WO2020052681A1 - 一种护体服饰及三维量体裁衣方法 - Google Patents

一种护体服饰及三维量体裁衣方法 Download PDF

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Publication number
WO2020052681A1
WO2020052681A1 PCT/CN2019/105903 CN2019105903W WO2020052681A1 WO 2020052681 A1 WO2020052681 A1 WO 2020052681A1 CN 2019105903 W CN2019105903 W CN 2019105903W WO 2020052681 A1 WO2020052681 A1 WO 2020052681A1
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WO
WIPO (PCT)
Prior art keywords
clothing
human body
ruler
clothing body
support
Prior art date
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PCT/CN2019/105903
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English (en)
French (fr)
Inventor
谢庆云
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秦皇岛金猿数码科技有限公司
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Publication of WO2020052681A1 publication Critical patent/WO2020052681A1/zh

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    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D13/00Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D13/00Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches
    • A41D13/001Garments protecting against insects
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D13/00Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches
    • A41D13/002Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches with controlled internal environment
    • A41D13/005Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches with controlled internal environment with controlled temperature
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D13/00Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches
    • A41D13/002Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches with controlled internal environment
    • A41D13/005Professional, industrial or sporting protective garments, e.g. surgeons' gowns or garments protecting against blows or punches with controlled internal environment with controlled temperature
    • A41D13/0053Cooled garments
    • A41D13/0056Cooled garments using evaporative effect
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D27/00Details of garments or of their making
    • A41D27/02Linings
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D27/00Details of garments or of their making
    • A41D27/08Trimmings; Ornaments
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D27/00Details of garments or of their making
    • A41D27/10Sleeves; Armholes
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D27/00Details of garments or of their making
    • A41D27/20Pockets; Making or setting-in pockets
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D27/00Details of garments or of their making
    • A41D27/28Means for ventilation
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D2400/00Functions or special features of garments
    • A41D2400/32Therapeutic use
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D2400/00Functions or special features of garments
    • A41D2400/32Therapeutic use
    • A41D2400/322Massage

Definitions

  • the embodiments of the present application relate to the field of apparel technology, and in particular, to a body care garment and a three-dimensional tailoring method.
  • mosquitoes In hot weather, there are many mosquitoes. People are outdoors to cool, visit, graze, explore, orchards and field operations. They are often threatened by mosquitoes. They are bitten and itchy and painful. They not only suck blood, but also spread diseases. Although there are many types of existing clothing, cold protection and warmth, as far as mosquito prevention is concerned, wearing thin mosquitoes can bite on the fabric, and wearing thick mosquitoes cannot bite, but it is uncomfortably hot.
  • Patent application with publication number CN103082515A An anti-mosquito garment, which discloses that a lining is arranged in the gap of the fabric of the garment, so as to keep a distance between the fabric and the skin, and play the role of anti-mosquito.
  • the structure of the lining in the above-mentioned clothing is simple, and the distance of the mosquito-proof is unstable, and the mosquito-proof clothing has a single function and is not suitable for various weathers such as summer or winter.
  • the embodiments of the present application provide a body care clothing and a three-dimensional tailoring method to solve the problem of single function of ordinary clothes in the prior art.
  • a body care garment including:
  • a clothing body comprising a plurality of clothing pieces connected to cover the periphery of a human body.
  • An umbrella is provided between the clothing body and the human body to support the clothing pieces to the outside of the human body. It is fixed on the inner surface of the clothing body, and a gap for mosquito insulation and ventilation is formed between the clothing body and the human body;
  • a sunscreen component comprising a plurality of sunscreens arranged on the outer surface of a clothing body in a high-low position in accordance with the position of a human body, the sunscreens are detachably connected to the clothing body, and an adjacent external sunscreen is formed for the outside world.
  • the air enters the ventilation space in the clothing body;
  • An anti-mosquito kit comprising gloves, a foot cover and a head cover which are sequentially connected to the clothing body, and a seam opening for the head, hands and feet of the human body is provided on the clothing body in order.
  • a ring-shaped raised elastic protrusion is integrally formed at the joint of the glove, the foot cover and the head cover and the clothing body, and the corresponding gloves, foot cover and head cover are detachably connected respectively. Isolate mosquitoes at the seam openings;
  • the body protection component comprises a heat insulation flap and a temperature adjustment flap
  • the heat insulation flap is detachably connected to the inner side of the clothing body, and is used to provide auxiliary heat to the body's position to be insulated.
  • the warm film is detachably connected to the inner surface of the clothing body, and is used to provide auxiliary temperature for the position of the human body to be adjusted.
  • the clothing body is provided with a seam portion at a position corresponding to the live film.
  • a closable movable port is used for loading and unloading the flap inside the clothing body from the outside of the clothing body.
  • the heat-insulating live piece includes a plurality of clothing pieces arranged at the human body to be kept in a warm position, and a heating physiotherapy member for heat insulation is detachably connected to a side of the heat-insulating live piece close to the human body.
  • the clothing body includes a garment cover and a pants cover
  • the pants cover is a pants-like structure made of an elastic waterproof material
  • the inside of the pants cover is filled with physiotherapy pieces for thermal insulation, and is located at the edge of the mouth of the pants cover
  • a waterproof elastic opening is provided for the physiotherapy part to be placed in the pants cover, wherein the upper part of the pants cover covers the kidney region of the human body.
  • the temperature-adjusting flap is an internally sealed bag-like structure, and an air guiding port is provided on the upper side of the temperature-regulating flap for external high-speed air sources to enter the temperature-regulating flap, and the temperature-regulating flap is far from the human body.
  • the side of the body surface is an air-conducting fabric, and the side of the temperature-adjusting flap close to the human body is a breathable fabric.
  • a flow gap is formed between the air-conducting fabric and the breathable fabric for gas flow, and in a vertical direction, the flow gap
  • the upper part forms a flow guide area
  • the lower part of the flow gap forms a speed reduction area.
  • a plurality of flow guide bars inclined at different angles are arranged side by side in the flow guide area, and two adjacent flow guide bars are formed between them.
  • air-conducting channels There are air-conducting channels, and a plurality of air-conducting channels are used to introduce the gas passing through the diversion area into the deceleration area at different angles.
  • a partial pressure body is distributed in the deceleration area, and an inclined direction is formed on the partial pressure body.
  • the air guiding channel and the reflective surface of the breathable fabric are used to disperse the gas flowing to the speed reduction zone and reflect on the breathable fabric.
  • the partial pressure body is provided with multiple rows, and the upper and lower partial pressure bodies are separated from each other.
  • the pressure bodies are arranged at intervals, and the upper pressure divider body blocks reflection Part of the airflow, and the gap between the adjacent partial pressure bodies is used for the partial airflow to continue to be directed downward, and the reflection is blocked by the partial pressure bodies in the lower row, wherein the breathable fabric includes a plurality of air-permeable sheets with dense air vents
  • the lamination is sequentially formed, and the diameter of the ventilation holes on the air-permeable sheet increases in sequence from the inner layer of the thermo-regulating sheet to the outer layer of the thermo-regulating sheet.
  • the support umbrella includes an umbrella surface and a support handle
  • the umbrella surface is fixedly connected to the inner side surface of the clothing body, and is mainly made of a mesh cloth or a support having a strong force
  • the support handle is fixed to the umbrella
  • the inner surface of the surface is used to support the human body, wherein the umbrellas are arranged on the inner surface of the clothing body according to hyperhidrosis or meridian distribution, and the handle is a granular single body or a granular string structure, And the particles are gold or jade or bamboo or pearl particles.
  • the clothing body and the mosquito-repellent kit can be detachably connected with a plurality of elastic cords for supporting the ring body between the clothing body and the human body.
  • the elastic cords include a transverse belt and a longitudinal belt that are arranged alternately.
  • a positioning component is fixedly connected to the protruding position of the human body.
  • the positioning component includes a shoulder pad, a chest brace, a waist brace, and a foot brace.
  • the clothing body is provided with a support frame for forming a variable volume gap between the clothing body and the human body, and the support frame includes telescopic rods respectively disposed on both sides of the human body and between two telescopic rods.
  • One end of the telescopic rod is a fixed end fixed to the inner surface of the clothing body, and the other end is a telescopic end for adjusting the support distance.
  • the elastic ring has an arc shape, and the two ends of the elastic ring are respectively Hinged on the telescopic ends of the telescopic rods on both sides of the human body, it is used to adjust the support angle.
