• Title/Summary/Keyword: mesh fabric

검색결과 51건 처리시간 0.029초

직물 미세구조의 3차원 표면 및 솔리드 형성 방법 (A Novel Method for 3D Surface and Solid Construction Analysis of Fabric Microstructure)

  • 이예진;이병철
    • 한국생활과학회지
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    • 제21권3호
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    • pp.539-550
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    • 2012
  • In-depth knowledge of fabric microstructure is essential for understanding clothing comfort since it plays a significant role in heat and mass transfer between the human body and clothing. In this study, a novel method was employed for investigating 3D surfaces and solid construction characteristics of specific fabrics by using a reverse engineering technique. The surface construction data were obtained by a confocal laser scanning microscope and then manipulated by a 3D analysis program. Triangle mesh was used for connecting each 3D point, with clouds and fabric surface characteristics created by rendering techniques. For generating a 3D solid model, determinants of radius of curvature was used. According to the proposed method, actual surface expression of the real fabric was achieved successfully. The results from this methodology can be applied to the detailed analysis of clothing comfort that is highly influenced by the microstructure of the fabric.

여과분리재를 이용한 슬러지 농축에 관한 연구 (Study on Sludge Thickening with Mesh is Used as Filtration Msdia)

  • 김부길;박민수
    • 한국환경과학회지
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    • 제15권10호
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    • pp.945-949
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    • 2006
  • For a membrane bio-reactor, it is possible to fillet and separate activated sludge and effluent by head loss of centimeters, if non-woven fabric material is used as titration media. However, if non-woven fabric material is used to thicken high-concentration sludge, excessive sludge attachment causes the rapid decrease of flux. Mesh with fore sizes of $100{\mu}m,\;150{\mu}m,\;and\;200{\mu}m$ allows for easy separation of attached sludge. This study examined the possibility of mesh as filtration media. Existing close-flow filtration process, which requires maintaining sludge movement, makes It difficult to obtain high thickening rate. With a view of complementing this weakness, this study has made an experimental examination on how high-concentration sludge (about 3,000mg/L to 10,000mg/L) will be filtered and thickened when mesh module is submersed in the bio-reactor. Effluent flowed from the bottom of the bio-reactor by head loss of 65cm. In case of pore size of $100{\mu}m$, SS showed high recovery of 80% to 96%; therefore, it has been decided that mesh can be used as filtration media. Filtration lasted for more than 9 hours, until sludge with 9,000mg/L in MLSS concentration was thickened 9 times as dense. In the range from 3,610mg/L to 9,060mg/L in MLSS concentration, it was possible to obtain effluent with less than 2mg/L in MLSS concentration within 10 minutes.

열가소성 직물탄소복합소재 사출 성형품의 표면 함침 개선에 관한 연구 (A study on the improvement of impregnation on the surface of injection-molded thermoplastic woven carbon fabric composite)

  • 정의철;윤경환;이성희
    • Design & Manufacturing
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    • 제15권3호
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    • pp.39-44
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    • 2021
  • In molding of continuous fiber-reinforced thermoplastic composites, it is very difficult to impregnate between the reinforcements and the matrix since the matrix has a high melting temperature and high viscosity. Therefore, most of composite molding processes are divided in the manufacturing processes of intermediate materials called prepreg and the forming of products from intermediate materials. The divided process requires additional facilities and thermoforming, and they increase the cycle time and cost of composite products. These problems can be resolved by combining the continuous fiber-reinforced composite molding process with injection molding. However, when a composite material is manufactured by inserting woven fabric into the injection mold, poor impregnation occurs on the surface of the molded product. It affects the properties of the composites. In this paper, through an impregnation experiment using cores with different heat transfer rates and pore densities, the reason for the poor impregnation was confirmed, and molding experiments were conducted to produce composite with improved surface impregnation by inserting the mesh. And also, the surface impregnation and deformation of composites molded using different types of mesh were compared with each other.

활성탄 함유 부직포의 소취성 평가 (Deodorization of Non-woven Fabrics Bonded with Activated Carbon)

  • 정동석;천태일
    • 한국염색가공학회지
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    • 제27권1호
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    • pp.50-61
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    • 2015
  • The merits of activated carbon for removal of organic compounds have been well known in the various industrial fields. Fixing methods with activated carbon in the non-woven fabric have the advantages of fast adsorption and ease of handling when compared with bonding and coating methods. In this study, we have examined deodorization of non-woven fabrics fixed with activated carbon. We have been tested the deodorization of various kinds activated carbon and non-woven fabric structures. The effective mixing ratio of activated carbon was 5% on the weight of fabrics, which are closely related to the fabric structure. The activated carbon with higher mesh size show the better deodorization effect.

