Scenarized garment structure design with warm-keeping and antibacterial functions and suitable for old people
By combining six-layer composite fabric with an intelligent sensing system, the shortcomings of age-friendly clothing in terms of functionality and scene adaptability have been solved, achieving efficient warmth and antibacterial performance and applicability to multiple scenes, thus improving the wearing experience for the elderly.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- SHANGHAI UNIV OF ENG SCI
- Filing Date
- 2026-01-26
- Publication Date
- 2026-05-08
AI Technical Summary
Existing clothing designed for the elderly has many shortcomings in terms of functional design, scene adaptability, and fabric synergy, resulting in insufficient warmth and antibacterial properties, poor wearing experience, and inability to meet the requirements of seamless switching between multiple scenes.
It adopts a six-layer composite fabric structure, including an antistatic coating layer, a stain-resistant layer, a protective and breathable layer, a dynamic warmth layer, and a skin-friendly antibacterial layer. Combined with an intelligent sensing system and modular design, it achieves multi-functional integration and is suitable for different scenarios.
It achieves an antibacterial rate of ≥99%, improves warmth retention by 30%, features a lightweight design suitable for multiple scenarios, is easy to operate, has an extended service life, and reduces usage costs.
Smart Images

Figure CN121986984A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of clothing structural design technology, specifically to a clothing structural design suitable for elderly scenarios that combines warmth and antibacterial functions. Background Technology
[0002] Elderly individuals, due to decreased thermoregulation, weakened skin resistance, and reduced mobility, have stringent requirements for the functional integration, scenario-appropriateness, and ease of use of clothing. Existing age-friendly clothing suffers from numerous technical challenges. Firstly, the functional design is fragmented. Thermal clothing relies heavily on thick filling materials and lacks antibacterial and protective designs, making it easy for bacteria to grow and cause skin inflammation. Antibacterial clothing focuses on the surface treatment of the fabric, but its warmth and durability are insufficient, and its function is easily diminished with washing. Secondly, the clothing is not adaptable to different scenarios. Home clothing is cumbersome to put on and take off, outdoor clothing lacks safety warnings and windproof and warmth protection, and rehabilitation training clothing lacks targeted support and pressure monitoring functions, which cannot meet the requirements for seamless switching between multiple scenarios. Third, the fabric functions are not coordinated enough. The breathability and warmth of the multi-layered fabrics are unbalanced, which can easily lead to stuffiness and stickiness or heat loss. In addition, the practical functions such as anti-static and stain resistance are lacking, which affects the wearing experience. Therefore, a clothing structure design suitable for the elderly with both warmth and antibacterial functions is proposed. Summary of the Invention
[0003] In view of this, the present invention provides a clothing structure design suitable for elderly scenarios that combines warmth and antibacterial functions, in order to solve or alleviate the technical problems existing in the prior art, and at least provide a beneficial option.
[0004] The technical solution of the present invention is implemented as follows: an elderly-friendly clothing structure design with both warmth and antibacterial functions, including a main body of an upper garment, a main body of trousers, a scenario-based modular component, an intelligent sensing system, and a convenient closure system; The main body of the garment adopts a six-layer composite fabric structure, consisting of an antistatic coating layer, a stain-resistant layer, a protective and breathable layer, a dynamic warmth-retaining layer, and a skin-friendly antibacterial layer from the outside to the inside. The antistatic coating layer is a nano-conductive coating with a surface resistance ≤10^8Ω; the stain-resistant layer is a polytetrafluoroethylene coating with a surface contact angle ≥110°; the protective and breathable layer is a polyester fiber + spandex fabric composite PTFE microporous membrane with a waterproof rating ≥IPX5; the dynamic warmth-retaining layer is a removable graphene-modified down cotton (filling weight 80-150g / ㎡) containing 5wt% graphene fiber; the skin-friendly antibacterial layer is a blended fabric of modified bamboo fiber and silver ion antibacterial fiber (blending ratio 7:3), with 3wt% silver ions added and an antibacterial rate ≥99%. The scenario-based modular components include a hat body, a reflective warning strip, and a rehabilitation module; the hat body is detachably connected to the main body of the garment via a magnetic collar; the reflective warning strip is made of high-brightness reflective fabric with a reflective distance of ≥100m; the rehabilitation module includes elastic restraint straps and memory foam support pads. The intelligent sensing system includes a pressure sensing patch and a Bluetooth module; the pressure sensing patch is built into the rehabilitation module, with a measurement range of 0-50N and an accuracy of ±0.1N; the Bluetooth module is built into the main body of the garment, transmitting pressure data and warning information. The convenient closure system includes a magnetic collar, zipper, and Velcro; the main body of the jacket has a fully openable magnetic zipper on the front, with a 2cm diameter non-slip handle on the zipper pull; the collar, cuffs, and trouser legs have adjustable Velcro.