  • the clothing body is provided with a ventilation opening for air exchange between the inside and outside of the clothing body at the sweaty position of the human body, and a mosquito-proof layer covering the ventilation opening is sewn on the inside surface of the clothing body,
  • a support member for supporting the mosquito layer and the clothing body is fixedly connected between the mosquito layer and the clothing body, and a diffusion channel for ventilation is formed between the mosquito layer and the clothing body under the support of the support member, the diffusion channel Openings for air flow to the human body are formed on both side ends of the.
  • a three-dimensional tailoring method which is applied to a body care garment described in the embodiments of the present application, includes the following steps:
  • the user first encodes the multiple line length data to be measured by the serial number, and after the serial number is completed, all the line length data is measured one by one according to the number, among which the line length data includes the length of the human body and the length of the pants ;
  • step S3 After measuring the two-dimensional data of the line length one by one, use the molding ruler to measure the two-dimensional data of all girths, and copy all the two-dimensional figures of the girth after measurement through the camera, and then Using the measurement reference point in step S2 as the origin, determine the height values of each pair of circumferences on the Y-axis ruler to form three-dimensional data;
  • the user transmits the two-dimensional data and three-dimensional data to the clothing store.
  • the clothing store organizes it and restores it to the multi-dimensional database to be used as clothing. Or the basis for purchasing clothes;
  • the clothing store establishes clothing cutting standards according to the data actually measured by the user and the data set in the multidimensional database.
  • the shaping ruler is a strip ruler having plastic deformation, and a plurality of detachable joints are provided on the shaping ruler for detaching and assembling the shaping ruler.
  • a scale ruler for determining the scaling ratio is fixedly connected to one of the sections.
  • step S3 after the user uses the shaping ruler to measure the body, the shaping ruler is split along the joint, and the shaping ruler is assembled again after leaving the human body. , And the reassembled shaping ruler makes a two-dimensional copy of the reassembled shaping ruler through the camera, and transmits the two-dimensional figure to the clothes shop. When the clothes shop cuts clothes, the two-dimensional figure is scaled. The length of the ruler and the actual scale value on the ruler are scaled, and based on the scale, the length of the shaping rule is restored to determine the two-dimensional data of the user's actual girth.
  • the embodiments of the present application have the following advantages: by improving traditional clothing, an umbrella is provided between the clothing body and the human body, and the clothing body is used to support the clothing body away from the outside of the human body, so that the clothing body and the human body are formed larger than mosquitoes.
  • the gap inserted by the mouthpiece is convenient for the isolation of mosquitoes.
  • the clothing body can be freely converted into sun protection clothing or mosquito protection clothing or thermal insulation clothing. Therefore, the clothing body integrates multiple functions such as sun protection, mosquito prevention, and temperature regulation, which is convenient for the clothing body to be worn in a variety of different climates and has applicability.
  • FIG. 1 is a schematic diagram of an overall structure of a body care clothing provided by an embodiment of the present application
  • FIG. 2 is a schematic structural diagram of an anti-mosquito kit for body care clothing provided by an embodiment of the present application
  • FIG. 3 is a schematic structural diagram of a sun protection component of a body care clothing provided by an embodiment of the present application.
  • FIG. 4 is a schematic structural diagram of a glove for protecting body clothing provided by an embodiment of the present application.
  • FIG. 5 is a schematic structural diagram of a body protection component of a body care clothing according to an embodiment of the present application.
  • FIG. 6 is a schematic structural diagram of a temperature-adjusting flap for a body-care garment according to an embodiment of the present application.
  • FIG. 7 is a schematic structural diagram of an elastic cord of a body care garment according to an embodiment of the present application.
  • FIG. 8 is a schematic structural diagram of a positioning component of a body care garment according to an embodiment of the present application.
  • FIG. 9 is a schematic structural diagram of a supporter for a body care clothing according to an embodiment of the present application.
  • FIG. 10 is a schematic structural diagram of a clothing piece of a body care garment according to an embodiment of the present application.
  • Thermal insulation Live film 42, temperature-adjustable live film; 421, air-permeable fabric; 422, breathable fabric; 423, flow-guiding area; 4321, flow-guiding strip; 4322, air-flow channel; 424, speed-reduction area; 4241, partial pressure body ; 5, elastic rope; 6, positioning components; 8, support; 81, telescopic rod; 82, elastic ring; 9, support.
  • the embodiment of the present application provides a body care clothing, which includes a clothing body 1, a sun protection component 2, a mosquito prevention kit 3, and a body protection component 4.
  • a body care clothing which includes a clothing body 1, a sun protection component 2, a mosquito prevention kit 3, and a body protection component 4.
  • the specific settings are as follows:
  • the clothing body 1 may be an outer cover or a lining or a combination of the cover and the lining, and includes a plurality of clothing pieces connected to cover the periphery of the human body.
  • the clothing body 1 may also be composed of A piece of clothing is made.
  • An umbrella support 11 is provided between the clothing body 1 and the human body for supporting the clothing piece to the outside of the human body.
  • the umbrella support 11 is fixed on the inner surface of the clothing body 1 and a mosquito barrier is formed between the clothing body 1 and the human body. Ventilation gap.
  • the umbrella support 11 includes an umbrella surface 111 and a support handle 112.
  • the umbrella surface 111 is fixed on the inner surface of the clothing body 1.
  • the support handle 112 is fixed on the inner surface of the umbrella surface 111. It is supported on the human body.
  • the umbrella surface 111 is mainly made of a mesh or a support with a strong force, and the area of the umbrella surface 111 is larger than the support handle 112, so that the umbrella support 11 forms a mushroom-shaped structure as a whole.
  • the umbrella surface 111 is very effective for supporting a soft outer cover. In many cases, the umbrella surface 111 can be replaced by a cover of ordinary hardness.
  • the clothing body 1 is directly supported by the continuous or intermittent support 112, and
  • the support handle 112 may be made of a breathable material, a sponge, a fiber-cotton ball, a rod-shaped body, a soft cloth, a sandwich mesh, or a honeycomb hard net according to specific requirements. Cutting, foaming, sewing, weaving Ultrasonic, microwave bonding and other processes, cutting or sewing to form a close-fitting component with a certain degree of softness, for example, for the needs of coolness or mosquito prevention, and considering the reduction of wind resistance, the support handle 112 is mostly made of ventilated net tubes or hard nets.
  • the support handle 112 can be arranged with a plastic strip to form a 5-10cm screen; for the requirements between the clothing body 1 and the human body The distance is large or the distance can be adjusted.
  • the support handle 112 can be an inflatable column or a pressure regulating airbag, which is also easy to replace.
  • the clothing body 1 can be made of anti-mosquito material, and the gap between the clothing body 1 and the human body is greater than 7-8 mm under the action of the umbrella 11, which ensures that the clothing body 1 and The gap between the human body is larger than the length of the mosquito mouthpart inserted into the clothing body 1 to effectively isolate the mosquito bites.
  • a plurality of umbrellas 11 are distributed between the clothing body 1 and the human body to ensure that the umbrella body 11 is provided on the clothing body 1. After wearing, the overall convexity range is kept within 3-5 mm.
  • the sun protection module 2 includes a plurality of sun protection sheets 21 arranged on the outer surface of the clothing body 1 according to the position of the human body.
  • the sun protection sheet 21 is made of sun protection cloth, and can be umbrella-shaped or cloak-shaped. Or a louver-like pendant structure, the sunscreen 21 is detachably connected to the clothing body 1, and a ventilation gap is formed between adjacent sunscreens 21 for outside air to enter the clothing body 1.
  • a sunscreen 21 is added on the outer surface of the garment so that the clothing body 1 forms a sun protection clothing, and the ventilation gap between the sunscreens 21 can ensure that the cool air flow from the outside enters the clothing body 1 along the ventilation gap to achieve the purpose of cooling, so that
  • the clothing body 1 may be suitable for hot weather, wherein the cool airflow outside may be a natural cool wind or an unnatural cool wind generated by an electric control device.
  • the anti-mosquito kit 3 includes gloves 31, foot covers 32, and head covers 33 connected to the clothing body 1 in order, and the clothing body 1 is provided with seam openings for human heads, hands, and feet to extend in order.
  • the corresponding gloves 31, foot covers 32, and head covers 33 can be detachably connected to each other.
  • the gloves 31, foot covers 32, and head covers 33 are made of mosquito-resistant cloth. In actual wear, the gloves 31 and foot covers 32 are properly matched. And the use of the hood 33, to comprehensively protect the human body to prevent mosquitoes from biting the human body.
  • a ring-shaped raised elastic protrusion 34 (refer to FIG. 4) is also integrally formed or separately formed at the joints of the gloves 31, the foot cover 32 and the head cover 33 with the clothing body 1.
