• 제목/요약/키워드: knitted fabric

검색결과 158건 처리시간 0.028초

위편성물의 합사조건에 따른 역학특성과 드레이프성의 변화 (Changes on Drapability and Mechanical Properties of Weft Knitted Fabrics with Folded Yarn Conditions)

  • 김미라;전연희;안승국
    • 한국의류산업학회지
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    • 제11권3호
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    • pp.460-464
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    • 2009
  • The purpose of the study was to investigate the changes of drapability and mechanical properties with folded yarn conditions. The samples were knitted 100% cotton yarn with hand-knitting machine. Mechanical properties were measured by Instron and Kawabata tester. Drapability was measured by Drapemeter. The differences in each sample were observed in the experimental results. This study showed that folded conditions were important conditions for fabric handle and properties.

오가닉 코튼 원사제조 방법에 따른 고감성 의류용 편성물의 물리적 특성 (The Physical Property of Knitted Fabrics for High Sensible Garment according to the Spinning Method using Organic Cotton)

  • 김현아;김현철
    • 한국의류산업학회지
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    • 제15권4호
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    • pp.606-612
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    • 2013
  • This paper investigates the physical properties of organic cotton staple yarns manufactured by ring and siro spinning methods as well as analyzes the physical properties of fabric specimens knitted with staple yarns made by these two methods. The breaking stress and evenness of organic ring staple yarns showed the same level for the Japanese specimens as the control yarns; in addition, the same coefficient for the friction of the manufactured yarns and Japanese specimens was also shown. These results makes it possible to manufacture organic staple ring yarns from organic cotton fibers. The tenacity and breaking strain of siro staple yarns were higher than ring staple yarns. The evenness and friction coefficient of siro staple yarns were lower than the ring staple yarns; in addition, hairiness and the number of siro staple yarns was significantly lower than the ring staple yarns. The dimensional stabilities of knitted fabrics by 20 Ne and 30 Ne siro staple yarns were superior to ring staple yarns. The color fastnesses of washing, perspiration and abrasion of knitted fabrics by two spinning methods showed the same level as the 4.5 grade; however, the light fastness of knitted fabric by siro staple yarns was superior to ring staple yarns. It was shown that the siro spinning method (using eco-friendly organic cotton fibers) was applicable to a high sensible knitted garment that overcame drawbacks of organic fibers related to shrinkable properties after washing and low color fastness to light.

0.01d 폴리에스테르 초극세 섬유의 염색성 및 역학적 성질 (Dyeing and Mechanical Properties of 0.01d Polyester Ultramicro Fiber)

  • 박재민;정동석;노환권;류현재;이문철
    • 한국염색가공학회지
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    • 제18권6호
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    • pp.10-15
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    • 2006
  • In this article, effect of the dyeing and mechanical properties were investigated on the polyester ultramicro fiber(UMF) and knitted fabric varying fiber fineness(0.01d and 0.05d). By a treatment with NaOH solution, sea-ingredient was removed and polyester micro-fiber was revealed. The dyeing, build-up and fastness properties of the fiber and fabrics were observed. We used C.I. Disperse Red 60 and Blue 56 for dyeing property and eight Lumacron dyes for build-up property and colorfastness. At low temperature dyeing($100^{\circ}C$), the dyeing rate of 0.01d-polyester UME increased more than that of 0.05d-polyester UMF with Disperse Red 60 and Blue 56 whereas dyeing rate of 0.05d-polyester UMF were increased more than that of 0.01d-polyester UMF at high temperature($120^{\circ}C$), The colorfastnesses of the 0.05d-fiber knitted fabric such as washing, rubbing and light was higher than those of the 0.01d-fiber knitted fabric.

연사방법에 따른 아세테이트/폴리에스터 복합사 편성물의 역학적 특성 및 3D CAD System에 의한 외관특성 (Mechanical Properties and 3D CAD Images of the Appearance of Knitted Fabric with Acetate/Polyester Composite Yarn by Different Yarn Twisting Methods)

  • 김소진;전동원;박영환
    • 한국염색가공학회지
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    • 제18권1호
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    • pp.33-43
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    • 2006
  • The purpose of this study was to eximine the effect of different yam twisting methods on mechanical properties and 3D CAD images of plain knitted fabrics made of composite yarns. Six yams were used in this study: four different composite yams of the six consist of acetate and functional polyester (Poly-m) with the ratio of 70:30, and the rest two are the original acetate $100\%$ yam and the poly-m $100\%$ yarn. The four kinds of composite yarns were processed in combinations of twisting processes such as interlacing, false twisting, two for one twisting, combined twisting and single covering, and the two original yams were knitted without any twisting process. Sixteen mechanical properties of all the six knitted fabrics, knitted under the same knitting conditions, were measured by KES-FB system with the outer knit condition. The results were as follows; 1) When the sample applied with the false twisting process at the temperature as high as $220^{\circ}C$, ENT, B, HB, G and RC values of samples increased which leads to increasing dimensional stability. 2) To gain the high bending and shear properties in the single covering process, selecting the core yarn with such properties is the most important factor. 3) Interlacing process effected to increase RC value. 4) False twisting process after interlacing process gave bulkiness and un-interlaced part in yam was increased SMD value. The SMD value of the kilted fabric of the composite yarn, which was put through the combined twist process, was higher than those of which simple process such as the two for one twist or the single covering process applied. In order to achieve the silk-like surface feel of knitted fabric, the sin91e covering process is recommended. 5) Examining the simulation images of the knifed fabrics of composite yarn, which were generated by the 3D CAD system based on the mechanical properties of the fabric, led that appearance could be changed as different twisting methods were applied.

