• 제목/요약/키워드: 3D Printer Type

검색결과 102건 처리시간 0.028초

악성 두피 종양(Scalp) 환자의 M3 Wax Bolus를 이용한 방사선치료 (Radiation Therapy Using M3 Wax Bolus in Patients with Malignant Scalp Tumors)

  • 권다은;황지혜;박인서;양준철;김수진;유아영;원영진;권경태
    • 대한방사선치료학회지
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    • 제31권1호
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    • pp.75-81
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    • 2019
  • 목 적: 두피 악성종양의 치료에 광자선을 사용할 때 필요한 Bolus 재질들의 단점으로 인하여 3D Printer용 헬멧형 bolus가 제작되고 있다. 하지만 사용되는 재질인 PLA은 조직등가물질에 비해 높은 밀도를 가지고 있으며 환자가 착용할 경우 불편한 점들이 발생한다. 이에 본 연구에서는 3D Printer를 이용한 M3 wax 헬멧을 제작하여 악성 두피종양을 치료하는 방법을 시도해 보고자 한다. 대상 및 방법: 헬멧형 M3 wax의 모델링을 위해 두부인체모형팬텀을 CT로 촬영해 DICOM file로 획득하고, 두피 위에 헬멧이 위치할 부위를 Helmet contour로 제작하였다. M3 Wax 헬멧의 제작은 paraffin wax를 녹이고, 산화마그네슘, 탄산칼슘을 섞어 용해시킨 후 PLA 3D 헬멧의 내부에 넣고 표면의 PLA 3D 헬멧을 제거하였다. 치료계획은 총 10 Portal의 Intensity-Modulated Radiation Therapy(IMRT)로 세웠으며, 치료선량은 200 cGy로 eclipse의 Analytical Anisotropic Algorithm(AAA)를 사용하였다. 그 후 EBT3 film과 Mosfet(Metal Oxide Semiconductor Field Effect Transistor: USA)를 이용해 선량검증을 실시하였으며, CT 모의치료실과 동일한 조건으로 두부인체모형팬텀을 재현해 IMRT Plan을 측정하였다. 결 과: CT상에서 측정된 Bolus의 Hounsfield unit(HU)는 $52{\pm}37.1$으로 나타났다. M3 wax bolus 측정점 A, B, C에서 TPS의 선량은 186.6 cGy, 193.2 cGy, 190.6 cGy으로 확인되었고, Mostet으로 3회 측정한 선량은 $179.66{\pm}2.62cGy$, $184.33{\pm}1.24cGy$, $195.33{\pm}1.69cGy$, 오차율은 -3.71 %, -4.59 %, +2.48 %였다. EBT3 Film으로 측정된 선량은 $182.00{\pm}1.63cGy$, $193.66{\pm}2.05cGy$, $196{\pm}2.16cGy$이었으며, 오차율은 -2.46%, +0.23 %, +2.83 %로 확인되었다. 결 론: M3 wax bolus는 2 cm의 두께로 제작되어 뇌 부분의 선량을 보다 쉽게 낮추어 치료계획을 수립할 수 있었다. 치료선량 검증에서의 EBT3 Film과 Mosfet의 선량계의 A, B, C 측정값에서도 두피의 표면선량 최대 오차율은 5 % 이내로 측정되었으며, 일반적으로 3 % 이내로 정확하게 측정되었다. M3 wax bolus는 제작과정 기간이 3D Printer보다 빠르고 비용이 저렴하며, 재사용 가능하고, 인체조직 등가물질로서 두피 악성종양 치료에 매우 유용한 Bolus이다. 따라서 3D Printer의 대용량 Bolus, Compensator의 제작시간 및 비용이 비싼 단점을 극복하는 주조형 M3 wax bolus의 사용이 추후 확대될 것으로 사료된다.

삼차원 프린팅 기술을 이용한 전산화단층영상 품질 측정용 팬텀 제작 및 비교 연구 (A Study on the Fabrication and Comparison of the Phantom for Computed Tomography Image Quality Measurements Using Three-Dimensions Printing Technology)

  • 윤명성;홍순민;허영철;한동균
    • 대한방사선기술학회지:방사선기술과학
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    • 제41권6호
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    • pp.595-602
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    • 2018
  • Quality control (QC) of Computed Tomography (CT) devices is based on image quality measurement on AAPM CT phantom which is a standard phantom. Although it is possible to control the accuracy of the CT apparatus, it is expensive and has a disadvantage of low penetration rate. Therefore, in this study, we make image quality measurement phantom at low cost using FFF (Fused Filament Fabrication) type three-dimensional printer and try to analyze the usefulness, compare it with existing standard phantom. To print a phantom, We used three-dimensional printer of the FFF system and PLA (Poly Lactic Acid, density: $1.24g/cm^3$) filament, and the CT device of 64 MDCT (Aquilion CX, Toshiba, Japan). In addition, we printed a phantom using three-dimensional printer after design using various tool based on existing standard phantom. For image quality evaluation, AAPM CT phantom and self-generated phantom were measured 10 times for each block. The measured data were analyzed for significance using the Mannwhiteney U-test of SPSS (Version 22.0, SPSS, Chicago, IL, USA). As a result of the analysis, phantom fabricated with three-dimensional printer and standard phantom showed no significant difference (p>0.05). Furthermore, we confirmed that image quality measurement performance of a phantom using three-dimensional printer is similar to the existing standard phantom. In conclusion, we confirmed the possibility of low cost phantom fabrication using three dimensional printer.