  • the raised elastic protrusion 34 is used to make The elastic protrusions 34 are propped outward on the inner side of the seam opening of the clothing body 1 so as to close the seam opening of the clothing body 1 and prevent mosquitoes from entering the clothing body 1 along the seam opening of the clothing body 1 to effectively isolate the mosquitoes. .
  • the body protection assembly 4 includes a heat-insulating flap 41 and a temperature-adjusting flap 42.
  • the heat-insulating flap 41 is detachably connected to the inner surface of the clothing body 1, wherein the heat-insulating flap 41 includes a plurality of heat-shielding flaps provided on the human body.
  • the clothing pieces to be insulated such as waist, knees, uterus, and shoulders that are susceptible to rheumatism in the human body
  • the heat-insulating flap 31 can be made of thick cotton or wool heat-insulating cloth to form heat insulation for the human body;
  • the thermal insulation film 41 is a natural clothing piece, and a heating physiotherapy member for thermal insulation is detachably connected to the side of the thermal insulation film 41 close to the human body, which is used to provide lower auxiliary heat to the body's position to be insulated, preferably
  • the heated physiotherapy parts include preheated wood, stone or wax, medicated iron, hydrotherapy irons, electric blankets or electromagnetic and other existing physiotherapy components.
  • the temperature-adjusting flap 42 can also be detachably connected to the inner side of the clothing body 1 to provide a lower auxiliary temperature for the body's position to be tempered.
  • the temperature-adjusting flap 42 is a sealed bag-shaped structure inside, The upper side of the sheet 42 is provided with an air guiding port for high-speed air from outside to enter the temperature-adjusting flap 42. By injecting a warmer or cooler airflow into the temperature-adjusting flap 42, the temperature-adjusting flap 42 is manually adjusted.
  • the temperature between the clothing body 1 and the human body allows the clothing body 1 to be better adapted to hot or cold weather after being worn.
  • a seam portion is formed on the clothing body 1 at a position corresponding to the live film, and a closable movable opening is provided at the seam portion for loading and unloading the live film inside the clothing body 1 from the outside of the clothing body 1, and can be based on actual conditions.
  • the number of temperature-adjustable flaps 42 and heat-preservation flaps 41 are reasonably increased, and a plurality of heat-preservation flaps 41 can be respectively made into shapes corresponding to body positions, and a beautification pattern indicating the position is provided on the heat-preservation flaps 41.
  • a body care clothing is provided.
  • an umbrella support 11 is provided between the clothing body and the human body, and the clothing body 1 is supported away from the human body by the umbrella support 11 to make the clothing body 1
  • a gap is formed between the human body 1 and the mosquito mouthpiece, which is convenient for the isolation of mosquitoes.
  • the clothing body 1 can Free conversion to sun protection clothing or mosquito protection clothing or thermal insulation clothing, etc., so that the clothing body 1 integrates multiple functions such as sun protection, mosquito protection, temperature regulation, etc., which is convenient for the clothing body 1 to be worn in a variety of different climates. Sex.
  • all the detachable connections mentioned in the embodiments of the present application include, but are not limited to, pockets or cassettes 23 with optional opening directions and positioning positions, plastic or electrode-type buttons, snaps, Velcro, laces, hooks, etc.
  • Existing detachable structure include, but are not limited to, pockets or cassettes 23 with optional opening directions and positioning positions, plastic or electrode-type buttons, snaps, Velcro, laces, hooks, etc.
  • the clothing body 1 includes a clothing cover 12 and a trouser cover 13.
  • the clothing cover 12 and the trouser cover 13 are a specific embodiment of the heat insulation flap 41, and the clothing cover 12 is elastic.
  • Pants cover 13 is a trouser-like structure made of elastic waterproof material.
  • the inside of the cover 12 and the cover 13 are filled with physiotherapy parts for thermal insulation, and the edges of the cover of the cover 13
  • a waterproof elastic opening 131 is provided for the physiotherapy part to be placed in the trouser cover 13.
  • the upper part of the trouser cover 13 covers the kidney area of the human body. After the trouser cover 13 is worn, at least the human kidney area can be covered.
  • the human body's kidneys form insulation, which is mainly suitable for the elderly.
  • the temperature-adjusting flap 42 is a bag-shaped structure with an internal seal, and an upper side of the temperature-adjusting flap 42 is provided with a high-speed external air source to enter the temperature-adjusting flap 42.
  • the side of the temperature-adjusting flap 42 away from the human body surface is an air-conducting fabric 421, and the side of the temperature-adjusting flap 42 near the human body surface is a breathable fabric 422, so that between the air-conducting fabric 421 and the breathable fabric 422 A flow gap for gas flow is formed, and in the vertical direction, the upper part of the flow gap forms a diversion region 423, and the lower part of the flow gap forms a deceleration region 424.
  • a plurality of different angles are arranged side by side in the diversion region 423.
  • An air guide channel 4232 is formed between two adjacent guide bars 4231, and a plurality of air guide channels 4232 are used to introduce the gas passing through the guide area 423 into the deceleration area at different angles.
  • a partial pressure body 4241 is distributed in the speed reduction area 424.
  • the external shape of the partial pressure body 4241 is a reflecting surface or a protruding shape or a concave depression.
  • the concave surface on the pressure body 4241 forms an inclined direction to the air guide channel 4232 and the breathable surface
  • the reflecting surface of 422 is used to disperse the gas flowing into the speed reduction zone 424 and reflect on the breathable fabric 422.
  • the partial pressure body 4241 is provided with multiple rows, and the upper and lower partial pressure bodies 4241 and 4141 Arranged at intervals, the partial pressure body 4241 for the upper row blocks a part of the airflow from being reflected, and the gap between adjacent partial pressure bodies 4241 is used for the partial airflow to continue to be directed downward, and the reflection is blocked by the partial pressure part 4241 from the lower row.
  • a speed reduction mechanism is formed by the guide bar 4231 and the pressure dividing body 4241, and the airflow introduced into the temperature regulating flap 42 is evenly guided on the human body after the speed is reduced.
  • the breathable fabric 422 includes multiple layers of air-permeable sheets with dense air-permeable holes laminated in sequence, and the diameter of the air-holes on the air-permeable sheet increases from the inner layer of the temperature-adjusting flap 42 to the outer layer of the temperature-adjusting flap 42 in order.
  • the guide bar 4231 and the partial pressure body 4241 can be detachably connected to the air guide fabric 421, and the orientation of the partial pressure body 4241 can be re-plugged and changed to reflect the air flow and the direction of the guide.
  • the guide bar 4231 can According to the design requirements, change the shape, such as changing the length and orientation, and strive to achieve the best results.
  • the angle between the reflection surface and the air flow can be almost vertical, only for blocking and guiding.
  • the above-mentioned speed reduction principle is: a fan is used to simulate the airflow on the air guide port of the temperature regulating vane 42, and the airflow is injected into the temperature adjusting vane 42, which introduces the hot and cold high-speed airflow input from the air guide port into the air guide with a guide bar 4231
  • the diversion area is guided in the diversion area 423, and is driven into the speed reduction area 424 under the driving of a positive pressure.
  • the partial pressure is reflected by a plurality of staggered partial pressure bodies 4241 having a reflection angle with the airflow, and passes through the ventilation.
  • the fabric 422 flows to the human body to reduce the temperature.
  • the air flow will vary with the shape and size of the air-conducting fabric 421, the air-guiding strip 4231, the breathability of the breathable fabric 422, and the shape of the partial pressure body 4241.
  • the main factors are: the air volume of the fan Q1 can be used as the air-conducting port.
  • the area S1 is calculated by multiplying its wind speed v1.
  • the area and air volume of the breathable fabric 422 blowing on the human body are Q2 and v2, respectively.
  • the high-speed wind source in this embodiment refers to, for example, an air conditioner, a hot air blower, and an electric fan with a wind speed of 4-6 m / s.
  • the air permeability is gradually increased, or the diameter of the air is gradually increased or the covered area is gradually increased.
  • the pressure-reduced air-permeable fabric 422 formed by the smaller cover plate 402 is reduced to a wind speed of about 0.2 m / s, and excess air can be blown out through the air vents.
  • the partial pressure body 4241 may have various shapes having a reflection area or a diversion and diversion effect, such as a strip shape, a strip shape, and the like.
  • a fan is used to simulate the airflow on the air guide port of the thermostat flap 42.
  • the placement angle and position of the guide bar 4231 and the partial pressure body 4241 are adjusted, and the final layout is made into a prototype, and rubber and plastic are produced according to this.