재봉(裁縫)바늘의 위편성물(緯編聖物) 관통(貫通)에 관한 연구(硏究)

  • 이춘계
    • 복식
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    • 제11권
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    • pp.51-60
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    • 1987
  • The penetration force of needle and penetration energy kave been investigated, in order to research into the sewing factors that influence the weft knitted fabric with high elastic property. The results of the studies are a follows: (1) As the results have showed a high correlativity between the needle penetration energy and force, it proves that the dynamic energy produced by the friction of the needle as it penetrates and withdraws from the knitted fabric contributes to the heat growth of the needle. (2) To reduce frictional force the use of thin needles, medium ball point needle and super needle are effective. (3) The reduction in number of plies of fabric or also in the case of a decrease in penetration speed have been effective in lowering the penetration energy and force.

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재봉바늘의 열발생에 미치는 편성물봉제조건의 영향 (Effects of Sewing Conditions for Knitted Fabric on the Heat Generation of Sewing Needle)

  • 이춘규
    • 대한가정학회지
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    • 제24권3호
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    • pp.59-67
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    • 1986
  • The heat of sewing needle is generated through the friction during the needle penetration into and withdrawal from fabrics. Therefore, effects of sewing condition for knitted fabric on the heat generation of needle was examined. The needle size was not the large influence factor of heat generation of needle but the needle point shape significantly affects needle temperature. And the super needle coated with fluoro resin had more effect on reducing the heat of needle. The decrease of sewing speed and the increase of stitch rate had more effect on the reduction in needle temperature. Also the Influence of a sewing thread on the needle temperature was very large compared with bare needle. As expected, an increase in the number of fabric layers result in higher needle temperature.

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중년 여성용 아크릴 니트 재킷에 적합한 조직에 관한 연구 (A Study on Texture Suited for the Acryl Knitted Jacket of Women in the Middle Age)

  • 최진희
    • 복식문화연구
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    • 제17권1호
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    • pp.15-27
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    • 2009
  • The purpose of this study was to find texture which suitable for the acryl knitted jacket of women in the middle age. The study was carried out 2 parts. The first part was to choose the pattern fitted in the body shape of women in the middle age, and the second part was wearing test with 3 different textured acryl knitted jacket(half milano, milano, jacquard). The usable data of the test were coded for further statistical analysis including descriptive statistics (frequency and one way-ANOVA test, Student-Newman-Keuls Multiple Range Test) by using SPSSWIN 12.0. The results were as follows: It was found that first evaluation for the appearance test on fitness, pattern B(Brand: Morado) were better than the rest of them(pattern A: Trieste, pattern C: Escalier). It was found that second evaluation for the test, jacket with jacquard were better than the rest of them. Acryl knitted Jacket of women in the middle age should made of jacquard. Therefore it should be designed as possible as considering the physical characteristics of knitted materials. It was found that third evaluation for the test, it was opposite results that a general knitted fabric pattern was made smaller than a woven jacket. So, it was necessary that the acryl knitted jacket of women in the middle age follow a similar site tolerance such as a woven jacket. This result was due to a radical change of a middle age women's body shape.

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손가락 동작 분류를 위한 니트 데이터 글러브 시스템 (Knitted Data Glove System for Finger Motion Classification)

  • 이슬아;최유나;차광열;성민창;배지현;최영진
    • 로봇학회논문지
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    • 제15권3호
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    • pp.240-247
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    • 2020
  • This paper presents a novel knitted data glove system for pattern classification of hand posture. Several experiments were conducted to confirm the performance of the knitted data glove. To find better sensor materials, the knitted data glove was fabricated with stainless-steel yarn and silver-plated yarn as representative conductive yarns, respectively. The result showed that the signal of the knitted data glove made of silver-plated yarn was more stable than that of stainless-steel yarn according as the measurement distance becomes longer. Also, the pattern classification was conducted for the performance verification of the data glove knitted using the silver-plated yarn. The average classification reached at 100% except for the pointing finger posture, and the overall classification accuracy of the knitted data glove was 98.3%. With these results, we expect that the knitted data glove is applied to various robot fields including the human-machine interface.

원사의 수축에 따른 다공성 편성물의 형태변화와 열·수분 전달특성 (The appearance change and heat·moisture transfer properties of knitted fabric by yarn shrinkage)

  • 상정선;박주현;이미식;오경화
    • 복식문화연구
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    • 제25권6호
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    • pp.880-892
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    • 2017
  • In this study, the appearance change and the heat moisture transfer properties of knitted fabric by yarn shrinkage were examined to obtain useful data on the development of thermo-sensitive functional materials. Eleven types of knitted fabric were knitted using highly bulky acrylic-blended yarn. After shrinking the specimens using dry heat treatment, the appearance change and thickness were measured. An HEC simulator was adopted for measuring the heat moisture transfer properties of specimens by yarn shrinkage. When holes were arranged vertically in the mesh structure, the specimens with 2,500 and 5,000 holes showed high percent change of hole area, appearance, and thickness. When holes were diagonally arranged in the mesh structure, the percent change of hole area in the specimen with 1,250 holes was larger than the one with 2,500 holes. However, the dimensional stability of the specimen with 2,500 holes was better because of its smaller appearance and thickness change. In the tuck structure, the percent change of hole area in the specimen with 625 and 416 holes was relatively large compared with the appearance and thickness change. Furthermore, the hole size in the tuck structure was smaller than that in the mesh structure but the percent change of hole area was larger. Therefore, it was proved that the tuck structure is more suitable than the mesh structure for developing thermo-sensitive functional materials. Heat moisture transfer property test verified that the change of hole area by yarn shrinkage enabled obtaining the thermal effect due to the distinct temperature difference in the inner layer.