A stab-proof and cut-proof white coat and its manufacturing method

By using integrated stitching and anti-cutting fabrics in the anti-blade white coat, and using the stitching and locking design, the existing anti-blade clothes are solved inadequate protective effect, comfort and flexibility when doctors wear white coats, achieving a lightweight, comfortable and efficient anti-blade and cut-proof effect.

CN112075695BActive Publication Date: 2025-06-03SHANGHAI STURDY ARMOR NEW MATERIAL TECH CO LTD
View PDF 5 Cites 0 Cited by

Patent Information

Application Number
CN202010975132.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-09-16
Publication Date
2025-06-03
Estimated Expiration
2040-09-16

AI Technical Summary

Technical Problem

When doctors wear white coats, it is difficult to take into account the protective effect, comfort and flexibility of existing stabbing suits, and inconvenient wear affects work.

Method used

The surface fabric and anti-cutting fabric are used with integrated stitching. The stitching and locking design ensures the protective effect of the anti-cutting fabric in key parts, while improving the overall wear comfort and breathability.

Benefits of technology

It achieves lightweight anti-spun and cut-proof effects, improves the comfort and flexibility of wearing, and is suitable for the work needs of medical staff.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN112075695B_ABST
    Figure CN112075695B_ABST
Patent Text Reader

Abstract

The present invention discloses a stab-proof and cut-proof white coat and a manufacturing method thereof, which includes a first-layer surface fabric and a second-layer cut-proof and stab-proof fabric that are integrally stitched and connected. The first-layer surface fabric is completely stitched together. There is a 1-20 mm gap in the shoulder seams and armholes of the second-layer cut-proof and stab-proof fabric. The second-layer cut-proof and stab-proof fabric is woven by knitting or weaving using one or several of aramid fiber, high-strength high-modulus polyethylene fiber, high-strength polyester fiber, high-strength nylon fiber, glass fiber, basalt fiber, metal fiber, and spandex. The white coat of the present invention not only has stab-proof and cut-proof performance, but also has a large protection area, is comfortable and soft to wear, and is flexible and breathable.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of functional safety protection products, and particularly relates to a stab-proof and cut-proof white coat and a manufacturing method thereof. Background Art

[0002] In recent years, medical staff assaults have occurred from time to time. Patients' requirements for doctors have reached a new level. They not only require treatment, but also require doctors to cure patients completely. If there is any dissatisfaction, radical patients often threaten doctors with their lives, which greatly increases the unsafe factors in the working environment of medical workers. There are sometimes cases where radical patients or their families assault doctors with knives, resulting in some doctors being slightly injured or even losing their lives. Therefore, the National People's Congress has also passed legislation to protect the life and health safety of medical staff, comprehensively improve the hospital security level, and ensure the occupational health and safety of the vast majority of medical staff.

[0003] Conventional hard stab-proof clothing is often made of metal sheets, metal plates or metal fibers. Such hard stab-proof clothing is bulky, heavy and not flexible enough to wear; soft stab-proof clothing is generally made of PE non-woven fabrics, dipped non-woven fabrics or woven fabrics, etc., which has improved softness, but is also thicker and heavier. These stab-proof clothing are generally equipped with public security officers, border guards on duty, etc. However, it is not suitable to simply apply these stab-proof clothing to doctors wearing stab-proof white coats, because doctors require both high protection and excellent wearing comfort, and flexible and breathable, which does not affect various daily work. Therefore, it is an urgent problem for technicians in this field to develop a stab-proof white coat with good anti-cut and anti-stab performance, comfortable and breathable, and beautiful style. The Chinese patent with publication number CN209807194U discloses a doctor's suit based on anti-cut fiber material, including an inner lining and a sheath, and also includes an outer coat, wherein the inner lining is fixed to the inner side of the outer coat, and the sheath is fixed to the cuff of the outer coat by a fixed buckle belt. This patent is equivalent to "hanging" the lining on the outer garment, which has only a certain degree of local protection. The connection part is fixed by a fixed buckle belt, which will cause local bulging, rubbing the skin, uncomfortable to wear, and short service life. The Chinese patent with publication number CN211021084U discloses a medical stab-proof clothing, including the material of the stab-proof clothing is a plain fabric woven from ultra-high molecular weight polyethylene fibers, and the right lapel of the stab-proof clothing overlaps the upper or lower lapel and is connected by a movable connector. This medical stab-proof clothing has a certain degree of protection, but it is a plain fabric woven from a single layer of polyethylene fibers. This material has no elasticity and poor wearing comfort; and it is connected by a movable connector, and the connection part also affects the comfort level of the stab-proof clothing to ordinary clothing. The Chinese patent with application number 201911145943.2 discloses a soft stab-proof clothing and a manufacturing method thereof. The disclosed stab-proof clothing includes a coat and a stab-proof material arranged in the coat. The stab-proof material is composed of multiple layers of stab-proof cloth prepared by compounding high-performance fibers and adhesives. This type of stab-proof clothing has a good anti-puncture effect, but its moisture permeability and air permeability are poor after being compounded with adhesives, and after dozens of layers of stab-proof cloth are stacked, the thickness is relatively thick, which affects the wearing experience. Summary of the invention