  • the stamping die of the plate foam is formed by pressing and bonded to the air guiding fabric 421.
  • the hand plate can be made into an injection mold. Specifically, the guide strip 4321, the partial pressure body 4241, and the air guide fabric 421 are formed as a product at one time.
  • Embodiment 1 The difference from Embodiment 1 is that, as shown in FIG. 1 and FIG. 7, the umbrella support 11 is arranged on the inner surface of the clothing body 1 according to the sweating position or the meridian distribution, and the handle 112 is a single particle or a chain-shaped particle. String structure, and the particles are gold or jade or bamboo or pearl particles, so they can be attached to sweaty breast milk, back or lower body parts or arranged by meridians. Based on the material of the particles, it is effective for cooling the skin.
  • an elastic pull rope may be provided on the support handle 112, and the end of the elastic pull rope away from the support handle 112 extends along the clothing body 1 to the cuff of the clothing body 1 and is fixed.
  • the support 112 of the string-shaped body is supported at the lower part of the breast, so that the elastic pull rope moves the handle 112 with a small displacement to massage the body's position.
  • the support 112 can use underwear such as a sling, etc.
  • the structure is fixed.
  • Embodiment 1 The difference from Embodiment 1 is that as shown in FIG. 8, a plurality of elastic cords 5 for supporting the ring body between the clothing body 1 and the human body can be detachably connected in the clothing body 1 and the mosquito repellent kit 3,
  • the elastic rope 5 is an embodiment of the supporting handle 112.
  • the elastic rope 5 includes a horizontal belt and a longitudinal belt that are arranged alternately. On the side of the elastic rope 5 that is close to the human body, a positioning is fixed to the position corresponding to the convex position of the human body.
  • the positioning component 6 includes a shoulder pad, a chest support, a waist support, and a foot support, and is used for positioning the elastic cord 5 in a thin space between the clothing body 1 and the human body, and utilizing the elasticity of the elastic cord 5 It is supported on the clothing body 1 or the umbrella 11 to avoid the situation where the space between the clothing body 1 and the human body is thin, and to ensure a mosquito-proof gap.
  • Embodiment 1 The difference from Embodiment 1 is that, as shown in FIG. 1 and FIG. 9, when the temperature adjustment flap 42 is built in the clothing body 1, the clothing body 1 becomes a temperature-adjusting pajama for cooling or heating, respectively.
  • the support frame 8 forms a variable volume gap between the clothing body 1 and the human body.
  • the support frame 8 includes telescopic rods 81 provided on both sides of the human body, and elastic rings 82 and telescopic rods provided between the two telescopic rods 81.
  • One end of 81 is a fixed end fixed to the inner surface of the clothing body 1 and the other end is a telescopic end for adjusting the support distance.
  • the elastic ring 82 is arc-shaped, and the two ends of the elastic ring 82 are hinged on both sides of the human body to expand and contract.
  • the telescopic end of the rod 81 is used to adjust the support angle.
  • a support 8 is used to support a gap of variable volume between the clothing body 1 and the human body. The support distance, that is, the size of the gap can be adjusted as needed, thereby changing the ventilation volume between the clothing body 1 and the human body, which is convenient to use.
  • Embodiment 1 The difference from Embodiment 1 is that, in combination with FIG. 1 and FIG. 10, the clothing body 1 is provided with a ventilation opening 14 for air exchange between the inside and the outside of the clothing body 1 at a sweaty position of the human body, and the ventilation opening 14 can be set according to actual needs.