[0005] More preferably, the dynamic insulation layer is detachably connected to the main body of the garment via a zipper, with a graphene fiber content of 5wt% and an adjustable filling amount of 80-150g / ㎡; the skin-friendly antibacterial layer has a yarn fineness of 40S / 2, a weight of 120g / ㎡, and a moisture permeability of ≥8000g / ㎡・24h.
[0006] Further preferably, the antistatic coating layer is resistant to washing more than 50 times; the anti-fouling layer has waterproof, oil-proof and anti-fouling functions, and stains can be wiped clean; the protective breathable layer has an air permeability of ≥5000g / ㎡・24h.
[0007] More preferably, there are four pressure sensing patches, which are respectively placed on the waist of the shirt and the upper thigh of the pants; the Bluetooth module has a volume of ≤2cm×2cm×0.5cm, a weight of ≤10g, and a battery life of ≥30 days.
[0008] More preferably, the cap body is made of protective and breathable fabric with a built-in removable warm inner lining; the elastic restraint band of the rehabilitation module has an elastic modulus of 10-15MPa, and the support pad has built-in memory foam.
[0009] In a further preferred embodiment, the silver ions in the skin-friendly antibacterial layer are fixed by ion bonding technology, and the antibacterial rate is ≥95% after 50 washes; the fabric layers are connected by ultrasonic composite process, leaving no needle and thread marks.
[0010] The embodiments of the present invention have the following advantages due to the adoption of the above technical solutions: I. The multi-layer composite fabric system of this invention integrates antistatic, anti-fouling, protective, warm, antibacterial, and skin-friendly functions. The antibacterial rate is ≥99%, the warmth retention is improved by 30%, and the magnetic modular design makes the clothing suitable for multiple scenarios such as home, outdoor, and rehabilitation training. The assembly / disassembly time of accessories is ≤30 seconds, eliminating the need to change multiple sets of clothing and reducing the cost of use.
[0011] Second, the lightweight intelligent module of this invention realizes rehabilitation pressure monitoring without the feeling of weight; the module is deeply integrated with the scene function, the operation is simple and adapted to the usage habits of the elderly, the multi-layer fabric is skin-friendly and breathable, the cut is adapted to the physiological characteristics of the elderly, and there is no feeling of restriction; ultrasonic composite, reinforced sewing and other processes improve the overall integrity and durability of the clothing, and extend the service life to more than twice that of ordinary elderly clothing.
[0012] The above overview is for illustrative purposes only and is not intended to be limiting in any way. In addition to the illustrative aspects, embodiments, and features described above, further aspects, embodiments, and features of the invention will become readily apparent from the accompanying drawings and the following detailed description. Attached Figure Description
[0013] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0014] Figure 1 This is a structural diagram of the present invention; Figure 2 This is a cross-sectional structural diagram of the main body of the garment of the present invention.
[0015] Attached label: 1. Main body of the top; 11. Antistatic coating layer; 12. Anti-fouling layer; 13. Protective and breathable layer; 14. Dynamic insulation layer; 15. Skin-friendly antibacterial layer; 2. Main body of the pants; 3. Magnetic collar; 4. Hood; 5. Zipper; 6. Reflective warning strip; 7. Pressure sensor patch; 8. Bluetooth module; 9. Rehabilitation module. Detailed Implementation
[0016] In the following description, only certain exemplary embodiments are briefly described. As those skilled in the art will recognize, the described embodiments can be modified in various ways without departing from the spirit or scope of the invention. Therefore, the drawings and description are considered to be exemplary in nature and not restrictive.
[0017] The embodiments of the present invention will now be described in detail with reference to the accompanying drawings.
