• 제목/요약/키워드: 3D Process

검색결과 7,451건 처리시간 0.038초

금속 3D 프린팅 적층제조(AM) 공정 시뮬레이션 기술에 관한 고찰(I) (Investigation to Metal 3D Printing Additive Manufacturing (AM) Process Simulation Technology (I))

  • 김용석;최성웅;양순용
    • 드라이브 ㆍ 컨트롤
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    • 제16권3호
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    • pp.42-50
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    • 2019
  • 3D printing AM processes have advantages in complex shapes, customized fabrication and prototype development stage. However, due to various parameters based on both the machine and the material, the AM process can produce finished output after several trials and errors in the initial stage. As such, minimizing or optimizing negative factors for various parameters of the 3D printing AM process could be a solution to reduce the trial-and-error failures in the early stages of such an AM process. In addition, this can be largely solved through software simulation in the preprocessing process of 3D printing AM process. Therefore, the objective of this study was to investigate a simulation technology for the AM software, especially Ansys Inc. The metal 3D printing AM process, the AM process simulation software, and the AM process simulation processor were examined. Through this study, it will be helpful to understand 3D printing AM process and AM process simulation processor.

비정형 건축물의 외장재 제작 시공을 위한 3D 스캐닝에 의한 역 설계 프로세스 검토 (Review of Reverse Design Process for Freeform Envelope Using 3D Scanning)

  • 김성진;박성진;류한국
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2015년도 춘계 학술논문 발표대회
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    • pp.17-18
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    • 2015
  • In manufacturing industry, image scanning technique has made enormous progress in past decades. 3D models have been also very important to continuously monitor the related spatial information for freeform buildings. The process of shape making of 3D scanning is as follows: mesh surface segmentation, NURBS surface generation, and parametric solid model generation. We will review the process and applying process. Especially in the construction industry, 3D data collection by laser scanning has become an high quality 3D models. Therefore, in this research, we have an effort to review construction of reverse design process for freeform envelope using 3D scanning. The technology enables many 3D shape engineering and design parameterization of reverse engineering in the construction site.

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Study on System Support for Offshore Plant Piping Process Using 3D Simulator

  • Kim, Hyun-Cheol;Lee, Gyu-Hong
    • 한국해양공학회지
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    • 제34권3호
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    • pp.217-226
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    • 2020
  • An offshore plant is an offshore platform that can process oil and gas resources in rough seas with a poor working environment. Moreover, it is a complex structure with different types of offshore facilities and a large amount of outfitting that connects different offshore installations. In particular, an enormous amount of various piping materials is installed in a relatively narrow space, and thus, the difficulty of working is relatively high compared to working in ships or ground plants. Generally, when the 3D detailed design is completed, an offshore plant piping process is carried out at the shipyard with ISO 2D fabrication drawings and ISO 2D installation drawings. If a worker wants to understand the three-dimensional piping composition in the working area, he can only use three-dimensional viewers that provide limited functionality. As offshore plant construction progresses, correlating work with predecessors becomes more complicated and rework occurs because of frequent design changes. This viewer function makes it difficult to identify the 3D piping structure of the urgently needed part. This study deals with the process support method based on a system using a 3D simulator to improve the efficiency of the piping process. The 3D simulator is based on the Unity3D engine and can be simulated by considering the classification and priority of 3D models by the piping process in the system. Further, it makes it possible to visualize progress information of the process. In addition, the punch content can be displayed on the 3D model after the pipe inspection. Finally, in supporting the data in relation to the piping process, it is considered that 3D-simulator-supported piping installing could improve the work efficiency by more than 99% compared to the existing method.