  • a layer of mosquito-repellent layer 15 covering the vent 14 is sewn on the inner surface of the clothing body 1, wherein the inner side of the clothing body 1 is a side close to the human body, and the mosquito-proof layer 15 and A support member 9 for holding away the mosquito layer 15 and the clothing body 1 is fixedly connected between the clothing body 1, so that a diffusion channel 16 for ventilation is formed between the mosquito layer 15 and the clothing body 1 under the support of the support member 9.
  • the diffusion channel 16 has a flat and thin channel structure, and openings for air flow to the human body are formed on both sides of the diffusion channel 16, so as to ensure that the clothing body 1 can have a relatively large size on the basis of the mosquito prevention of the clothing body 1.
  • Good breathability which is mainly used for thicker clothing, such as fishing clothes, mosquito-proof clothing, etc.
  • the external cooling airflow in this embodiment is mainly the natural low-temperature airflow.
  • the mosquito-proof layer 16 can be preferably used for labor. Cloth, cotton crepe, stone It is made of mosquito repellent material such as ink cloth.
  • the embodiment of the present application provides a three-dimensional tailoring method, which is applied to the body care clothing described in the embodiment of the present application, and includes the following steps:
  • the user first encodes the multiple line length data to be measured by the serial number, and after the serial number is completed, all the line length data is measured one by one according to the number.
  • the line length data includes the human body's clothing length, pants length, etc. ;
  • the measurement reference point in S2 is the origin, and its height values are determined one by one on the Y axis ruler to form a three-dimensional data;
  • the molding ruler is a strip ruler with plastic deformation.
  • the molding ruler is provided with a plurality of detachable joints for detaching and assembling the molding ruler. It is fixed on one section of the molding ruler.
  • the user transmits the two-dimensional data and three-dimensional data to the clothing store.
  • the clothing store organizes it and restores it to the multi-dimensional database to be used as clothing. Or the basis for purchasing clothes;
  • the scaling ratio is obtained from the length of the scale ruler on the two-dimensional graphics and the actual scale value on the scale ruler. Based on the scaling ratio, the length of the shaping ruler is restored to determine the actual user. 2D data for girth.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Environmental & Geological Engineering (AREA)
  • Professional, Industrial, Or Sporting Protective Garments (AREA)

Abstract

一种护体服饰,包括服饰本体(1)、防晒组件(2)、防蚊套件(3)以及护体组件(4),在服饰本体(1)与人体之间设有用于将衣片向人体外侧撑离的撑伞(11),使服饰本体(1)与人体之间形成用于隔蚊、通风的间隙;防晒组件(2)包括按人体位置高低排列覆盖在服饰本体(1)外侧面上的多个防晒片(21),用于形成防晒服;防蚊套件(3)包括依次连接在服饰本体(1)上的手套(31)、脚套(32)以及头套(33),用于提高服饰本体(1)的防蚊效果;护体组件(4)包括保温活片(41)和调温活片(42),用于调节服饰本体(1)与人体之间的温度。一种裁衣方法,依据用户实际测量的数据以及方法中建立的多维数据库,确定服装裁剪标准。护体服饰集多个功能于一体,便于服饰本体(1)适用于多种不同的气候下穿戴,具有适用性。

Description

一种护体服饰及三维量体裁衣方法
本申请要求于2018年9月13日提交中国专利局、申请号为201811105951.X、申请名称为一种护体健身服饰的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请实施例涉及服装技术领域,具体涉及一种护体服饰及三维量体裁衣方法。
背景技术
热天蚊子多,人们在室外乘凉,游览,放牧,勘探,果园和田间作业等,常常受到蚊子威胁,被叮一口又痒又痛,不仅吸血,还传播疾病。现有的服装虽然种类很多,防寒保暖,但就防蚊来说,穿薄了蚊子扒在面料上就能叮咬,穿厚了蚊子是叮不透,但热得难受。
公开号为CN103082515A的申请专利:一种防蚊服装,公开了在服装的面料的空隙内设置衬物,使面料和皮肤间保持一个距离,起到防蚊的作用。但是上述服饰中衬物的结构简单,容易导致防蚊的距离不稳定,且上述防蚊服装功能单一,不适用于如夏天或冬天等多种天气。
申请内容
为此,本申请实施例提供一种护体服饰及三维量体裁衣方法,以解决现有技术中普通衣服功能单一的问题。
为了实现上述目的,本申请实施例提供如下技术方案:
一种护体服饰,包括:
服饰本体,所述服饰本体包括多个用于覆盖在人体外围的衣片连接组成,在服饰本体与人体之间设有用于将所述衣片向人体外侧撑离的撑 伞,所述撑伞固接在服饰本体的内侧面上,且服饰本体与人体之间形成用于隔蚊、通风的间隙;
防晒组件,所述防晒组件包括按人体位置高低排列覆盖在服饰本体外侧面上的多个防晒片,所述防晒片可拆卸连接在服饰本体上,且相邻的防晒片之间形成有供外界空气进入服饰本体内的通风空隙;
防蚊套件,所述防蚊套件包括依次连接在服饰本体上的手套、脚套以及头套,并在服饰本体上依次设有供人体头部、手部、脚部伸出的接缝口,用于分别可拆卸连接对应的手套、脚套以及头套,在手套、脚套以及头套与服饰本体的衔接处一体成型有环状隆起的弹性凸起部,所述弹性凸起部用于在服饰本体的接缝口处隔离蚊虫;
护体组件,所述护体组件包括保温活片和调温活片,所述保温活片可拆卸连接在服饰本体的内侧面上,用于向人体待保温的体位提供辅助热量,所述调温活片可拆卸连接在服饰本体的内侧面上,用于人体待调温的体位提供辅助温度,其中,所述服饰本体上对应活片的位置形成有接缝部位,在接缝部位设有可闭合的活动口,用于从服饰本体的外侧装卸服饰本体内部的活片。
进一步地,所述保温活片包括多个设置在人体待保温体位的衣片,并在保温活片靠近人体的侧面上可拆卸连接有用于保温的加热理疗件。
进一步地,所述服饰本体包括衣套和裤套,所述裤套为弹性防水材料制成的裤衩状结构,所述裤套的内部填充有用于保温的理疗件,并在裤套套口的边缘设有供理疗件置入裤套内的防水松紧口,其中,所述裤套的上部分覆盖在人体的肾脏区域。