[0004] In order to solve the above problems in the prior art, the present invention proposes a stab-proof and cut-proof white coat and a production method thereof, which not only has cut-proof and stab-proof performance, but also has a large protection area. The connection parts of the clothes are designed with sewing and lock-edging, and the integrated sewing design of the surface fabric and the cut-proof and stab-proof fabric improves the comfort, softness, flexibility and breathability of the clothes.

[0005] To achieve the above object, the present invention adopts the following technical solutions:

[0006] The first aspect of the present invention provides a stab-proof and cut-resistant white coat, which includes a first-layer surface fabric and a second-layer cut-resistant and stab-proof fabric that are integrally stitched and connected. The first-layer surface fabric is completely stitched together, and there is a 1-20 mm gap in the shoulder seams and armholes of the second-layer cut-resistant and stab-proof fabric. The second-layer cut-resistant and stab-proof fabric is woven by knitting or weaving using one or more of aramid fiber, high-strength high-modulus polyethylene fiber, high-strength polyester fiber, high-strength nylon fiber, glass fiber, basalt fiber, metal fiber, and spandex.

[0007] Preferably, it further includes a third-layer lining fabric, and the first-layer surface fabric, the second-layer cut-resistant and stab-proof fabric, and the third-layer lining fabric are integrally stitched and connected in sequence.

[0008] Preferably, the first-layer surface fabric is woven by compounding one or more of cotton, polyester, nylon, spandex, vinylon, wool, animal fiber, modal, bamboo fiber, and conductive wire.

[0009] Preferably, the gram weight of the second-layer cut-resistant and stab-proof fabric is 120-750 g / m 2 , and the thickness is 0.3-4 mm; the second-layer cut-resistant and stab-proof fabric uses at least aramid fiber and high-strength high-modulus polyethylene fiber, and the sum of the masses of the aramid fiber and the high-strength high-modulus polyethylene fiber accounts for 70-100% of the total mass of the second-layer cut-resistant and stab-proof fabric, and the strength of both the aramid fiber and the high-strength high-modulus polyethylene fiber is at least 28 CN / dex, and the modulus is at least 1000 CN / dtex.

[0010] Preferably, the third-layer lining fabric is woven by compounding one or more of cotton, polyester, nylon, spandex, vinylon, wool, animal fiber, modal, bamboo fiber, and conductive wire; the gram weights of both the first-layer surface fabric and the third-layer lining fabric are 100-280 g / m 2 , and the thicknesses are both 0.2-1.5 mm, and the weaving methods are both knitting or weaving.

[0011] Preferably, pockets are provided at both the front chest and the two sides of the waist of the white coat.

[0012] Preferably, buttons are provided at the cuffs of the white coat, and the buttons are loose buttons or buttons.

[0013] Preferably, the sleeves of the white coat are long sleeves or short sleeves.

[0014] Preferably, embroidery or printing is provided at the front chest of the white coat; the overall white coat is a fitted style or a loose version, and the weight of the white coat is 0.3-2 kg.

[0015] The second aspect of the present invention provides a method for manufacturing the stab-proof and cut-resistant white coat, which includes the following steps:

[0016] S1. First, sew and lock the edges of the first-layer surface fabric on the chest side and the second-layer stab-proof and cut-resistant fabric at the side seams and shoulder seams of the white coat; then, separately lock the edges of the second-layer stab-proof and cut-resistant fabric on the back side; finally, sew and press the two layers of fabric stitched together on the chest on top of the two layers of fabric on the back.

