• 제목/요약/키워드: 3-dimensional scanning

검색결과 515건 처리시간 0.028초

CAD 프로그램을 활용한 트리코트 텍스타일 디자인 개발 프로세스 연구 (A Study on Tricot Textile Design Process using Tricot CAD Program)

  • 최경미;김종준
    • 패션비즈니스
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    • 제19권5호
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    • pp.1-16
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    • 2015
  • The appearances and geometry structures of knitted fabrics have important effects on their functions as textile fabrics. Structural design of the woven fabric, prior to the manufacturing processes in the weaving mill, often leads to a similar predictable appearance in the final outcome with the corresponding weave design. The increase of the employment of elastic textile yarns in knitting fabrics for comfort stretch or outdoor sports wear knit products has, however, resulted in difficulties in predicting the final appearance of the knit structure design. Due to the stretchability and exceptional recovery behavior of the elastic yarns such as polyurethane elastomeric yarns, the appearance of the final product often differs from the initial knit design. At textile CAD program for preparing tricot knit designs has been employed in this study to predict the two dimensional appearance of the design. The similarities between the designs and corresponding knit products seem to be acceptable for the two-dimensional textile CAD program in this study. However, when elastomeric yarns are partially employed in the polyester filament tricot product, a considerable amount of departure from the design is apparent due to the constriction and/or deformation of property differences in the elastomeric yarns and polyester filament yarns. Therefore, another purpose of this study is to measure the departure of the final tricot product from the initial tricot design, especially in the case employing elastomeric yarns in the knit structure together with regular polyester filament yarns. For measuring the three-dimensional departure, a 3D scanning system has been used for the mesh reconstruction of the fabric specimen. Hopefully, the result from this study will be used as a guide to modify and improve the current textile CAD program proposed for the two-dimensional simulation of the tricot.

패션소재의 입체적 표현에 대한 3D Scanning 및 소재특성 분석 연구 -Iris van Herpen의 작품을 중심으로- (A Study on the Three-dimensional Expression of Fashionable Textiles based on Analyses of 3D Scanning and Textile Properties -Focus on the Work of Iris van Herpen-)

  • 이레아;김종준
    • 패션비즈니스
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    • 제20권2호
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    • pp.124-133
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    • 2016
  • Currently the fashion industry is developing to create a novel culture due to the very sensitive and knowledge-oriented advancement of the IT industry. With fast turnover of information, consumers have come to have a more diverse desire for purchasing. Cubical expression techniques, which empathizes formativeness, can be a creative expression method adjusting into the trend of this era. Along with functional aspects of consumers, even in a textile manufacturing sector, new materials are required to meet sensitive and emotional aspects. Consumers' desire for new and creative designs and the development and adoption of new materials are essential to meet their emotions. The IT industry and fashion industry are forced to combine and a 3D apparel CAD system has been developed, enabling virtual clothing to be represented within a computer virtual space. All processes such as design, pattern creation, sewing and simulation are possible in 3D level. Digital clothing can shorten the production process time and is very effective in that it can reduce clothing waste generated during the sample production. This paper reviewed the works of Dutch designer, Iris van Herpen, who has developed formative designs. She tries to build, construct, and sculpt employing diversified materials other than soft textile materials, as shown in her series of fashion shows. The materials include films, 3D printed polymers, stiff and sheer organza, and artificial leather textiles. A few characteristics of her works have been selected in order to prepare patterns exhibiting the traits. The paper further focused on the physical features of the textile materials used to express similar techniques and its various forms were reviewed.

일정광량 방식의 광자주사현미경 제작 (Fabrication of the photon scanning tunneling microscope with constant intensity mode)

  • 김지택;최완해;조재홍;장수;김달현;구자용;정승태
    • 한국광학회지
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    • 제10권3호
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    • pp.195-200
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    • 1999
  • 가열인장(heating and pulling)방법을 이용하여 개구부 직경이 약 100nm 이하인 광섬유 탐침을 제작하였으며, 이를 이용하여 일정광량 방식의 광자주사현미경을 제작하였다. 광섬유 탐침을 물체에 미세하게 접근시켜서 물체면을 주사하기 위하여 원통형 PZT(piezoelectric transducer)를 x-y-z의 3부분으로 나누어 z축의 미세접근 및 1.43$\mu\textrm{m}$ $\times$ 1.76$\mu\textrm{m}$의 면적을 x-y축으로 주사할 수 있는 3차원 PZT 주사기를 제작하였다. 그리고 광섬유 탐침에서 검출되는 에바네슨트라의 광량이 항상 일정하도록 전자적인 되먹임 회로에 의한 광섬유 탐침이 1$\lambda$ ($\lambda$ 는 입사파장임) 이하의 근접장 영역에서 물체로부터의 높이가 일정하도록 하였다. 그리고 이렇게 제작된 일정광량 모드의 광자주사 현미경을 이용하여 정상파 형태의 에바네슨트파를 측정하였다.