进一步地,所述调温活片为内部密封的袋状结构,在调温活片的上侧边设有供外界高速气源进入调温活片内的导气口,且调温活片远离人体体表的侧面为导气面料,调温活片靠近人体体表的侧面为透气面料,所述导气面料和透气面料之间形成有供气体流动的流动间隙,且沿竖直方向,流动间隙的上部分形成导流区,流动间隙的下部分形成降速区,所述导流区内并排设有多个以不同角度倾斜设置的导流条,相邻的两个 导流条之间形成有导气通道,且多个导气通道用于将经过导流区的气体沿不同角度导入降速区内,所述降速区内分布有分压体,且分压体上形成有倾斜朝向导气通道和透气面料的反射面,用于分散流向降速区内的气体,并反射至透气面料上,所述分压体设置有多排,且上排的分压体与下排的分压体呈间隔排列,用于上排的分压体阻挡反射一部分气流,且相邻分压体之间的空隙用于供部分气流继续向下导入,并由下排的分压体阻挡反射,其中,所述透气面料包括多层具有密布透气孔的透气片依次贴合形成,且透气片上透气孔的直径从调温活片的内侧层向调温活片的外侧层依次增大。
进一步地,所述撑伞包括伞面和撑柄,所述伞面固接在服饰本体的内侧面上,主要由具有挺力的网布或支撑物制作形成,所述撑柄固接在伞面的内侧面上,用于支撑在人体上,其中,所述撑伞按多汗体位或经络分布排列在服饰本体的内侧面上,所述撑柄为颗粒单体或颗粒串状体结构,且颗粒为金或玉或竹或珍珠颗粒。
进一步地,所述服饰本体以及防蚊套件内均可拆卸连接有多个用于环体支撑在服饰本体与人体之间的弹性绳带,所述弹性绳带包括交错设置的横带和纵带,所述弹性绳带靠近人体的侧面上,对应人体凸起的体位处固接有定位组件,所述定位组件包括肩垫、胸撑、腰撑以及脚撑。
进一步地,所述服饰本体上设有用于在服饰本体与人体之间形成可变容积间隙的撑架,所述撑架包括分别设置在人体两侧的伸缩杆以及设置在两个伸缩杆之间的弹力环,所述伸缩杆的一端为固接在服饰本体内侧面上的固定端,另一端为用于调节支撑距离的伸缩端,所述弹力环呈弧形,且弹力环的两端分别铰接在人体两侧伸缩杆的伸缩端上,用于调节支撑角度。
进一步地,所述服饰本体上位于人体多汗体位处开设有供服饰本体内外气流交换的通风口,并在服饰本体的内侧面上缝接有一层覆盖在通风口上的防蚊层,所述防蚊层与服饰本体之间固接有用于撑离防蚊层与服饰本体的支撑件,且防蚊层与服饰本体之间在支撑件的支撑下形成用 于透气的扩散通道,所述扩散通道的两侧端上均形成有供气流流向人体的开放口。
一种三维量体裁衣方法,应用于本申请实施例所述的一种护体服饰,包括以下步骤:
S1、由用户先将要测量的多个线长数据按类编以序号,并在编完序号后,根据编号逐一测量所有的线长数据,其中,线长数据包括人体的衣长、裤长等;
S2、测完线长数据后,在人体上选取Y轴方向上的测量基准点,采用带有Y坐标值的Y轴尺,将Y轴尺的原点对准选取的测量基准点,并在Y轴尺上逐一对所有的线长确定其高度值,形成二维数据;
S3、待线长的二维数据逐一测量完后,采用塑型尺,由塑型尺测量所有围长的二维数据,并将所有围长在测量后的二维图形通过相机进行拷贝,然后以步骤S2中的测量基准点为原点,在Y轴尺上逐一对所有的围长确定其高度值,形成三维数据;
S4、待所有数据均测量完后,由用户将二维数据以及三维数据向裁衣店进行传输,由裁衣店远程接收传输的数据后,进行整理,并复原加入到多维数据库,作为裁衣或购衣的依据;
S5、裁衣店依据用户实际测量的数据以及多维数据库内的数据组,建立服装裁剪标准。
进一步地,所述塑型尺为具有塑性形变的条状尺,在塑型尺上设有多个可拆卸连接的拼口,用于塑型尺的拆离和拼装,所述塑型尺的其中一段上固接有用于确定缩放比例的刻度直尺,在步骤S3中,用户采用塑型尺量体后,沿拼口将塑型尺进行拆分,并在塑型尺离开人体后重新拼装,且重新拼装后的塑型尺,通过相机对重新拼装的塑型尺进行二维图形的拷贝,并将二维图形传输给裁衣店,裁衣店裁衣时,由二维图形上刻度直尺的长度和刻度直尺上实际的刻度数值得到缩放比例,并以缩放比例为基准,对塑型尺进行长度还原,确定用户实际围长的二维数据。
本申请实施例具有如下优点:通过对传统服装进行改进,在服饰本 体与人体之间设置撑伞,利用撑伞将服饰本体向人体的外侧撑离,从而使服饰本体与人体之间形成大于蚊虫口器插入的间隙,便于对蚊虫进行隔离,并通过在服饰本体的基础上,增设防晒组件、防蚊套件以及护体组件,使服饰本体可以自由转换为防晒服或防蚊服或保温服等,从而使服饰本体集防晒、防蚊、调温等多个功能于一体,便于服饰本体适用于多种不同的气候下穿戴,具有适用性。
附图说明
为了更清楚地说明本申请的实施方式或现有技术中的技术方案,下面将对实施方式或现有技术描述中所需要使用的附图作简单地介绍。显而易见地,下面描述中的附图仅仅是示例性的,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据提供的附图引申获得其它的实施附图。
本说明书所绘示的结构、比例、大小等,均仅用以配合说明书所揭示的内容,以供熟悉此技术的人士了解与阅读,并非用以限定本申请可实施的限定条件,故不具技术上的实质意义,任何结构的修饰、比例关系的改变或大小的调整,在不影响本申请所能产生的功效及所能达成的目的下,均应仍落在本申请所揭示的技术内容得能涵盖的范围内。
图1为本申请实施例提供的一种护体服饰的整体结构示意图;
图2为本申请实施例提供的一种护体服饰的防蚊套件的结构示意图;
图3为本申请实施例提供的一种护体服饰的防晒组件的结构示意图;
图4为本申请实施例提供的一种护体服饰的手套的结构示意图;
图5为本申请实施例提供的一种护体服饰的护体组件的结构示意图;
图6为本申请实施例提供的一种护体服饰的调温活片的结构示意图;
图7为本申请实施例提供的一种护体服饰的弹性绳带的结构示意图;
图8为本申请实施例提供的一种护体服饰的定位组件的结构示意图;
图9为本申请实施例提供的一种护体服饰的撑架的结构示意图;
图10为本申请实施例提供的一种护体服饰的衣片的结构示意图。
图中:1、服饰本体;11、撑伞;111、伞面;112、撑柄;12、衣套;13、裤套;131、防水松紧口;14、通风口;15、防蚊层;16、扩散通道;2、防晒组件;21、防晒片;3、防蚊套件;31、手套;32、脚套;33、头套;34、弹性凸起部;4、护体组件;41、保温活片;42、调温活片;421、导气面料;422、透气面料;423、导流区;4231、导流条;4232、导气通道;424、降速区;4241、分压体;5、弹性绳带;6、定位组件;8、撑架;81、伸缩杆;82、弹力环;9、支撑件。
具体实施方式
以下由特定的具体实施例说明本申请的实施方式,熟悉此技术的人士可由本说明书所揭露的内容轻易地了解本申请的其他优点及功效,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
实施例1
本申请实施例提供了一种护体服饰,包括服饰本体1、防晒组件2、防蚊套件3以及护体组件4,具体设置如下:
如图1所示,服饰本体1,可以为外罩或内衬或外罩和内衬的组合形态,包括多个用于覆盖在人体外围的衣片连接组成,且优选的,服饰本体1也可以由一个衣片制作形成。在服饰本体1与人体之间设有用于向人体外侧撑离衣片的撑伞11,撑伞11固接在服饰本体1的内侧面上,且服饰本体1与人体之间形成用于隔蚊、通风的间隙,具体的,撑伞11包括伞面111和撑柄112,伞面111固接在服饰本体1的内侧面上,撑柄112固接在伞面111的内侧面上,用于支撑在人体上,其中,伞面111主要由具有挺力的网布或支撑物制作形成,且伞面111的面积大于撑柄112,使撑伞11整体形成蘑菇状结构,利用具有挺力的伞面111,对支撑松软的 外罩很有效果,并且较多的时候,伞面111可被具有一般硬度的外罩代替,此时服饰本体1直接被连续或断续的撑柄112进行支撑,并且为了便于服饰本体1穿戴后的舒适性,撑柄112可根据具体需求,优选为透气材料、海绵、纤维棉组成的球、棒状体、包软布料、三明治网布等布料或蜂窝硬网,利用裁剪、发泡、缝制、织造和超声、微波粘接等多种工艺,裁切或缝制形成具有一定柔软度的贴身构件,例如针对凉爽或防蚊的需求,考虑到降低风阻,撑柄112多选用通风的网管或硬网进行的挤压、重叠、交叉、弯曲制作形成通风透气的贴身构件;而对体位比较平坦的位置,撑柄112可选用塑条排列成5-10cm的隔网;对于服饰本体1与人体之间要求距离较大或可调整距离位置,撑柄112可选用充气柱或充放调压气囊,也方便更换。为了有效阻止蚊虫叮咬,服饰本体1的衣片可优选为防蚊材质制作形成,且服饰本体1与人体之间的间隙在撑伞11的作用下,大于7-8mm,即确保服饰本体1与人体之间的间隙大于蚊虫口器插入服饰本体1内的长度,从而有效隔离蚊虫叮咬,同时,为了确保本实施例的服饰本体1穿戴后与现有服装相比,外形不能有很大变化,在服饰本体1和人体之间分布多个撑伞11,以确保服饰本体1上设有撑伞11的部位,在穿戴后,整体上的外凸范围保持在为3-5mm内。
如图2和图3所示,防晒组件2包括按人体位置高低排列覆盖在服饰本体1外侧面上的多个防晒片21,防晒片21由防晒布料制成,可选为伞状或披风状或百叶窗状的下垂式结构,将防晒片21可拆卸连接在服饰本体1上,并使相邻的防晒片21之间形成有供外界空气进入服饰本体1内的通风空隙,通过在服饰本体1的外侧面上增设防晒片21,使服饰本体1形成防晒服,并且利用防晒片21之间的通风空隙,可以确保外界凉爽的气流沿通风空隙进入服饰本体1内,达到降温的目的,从而使服饰本体1可以适用于较热的天气,其中,外界凉爽的气流可以为自然凉风,也可以为电控设备产生的非自然凉风。