[0017] S2. First, sew and lock the edges of the first-layer surface fabric on the chest and the second-layer stab-proof and cut-resistant fabric at the armhole position of the white coat; then, separately lock the edges of the second-layer stab-proof and cut-resistant fabric on the back and sew and press it on top of the first-layer surface fabric. The sleeve part of the white coat is also sewn and locked with the first-layer surface fabric and the second-layer stab-proof and cut-resistant fabric. Then, the first-layer surface fabrics at the chest, back, and sleeve parts at the armhole are stitched together. There is a 1-20 mm gap between the two layers of fabric at the sleeve part of the armhole and the second-layer stab-proof and cut-resistant fabric on the chest and the second-layer stab-proof and cut-resistant fabric on the back that is not sewn. The stab-proof white coat can also be integrally stitched with the first-layer surface fabric, the second-layer stab-proof and cut-resistant fabric, and the third-layer lining fabric. After the second-layer stab-proof and cut-resistant fabric and the third-layer lining fabric on the front chest, back, and sleeves are integrally stitched and locked to form a whole, it is then stitched together with the first-layer surface fabric. The first-layer surface fabric at the armhole position is stitched together to connect the front chest, back, and sleeves. The second-layer stab-proof and cut-resistant fabric and the third-layer lining fabric do not connect the front chest, back, and sleeves. There is a 1-20 mm gap between the sleeve and the chest and back at the armhole part.

[0018] S3. Integrally stitch the first-layer surface fabric and the second-layer stab-proof and cut-resistant fabric at the standing collar part of the neck and the small collar part of the front chest of the white coat.

[0019] S4. Integrally stitch the first-layer surface fabric and the second-layer stab-proof and cut-resistant fabric at the outermost edge of the front placket of the white coat.

[0020] Adopting the above technical solutions, compared with the prior art, the present invention has the following technical effects:

[0021] 1. The stab-proof white coat of the present invention has the functions of stab-proof, puncture-proof, cut-resistant, and scratch-resistant, and is light in weight. The finished product weighs within the range of 0.3-2 kg, which is much lighter than ordinary metal stab-proof vests and soft stab-proof vests. At the same time, it has a large protection area, protecting the entire upper body. It has the advantages of being comfortable, soft, flexible, breathable, easy to stretch, and not affecting various movements.

[0022] 2. The shoulder seams, armholes, and side seams of the stab-proof white coat of the present invention adopt a unique stitching and locking design, with good stretching elasticity, not rubbing the skin, and improving the comfort of the connection parts of the stab-proof vest.

[0023] 3. The stab-resistant white coat of the present invention adopts a tailored design, with a fashionable style, meeting the aesthetic wearing needs of medical and health personnel; it can be worn alone during on-duty or in combination with other conventional clothing.

[0024] 4. The manufacturing method of the stab-resistant white coat of the present invention can also be applied to stab-resistant long sleeves, short sleeves, stab-resistant jackets, and coats. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 It is a schematic cross-sectional view of the stab-resistant and cut-resistant white coat in the present invention;

[0026] Figure 2 It is a front schematic view of the stab-resistant and cut-resistant white coat in the present invention;

[0027] Figure 3 It is a back schematic view of the stab-resistant and cut-resistant white coat in the present invention;

[0028] Among them, the reference numerals are as follows:

[0029] 1 - The first-layer surface fabric; 2 - The second-layer cut-resistant and stab-resistant fabric; 3 - The third-layer lining fabric; 4 - Pocket; 5 - Button. DETAILED DESCRIPTION OF THE INVENTION

[0030] The present invention will be described in detail and specifically below through specific embodiments and drawings to better understand the present invention. However, the following embodiments do not limit the scope of the present invention.

[0031] Embodiment 1

[0032] As Figure 1 and Figure 2 shown, the present invention provides a stab-resistant and cut-resistant white coat, including a first-layer surface fabric 1 and a second-layer cut-resistant and stab-resistant fabric 2 that are integrally stitched and connected.