Reusable HEVC Design in 3D-HEVC

  • Heo, Young Su;Bang, Gun;Park, Gwang Hoon
    • ETRI Journal
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    • 제38권5호
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    • pp.818-828
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    • 2016
  • This paper proposes a reusable design for the merging process used in three-dimensional High Efficiency Video Coding (3D-HEVC), which can significantly reduce the implementation complexity by eliminating duplicated module redundancies. The majority of inter-prediction coding tools used in 3D-HEVC are utilized through a merge mode, whose extended merging process is based on built-in integration to completely wrap around the HEVC merging process. Consequently, the implementation complexity is unavoidably very high. To facilitate easy market implementation, the design of a legacy codec should be reused in an extended codec if possible. The proposed 3D-HEVC merging process is divided into the base merging process of reusing HEVC modules and reprocessing process of refining the existing processes that have been newly introduced or modified for 3D-HEVC. To create a reusable design, the causal and mutual dependencies between the newly added modules for 3D-HEVC and the reused HEVC modules are eliminated, and the ineffective methods are simplified. In an application of the proposed reusable design, the duplicated reimplementation of HEVC modules, which account for 50.7% of the 3D-HEVC merging process, can be eliminated while maintaining the same coding efficiency. The proposed method has been adopted as a normative coding tool in the 3D-HEVC international standard.

플라스틱과 금속재료를 이용한 3 차원 박벽 제품의 쾌속 제작 (Rapid Manufacturing of 3D Thin-walled Products using Plastics and Metals)

  • 신보성;강보식;박재현;노치현
    • 한국정밀공학회지
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    • 제23권8호
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    • pp.195-202
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    • 2006
  • High-speed machining (HSM) with excellent quality and dimensional accuracy has been widely used to create 3D structures of metal and plastics. However, the high-speed machining process is not suitable for the rapid realization of 3D thin-walled product because it consumes considerably long time in fixturing process of a work piece. In this paper, an effective rapid manufacturing process is proposed to fabricate 3D thin-walled products directly using HSM, phase change filling and ultrasonic welding. The filling process is useful to hold the thin-walled product during the machining step. The ultrasonic welding process is introduced to make one piece product from two piece parts that are machined by HSM and filling process. The proposed rapid manufacturing (RM) process has been shown that the RM process enables to fabricate the 3D thin-walled products using ABS plastics and aluminum metals from 3D CAD data to functional parts.

3 차원 표면의 컬러 인쇄를 위한 공정 변수 영향 분석에 관한 연구 (investigation of process parameter influence on 3D surface coloring)

  • 송민섭;이상호;김효찬;양동열
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2004년도 추계학술대회 논문집
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    • pp.1390-1393
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    • 2004
  • In the present industry, three-dimensional colored shape has required for realistic prototype in rapid manufacturing. Z-corporation developed 3D printer which can color three-dimensional prototype but this process can't be adopted to other rapid prototype products and spend much time and cost coloring 3D shape. In this study a new coloring process on three-dimensional surface is proposed for realistic prototype. Three-dimensional surface coloring apparatus is composed of HP ink jet head and X-Y plotter. Distance and angle between ink jet nozzle and 3D surface are set as process parameter. Based on the experiment of process parameters, it is shown that distance and angle affected on printed image on 3D surface. Circle and line shape are chosen as standard image shape because the shape has widely used as standard in 2D printing. Consequently, the distorted image on 3D surface is corrected by transformed input image data.

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3D 기반 자동차 조립 프로세스 개발 (Development of Vehicle Assembly Process based on 3D)

  • 김귀정;한정수
    • 디지털융복합연구
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    • 제10권1호
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    • pp.379-384
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    • 2012
  • 조립공정의 상세한 과정을 보여주기 위해 Script 언어를 사용하여 자동차 조립공정을 3D로 시뮬레이션 하였다. 3D 가시화 기술은 산업현장에서의 학습활동을 가시화하는데 최적의 방법이 될 수 있다. 특히 시뮬레이션은 자동차 관련하여 엔진 부분과 타이어부분에 대하여 조립과정을 3D로 자동화하여 보여줄 수 있도록 구현하였다. 특히 터치스크린을 바탕으로 하여 사용자가 실제로 작업도중에 학습할 수 있도록 실험하였다.

