• 제목/요약/키워드: 3D (three dimensional) shape

검색결과 458건 처리시간 0.096초

LED Array의 반사영상에 의한 경면체의 3차원 형상 측정 (Three-Dimensional Shape Measurement of a Specular Object by LED Array Reflection)

  • 김지홍
    • 한국광학회지
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    • 제27권1호
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    • pp.41-46
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    • 2016
  • 본 논문은 경면체의 3차원 형상을 측정하기 위한 광학시스템에 관한 것으로, 특히 LED 배열로 이루어진 점광원과 하프미러, 이미지센서로 구성된 비전시스템을 구성하여 광로분석을 수행하고 효과적인 근사화 방법을 제시한다. 실험을 통하여 취득된 영상 내의 점광원의 상대적 위치변화로부터 경면체의 3차원형상의 효과적 추정이 가능함을 보인다.

Convergence Modeling and Reproduction of a Bigyeokjincheolloe (Bomb Shell) Based on Three-dimensional Scanning and 𝛾-ray Radiography

  • Kim, Da Sol;Jo, Young Hoon;Huh, Il Kwon;Byun, Sung Moon
    • 보존과학회지
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    • 제38권1호
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    • pp.55-63
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    • 2022
  • The Bigyeokjincheolloe (bomb shell), a scientific cultural heritage, has outstanding historical value for sustaining a gunpowder weapon of Joseon. In this study, the bomb shell was modeled through three-dimensional (3D) scanning centered on the external shape and 𝛾-ray radiography-based on the internal shape. In particular, to improve the contrast in the radiographic image, optimization and image processing were performed. After these processes, the thickness of the inner wall (2.5 cm on average) and the positions of the three mold chaplets were clearly revealed. For exhibition purposes, the 3D model of the bomb shell was output to a 3D printer and the output was rendered realistic by coloring. In addition, the internal functional elements, such as Mokgok, fuse, mud, gunpowder, and caltrops, were reproduced through handwork. The results will contribute to the study of digital heritages in two ways. First, the internal and external shapes of the bomb shell were modeled by fusing two different technologies, namely, 3D scanning and 𝛾-ray radiography. Second, the internal shape of the bomb shell was constructed from the original form data and the reproduction was utilized for museum exhibitions. The developed modeling approach will greatly expand the scope of museum exhibitions, from those centered on historical content to those centered on scientific content.

의료영상 분할을 위한 3차원 능동 모양 모델 (Three-Dimensional Active Shape Models for Medical Image Segmentation)

  • 임성재;정용연;호요성
    • 전자공학회논문지SC
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    • 제44권5호
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    • pp.55-61
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    • 2007
  • 본 논문은 관심 객체 분할을 위한 통계적 모양 모델에 기반한 3차원 능동 모양 모델링 기법을 제안한다. 3차원 모양 모델을 만들려면 포인트 분산 모델(PDM)의 생성이 필수적인데, 이를 위해서는 모든 학습(training) 데이터에 대응하는 특징점(landmark)을 잘 선택해야 한다. 현재까지도 3차원 데이터에서 대응하는 특징점을 선택하는 방법은 주로 수동적으로 선택하거나 2차원 기반 기법 또는 제한된 3차원 기법이 사용되고 있다. 본 논문에서는 최근에 제안된 "3차원 통계적 모양 모델의 자동생성 기법"의 거리 변환(distance transform)과 사면체(tetrahedron) 알고리듬을 사용하여 3차원 통계적 모양 모델을 생성하고 2차원 능동 모양 모델의 모양 모델 학습과 그레이레벨(gray-level) 모델 학습을 개선하여 확장하고, 스케일(scale)과 그레이레벨 모델을 결합한 3차원 능동 모양 모델 알고리듬으로 관심 객체를 분할한다. 본 논문에서는 제안한 방법을 영역 기반 윤곽선 기반 기법 및 2차원 능동모양모델 기법과 그 성능을 비교하여 평가했다.

RP 코드 합성을 기반으로 한 세 방향 영상에서의 삼차원 모델의 복원 (3-D Model Reconstruction from Three Orthogonal Views Based on Merging Technique of RP Codes)

  • 박순용;진성일
    • 전자공학회논문지B
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    • 제31B권4호
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    • pp.106-114
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    • 1994
  • A new merging technique is adopted for combining rectangular parallelepipes produced by 2-D rectangular code into more intuitive 30D volume elements. Rectangular parallelepiped codes (RP codes) can be used in volume-based representation of a three-dimensional object. We proposed more regularity-conserving 2-D rectangular coding scheme to merge rectangular cells represented by RP codes in three-dimensional space. After being constructed from modified 2-D rectangular code, 3-D RP codes are merged in the two orthogonal directions using new merging algorithm. The shape of merged 3-D object reconstructed by proposed algorithm is shown to be much closer to the original object shape than that of conventional RP codes. The storage requirement of merged object can be also reduced.

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쾌속 조형과 쾌속 툴링을 이용한 3차원 제품의 정형 가공에 관한 연구 (Investigation into Net-Shape Manufacturing of Three-Dimensional Parts by using RP and RT)

  • 안동규;이상호;김기돈;양동열;박승교
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2001년도 춘계학술대회 논문집
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    • pp.16-19
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    • 2001
  • Rapid Prototyping (RP) and Rapid Tooling (RT) were introduced to reduce time-to-market and cost by shortening not only the development phase but also the production phase of the manufacturing process. RP generally builds up a prototype layer by layer, rapidly generating a fully three-dimensional free form shape. RT enables the manufacture of production tools. The integration of RP and RT has the potential for rapid net shaping of thee-dimensional parts, which have geometrical complexity. In this study, net shaping techniques for making three-dimensional parts using RP and RT are described and a sample part are shown. A three-dimensional metal part is manufactured by a new RP process, Variable Lamination Manufacturing by using Expandable Polystyrene Foam (VLM-S), and its application to RT for making a clover punch. In addition, we discussed the technology fusion between metal forming md RP/RT.