[0033] As a preferred embodiment, the first-layer surface fabric 1 is woven from one or several of cotton, polyester, nylon, spandex, vinylon, wool, animal fiber, modal, bamboo fiber, and conductive wire. Preferably, it is a 32-count combed polyester-cotton woven fabric, and it is a bleached white fabric with a gram weight of 160 g / m 2 , and a thickness of 0.2 mm.

[0034] As a preferred embodiment, the second anti-stabbing and anti-cutting fabric 2 is woven by one or several of aramid fiber, high-strength high-modulus polyethylene fiber, high-strength polyester fiber, high-strength nylon fiber, glass fiber, basalt fiber, and metal fiber. Preferably, it is a high-strength high-modulus polyethylene fiber blended with spandex fabric. The mass percentage of the high-strength high-modulus polyethylene fiber in the second anti-stabbing and anti-cutting fabric 2 is 95%. The strength of the high-strength high-modulus polyethylene fiber is 32 CN / dex, and the modulus is 1100 CN / dtex. The second anti-stabbing and anti-cutting fabric 2 is a knitted structure with a gram weight of 550 g / m 2 , and the thickness is 2 mm.

[0035] As a preferred embodiment, the third inner fabric 3 is woven by one or several of cotton, polyester, nylon, spandex, vinylon, wool, animal fiber, modal, bamboo fiber, and conductive wire.

[0036] As a preferred embodiment, pockets 4 are provided at both the front chest and the two sides of the waist of the white coat.

[0037] As a preferred embodiment, the white coat is provided with a drawstring or buttons at the cuffs, preferably button cuffs.

[0038] As a preferred embodiment, the sleeves of the white coat are long sleeves or short sleeves, preferably long sleeves.

[0039] As a preferred embodiment, embroidery or printing is provided on the front chest of the white coat.

[0040] As a preferred embodiment, the overall white coat is a fitted style or a loose version, preferably a fitted design; and the weight of the white coat is 0.3 - 2 kg.

[0041] The processed and woven white coat has a classic and fashionable style, is comfortable and soft to wear, flexible and breathable, and has a high anti-stabbing and anti-cutting effect, playing a good protective role; at the same time, the protection level of the white coat can be correspondingly improved by the thickness of the anti-stabbing and anti-cutting material.

[0042] The manufacturing method of the above anti-stabbing and anti-cutting white coat is as follows:

[0043] S1. At the side seams and shoulder seams of the white coat, the first-layer surface fabric 1 and the second anti-cut and anti-stab fabric 2 on one side of the chest are first sewn and overlocked; then the second anti-cut and anti-stab fabric 2 on the back side is overlocked alone; finally, the fabric that is sewn together in two layers on the chest is sewn and pressed on top of the two-layer fabric on the back. The reason for adopting this sewing method is that the second anti-cut and anti-stab fabric 2 has a certain thickness. If the four layers on the chest and back are sewn together, the position of the seam is too thick and it is very difficult for the sewing machine equipment to sew. Adopting the splicing and lapping seam structure can solve the comfort problem at the splicing seam, and at the same time, the lapping seam position can be protected by the second anti-cut and anti-stab fabric 2, with the characteristics of free stretching, flexibility and convenience. It is also possible to sew the two-layer fabric on one side of the chest and the two-layer fabric on one side of the back together. This sewing method has high efficiency, but there is an obvious bulge at the sewing position and the wearing comfort is poor;

[0044] S2. At the armhole of the white coat, the first-layer surface fabric 1 and the second anti-cut and anti-stab fabric 2 on the chest can be sewn together and overlocked, and then the anti-cut and anti-stab fabric on the back is overlocked alone and sewn to the first-layer surface fabric; the sleeve part of the white coat is also the first-layer surface fabric 1 and the second anti-cut and anti-stab fabric 2 sewn together integrally and overlocked; then the first-layer surface fabric 1 at the armhole of the chest, back and sleeve parts is sewn together, and there is a 1-20 mm gap between the two-layer fabric of the sleeve part at the armhole of the sleeve and the second anti-cut and anti-stab fabric 2 on the front chest and the second anti-cut and anti-stab fabric 2 on the back without sewing. The reason for adopting this sewing method is that it is convenient to move at the armpit and there is a large stretching elastic activity space. It is also possible to sew the two-layer fabric of the sleeve, chest and back together integrally with the first-layer surface fabric 1 and the second anti-cut and anti-stab fabric 2. In this case, there is a bulge at the armpit and the wearing comfort is slightly poor;

[0045] S3. The standing collar part of the neck and the small collar part of the front chest of the white coat are also the first-layer surface fabric 1 and the second anti-cut and anti-stab fabric 2 sewn together integrally. The standing collar part of the neck can be put down usually and can be erected at a dangerous moment to protect the neck from being cut and stabbed by a knife;

[0046] S4. The outermost edge of the front opening of the white coat also includes the first-layer surface fabric 1 and the second anti-cut and anti-stab fabric 2 sewn together integrally.