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3차원 바디 스캐너를 이용한 남성 상반신 인체측정 -직접측정과의 비교- (Upper Body Measurement of Men using 3D Body Scanner -Compared to Anthropometry-)

  • 백경자;이정란
    • 한국의류학회지
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    • 제32권1호
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    • pp.24-34
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    • 2008
  • Three dimensional body scan technology is being targeted for utilization in the apparel industry. The purpose of this study was to test reliability of the body scan data targeting from 20 to 24 year old men by comparing 3DM, 3D body-scanning semi-auto measurement extraction method, Scanworx, 3D body-scanning auto measurement extraction method, and traditional anthropometric method. We found significant differences in 9 out of 25 items in upper body measurements using 3DM and 16 out of 25 items using Scanworx. In the range of difference value of scan measures, it showed 1 item in the absolute value of more than 40mm between two measuring methods, 3 items in 20 up to 40mm, and less than 20mm in other items. Overall, in height items, the numerical value of traditional measure was higher and in girth, width, depth items, 3D scan measure was higher. We found out that reliability of 3D measurements taken from whole body scans was different according to scanners, scanning softwares, programs, and subjects.

탈 축 홀로그램 합성을 이용한 쌍 영상 잡음 제거와 3차원 홀로그램 디스플레이 (Three-dimensional Holographic Display with Twin Image Noise Rejection Using Off-axis Hologram Converting)

  • 김유석;김태근;김진태
    • 한국광학회지
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    • 제20권6호
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    • pp.328-333
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    • 2009
  • 본 논문에서는 복소수 홀로그램을 탈 축 홀로그램으로 변환해 쌍 영상 잡음 없이 3차원 홀로그램 디스플레이를 구현하는 방법 을 제안하고 실연하였다. 이러한 기술을 구현하기 위해, 서로 다른 깊이에 위치하는 슬라이드 패턴으로 구성된 3차원 물체의 복소수 홀로그램을 광 스캐닝 홀로그램 시스템을 이용해 추출한 후, 추출된 복소수 홀로그램에 공간 캐리어를 수치적인 방법으로 인가하고 실수 부분만을 추출해 복소수 홀로그램을 탈 축 홀로그램으로 변환한다. 변환된 탈 축 홀로그램을 진폭만을 변조하는 공간 광 변조기에 인가하고, 시준된 레이저 빔을 공간 광 변조기에 투사하여 탈 축 홀로그램을 복원하는 방식으로 3차원 디스플레이를 구현한다.

A Study on the Fabric Drape Evaluation Using a 3D Scanning System Based on Depth Camera with Elevating Device

  • Kim, Jongjun
    • 패션비즈니스
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    • 제19권6호
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    • pp.28-41
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    • 2015
  • Properties of textile fabrics influence the appearance, aesthetics, and performance of garment. Drape and related properties of fabrics affect profoundly the static and dynamic appearance during wearer's movement. The three dimensional shape of the folded structure often deforms with time or with subtle vibration around the fabric specimen during the drape measurement. Due to the uneven and complex nature of fabrics, the overall shape of the fabric specimen on the drape tester often becomes unstable. There is a need to understand the fundamental mechanisms of how draping may generate pleasing forms. Two drape test methods, conventional Cusick drape test, and in-built drape tester, based on a depth camera, are compared. Fabric specimens including cotton, linen, silk, wool, polyester, and rayon are investigated for the fabric drape and other physical/mechanical parameters. Drape coefficient values of fabric specimens are compared based on the final drape images, together with the intermediate 3D drape images of the specimens during elevation process of the drape tester equipped with a stepper motor system. The correlation coefficient between the data based on the two methods is reasonably high. Another advantage from the depth camera system is that it allows further analysis of three-dimensional information regarding the fabric drape shape, including the shape of nodes or crest and trough.

대규모 인체치수조사 사업에서 3차원 측정치와 직접측정치의 차이 분석 -제8차 사이즈코리아 사업을 중심으로- (A Comprehensive Analysis of 3D Body Scanning vs. Manual Measurements in a Large-Scale Anthropometric Survey -Insights from the 8th Size Korea Project-)

  • 박선미
    • 한국의류학회지
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    • 제48권2호
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    • pp.233-253
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    • 2024
  • This study analyzed differences between three-dimensional (3D) body scanning and manual measurements, aiming to assess whether 3D scanning can replace traditional anthropometric tools, such as tape measures and calipers. Data from 4,478 participants in the 8th Size Korea Project were analyzed, covering 43 measurement items. Since Given that the 3D and manual measurements were performed on the same subjects in the 8th Size Korea Project, it was possible to determine the correlation more accurately between the two measurement methods more accurately. Using Applying ISO 20685-1(2018) standards, 15 out of the 43 items fell within allowable error limits. When classified into six types, "small circumferences" and "segment lengths" showed averages of 3.35 mm and 3.10 mm, respectively, within acceptable range. "Body heights" and "body depths" slightly exceeded the limit, with averages of 5.28 mm and 6.58 mm. "Body widths" and "large circumferences" surpassed the limit, with means of 16.77 mm and 16.18 mm. The study offers an objective basis to for validate validating 3D measurements' measurements' reliability and accuracy, addressing various industries' needs for information on the human body's dimensions information.

