• 제목/요약/키워드: Seam tensile strength

검색결과 27건 처리시간 0.018초

의류 안감의 봉합강도 및 실 미끄럼저항에 관한 연구 (A Study on the Seam Strength and Resistance to Slippage of Yarns of Lining Fabrics)

  • 어미경;박명자
    • 한국의류산업학회지
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    • 제7권4호
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    • pp.433-438
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    • 2005
  • Seven commercial lining fabrics normally used in a market were selected: plain-weave fabrics with polyester, nylon, rayon and acetate fiber, and polyester textured yarn, in addition, polyester fabrics with plain, twill and satin weave. Then seam strength, seam efficiency, resistance to slippage of yarns and type of seam destruction were examined related to endurance by textiles in sewing capability of the lining fabrics. In results, as tensile strength was greater, seam strength got greater, which shows tensile strength and seam strength have close relationship. Tensile and seam strength of acetate fabric were the least, but seam efficiency was the greatest. It presents that strong tensile and seam strengths do not show high seam efficiency at the same time. Various types of seam destruction have been shown. When tensile strength of the sewing thread was greater than tensile strength of fabric, fabric destruction was occurred before the sewing thread destruction. When tensile strength of the fabric was greater than seam strength, the sewing thread destruction was occurred. Resistance to slippage of yarns got greater as tensile strength of the fabric got greater. The plain-weave fabric, which tensile strength of fabric was smaller, showed the greater resistance to slippage of yarns than twill and satin weave fabrics. The stretch fabric revealed the optimal lining fabric with the greatest resistance to slippage of yarns.

세번수 면직물의 땀수 변화에 따른 봉합강도 (Seam Strength Depending on the Change of Stitch Density of Fine Cotton Fabrics)

  • 어미경
    • 한국의상디자인학회지
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    • 제15권2호
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    • pp.57-64
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    • 2013
  • As the clothing materials have been more functional and advanced, the cotton fabrics for dress shirts or blouses have been more qualified and the sewability for high degree of completion has been required. This study aims to identify the seam strength depending on the change of stitch density of fine cotton fabrics by fabric and thread and so the general seam performance of fine cotton fabrics by analyzing the seam efficiency and breaking mode of seams. For an experiment, 3 kinds of fine cotton fabrics and 2 kinds of threads were selected and the sample was made by changing the stitch density by four steps. Then, the seam strength was measured. Next, the seam efficiency and breaking mode of seams were analyzed on the basis of the results of seam strength measurement. The results are as follows: All fabrics showed the similar tendency in seam strength. The seam strength is related to the tensile strength and thread strength, it increased only to a certain stitch density. When the stitch density exceeded a certain level, fabrics were destroyed or threads were cut. Then, the seam strength didn't increase. Furthermore, the more the seam strength increased, the more the seam efficiency increased. For increasing the maximum stitch density, it was required to use the fabrics and threads which had similar properties, in other words, the high thread strength for the high tensile strength and the low thread strength for the high tensile strength.

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세번수 면직물의 재단 방향 변화에 따른 봉합강도 (Seam Strength Depending on the Change of Cutting Direction of Fine Cotton Fabrics)

  • 어미경
    • 한국의상디자인학회지
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    • 제15권3호
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    • pp.33-40
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    • 2013
  • This paper focused on investigating the seam strength by cutting direction depending on the fabrics and weave by comparing the tensile strength and elongation of bias, warp and weft of 4 kinds of find cotton fabrics and combining 6 kinds of seam cutting directions. The cutting directions are selected the warp direction, weft direction and 45-degree bias direction. Then, three kinds of directions, the warp/warp direction, the weft/weft direction and the bias/bias directions, and the three different kinds of directions, the warp/weft direction, the warp/bias direction and the weft/bias directions, were finally selected. The results are as follows: The tensile strength of all fabrics was higher in the order of warp, bias and weft direction and tensile elongation was higher in the order of bias, warp and weft direction in almost all fabrics. 100's and 150's cotton fabrics showed the highest seam strength when they were cut in the bias/bias direction. The seam strength of the fabrics cut in the same direction was the highest in the fabrics cut in the bias/bias direction. Four kinds of fabrics demonstrated the similar seam strength. However, for the seam strength of fabrics cut in the different directions, 100's cotton fabrics had the difference of seam strength by direction and weave, but 150's cotton fabrics didn't have any difference in seam strength by direction and weave. As described above, the seam strength was influenced by the cutting direction of fabrics. Accordingly, the seam strength can be improved by changing the cutting direction of seam when making the clothing.

