• 제목/요약/키워드: 3D technology

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3D 프린팅 팬텀의 섬광카메라 적용 평가 (Evaluation of Scintillation Camera Applications of 3D Printing Phantom)

  • 박훈희;이주영;김지현
    • 대한방사선기술학회지:방사선기술과학
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    • 제44권4호
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    • pp.343-350
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    • 2021
  • 3D printing technology is an additive manufacturing technology produced through 3D scanning or modeling method. This technology can be produced in a short time without mold, which has recently been applied in earnest in various fields. In the medical field, 3D printing technology is used in various fields of radiology and radiation therapy, but related research is insufficient in the field of nuclear medicine. In this study, we compare the characteristics of traditional nuclear medicine phantom with 3D printing technology and evaluate its applicability in clinical trials. We manufactured the same size phantom of poly methyl meta acrylate(PMMA) and acrylonitrile butadiene styrene(ABS) based on the aluminum step wedge. We used BrightView XCT(Philips Health Care, Cleveland, USA) SPECT/CT. We acquired 60 min list mode for Aluminum, PMMA and ABS phantoms using Rectangular Flood Phantom (Biodex, New York, USA) 99mTcO4 3 mCi(111 MBq), 6 mCi (222MBq) and 57Co Flood phantom(adq, New Hampshire, USA). For the analysis of acquired images, the region of interest(ROI) were drawn and evaluated step by step for each phantom. Depending on the type of radioisotope and radiation dose, the counts of the ABS phantom was similar to that of the PMMA phantom. And as the step thickness increased, the counts decreased linearly. When comparing the linear attenuation coefficient of Aluminum, PMMA and ABS phantom, the linear attenuation coefficient of the aluminium phantom was higher than that of the others, and the PMMA and ABS phantom had similar the linear attenuation coefficient. Based on ABS phantom manufactured by 3D printing technology, as the thickness of the PMMA phantom increased, the counts and linear attenuation coefficient decreased linearly. It has been confirmed that ABS phantom is applicable in the clinical field of nuclear medicine. If the calibration factor is applied through further research, it is believed that practical application will be possible.

The Green Cement for 3D Printing in the Construction Industry

  • Park, Joochan;Jung, Euntae;Jang, Changsun;Oh, Chaewoon;Shin, Kyung Nam
    • 에너지공학
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    • 제29권3호
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    • pp.50-56
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    • 2020
  • Currently, 3D printing technology is a new revolutionary additive manufacturing process that can be used for making three dimensional solid objects from digital films. In 2019, this 3D printing technology spreading vigorously in production parts (57%), bridge production (39%), tooling, fixtures, jigs (37%), repair, and maintenance (38%). The applications of 3D printing are expanding to the defense, aerospace, medical field, and automobile industry. The raw materials are playing a key role in 3D printing. Various additive materials such as plastics, polymers, resins, steel, and metals are used for 3D printing to create a variety of designs. The main advantage of the green cement for 3D printing is to enhance the mechanical properties, and durability to meet the high-quality material using in construction. There are several advantages with 3D printing is a limited waste generation, eco-friendly process, economy, 20 times faster, and less time-consuming. This research article reveals that the role of green cement as an additive material for 3D printing.

범용 3D 그래픽 엔진의 GIS 정보 서비스를 위한 데이터 자동변환 알고리즘 개발 (Development of Data Automation Algorithm for GIS Service in Universal 3D Graphics Engine)

  • 김형훈;박현철;최형욱;강수명;정윤재
    • 한국멀티미디어학회논문지
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    • 제20권3호
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    • pp.581-592
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    • 2017
  • Geographic Information System (GIS) is a method of expressing objects in a space. Currently, many research and developments are being conducted to implement 3D GIS. In previous studies, 3D GIS applications have been developed using Unity 3D, which is a 3D engine with good development accessibility. However, it requires manual work to enter various formats of GIS data, making it difficult to immediately reflect GIS data that change frequently. To improve this problem, this study developed a method for automatically reading and outputting various GIS data from the existing Unity 3D application. The improved application could read Satellite Images, Aerial Photographs, Digital Elevation Models (DEM) and Shapefiles with no transformation through other commercial programs, and they could be implemented as 3D objects. This study automated the GIS data conversion which had been manually performed and as a result, the manpower, time, and resources required for 3D GIS implementation can be saved.

SLS 3D 프린팅 기술을 적용한 직물 유연성이 발현된 직물구조적인 설계디자인 (Textile Structural Design with Fabric Flexibility using SLS 3D Printing Technology)

  • 송하영
    • 패션비즈니스
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    • 제24권3호
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    • pp.85-100
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    • 2020
  • Recently, 3D printing technology, which is suitable for small-volume production of many varieties, has become considered a key manufacturing technology in the 4th industrial revolution. However, the nature of 3D printing technology means it is not yet able to be applied to traditional textiles due to Fabric Flexibility. The aim of this study is to investigate Textile Structural Design by finding the optimal yarn thickness for Selective Laser Sintering (SLS) 3D printed structures on geogrid dobby woven fabric that gives the optimal flexibility and tensile strength in the final product. The test results for tensile load strength of the 3D printed test samples, using 1.0mm, 0.8mm, 0.6mm and 0.4mm yarn thicknesses, showed that all were found to be above 250N, this higher than the tensile strength of 180N that is recommended for textile products. Based on these results, the four dobby structural patterns with 3D printing produced had four yarn thicknesses: 1.0mm, 0.8mm, 0.6mm, and 0.4mm. The thinner the yarn, the more flexible the fabric; as such the optimal conditions to produce SLS-based 3D printed textiles with suitable strength and flexibility used a thickness of yarn in the range of 0.4mm to 0.6mm.