[0018] like Figure 1-2 As shown, this embodiment of the invention provides an elderly-friendly clothing structure design that combines warmth and antibacterial functions, including a main body 1 for an upper garment, a main body 2 for trousers, a scenario-based modular component, an intelligent sensing system, and a convenient closure system; The main body of the top is made of a six-layer composite fabric structure, consisting of an antistatic coating layer 11, a stain-resistant layer 12, a protective and breathable layer 13, a dynamic warmth-retaining layer 14, and a skin-friendly antibacterial layer 15, from the outside to the inside. The antistatic coating layer 11 is a nano-conductive coating with a surface resistance ≤10^8Ω; the stain-resistant layer 12 is a polytetrafluoroethylene coating with a surface contact angle ≥110°; the protective and breathable layer 13 is a polyester fiber + spandex fabric composite PTFE microporous membrane with a waterproof rating ≥IPX5; the dynamic warmth-retaining layer 14 is a removable graphene-modified down cotton (filling weight 80-150g / ㎡) containing 5wt% graphene fiber; and the skin-friendly antibacterial layer 15 is a blended fabric of modified bamboo fiber and silver ion antibacterial fiber (blending ratio 7:3), with 3wt% silver ions added and an antibacterial rate ≥99%. The scenario-based modular components include a hat body 4, a reflective warning strip 6, and a rehabilitation module 9; the hat body 4 is detachably connected to the main body of the upper garment 1 via a magnetic collar 3; the reflective warning strip 6 is made of high-brightness reflective fabric with a reflective distance ≥100m; the rehabilitation module 9 includes an elastic restraint belt and a memory foam support pad. The intelligent sensing system includes a pressure sensing patch 7 and a Bluetooth module 8; the pressure sensing patch 7 is built into the rehabilitation module 9, with a measurement range of 0-50N and an accuracy of ±0.1N; the Bluetooth module 8 is built into the main body of the garment 1, transmitting pressure data and warning information. The convenient closure system includes a magnetic collar 3, a zipper 5, and Velcro; the main body of the top 1 is equipped with a front-opening magnetic zipper 5, and the zipper head is equipped with a 2cm diameter non-slip handle; the collar, cuffs, and trouser legs are equipped with adjustable Velcro.
[0019] In one embodiment, the dynamic insulation layer 14 is detachably connected to the main body 1 of the garment via a zipper, with a graphene fiber addition of 5wt% and an adjustable filling amount of 80-150g / ㎡; the skin-friendly antibacterial layer 15 has a yarn fineness of 40S / 2, a weight of 120g / ㎡, and a moisture permeability of ≥8000g / ㎡・24h.
[0020] In one embodiment, the antistatic coating layer 11 is resistant to more than 50 washes; the anti-fouling layer 12 has waterproof, oil-proof and anti-fouling functions, and stains can be wiped clean; the protective breathable layer 13 has an air permeability of ≥5000g / ㎡・24h.
[0021] In one embodiment, there are four pressure-sensing patches 7, which are respectively placed on the waist of the shirt and the upper thigh of the pants; the Bluetooth module 8 has a volume of ≤2cm×2cm×0.5cm, a weight of ≤10g, and a battery life of ≥30 days.
[0022] In one embodiment, the cap body 4 is made of protective and breathable fabric with a built-in removable warm inner lining; the elastic restraint band of the rehabilitation module 9 has an elastic modulus of 10-15MPa, and the support pad has built-in memory foam.
[0023] In one embodiment, the silver ions in the skin-friendly antibacterial layer 15 are fixed by ion bonding technology, and the antibacterial rate is ≥95% after 50 washes; the fabric layers are connected by ultrasonic composite process, leaving no needle and thread marks.
[0024] When in operation, the present invention is as follows: The main body of the top (1) and the main body of the pants (2) are worn. The dynamic insulation layer (14) is selected with an 80g / ㎡ filling amount. The hood (4) is installed via the magnetic collar (3). The dynamic insulation layer (14) is replaced with a 150g / ㎡ dynamic insulation layer. Reflective warning strips (6) are installed on the sleeves. The collar and cuff Velcro are tightened to improve windproof warmth and safety. Rehabilitation modules (9) are installed at the upper thighs of the pants and the waist of the top. Pressure sensor patches (7) adhere to the skin. The device connects to a family terminal via Bluetooth module (8) to activate the pressure monitoring function. Pressure data is fed back in real time during training to avoid overtraining. The top is unzipped at the front (5), slipped over the head, and then the magnetic zipper and Velcro are closed. The pants are opened at the side seams (magnetic snaps and Velcro), slipped over the legs, and then closed. No bending or leg lifting is required throughout the process. Modular components such as the hood (4) and reflective warning strips (6) are removed. The dynamic insulation layer (14) is removed. The main body of the top (1) and the main body of the pants (2) are machine washed, while the dynamic insulation layer is dry-cleaned. After drying, they are reassembled.