A Study on the 3D Scanning of Fashionable Textile Materials - Ripple-finished Cotton Fabric and Shrink-proof Finished/Felted Wool Fabric -

  • Kim, Jong-Jun
    • 패션비즈니스
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    • 제15권6호
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    • pp.101-112
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    • 2011
  • Three-dimensional(3D) virtual clothing simulation system may require the use of physical, mechanical, and configurational data in order to mimic the actual clothing with high degree of realism. Therefore the 3-dimensional scanning system based on optical methods was adopted to extract the 3-dimensional data of the fabric surface. In this study, the appearances of the 3-dimensionally transformed textile fabrics via several finishing procedures were investigated using a 3D scanning system. The wool gauze fabrics treated with the shrink-proof finishing and the felting process showed height changes up to 4.5mm. The 3-dimensional configuration may be objectively described by the use of mesh generation from the scanned output. The generated mesh information may further be utilized in the 3D virtual clothing simulation system for accurate description of the fashionable textile materials used in the simulation system.

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.

Cusick Drape 시뮬레이션을 이용한 옷감의 물성 예측 (Estimation of fabric properties using Cusick Drape simulation)

  • 김진겸;서영호
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2022년도 춘계학술대회
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    • pp.80-81
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    • 2022
  • 본 논문에서는 옷감의 물성을 측정하는 수단인 Cusick drape 시스템을 이용하여 실제 옷감 데이터에 대한 물성을 예측한다. 3차원 볼류메트릭 시스템을 이용하여 실제 Cusick drape 시스템의 옷감 데이터를 3차원 포인트클라우드 형식으로 획득한다. 옷감과 동일한 모양과 크기의 메쉬 데이터를 이용하여 Cusick drape 시뮬레이션을 진행하고 실제 Draping된 옷감과 가장 유사하게 Draping되는 옷감의 물리 파라미터를 획득한다.

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직물유리섬유 강화집성재의 물리적 특성(제1보) - 기계적 특성 - (Physical Properties of Fabric E-glass Fiber Reinforced Laminated Timber (I) - Mechanical Properties -)

  • 정인석;이원희;변희섭
    • Journal of the Korean Wood Science and Technology
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    • 제31권5호
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    • pp.23-34
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    • 2003
  • 본 연구는 국산소경재인 소나무(Pinus densiflora)재와 낙엽송(Larix kaemferi)재로 제조된 유리섬유강화 집성재의 강도적 성질을 조사해 보기 위하여 실시되었다. 먼저, 직물 유리섬유를 수성고분자-이소시아네이트계(MPU-500) 접착제를 사용하여 control재와 유리섬유를 각각 1층과 2층 함입하였다. 본 연구의 결과는 다음과 같다. 1. 수성고분자-이소시아네이트 수지는 집성재 제조용으로 적합하였으며, 특히 유리섬유를 2층 함입한 소재를 제외하고는 구조용 집성재의 품질기준(KS F 3021)을 만족시켰다. 2. 직물유리섬유를 함입할 경우 휨강도, 전단강도에서 control재보다 크게 뛰어나지는 않았지만, 비례한도 휨응력은 유리섬유의 함입 층수에 비례하여 증가하였다. 그러므로, 직물 유리섬유의 mesh수와 두께를 집성재 소재의 형태에 따라 적절히 조정한다면, 휨강도와 전단강도를 좀더 향상시킬 수 있을 것으로 판단되었다.

Experimental investigation of retrofitted shear walls reinforced with welded wire mesh fabric

  • Yuksel, Suleyman B.
    • Structural Engineering and Mechanics
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    • 제70권2호
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    • pp.133-141
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    • 2019
  • The aim of the present paper is to present the cyclic behavior of strengthened reinforced concrete shear wall test specimen, which was reinforced with cold drawn welded wire mesh fabric. Two reinforced concrete shear wall specimens have been tested in the present study. The walls were tested under reversed cyclic loading with loading applied near the tip of the walls. The control wall is tested in its original state to serve as a baseline for the evaluation of the repair and strengthening techniques. The two test specimens include a control wall and a repaired wall. The control wall test specimen was designed and detailed to simulate non-ductile reinforced concrete shear walls that do not meet the modern seismic provisions. The response of the original wall was associated with the brittle failure. The control shear wall was repaired by addition of the reinforcements and the concrete and then it was reloaded. The effectiveness of the repair technique was investigated. Test results indicate that there can be a near full restoration of the walls' strength. The data from this test, augmenting other data available in the literature, will be useful in calibrating improved analytical methods as they are developed.

원단 패턴 검출 알고리즘을 적용한 원단교정기 개발 및 성능평가 (Development of Weft Straightener Using Fabric Pattern Detection Algorithm and Performance Evaluation)

  • 이재용;정윤수;김대섭;배규현;배재성;이대희
    • 한국CDE학회논문집
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    • 제22권1호
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    • pp.70-79
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    • 2017
  • Weft straightener is an important process to control the final quality of the fabrics. It is needed to calibrate the distorted weft after dyeing process. During various fabric treatment processes, the fabric is almost done with heat treatment through a tenter machine. At this time, weft distortion is occurred with uneven tension distribution. Traditionally, photo sensor is commonly used to detect the weft distortion but it is not applicable for special fabric types such as twill, mesh, combi, etc. In this paper, a new method for detecting the weft distortion using camera is introduced. A new weft straightener simulator is also developed to test the ability of the proposed method. It is shown that the method can be applied for various fabric types.