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지오텍스타일 봉합 인장강도와 지반의 응력증가분 해석 (Seam Tensile Strength of Geotextile Mat and Stress Increment Analysis)

  • 채유미;김재홍
    • 한국지반신소재학회논문집
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    • 제17권4호
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    • pp.73-79
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    • 2018
  • 서해안과 남해안 그리고, 하천유역에는 연약지반을 개량하여 산업시설 공간과 농경지 확보를 위해 토목섬유매트 활용이 많아지고 있다. 광대한 연약한 지반을 개량하기 위한 초기단계로 장비 진입을 위해 토목섬유매트를 포설하고 접합하여 넓은 지반의 지지력을 증대시킨다. 토목섬유매트 봉합강도는 원단 인장강도의 50% 정도만 힘을 발휘하고 있어 장비주행성에 융기와 침하 등 지지력 저하의 문제들이 발생한다. 본 연구는 여러 가지 토목섬유매트 봉합기술들을 분석하고 각 방법들의 인장강도를 비교분석하였다. 또한 토목섬유매트의 봉합강도를 증가시켰을 때, 상재하중에 의한 지반내의 응력증가분이 감소하는 경향을 수치해석으로 확인하였다. 봉합강도를 60, 70, 80%으로 향상시켰을 때 토목섬유에 의한 지반의 지지력 증가를 확인할 수 있었다.

폴리우레탄 코팅포의 봉제성능 (The Sewability of polyurethane coated fabrics)

  • 신혜원;이정순
    • 한국의류학회지
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    • 제25권2호
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    • pp.350-357
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    • 2001
  • In this study, seam strength, seam elongation and seam efficiency of polyurethane coated fabrics were examined under various sewing conditions using three kinds of fabrics, four kinds of sewing threads and three kinds of stitch lengths. And the sewability of polyurethane coated fabrics were evaluated by FAST system. The results were as follows: 1. Seam strength decreased with the increase of stitch length. The loop strength of sewing thread and the type of base fabric than the type of coated surface had an effect on seam strength. 2. Seam elongation also decreased with the increase of stitch length and was affected by the type of base fabric. The tensile elongation of polyurethans coated fabric had an effect on seam elongation. 3. Sean efficiency also was related to stitch length, the type of base fabric, and seam strength. The suitable seam efficiency was within 50%∼65% in which polyurethane coated fabric and sewing thread broke at the same time. Therefore PS thin and PPC thin sewing threads and 3mm stitch length were suitable to polyurethane coated fabrics. 4. The relaxation shrinkage(RS) of polyurethane coated fabric was smaller than the smallest value of control chart in FAST system. And the extensibility(E) and the shear rigidity(G) were larger than the largest value.

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전도성사의 심 퍼커와 봉합강도 평가 (Evaluation of Seam Puckering and Seam Strength for Conductive Threads)

  • 이효정;박선희;이예진
    • 한국의류학회지
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    • 제45권1호
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    • pp.46-55
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    • 2021
  • Seam puckering and the seam strength of conductive threads used to produce smart clothing were analyzed according to stitching methods and fabrics. Samples were prepared in a lock stitch and zigzag stitch on plain woven and jersey knit fabric, using one type of polyester sewing thread and three types of commercial conductive threads that consisted of two types of stainless-steel conductive threads (TST and MST) and one type of silver conductive thread (SSV). Seam pucker percentages, shapes, and seam strength were measured. On plain woven fabric as well as jersey knit fabric, three-ply TST and MST showed a higher SP percentage compared to a polyester sewing thread. Meanwhile, single-ply SSV showed the lowest SP percentage. In addition, the SP percentage of the zigzag stitch decreased along the weft and course directions of the fabric, and decreased significantly as the number of fabric layers increased. Moreover, there was a marked tendency for a higher SP percentage in jersey knit fabric compared to plain woven fabric, and the two-dimensional cross-section waveforms of stitches obtained using three-dimensional data that showed increased irregular waveforms and peaks in the zigzag stitch. There were no correlations between seam strength and tensile strength.

Leather의 가봉성 연구 (The Sewability of Simulated Leather)

  • 이춘규
    • 대한가정학회지
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    • 제11권4호
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    • pp.363-373
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    • 1973
  • The Sewability was tested with the seam strength and Puckering Grade by a general sewing machine according to some properties of simulated Leather, yarn tensile strength needle and stitches. The main results tested are as follows ; 1. The thick and uncomfortable leather is unable to be sewed by a general sewing machine, but the thin and soft one is able to. 2. The interval between stitches depends on type of leather used, and the variance in accordance with type of leather varies much more in the case of narrower interval. 3. When the sewability of leather-surface is not so good, is desirable to pour oil on the surface for the purpose of better efficiency. 4. The seam strength is directly proportional to interval of stitch and tensile strength of yarn and leather used, and needle No. 14 is more effective than No.1l. 5. The more the soft and thin leather is, the lower the Puckering Grade becomes. Type of yarn and interval of stitches do not seem to effect the Puckering Grade.