[0025] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any person skilled in the art can easily conceive of various variations or substitutions within the technical scope disclosed in the present invention, and these should all be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.
Claims
1. A clothing structure design suitable for elderly scenarios that combines warmth and antibacterial functions, characterized in that: Includes a main body of a top (1), a main body of pants (2), scene-based modular components, an intelligent sensing system, and a convenient closure system; The main body of the garment (1) adopts a six-layer composite fabric structure, which consists of an antistatic coating layer (11), a stain-resistant layer (12), a protective breathable layer (13), a dynamic heat-insulating layer (14), and a skin-friendly antibacterial layer (15) from the outside to the inside. The antistatic coating layer (11) is a nano-conductive coating with a surface resistance ≤10^8Ω. The stain-resistant layer (12) is a polytetrafluoroethylene coating with a surface contact angle ≥110°. The protective breathable layer (13) is a polyester fiber + spandex fabric composite PTFE microporous membrane with a waterproof rating ≥IPX5. The dynamic heat-insulating layer (14) is filled with detachable graphene-modified down cotton (filling amount 80-150g / ㎡) containing 5wt% graphene fiber. The skin-friendly antibacterial layer (15) is a blended fabric of modified bamboo fiber and silver ion antibacterial fiber (blending ratio 7:3), with 3wt% silver ions added and an antibacterial rate ≥99%. The scenario-based modular components include a hat body (4), a reflective warning strip (6), and a rehabilitation module (9); the hat body (4) is detachably connected to the main body of the upper garment (1) through a magnetic collar (3); the reflective warning strip (6) is made of high-brightness reflective fabric with a reflective distance ≥100m; the rehabilitation module (9) includes an elastic restraint belt and a memory foam support pad; The intelligent sensing system includes a pressure sensing patch (7) and a Bluetooth module (8); the pressure sensing patch (7) is built into the rehabilitation module (9), with a measurement range of 0-50N and an accuracy of ±0.1N; the Bluetooth module (8) is built into the main body of the garment (1) to transmit pressure data and warning information; The convenient closure system includes a magnetic collar (3), a zipper (5) and Velcro; the main body of the garment (1) is equipped with a front fully open magnetic zipper (5), and the zipper head is equipped with a 2cm diameter non-slip handle; the collar, cuffs and trouser legs are equipped with adjustable Velcro.
2. The age-appropriate clothing structure design with both warmth and antibacterial functions as described in claim 1, characterized in that: The dynamic insulation layer (14) is detachably connected to the main body of the garment (1) via a zipper. The amount of graphene fiber added is 5wt%, and the filling amount is adjustable from 80 to 150 g / m². The skin-friendly antibacterial layer (15) has a yarn fineness of 40S / 2, a weight of 120 g / m², and a moisture permeability of ≥8000 g / m²・24h.
3. The age-appropriate clothing structure design with both warmth and antibacterial functions as described in claim 1, characterized in that: The antistatic coating layer (11) is resistant to washing more than 50 times; the anti-fouling layer (12) has waterproof, oil-proof and anti-fouling functions, and stains can be wiped clean; the protective breathable layer (13) has an air permeability of ≥5000g / ㎡・24h.
4. The age-appropriate clothing structure design with both warmth and antibacterial functions as described in claim 1, characterized in that: The pressure sensing patch (7) consists of 4 pieces, which are respectively placed on the waist of the shirt and the upper thigh of the pants; the Bluetooth module (8) has a volume of ≤2cm×2cm×0.5cm, a weight of ≤10g, and a battery life of ≥30 days.
5. The age-appropriate clothing structure design with both warmth and antibacterial functions as described in claim 1, characterized in that: The cap body (4) is made of protective and breathable fabric and has a removable warm inner lining; the elastic restraint band of the rehabilitation module (9) has an elastic modulus of 10-15MPa and the support pad has a built-in memory foam.
6. The age-appropriate clothing structure design with both warmth and antibacterial functions as described in claim 1, characterized in that: The silver ions in the skin-friendly antibacterial layer (15) are fixed by ion bonding technology, and the antibacterial rate is ≥95% after 50 washes; the fabric layers are connected by ultrasonic composite process, without needle and thread marks.