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Exploration of Isovist Fields to Model 3D Visibility With Building Facade

  • Chang, Dong-Kuk;Park, Joo-Hee
    • Architectural research
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    • 제13권3호
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    • pp.19-29
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    • 2011
  • Visibility of a space have been defined in several different ways: such as the axial line covering a convex space, a convex space defining the fattest shape in a space and an Isovist field formed by a field of vision at a given vantage point. Isovist fields are referred to as a descriptive medium to describe a movement by reviewing and analyzing geometric properties in them. Many descriptive methods for analysis of three-dimensional isovist are applied to analyzing the morphological properties in a 3D space more realistically. Although these models are regarded as a more advanced method for describing spatial properties, they have pros and cons such as complex mathematical calculations and somewhat arbitrary calibration in addition to huge consumption of memory space. These difficulties lead to the development of a three-dimensional visual accessibility model that explores the implication of building shape on the calculation of isovist fields drawn on a 2D plane. We propose a conceptual framework of how to measure the isovist field not as a 3D volume but as a combination of 2D plane on the ground with the 3D building shape of it's facade.

Direct construction of a four-dimensional mesh model from a three-dimensional object with continuous rigid body movement

  • Otomo, Ikuru;Onosato, Masahiko;Tanaka, Fumiki
    • Journal of Computational Design and Engineering
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    • 제1권2호
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    • pp.96-102
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    • 2014
  • In the field of design and manufacturing, there are many problems with managing dynamic states of three-dimensional (3D) objects. In order to solve these problems, the four-dimensional (4D) mesh model and its modeling system have been proposed. The 4D mesh model is defined as a 4D object model that is bounded by tetrahedral cells, and can represent spatio-temporal changes of a 3D object continuously. The 4D mesh model helps to solve dynamic problems of 3D models as geometric problems. However, the construction of the 4D mesh model is limited on the time-series 3D voxel data based method. This method is memory-hogging and requires much computing time. In this research, we propose a new method of constructing the 4D mesh model that derives from the 3D mesh model with continuous rigid body movement. This method is realized by making a swept shape of a 3D mesh model in the fourth dimension and its tetrahedralization. Here, the rigid body movement is a screwed movement, which is a combination of translational and rotational movement.

Fabrication of three-dimensional electrical patterns by swollen-off process: An evolution of the lift-off process

  • Mansouri, Mariam S.;An, Boo Hyun;Shibli, Hamda Al;Yassi, Hamad Al;Alkindi, Tawaddod Saif;Lee, Ji Sung;Kim, Young Keun;Ryu, Jong Eun;Choi, Daniel S.
    • Current Applied Physics
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    • 제18권11호
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    • pp.1235-1239
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    • 2018
  • We present a novel process to fabricate three-dimensional (3D) metallic patterns from 3D printed polymeric structures utilizing different hygroscopic swelling behavior of two different polymeric materials. 3D patterns are printed with two different polymers as cube shape. The surface of the 3D printed polymeric structures is plated with nickel by an electroless plating method. The nickel patterns on the surface of the 3D printed cube shape structure are formed by removing sacrificial layers using the difference in the rate of hygroscopic swelling between two printing polymer materials. The hygroscopic behavior on the interfaced structure was modeled with COMSOL Multiphysics. The surface and electrical properties of the fabricated three-dimensional patterns were analyzed and characterized.

$VLM-_{ST}$ 공정과 삼단역전 쾌속 툴링 공정을 이용한 3차원 제품 정형가공에 관한 연구 (Three-Dimensional Net Shaping Combining $VLM-_{ST}$ and the Triple Reverse Rapid Tooling)

  • 안동규;이상호;양동열
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2003년도 춘계학술대회 논문집
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    • pp.428-432
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    • 2003
  • The technical combination of RP and RT has a potential for rapid manufacturing of three-dimensional parts. In the present work a new RP system, $VLM-_{ST}$, is proposed to manufacture net shapes of 3D prototypes. ㅁ human head shape and a kob shape are manufactured by the $VLM-_{ST}$ apparatus. In addition, a new RT technology, which utilizes a RTV molding technique and a triple reverse process technique, is proposed to manufacture net shapes of 3D plastic parts using prototypes of $VLM-_{ST}$. A plastic part of the knob shape os produced by the proposed RT technology. The combination of the proposed RP and RT enables the manufacturing of a plastic knob within two days.

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사례 연구 - 3차원 역설계를 이용한 휴대폰 보호 커버 설계 (Case study - Design a cell phone cover by using reverse engineering)

  • 김대준;성진호;정성대;정연찬
    • Design & Manufacturing
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    • 제6권1호
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    • pp.29-33
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    • 2012
  • A 3D scanner scans and captures the shape of a real-world object. The captured shape can be used to construct three-dimensional model for CAD/CAM applications. In this study we have tried to design a cell phone cover by using the 3D scanner and reverse engineering. A 3D scanner is used to capture the shape of a cell phone. The 3D scanner generates a point cloud as the shape information. A three-dimensional CAD model for the cell phone is constructed from the point cloud. A cell phone cover is designed based on the CAD model of the cell phone. To check the integrity of this design process a prototype of the cover is made and assembled with the cell phone.

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