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고장력 강재의 전기저항 용접부 열처리 특성 및 기술에 대한 연구 (A Study on the Characteristics of Heat Treated ERW Weld Seam and the Technology of Seam Annealing)

    • Journal of Welding and Joining
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    • 제17권1호
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    • pp.133-144
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    • 1999
  • To fine seam annealer capacity of through thickness seam annealing in terms of through thickness microstructure change with increased toughness and elongation leaving heat trace on it, high strength steel pipes of ERW with different thickness were tested in different seam annealing temperature measured on the outer surface of pipes. Annealing temperature and microstructure of the weld seam were changed through applied seam annealing condition. Toughness and tensile test with hardness and microstructure analysis were done on the annealed weld seam to fine its characteristics as a primary step and annealing characteristics according to different seam annealing condition. Through a study of annealed ERW weld seam characteristics and seam annealing technology, amount of electric power should apply in decreased manner to arranged inductors of annealer in the order of 1st, 2nd, 3rd, so on for proper seam annealing. For example of 15.4mm thick and 610mm outside diameter pipe, applied power for proper seam annealing is 600 -650kw at 1st inductor, 450 - 500kw at 2nd inductor, 200-250 kw at 3rd inductor of annealer during 10 - 12M/minute moving speed of pipe. Also, the penetration depth of heat trace along the thickness direction of weld during seam annealing can be estimated through the equation 17mm/kv$\times$voltage(kv) with the microstructure and hardness analysis of thick weld seam as well as study of seam annealing and comparison of cooling condition to CCT diagram of low carbon high strength steel. From this result, the difference between the technological applicability of full annealing condition based on phase diagram and full penetration of heat trace based on CCT diagram along the thickness of weld seam is discussed.

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연약지반에 포설된 Geotextile 봉합인장강도를 고려한 지지력 수정방정식 (Modification of Bearing Capacity Formula Considering Seam Tensile Strength of Geotextile in Soft Ground)

  • 김선학;채유미;김재홍
    • 한국지반공학회논문집
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    • 제35권12호
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    • pp.59-67
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    • 2019
  • 최근 증가되고 있는 준설 및 매립지반의 해안 공사에서 토목섬유매트 활용이 많아짐에 따라 연약지반의 지지력에 대한 산정은 안전성 평가를 위한 중요한 지표이다. 지반 개량을 위해 토목섬유매트와 복토층을 포설하여 이질층으로 구성된 연약지반의 허용지지력 검토는 일반적으로 Meyerhof(1974)와 Yamanouchi(1985) 방정식을 비교한다. Meyerhof(1974) 수식 결과는 허용지지력의 과소평가로 경제적인 손실을 초래하며, Yamanouchi(1985) 수식은 펀칭전단파괴에 대한 안전사고를 고려하지 않아 다소 큰 지지력을 평가한다. 토목섬유매트의 봉합인장강도를 설계기준에 적용하여 적절한 허용지지력을 산정하는 수정방정식을 제안함으로서 경제성과 안정성을 확보할 것으로 판단된다.

자동차용 아연도금강판의 심 용접조건과 용접성에 관한 연구 (A Study on the Welding Conditions of Weldability of Team Welding for Galvanized Steel Sheets of Automotive)

  • 임재규;정균호;국중하
    • Journal of Welding and Joining
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    • 제19권1호
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    • pp.27-32
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    • 2001
  • This paper is studied about welding conditions and weldability of seam welding for galvanized steel sheet of automotive. The fuel tank of automobile is made by seam welding to be required of airtight or oiltight. This method have required a short time for welding, simplicity operation progress and little HAZ. Especially, it has more less residual stress and transformation than different welding progress. So, this study is for decreasing the leakage occurrence rate and to make standard operating condition table anyone can operate easily. Therefore, this study is analyzed the optimum conditions of seam welding for making the automobile with galvanized steel sheets by means of observing the microstructure and configuration back projection, RT, tensile-shear strengths test and SEM. Optimum conditions of seam welding obtained as follows, current 17.2-17.6kA speed 1.0m/min weld time 4:10:6 and current 16.5-17.4kA, speed 0.83m/min, weld time 4:10:4 at t1.0, and current, 18.5-18.9kA, speed 0.8m/min, weld time 4:10:4 and current 16.5-17.4kA, speed 0.68m/mi, weld time 4:10:2 at t1.6.

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