[0047] Embodiment 2

[0048] The difference between this embodiment and Embodiment 1 is that: it further includes a third-layer lining fabric 3, and the first-layer surface fabric 1, the second anti-cut and anti-stab fabric 2 and the third-layer lining fabric 3 are integrally sewn and connected in sequence.

[0049] The manufacturing method of the above-mentioned anti-stab and anti-cut white coat is as follows:

[0050] S1. The second anti-cutting and stabbing fabric 2 and the third inner fabric 3 on the front, back, and sleeves of the white coat are integrally stitched and hemmed to form a whole, and then stitched and pressed on top of the first outer fabric 1. The reason for adopting this stitching method is that the second anti-cutting and stabbing fabric 2 has a certain thickness. When stitching 6 layers together at the chest and back, the stitching position is too thick, and it is very difficult for the sewing equipment to sew. Adopting the splicing and lapping structure can solve the comfort problem at the splicing and stitching position. At the same time, the lapping position can be protected by the second anti-cutting and stabbing fabric 2, featuring free stretching, flexibility, and softness. It is also possible to stitch the three-layer fabric on one side of the chest and the three-layer fabric on one side of the back together. This stitching method is efficient, but there is an obvious bulge at the stitching position, and the wearing comfort is poor;

[0051] S2. The first outer fabric 1 at the armhole position of the white coat, including the front chest, back, and sleeves, is stitched together to connect the front chest, back, and sleeves. The second anti-cutting and stabbing fabric 2 and the third inner fabric 3 do not connect the front chest, back, and sleeves. There is a 1 - 20 mm gap between the second and third layers of the sleeves and the chest and back at the armhole position. The reason for adopting this stitching method is that it is convenient to move at the armpit, with flexible movements. It is also possible to stitch the sleeves, chest, and back three-layer fabrics together integrally with the first outer fabric 1, the second anti-cutting and stabbing fabric 2, and the third inner fabric 3. In this case, the armpit is a bit prominent, and the comfort is slightly poor;

[0052] S3. The neck stand-up collar part and the small collar part on the front chest of the white coat are also processed by stitching and hemming the second anti-cutting and stabbing fabric 2 and the third inner fabric 3, and then stitched and pressed on top of the first outer fabric 1. The neck stand-up collar part can be put down usually and stand up at a dangerous moment to protect the neck from being cut and stabbed by a knife;

[0053] S4. At the outermost edge of the front opening of the white coat, the second anti-cutting and stabbing fabric 2 and the third inner fabric 3 are also processed by stitching and hemming, and then stitched and pressed on top of the first outer fabric 1.

[0054] Embodiment 3

[0055] As Figure 1 and Figure 2 shown, the present invention provides a stab-proof and cut-proof white coat, including the first outer fabric 1 and the second anti-cutting and stabbing fabric 2 that are integrally stitched and connected.

[0056] As a preferred embodiment, the first outer fabric 1 is woven by compounding one or several of cotton, polyester, nylon, spandex, vinylon, wool, animal fiber, modal, bamboo fiber, and conductive wire. Preferably, it is a 72 - count double - strand combed pure cotton woven fabric, and it is a bleached white fabric with a gram weight of 175 g / m 2 , and a thickness of 0.25 mm.

[0057] As a preferred embodiment, the second anti-cut and anti-stab fabric 2 is woven by one or several of aramid fiber, high-strength high-modulus polyethylene fiber, high-strength polyester fiber, high-strength nylon fiber, glass fiber, basalt fiber, and metal fiber. Preferably, it is a blend of high-strength high-modulus polyethylene fiber and aramid fiber, or high-strength polyester fabric. The mass percentages of high-strength high-modulus polyethylene fiber and aramid fiber in the second anti-cut and anti-stab fabric 2 are 86%. The strength of high-strength high-modulus polyethylene is 32 CN / dex, and the modulus is 1100 CN / dtex. The second anti-cut and anti-stab fabric 2 is a knitted structure with a gram weight of 580 g / m 2 , and the thickness is 1.6 mm.

