-quarter length style, and the drawstring 102 is changed to a detachable design, connected to the pants body 101 by snaps. The thickness of the latex pad 202 of the buttock protection component 2 is reduced by 30%, the silicone pad layer 201 is replaced with food-grade silicone material, and the latex silicone anti-slip studs 204 are changed to a rounded hemispherical shape. The size of the elliptical rubber bladder 301 of the knee anti-fall airbag 3 is reduced by 40%, the cavity 302 is filled with a non-Newtonian fluid material, and fluorescent reflective strips are added to the outer layer.

[0027] Example 4: An improved solution suitable for winter scenarios. The pant body 101 and pant legs 103 of the trouser structure 1 are made of fleece-lined elastic fabric, and a detachable warm waist support is added to the waistband. The hip protection component 2 has a wool felt insulation layer added to the outside of the latex pad 202, and activated carbon particles are embedded in the fine pores of the silicone pad layer 201. The knee anti-fall airbag 3 has an oval rubber bladder 301 wrapped with waterproof PU-coated fabric, and the chamber 302 is connected to a detachable hand warmer through an air nozzle. The heat generated by the hand warmer is conducted to the knee joint through the rubber bladder 301.

[0028] Based on the above-described preferred technical solution, the workflow of this technical solution is explained as follows: The trouser structure 1 serves as the basic load-bearing component. The trouser body 101 and trouser legs 103 are sewn together to form a complete trouser shape. The elastic fabric used in the trousers can deform appropriately with the body's movements during wear, ensuring freedom of movement while maintaining the relative position of the protective components. The drawstring 102 on the upper surface of the trouser body 101 is bonded to the Velcro surface at the waistband, allowing for adjustable waist tightness to accommodate different body types. The crotch zipper design facilitates quick on and off. The buttock protection component 2 is fixed to the buttock area of ​​the trouser body 101 with adhesive. When a person falls, the silicone pad 201 first contacts the ground. The latex silicone anti-slip studs 204 on its bottom surface increase friction with the ground to prevent slippage. Simultaneously, the silicone pad 201 undergoes elastic deformation under pressure to absorb some of the impact force. The latex pad 202 further compresses and cushions the impact. The rectangular array of buffer holes 203 contracts under pressure, dispersing pressure and reducing material rigidity through hole wall deformation. The fine pores inside the silicone pad layer 201, which are connected to the buffer holes 203, form an air circulation channel, promoting the discharge of heat and moisture during the deformation of the latex pad 202. The elliptical rubber bladder 301 of the knee anti-fall airbag 3 is fixed to the knee joint of the pants body 101. When the knee is impacted, the outer part of the rubber bladder 301 first absorbs the impact, and its elliptical structure disperses the impact force to the entire bladder. The internal chamber 302 generates a reverse force through gas compression, reducing the direct collision between the knee and the ground. The adhesive on the bottom surface of the pants body 101 ensures that the rubber bladder 301 will not shift under force. At the same time, the adhesive layer itself has micro-elasticity, which can help absorb some of the vibration energy. The two rubber bladders 301 correspond to the left and right knee joints respectively, and work independently without interfering with each other.

[0029] The foregoing description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. An adjustable fall protection hip saver guard pant comprising a pant structure (1), characterized in that: The buttocks of the trouser structure (1) are fixed with a buttock protection component (2) by adhesive, and the knees of the trouser structure (1) are fixed with a knee anti-fall airbag (3) by adhesive. The trouser structure (1) includes a trouser body (101), two trouser legs (103) sewn to the left end of the trouser body (101), and a drawstring (102) sewn to the upper surface of the trouser body (101). The buttock protection component (2) includes two latex pads (202) fixed to the buttocks of the pants (101), and a silicone pad layer (201) adhered and fixed to the lower surface of the latex pads (202), and a plurality of latex silicone anti-slip studs (204) are fixed to the bottom surface of the silicone pad layer (201). The knee anti-fall airbag (3) includes two oval rubber bladders (301) fixed at the knee joint bend position of the pants (101), and a chamber (302) disposed inside the oval rubber bladders (301).

2. The adjustable, fall-preventing, hip-protecting pant protector according to claim 1, characterized in that: The waistband of the trousers (101) is sewn with a Velcro lining, and the inner surface of the drawstring (102) is sewn with a Velcro hook lining.

3. The adjustable, fall-preventing, hip-protecting pant protector according to claim 1, characterized in that: The trouser body (101) and trouser legs (103) are both made of elastic fabric, and the crotch of the trouser body (101) is provided with a zipper.

4. The adjustable, fall-preventing, hip-protecting pant protector according to claim 1, characterized in that: The interior of each latex pad (202) has multiple buffer holes (203) arranged in a rectangular array to allow for ventilation in the buttock area and to provide space for the latex pad (202) to contract.

5. The adjustable anti-fall and hip-protective pants according to claim 1, characterized in that: The silicone pad layer (201) has multiple fine holes that communicate with the buffer hole (203) inside.

6. The adjustable, fall-preventing, hip-protecting pant protector according to claim 1, characterized in that: The emulsion silicone anti-slip studs (204) are all fixed in a rectangular array on the bottom surface of the silicone pad layer (201).

7. The adjustable, fall-preventing, hip-protecting pant protector according to claim 1, characterized in that: The bottom surface of the elliptical rubber bladder (301) is fixedly connected to the knee bend position of the trouser body (101) by an adhesive.