알지네이트를 이용한 체표면적 측정방법과 삼차원 스캐닝에 의한 체표면적 측정방법의 비교 (Comparison between Alginate Method and 3D Whole Body Scanning in Measuring Body Surface Area)

  • 이주영;최정화
    • 한국의류학회지
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    • 제29권11호
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    • pp.1507-1519
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    • 2005
  • The purpose of this study was to compare two methods of measuring body surface area (BSA). The BSA of Korean adults was measured using both three-dimensional (3D) scanning and an alginate method. Two males (one overweight and one lean) and one overweight female participated as subjects. The results were as follows: First, the 3D scanned BSA of all three subjects was smaller than the BSA measured using the alginate method by as much as $6-14\%$. The difference in methods was greater in the overweight participants than in the lean subject. Second, the results comparing the BSA obtained using these two methods and the BSA estimated by 10 previously developed formulas, showed that the 3D scanned BSA was the smallest among the 12 BSAs. Third, in comparing the regional differences between these two methods, the regional BSA of the lean subject (male 2) did not show any significant difference, but the overweight subjects (male 1, female 1) showed a significant difference. Forth, the biggest difference in regional BSA obtained through these two methods was in the hand, for all three subjects. The 3D scanned hand surface area was smaller than the hand surface area measured by the alginate method by as much as $24-34\%$. Fifth, in the percentage of regional BSA, there was no significant difference in these two methods. The reasons for the underestimation in the 3D scanning might be because: 1) the 3D scanner can not recognize the folding and shading of body parts, such as the finger, toe, ear, armpit, crotch and breast, 2) 3D patching and smoothing processes depend on researchers. However, the 3D scanning method is applicable to the estimation of the entire BSA, if the surface area of the hands is known, and the participant is not overweight.

Spiral scanning imaging and quantitative calculation of the 3-dimensional screw-shaped bone-implant interface on micro-computed tomography

  • Choi, Jung-Yoo Chesaria;Choi, Cham Albert;Yeo, In-Sung Luke
    • Journal of Periodontal and Implant Science
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    • 제48권4호
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    • pp.202-212
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    • 2018
  • Purpose: Bone-to-implant contact (BIC) is difficult to measure on micro-computed tomography (CT) because of artifacts that hinder accurate differentiation of the bone and implant. This study presents an advanced algorithm for measuring BIC in micro-CT acquisitions using a spiral scanning technique, with improved differentiation of bone and implant materials. Methods: Five sandblasted, large-grit, acid-etched implants were used. Three implants were subjected to surface analysis, and 2 were inserted into a New Zealand white rabbit, with each tibia receiving 1 implant. The rabbit was sacrificed after 28 days. The en bloc specimens were subjected to spiral (SkyScan 1275, Bruker) and round (SkyScan 1172, SkyScan 1275) micro-CT scanning to evaluate differences in the images resulting from the different scanning techniques. The partial volume effect (PVE) was optimized as much as possible. BIC was measured with both round and spiral scanning on the SkyScan 1275, and the results were compared. Results: Compared with the round micro-CT scanning, the spiral scanning showed much clearer images. In addition, the PVE was optimized, which allowed accurate BIC measurements to be made. Round scanning on the SkyScan 1275 resulted in higher BIC measurements than spiral scanning on the same machine; however, the higher measurements on round scanning were confirmed to be false, and were found to be the result of artifacts in the void, rather than bone. Conclusions: The results of this study indicate that spiral scanning can reduce metal artifacts, thereby allowing clear differentiation of bone and implant. Moreover, the PVE, which is a factor that inevitably hinders accurate BIC measurements, was optimized through an advanced algorithm.

Design of 3D Laser Radar Based on Laser Triangulation

  • Yang, Yang;Zhang, Yuchen;Wang, Yuehai;Liu, Danian
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제13권5호
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    • pp.2414-2433
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    • 2019
  • The aim of this paper is to design a 3D laser radar prototype based on laser triangulation. The mathematical model of distance sensitivity is deduced; a pixel-distance conversion formula is discussed and used to complete 3D scanning. The center position extraction algorithm of the spot is proposed, and the error of the linear laser, camera distortion and installation are corrected by using the proposed weighted average algorithm. Finally, the three-dimensional analytic computational algorithm is given to transform the measured distance into point cloud data. The experimental results show that this 3D laser radar can accomplish the 3D object scanning and the environment 3D reconstruction task. In addition, the experiment result proves that the product of the camera focal length and the baseline length is the key factor to influence measurement accuracy.