防蚊套件3包括依次连接在服饰本体1上的手套31、脚套32以及头套33,并在服饰本体1上依次设有供人体头部、手部、脚部伸出的接缝 口,用于分别可拆卸连接对应的手套31、脚套32以及头套33,其中,手套31、脚套32以及头套33均为防蚊布料制成,在实际穿戴时,通过合理搭配手套31、脚套32以及头套33的使用,对人体进行全面的防护,避免蚊虫对人体进行叮咬。在手套31、脚套32以及头套33与服饰本体1的衔接处还一体成型或分体设有环状隆起的弹性凸起部34(参考图4),利用隆起的弹性凸起部34,使弹性凸起部34在服饰本体1的接缝口处的内侧向外撑起,从而封闭服饰本体1的接缝口,避免蚊虫沿服饰本体1的接缝口进入服饰本体1内,有效隔离蚊虫。
如图5所示,护体组件4包括保温活片41和调温活片42,保温活片41可拆卸连接在服饰本体1的内侧面上,其中,保温活片41包括多个设置在人体待保温体位的衣片,例如人体易患风湿的腰、膝、子宫和肩等体位,其中一个实施方式是,保温活片31可由厚棉或毛的保温布料制作,对人体形成保温;另一个实施方式,保温活片41为自然衣片,并在保温活片41靠近人体的侧面上可拆卸连接有用于保温的加热理疗件,用于向人体待保温的体位提供较低的辅助热量,优选的,加热理疗件包括预热的木、石或蜡、药熨水疗熨烫物、电热毯或电磁等多种现有的理疗部件。调温活片42也可拆卸连接在服饰本体1的内侧面上,用于人体待调温的体位提供较低的辅助温度,调温活片42为内部密封的袋状结构,在调温活片42的上侧边设有供外界高速气源进入调温活片42内的导气口,通过向调温活片42内注入较热或较凉爽的气流,从而利用调温活片42人工调节服饰本体1与人体间隙处的温度,使服饰本体1穿戴后,可以较好的适应于热天或冷天等天气。其中,服饰本体1上对应活片的位置形成有接缝部位,在接缝部位设有可闭合的活动口,用于从服饰本体1的外侧装卸服饰本体1内部的活片,且可根据实际需求,合理的增设调温活片42和保温活片41的数量,且多个保温活片41可分别制作成对应体位的外形,并在保温活片41上设有提示该体位的美化图案。
本申请实施例的一种护体服饰,通过对传统服装进行改进,在服饰本体与人体之间设置撑伞11,利用撑伞11将服饰本体1向人体的外侧撑 离,从而使服饰本体1与人体1之间形成大于蚊虫口器插入的间隙,便于对蚊虫进行隔离,并通过在服饰本体1的基础上,增设防晒组件2、防蚊套件3以及护体组件4,使服饰本体1可以自由转换为防晒服或防蚊服或保温服等,从而使服饰本体1集防晒、防蚊、调温等多个功能于一体,便于服饰本体1适用于多种不同的气候下穿戴,具有适用性。优选的,本申请实施例中所有提到的可拆卸连接包括但不限于可选开口方向及定位位置的口袋或卡带23、塑料或电极型纽扣、按扣、魔术贴、系带、勾扣等现有的可拆卸结构。
实施例2
与实施1不同之处在于,如图5所示,服饰本体1包括衣套12和裤套13,衣套12和裤套13为保温活片41的一种具体实施方式,衣套12为弹性防水材料制成的上衣结构,裤套13为弹性防水材料制成的裤衩状结构,且衣套12和裤套13的内部均填充有用于保温的理疗件,并在裤套13套口的边缘设有供理疗件置入裤套13内的防水松紧口131,其中,裤套13的上部分覆盖在人体的肾脏区域,使裤套13穿戴后,至少可以盖住人体肾脏的区域,从而对人体的肾脏形成保温,主要适用于老年群体。
实施例3
与实施1不同之处在于,如图6所示,调温活片42为内部密封的袋状结构,在调温活片42的上侧边设有供外界高速气源进入调温活片42内的导气口,且调温活片42远离人体体表的侧面为导气面料421,调温活片42靠近人体体表的侧面为透气面料422,使导气面料421和透气面料422之间形成有供气体流动的流动间隙,且沿竖直方向,流动间隙的上部分形成导流区423,流动间隙的下部分形成降速区424,导流区423内并排设有多个以不同角度倾斜设置的导流条4231,相邻的两个导流条4231之间形成有导气通道4232,且多个导气通道4232用于将经过导流区423的气体沿不同角度导入降速区424内,降速区424内分布有分压体4241,分压体4241外形为具有反射面或突出的形体或下凹的凹陷体,可采用如布、纸、板材等材料弯曲形成,使分压体4241上的凹面形成倾斜朝向导气通道4232 和透气面料422的反射面,用于分散流向降速区424内的气体,并反射至透气面料422上,分压体4241设置有多排,且上排的分压体4241与下排的分压体4241呈间隔排列,用于上排的分压体4241阻挡反射一部分气流,且相邻分压体4241之间的空隙用于供部分气流继续向下导入,并由下排的分压体4241阻挡反射,从而由导流条4231和分压体4241形成降速机构,将导入调温活片42内的气流降速后均匀导向在人体上。其中,所述透气面料422包括多层具有密布透气孔的透气片依次贴合形成,且透气片上透气孔的直径从调温活片42的内侧层向调温活片42的外侧层依次增大,而导流条4231和分压体4241均可拆卸连接在导气面料421上,可重新插拔分压体4241的方位可改变其对气流的反射、导流方向,并且导流条4231可视设计要求变更外形,如改变长度、摆向,力求效果最佳,其反射面与气流的夹角可近乎垂直,仅起阻挡、导流作用。
上述降速原理为:在调温活片42的导气口上利用风机模拟气流,向调温活片42内注入气流,其将导气口输入的热、冷高速气流导入带有导流条4231的导流区导流区423内进行疏导,在正压驱动下进入降速区424内,被其上的多个交错排列的、具有与气流有反射角度的分压体4241反射分压,经由透气面料422流向人体实现降速调温。由于实际上气流会随导气面料421、导流条4231的形状、尺寸,透气面料422透气性及分压体4241的形状等多种因素而变化,其主要因素是:风扇风量Q1可用导气口面积S1乘以其风速v1计算,扣掉结构的风阻系数K后的净胜值是透气面料422吹向人体的风量Q2,即Q1=S1*v1*K=Q2=S2*v2,其中,经过透气面料422吹向人体的面积和风量分别为Q2、v2,由于风阻损耗系数K是关键因素,可按照结构分类进行试验,找出不同结构降速机构的多种系数K存入数据库,作为以后产品开发的依据,省时快速,并且要注意v2要按照国家标准规定的最大吹体风速0.2m/秒计算,既不影响调温,又可以将吹向人体的风速降低十几倍,小于0.2m/秒,保护身体。其中,本实施例的高速风源指如空调器、热风机、电风扇的风速为4-6m/s,降速后再经过采用透气率逐渐变大的纺织品或直径逐渐变大或遮盖面积逐渐变小 的遮盖板402的构成的透气面料422降压为0.2m/s左右的风速,多余的气流可以从透气孔吹出。
优选的,在实际产品中,分压体4241可为具有反射面积或分流导流作用的多种形状,如条形、条带形等,为实现降速,可沿接近进气方向至远离进气方向,采取每排分压体4241的横向间隔和纵向间隔由大变小或其迎风夹角、反射面面积由小变大中的一项或多项措施实现。并在调温活片42的导气口上利用风机模拟气流,利用导流条4231和分压体4241的摆放角度、位置进行调整,并将最终布局制作成手板,并据此制作橡塑,如板式泡棉的冲压模,经冲压成型并粘接在导气面料421上。大规模生产时,可将手板制作成注塑模具,具体的将导流条4231、分压体4241和导气面料421一次成型作为产品。
实施例4
与实施1不同之处在于,结合图1和图7所示,撑伞11按多汗体位或经络分布排列在服饰本体1的内侧面上,撑柄112为颗粒单体或挂链形状的颗粒串体结构,且颗粒为金或玉或竹或珍珠颗粒,从而可附着在多汗的胸乳、背或下体部位或按经络排列,基于颗粒的材质,有效为皮肤降温,优选的,当撑柄112为设置在胸垫处的串状体结构时,可在撑柄112上设置弹性拉绳,将弹性拉绳远离撑柄112的一端沿服饰本体1延伸至服饰本体1的袖口处并固定,利用串状体的撑柄112支撑在乳房下部,从而由弹性拉绳随肢体的牵动带动撑柄112小幅度位移,对人体的体位进行按摩,其中,撑柄112可利用内衣上如吊带等结构加以固定。
实施例5
与实施1不同之处在于,如图8所示,在服饰本体1以及防蚊套件3内均可拆卸连接有多个用于环体支撑在服饰本体1与人体之间的弹性绳带5,弹性绳带5为撑柄112的一种实施方式,弹性绳带5包括交错设置的横带和纵带,在弹性绳带5靠近人体的侧面上,对应人体凸起的体位处固接有定位组件6,其中,定位组件6包括肩垫、胸撑、腰撑以及脚撑,用于随弹性绳带5定位在服饰本体1与人体之间空隙较薄的位置,利用弹性绳 带5的弹性支撑在服饰本体1或撑伞11上,避免服饰本体1与人体之间空隙较薄的位置内凹的情况,并确保隔蚊的间隙。
实施例6
与实施1不同之处在于,结合图1和图9所示,在服饰本体1内置调温活片42时,服饰本体1分别变成降温或升温的调温睡衣,在服饰本体1上设有用于在服饰本体1与人体之间形成可变容积间隙的撑架8,撑架8包括分别设置在人体两侧的伸缩杆81以及设置在两个伸缩杆81之间的弹力环82,伸缩杆81的一端为固接在服饰本体1内侧面上的固定端,另一端为用于调节支撑距离的伸缩端,弹力环82呈弧形,且弹力环82的两端分别铰接在人体两侧伸缩杆81的伸缩端上,用于调节支撑角度。利用撑架8在服饰本体1和人体之间支撑出一个可变容积的缝隙,可按需要调整支撑距离,即缝隙的大小,从而改变服饰本体1与人体之间的通风量,方便使用。
实施例7
与实施1不同之处在于,结合图1和图10所示,服饰本体1上位于人体多汗体位处开设有供服饰本体1内外气流交换的通风口14,且通风口14可根据实际需求设置一个或者多个,在服饰本体1的内侧面上缝接有一层覆盖在通风口14上的防蚊层15,其中,服饰本体1的内侧面为靠近人体的侧面,并在防蚊层15与服饰本体1之间固接有用于撑离防蚊层15与服饰本体1的支撑件9,使防蚊层15与服饰本体1之间在支撑件9的支撑下形成用于透气的扩散通道16,扩散通道16呈扁而薄的通道结构,且扩散通道16的两侧端上均形成有供气流流向人体的开放口,从而在服饰本体1防蚊的基础上,确保服饰本体1可以有较好的透气性能,其主要应用于较厚的服饰,例如钓鱼服、防蚊服等,且本实施例中的外部降温气流主要为外界自然的低温气流,其中,防蚊层16可优选用劳动布、人棉绉布、石墨烯布等防蚊材料构成。