3D 프린팅 기술 기반 창업 성공 사례 (Successful Examples of 3D Printing Technology-based Start-up Enterprises)

  • 심진형;윤원수;고태조
    • 한국기계가공학회지
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    • 제15권2호
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    • pp.104-110
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    • 2016
  • The process of three-dimensional (3D) printing (also known as "rapid prototyping" and "additive manufacturing") uses computer-created digital models to produce 3D objects with a desired shape by stacking materials through a layer-by-layer process. The industrial potential and feasibility of 3D printing technology were recently highlighted in President Obama's State of the Union address in 2013. Since his speech, worldwide investment in and attention toward 3D printing technology have increased explosively. In addition, a number of 3D printing technology-based start-up companies have been established and evaluated as emerging enterprises making successful business models. In this paper, successful start-up companies (domestic and overseas) based on 3D printing technology will be reviewed.

가상 의복 제작 프로세스 활성화를 위한 드레스의 모델링과 정밀 패턴의 설계 및 검증 (3D dress modeling and Its 2D pattern development to activate the use of 3D virtual design process)

  • 이지영;홍경희
    • 감성과학
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    • 제14권1호
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    • pp.39-48
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    • 2011
  • 3D스캔-인체 및 의복 모델링-시뮬레이션-패턴 제작 및 검증의 전체 3D 의복제작 프로세스를 원활히 활용할 수 있도록 하기 위하여 3D 그래픽과 CAD 시스템 그리고 3D-2D 직접 패턴 전개 시스템을 이용해야 하는 데 이 때 장애가 되는 것은 3D 시뮬레이션한 가상의복으로부터 정확한 패턴을 추출하는 것이 어렵고, 전반적 과정의 호환이 쉽지 않다는 것이다. 이에 본 연구에서는 인체에 정확히 밀착된 부분과 드레이프가 있는 비대칭형 드레스를 대상으로 전체 프로세스를 원활하게 구동할 수 있는 방법을 모색하였다. 연구 방법으로는 3D 스캔 데이터를 이용하여 Maya로 범용성 3D 인체 모델을 만들고 이 3D 바디 모델에 맞는 3D 드레스를 디자인하고 모델링한 후, Rapidform, 2C-AN 프로그램과 YukaCAD를 이용하여 정확한 2D 패턴을 제작하는 과정의 호환성을 해결하며 진행하였다. 이 과정에서 도출한 패턴을 실제 의상으로 제작하여 착의 시킨 후 3D 의복 모델과의 여유분 분포를 3차원 측정 기술로 검증하였고 실물 드레스의 드레이프의 모양과 시뮬레이트된 드레스의 모양을 검토하였다. 그 결과 제시한 방법을 활용하면 전반적으로 만족스럽게 정량적인 3D 의복 제작 프로세스를 운영할 수 있음을 확인하였다.

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단속형 가변적층쾌속조형공정을 이용한 3차원 스캔데이터로부터 3차원 시작품의 쾌속 제작 (Rapid Manufacturing of 3D Prototype from 3D scan data using VLM-ST)

  • 이상호;안동규;김효찬;양동열;박두섭;채희창
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2002년도 춘계학술대회 논문집
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    • pp.536-539
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    • 2002
  • The reverse engineering (RE) technology can quickly generate 3D point cloud data of an object by capturing the surface of a model using a 3D scanner. In the rapid prototyping (RP) technology, prototypes are rapidly produced from 3D CAD models in a layer-by-layer additive basis. In this paper, a physical human head shape is duplicated using a new RP process, the Transfer-type Variable Lamination Manufacturing process using expandable polystyrene foam sheet (VLM-ST), after the point cloud data of a human head shape measured from 3D SNX scanner are converted to STL file. From the duplicated human head shape, it has been shown that the VLM-ST process in connection with the 3D scanner is a fast and efficient process in that shapes with free surface, such as the human head shape, can be duplicated with ease. Considering the measurement time and the shape duplication time, the use of 3D SNX scanner and the VLM-ST process is expected to reduce the lead-time fur the development of new products in comparison with the other existing RE-RP connected manufacturing systems.

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