[0058] As a preferred embodiment, the third inner fabric 3 is woven by one or several of cotton, polyester, nylon, spandex, vinylon, wool, animal fiber, modal, bamboo fiber, and conductive wire.

[0059] As a preferred embodiment, pockets 4 are provided at both the front chest and the sides of the waist of the white coat.

[0060] As a preferred embodiment, the white coat is provided with a drawstring or buttons at the cuffs, preferably button cuffs.

[0061] As a preferred embodiment, the sleeves of the white coat are long sleeves or short sleeves, preferably long sleeves.

[0062] As a preferred embodiment, embroidery or printing is provided on the front chest of the white coat.

[0063] As a preferred embodiment, the overall white coat is a fitted style or a loose version, preferably a fitted design; and the weight of the white coat is 0.3 - 2 kg.

[0064] The processed and woven white coat has a classic and fashionable style, is comfortable and soft to wear, flexible and breathable, and has a high anti-stab and anti-cut effect, playing a good protective role; at the same time, the protection level of the white coat can be correspondingly improved by the thickness of the anti-cut and anti-stab material.

[0065] The manufacturing method of the above anti-stab and anti-cut white coat is as follows:

[0066] S1. First, the first layer of outer fabric 1 on one side of the chest at the side seams and shoulder seams of the white coat is sewn and overlocked with the second anti-cut and anti-stab fabric 2; then the second anti-cut and anti-stab fabric 2 on the back side is separately overlocked; finally, the fabric stitched together on the chest is stitched and pressed on the two layers of fabric on the back. The reason for adopting this stitching method can solve the comfort problem at the splicing joint, and at the same time, the overlapping joint position can be protected by the second anti-cut and anti-stab fabric 2, strengthening the protection strength at the joint, and at the same time having the characteristics of free stretching, flexibility and softness.

[0067] S2. At the cuff of the white coat, the first-layer surface fabric 1 of the chest and the second-layer stab-resistant fabric 2 can be stitched together and hemmed, and then the stab-resistant fabric on the back is hemmed separately and stitched to the first-layer surface fabric; the sleeve part of the white coat is also the first-layer surface fabric 1 and the second-layer stab-resistant fabric 2 stitched together integrally and hemmed; then the first-layer surface fabrics 1 at the chest, back and sleeve parts at the cuff are stitched together, and there is a 1-20 mm gap between the two-layer fabrics of the sleeve part at the cuff of the sleeve and the second-layer stab-resistant fabrics 2 on the chest and back without stitching. The reason for adopting this stitching method is that it is convenient to move at the armpit and there is a large stretching elastic movement space.

[0068] S3. The standing collar part of the neck and the small collar part of the front chest of the white coat are also the first-layer surface fabric 1 and the second-layer stab-resistant fabric 2 stitched together integrally. The standing collar part of the neck can be put down usually and can be stood up at a dangerous moment to protect the neck from being cut and stabbed by a knife;

[0069] S4. The outermost edge of the front opening of the white coat also includes the first-layer surface fabric 1 and the second-layer stab-resistant fabric 2 stitched together integrally.

[0070] The specific embodiments of the present invention have been described in detail above, but they are only examples, and the present invention is not limited to the specific embodiments described above. For those skilled in the art, any equivalent modifications and substitutions made to the present invention are also within the scope of the present invention. Therefore, all equivalent transformations and modifications made without departing from the spirit and scope of the present invention should be covered within the scope of the present invention.