A new hybrid HSDT for bending, free vibration, and buckling analysis of FGM plates (2D & quasi-3D)

  • Belkhodja, Y.;Ouinas, D.;Fekirini, H.;Olay, J.A. Vina;Achour, B.;Touahmia, M.;Boukendakdji, M.
    • Smart Structures and Systems
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    • 제29권3호
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    • pp.395-420
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    • 2022
  • A new hybrid quasi-3D and 2D high-order shear deformation theory is studied in this mathematical formulation, for an investigation of the bending, free vibrations and buckling influences on a functionally graded material plate. The theoretical formulation has been begun by a displacement field of five unknowns, governing the transverse displacement across the thickness of the plate by bending, shearing and stretching. The transverse shear deformation effect has been taken into consideration, satisfying the stress-free boundary conditions, especially on plate free surfaces as parabolic variation through its thickness. Thus, the mechanical properties of the functionally graded plate vary across the plate thickness, following three distributions forms: the power law, exponential form and the Mori-Tanaka scheme. The mechanical properties are used to develop the equations of motion, obtained from the Hamilton principle, and solved by applying the Navier-type solution for simply supported boundary conditions. The results obtained are compared with other solutions of 2D, 3D and quasi-3D plate theories have been found in the literature.

실리카 복합소재의 물성에 따른 DLP 3D printing 적용 연구 (The effect of silica composite properties on DLP-stereolithography based 3D printing)

  • 이진욱;남산;황광택;김진호;김응수;한규성
    • 한국결정성장학회지
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    • 제29권2호
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    • pp.54-60
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    • 2019
  • 최근 3D 프린팅 기술은 산업적인 응용분야의 확대를 위해 다양한 복합소재의 적용이 연구되고 있다. 기존 3D 프린팅 기술은 대부분 플라스틱 소재 위주로 개발되어 왔으며, 세라믹 소재의 경우 물리적, 화학적으로 우수한 물성을 가지고 있음에도 불구하고 상대적으로 3D 프린팅 적용을 위한 연구개발이 초기 단계에 머무르고 있다. 본 연구에서는 DLP(digital light processing) 3D프린팅 공정에 적용을 위해 다양한 입도의 실리카를 기반으로 광경화성 복합소재를 합성하였다. 다양한 적층 방식의 3D 프린팅 기술 중에서 DLP 3D 프린팅 방식은 광경화성 수지에 빛을 조사하여 3차원 기물을 제조하는 기술로 정밀도가 우수하고 다양한 소재 적용성이 높다. 합성된 실리카 복합소재의 충진율에 따른 유변학적 거동분석을 통하여 DLP 3D 프린팅 적용가능성을 확인하였고, 원활하게 적층조형이 잘 이루어지는 것을 확인하였다. 3D 프린팅된 시편의 인쇄 정확도는 디자인과 약 3 % 미만의 차이를 나타내었고, 실리카 입자의 충진율이 80 wt%일 때 34.3 MPa의 강도를 나타내었다.

3D epigenomics and 3D epigenopathies

  • Kyung-Hwan Lee;Jungyu Kim;Ji Hun Kim
    • BMB Reports
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    • 제57권5호
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    • pp.216-231
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    • 2024
  • Mammalian genomes are intricately compacted to form sophisticated 3-dimensional structures within the tiny nucleus, so called 3D genome folding. Despite their shapes reminiscent of an entangled yarn, the rapid development of molecular and next-generation sequencing technologies (NGS) has revealed that mammalian genomes are highly organized in a hierarchical order that delicately affects transcription activities. An increasing amount of evidence suggests that 3D genome folding is implicated in diseases, giving us a clue on how to identify novel therapeutic approaches. In this review, we will study what 3D genome folding means in epigenetics, what types of 3D genome structures there are, how they are formed, and how the technologies have developed to explore them. We will also discuss the pathological implications of 3D genome folding. Finally, we will discuss how to leverage 3D genome folding and engineering for future studies.

가상현실을 위한 스테레오 스피커 기반 3차원 입체음향 재생 시스템 구현 (An Implementation of a 3D Audio Production System Using Stereo Loudspeakers for Virtual Reality)

  • 김용국;이영한;김홍국
    • 대한음성학회:학술대회논문집
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    • 대한음성학회 2006년도 추계학술대회 발표논문집
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    • pp.113-116
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    • 2006
  • In this paper, we first implement an audio playback system for virtual reality by providing 3D audio effects to listeners. In general, such a 3D audio playback system utilizes a sound localization technique using head related transfer function (HRTF) to generate 3D audio effect. However, the 3D audio effect is degraded due to the crosstalk in the stereo loudspeaker environment. To enhance the 3D sound effect, we implement the crosstalk cancellation technique proposed by Atal and Schroeder and apply it to the 3D audio system.

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기술연관분석을 이용한 연구개발 의사결정 정보 도출 - 한국가스공사 연구개발사업 적용을 중심으로 - (Derivation of information for R&D management with technology relation analysis)

  • 오경준
    • 기술혁신학회지
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    • 제3권3호
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    • pp.67-84
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    • 2000
  • This paper expanded the usefulness of technology relation analysis by applying to R&D activities of Korea Gas Corporation (Kogas) at the corporate level. Technology relation analysis has been applied to assessment of R&D investments in telecommunication and construction industries in Korea. As empirical findings, technology map and technology spillover matrix of Kogas have been derived by technology similarity analysis. It has bee found that various useful information for R&D assessment could be acquired from the technology relation analysis at the corporate level.

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