实施例8
本申请实施例提供了一种三维量体裁衣方法,应用于本申请实施例所述的护体服饰,包括以下步骤:
S1、由用户先将要测量的多个线长数据按类编以序号,并在编完序号后,根据编号逐一测量所有的线长数据,其中,线长数据包括人体的衣长、裤长等;
S2、测完线长数据后,在人体上选取Y轴方向上的测量基准点,采用带有Y坐标值的Y轴尺,将Y轴尺的原点对准选取的测量基准点,并在Y轴尺上逐一对所有的线长确定其高度值,形成二维数据;
S3、待线长的二维数据逐一测量完后,采用塑型尺,由塑型尺测量所有的围长数据,并将所有围长在测量后的二维图形通过相机进行拷贝,然后以步骤S2中的测量基准点为原点,在Y轴尺上逐一对所有的围长确定其高度值,形成三维数据;
其中,塑型尺为具有塑性形变的条状尺,在塑型尺上设有多个可拆卸连接的拼口,用于塑型尺的拆离和拼装,在塑型尺的其中一段上固接有用于确定缩放比例的刻度直尺,在用户采用塑型尺量体后,沿拼口将塑型尺进行拆分,并在塑型尺离开人体后重新拼装,且重新拼装后的塑型尺,通过相机对重新拼装的塑型尺进行二维图形的拷贝,并将二维图形传输给裁衣店。
S4、待所有数据均测量完后,由用户将二维数据以及三维数据向裁衣店进行传输,由裁衣店远程接收传输的数据后,进行整理,并复原加入到多维数据库,作为裁衣或购衣的依据;
S5、依据用户实际测量的数据以及多维数据库内的数据组,建立服装裁剪标准。
其中,裁衣店裁衣时,由二维图形上刻度直尺的长度和刻度直尺上实际的刻度数值得到缩放比例,并以缩放比例为基准,对塑型尺进行长度还原,确定用户实际围长的二维数据。
虽然,上文中已经用一般性说明及具体实施例对本申请作了详尽的描述,但在本申请基础上,可以对之作一些修改或改进,这对本领域技术人员而言是显而易见的。因此,在不偏离本申请精神的基础上所做的这些修改或改进,均属于本申请要求保护的范围。

Claims (10)

  1. 一种护体服饰,其特征在于,所述护体服饰包括:
    服饰本体(1),所述服饰本体(1)包括多个用于覆盖在人体外围的衣片连接组成,在服饰本体(1)与人体之间设有用于将所述衣片向人体外侧撑离的撑伞(11),所述撑伞(11)固接在服饰本体(1)的内侧面上,且服饰本体(1)与人体之间形成用于隔蚊、通风的间隙;
    防晒组件(2),所述防晒组件(2)包括按人体位置高低排列覆盖在服饰本体(1)外侧面上的多个防晒片(21),所述防晒片(21)可拆卸连接在服饰本体(1)上,且相邻的防晒片(21)之间形成有供外界空气进入服饰本体(1)内的通风空隙;
    防蚊套件(3),所述防蚊套件(3)包括依次连接在服饰本体(1)上的手套(31)、脚套(32)以及头套(33),并在服饰本体(1)上依次设有供人体头部、手部、脚部伸出的接缝口,用于分别可拆卸连接对应的手套(31)、脚套(32)以及头套(33),在手套(31)、脚套(32)以及头套(33)与服饰本体(1)的衔接处一体成型有环状隆起的弹性凸起部(34),所述弹性凸起部(34)用于在服饰本体(1)的接缝口处隔离蚊虫;
    护体组件(4),所述护体组件(4)包括保温活片(41)和调温活片(42),所述保温活片(41)可拆卸连接在服饰本体(1)的内侧面上,用于向人体待保温的体位提供辅助热量,所述调温活片(42)可拆卸连接在服饰本体(1)的内侧面上,用于人体待调温的体位提供辅助温度,其中,所述服饰本体(1)上对应活片的位置形成有接缝部位,在接缝部位设有可闭合的活动口,用于从服饰本体(1)的外侧装卸服饰本体(1)内部的活片。
  2. 根据权利要求1所述的一种护体服饰,其特征在于:所述保温活片(41)包括多个设置在人体待保温体位的衣片,并在保温活片(41)靠近人体的侧面上可拆卸连接有用于保温的加热理疗件。
  3. 根据权利要求1所述的一种护体服饰,其特征在于:所述服饰本体(1)包括衣套(12)和裤套(13),所述裤套(13)为弹性防水材料制成的裤衩状结构,所述裤套(13)的内部填充有用于保温的理疗件,并在裤套(13)套口的边缘设有供理疗件置入裤套(13)内的防水松紧口(131),其中,所述裤套(13)的上部分覆盖在人体的肾脏区域。
  4. 根据权利要求1所述的一种护体服饰,其特征在于:所述调温活片(42)为内部密封的袋状结构,在调温活片(42)的上侧边设有供外界高速气源进入调温活片(42)内的导气口,且调温活片(42)远离人体体表的侧面为导气面料(421),调温活片(42)靠近人体体表的侧面为透气面料(422),所述导气面料(421)和透气面料(422)之间形成有供气体流动的流动间隙,且沿竖直方向,流动间隙的上部分形成导流区(423),流动间隙的下部分形成降速区(424),所述导流区(423)内并排设有多个以不同角度倾斜设置的导流条(4231),相邻的两个导流条(4231)之间形成有导气通道(4232),且多个导气通道(4232)用于将经过导流区(423)的气体沿不同角度导入降速区(424)内,所述降速区(424)内分布有分压体(4241),且分压体(4241)上形成有倾斜朝向导气通道(4232)和透气面料(422)的反射面,用于分散流向降速区(424)内的气体,并反射至透气面料(422)上,所述分压体(4241)设置有多排,且上排的分压体(4241)与下排的分压体(4241)呈间隔排列,用于上排的分压体(4241)阻挡反射一部分气流,且相邻分压体(4241)之间的空隙用于供部分气流继续向下导入,并由下排的分压体(4241)阻挡反射,其中,所述透气面料(422)包括多层具有密布透气孔的透气片依次贴合形成,且透气片上透气孔的直径从调温活片(42)的内侧层向调温活片(42)的外侧层依次增大。
  5. 根据权利要求1所述的一种护体服饰,其特征在于:所述撑伞(11)包括伞面(111)和撑柄(112),所述伞面(111)固接在服饰本体(1)的内侧面上,主要由具有挺力的网布或支撑物制作形成,所述撑柄(112)固接在伞面(111)的内侧面上,用于支撑在人体上,其中,所述撑伞(11) 按多汗体位或经络分布排列在服饰本体(1)的内侧面上,所述撑柄(112)为颗粒单体或颗粒串状体结构,且颗粒为金或玉或竹或珍珠颗粒。
  6. 根据权利要求1所述的一种护体服饰,其特征在于:所述服饰本体(1)以及防蚊套件(3)内均可拆卸连接有多个用于环体支撑在服饰本体(1)与人体之间的弹性绳带(5),所述弹性绳带(5)包括交错设置的横带和纵带,所述弹性绳带(5)靠近人体的侧面上,对应人体凸起的体位处固接有定位组件(6),所述定位组件(6)包括肩垫、胸撑、腰撑以及脚撑。
  7. 根据权利要求1所述的一种护体服饰,其特征在于:所述服饰本体(1)上设有用于在服饰本体(1)与人体之间形成可变容积间隙的撑架(8),所述撑架(8)包括分别设置在人体两侧的伸缩杆(81)以及设置在两个伸缩杆(81)之间的弹力环(82),所述伸缩杆(81)的一端为固接在服饰本体(1)内侧面上的固定端,另一端为用于调节支撑距离的伸缩端,所述弹力环(82)呈弧形,且弹力环(82)的两端分别铰接在人体两侧伸缩杆(81)的伸缩端上,用于调节支撑角度。
  8. 根据权利要求1所述的一种护体服饰,其特征在于:所述服饰本体(1)上位于人体多汗体位处开设有供服饰本体(1)内外气流交换的通风口(14),并在服饰本体(1)的内侧面上缝接有一层覆盖在通风口(14)上的防蚊层(15),所述防蚊层(15)与服饰本体(1)之间固接有用于撑离防蚊层(15)与服饰本体(1)的支撑件(9),且防蚊层(15)与服饰本体(1)之间在支撑件(9)的支撑下形成用于透气的扩散通道(16),所述扩散通道(16)的两侧端均形成有供气流流向人体的开放口。
  9. 一种三维量体裁衣方法,应用于权利要求1-8所述的一种护体服饰,其特征在于,所述方法包括以下步骤:
    S1、由用户先将要测量的多个线长数据按类编以序号,并在编完序号后,根据编号逐一测量所有的线长数据,其中,线长数据包括人体的衣长、裤长等;
    S2、测完线长数据后,在人体上选取Y轴方向上的测量基准点,采用带有Y坐标值的Y轴尺,将Y轴尺的原点对准选取的测量基准点,并在Y轴尺上逐一对所有的线长确定其高度值,形成二维数据;
    S3、待线长的二维数据逐一测量完后,采用塑型尺,由塑型尺测量所有的围长数据,并将所有围长在测量后的二维图形通过相机进行拷贝,然后以步骤S2中的测量基准点为原点,在Y轴尺上逐一对所有的围长确定其高度值,形成三维数据;
    S4、待所有数据均测量完后,由用户将二维数据以及三维数据向裁衣店进行传输,由裁衣店远程接收传输的数据后,进行整理,并复原加入到多维数据库,作为裁衣或购衣的依据;
    S5、裁衣店依据用户实际测量的数据以及多维数据库内的数据组,建立服装裁剪标准。
  10. 根据权利要求9所述的一种三维量体裁衣方法,其特征在于:所述塑型尺为具有塑性形变的条状尺,在塑型尺上设有多个可拆卸连接的拼口,用于塑型尺的拆离和拼装,所述塑型尺的其中一段上固接有用于确定缩放比例的刻度直尺,在步骤S3中,用户采用塑型尺量体后,沿拼口将塑型尺进行拆分,并在塑型尺离开人体后重新拼装,且重新拼装后的塑型尺,通过相机对重新拼装的塑型尺进行二维图形的拷贝,并将二维图形传输给裁衣店,裁衣店裁衣时,由二维图形上刻度直尺的测量长度和刻度直尺上实际的刻度数值得到缩放比例,并以缩放比例为基准,对塑型尺进行二维图形的长度还原,确定用户实际围长的二维数据。
PCT/CN2019/105903 2018-09-13 2019-09-16 一种护体服饰及三维量体裁衣方法 WO2020052681A1 (zh)

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