Claims

1. A stab-proof and cut-resistant white coat, characterized in that, it includes a first-layer surface fabric (1) and a second-layer cut-resistant and stab-proof fabric (2) that are integrally stitched and connected. The first-layer surface fabric (1) is completely stitched together. There is a 1-20 mm gap in the shoulder seams and armholes of the second-layer cut-resistant and stab-proof fabric (2). The second-layer cut-resistant and stab-proof fabric (2) is woven by knitting or weaving using one or several of aramid fiber, high-strength high-modulus polyethylene fiber, high-strength polyester fiber, high-strength nylon fiber, glass fiber, basalt fiber, metal fiber, and spandex; The manufacturing method of the white coat includes the following steps: S1. First, stitch and hem the first-layer surface fabric (1) and the second-layer cut-resistant and stab-proof fabric (2) on one side of the chest at the side seam position of the white coat; then hem the second-layer cut-resistant and stab-proof fabric (2) on the back side alone; finally, stitch and press the two layers of stitched fabric on the chest on top of the two layers of fabric on the back; S2. The white coat is also integrally stitched with the first-layer surface fabric (1), the second-layer cut-resistant and stab-proof fabric (2), and the third-layer lining fabric (3). After the second-layer cut-resistant and stab-proof fabric (2) and the third-layer lining fabric (3) on the front chest, back, and sleeves are integrally stitched and hemmed to form a whole, it is then stitched together with the first-layer surface fabric (1). The first-layer surface fabric (1) at the armhole part is stitched together to connect the front chest, back, and sleeves. The second-layer cut-resistant and stab-proof fabric (2) and the third-layer lining fabric (3) do not connect the front chest, back, and sleeves. There is a 1-20 mm gap between the sleeves and the chest and back at the armhole part.

2. The stab-proof and cut-resistant white coat according to claim 1, characterized in that, the first-layer surface fabric (1) is woven by compounding one or several of cotton, polyester, nylon, spandex, vinylon, wool, modal, bamboo fiber, and conductive wire.

3. The stab-proof and cut-resistant white coat according to claim 1, characterized in that, The gram weight of the second anti-cutting and anti-stabbing fabric (2) is 120 - 750 g / m 2 , and the thickness is 0.3 - 4 mm; the second anti-cutting and anti-stabbing fabric (2) is made of at least aramid fiber and high-strength high-modulus polyethylene fiber, wherein the sum of the masses of the aramid fiber and the high-strength high-modulus polyethylene fiber accounts for 70 - 100% of the total mass of the second anti-cutting and anti-stabbing fabric (2), and the strength of both the aramid fiber and the high-strength high-modulus polyethylene fiber is at least 28 CN / dex, and the modulus is at least 1000 CN / dtex.

4. The stab-proof and cut-resistant white coat according to claim 1, characterized in that, The inner fabric (3) of the third layer is woven by compounding one or several of cotton, polyester, nylon, spandex, vinylon, wool, modal, bamboo fiber, and conductive wire; the grammage of the outer fabric (1) of the first layer and the inner fabric (3) of the third layer is 100-280 g / m 2 , the thickness of both is 0.2-1.5 mm, and the weaving methods of both are knitting or weaving.

5. The stab-proof and cut-resistant white coat according to claim 1, characterized in that, pockets (4) are provided on both sides of the front chest and the waist of the white coat.

6. The stab-proof and cut-resistant white coat according to claim 1, characterized in that, buttons (5) are provided at the cuffs of the white coat, and the buttons (5) are loose-fastening buttons or buttons.

7. The stab-proof and cut-resistant white coat according to claim 1, characterized in that, the sleeves of the white coat are long sleeves or short sleeves.

8. The stab-proof and cut-resistant white coat according to claim 1, characterized in that, embroidery or printing is provided on the front chest of the white coat; the whole white coat is a fitted style or a loose version, and the weight of the white coat is 0.3-2 kg.

9. The stab-proof and cut-resistant white coat according to claim 1, characterized in that, the manufacturing method of the white coat further includes: S3. Integrally stitch the first-layer surface fabric (1) and the second-layer cut-resistant and stab-proof fabric (2) at the standing collar part of the neck and the small collar part of the front chest of the white coat; S4. The outermost first-layer surface fabric (1) and the second-layer cut-resistant and stab-resistant fabric (2) at the outermost edge of the front of the white coat are integrally stitched.

Citation Information

Patent Citations

  • Lightweight soft stab-proof clothing and its preparation method

    CN110786571B

  • Doctor garment based on anti-cutting fiber material

    CN209807194U

  • Medical stab-resistant clothes

    CN211021084U

  • Stab-resistant and cut-resistant T-shirt with warm-keeping and antibacterial functions

    CN211483023U

  • Anti-stabbing and anti-cutting white coat

    CN213587506U