5 Step 실용트리즈 기법을 이용한 PLGA인공지지체의 변형 문제 해결에 관한 연구 (A Study on Problem Solving of PLGA Scaffold Warpage Using 5 Step Practical TRIZ)

  • 이송연;허용정;박종순
    • 반도체디스플레이기술학회지
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    • 제16권4호
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    • pp.25-29
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    • 2017
  • In this paper, we have studied the deformation problem of the scaffold caused by the FDM type 3D printer. The Practical TRIZ technique was used to solve the deformation problem of the scaffold generated from the adhesion surface between the scaffold and the bed. The Practical TRIZ methodology was used to derive the solution and the experiment was conducted on the derived solution. As a result of evaluating the experimental results obtained for the solution, it was found that the deformation of the scaffold was much improved to the satisfactory level.

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S-K 구성방정식을 이용한 프린터용 3D Ti-6Al-4V 재료의 유동응력 결정 및 절삭력 예측 (Determination of Flow Stress and Cutting Force Prediction of Ti-6Al-4V Material for 3D Printer using S-K Constitutive Equation)

  • 박대균;김태호;전언찬
    • 한국기계가공학회지
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    • 제17권6호
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    • pp.68-74
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    • 2018
  • Study on the Ti-6Al-4V have been carried out using cutting simulation, and researches for cutting force and chip shape prediction have been actively conducted under various conditions. However, a 3D printer application method using Ti-6Al-4V metal powder material as a high-power method has been studied for the purpose of prototyping, mold modification and product modification while lowering material removal rate. However, in the case of products / parts made of 3D printers using powder materials, problems may occur in the contact surface during tolerance management and assembly due to the degradation of the surface quality. As a result, even if a 3D printer is applied, post-processing through cutting is essential for surface quality improvement and tolerance management. In the cutting simulation, the cutting force and the chip shape were predicted based on the Johnson-Cook composition equation, but the shape of the shear type chip was not predictable. To solve this problem, we added a damaging term or strain softening term to the Johnson-Cook constitutive equation to predict chip shape. In this thesis, we applied the constant value of the S-K equations to the cutting simulation to predict the cutting force and compare with the experimental data to verify the validity of the cutting simulation and analyzed the machining characterization by considering conditions.

융합 필라멘트 제조 방식의 3D 프린팅을 이용한 X자 형상 내부 채움 패턴의 출력 옵션 변화에 따른 인장강도 연구 (A Study on Tensile Strength Dependent on Variation of Output Condition of the X-shape Infill Pattern using FFF-type 3D Printing)

  • 나두현;김호준;이용호
    • 소성∙가공
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    • 제33권2호
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    • pp.123-131
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    • 2024
  • Plastic, the main material of FFF-type 3D printing, exhibits lower strength compared to metal. research aimed at increasing strength is needed for use in various industrial fields. This study analyzed three X-shape infill patterns(grid, lines, zigzag) with similar internal lattice structure. Moreover, tensile test considering weight and printing time was conducted based on the infill line multiplier and infill overlap percentage. The three X-shape infill patterns(grid, lines, zigzag) showed differences in nozzle paths, material usage and printing time. When infill line multiplier increased, there was a proportional increase in tensile strength/weight and tensile strength/printing time. In terms of infill overlap percentage, the grid pattern at 50% and the zigzag and lines patterns at 75% demonstrated the most efficient performance.

DLP방식의 치과용 3D프린팅 임시치아 소재의 기계적 특성 (Mechanical Properties of DLP-type Dental 3D Printing Temporary Tooth Material)

  • 정효경;이승희;정효경
    • 한국산업융합학회 논문집
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    • 제24권3호
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    • pp.373-376
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    • 2021
  • Tested the flexural strength and maximum load of two types of dental 3 D printed temporary tooth materials of the DLP method. The average flexural strength was 206.98 MPa in the test group and 139.77 MPa in the control group. The average flexural strength of the experimental group was 67.21 MPa higher than that of the control group. In the maximum load experiment, an average of 44.16N in the experimental group and 37.31N in the control group were measured. The average value of 6.85N was higher in the experimental group, and the durability of the artificial tooth restoration was improved.

동작 가변적 3D 프린팅 충격보호패드의 설계 (Design of motion-adaptable 3D printed impact protection pad)

  • 박정현;이진숙;이정란
    • 복식문화연구
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    • 제30권3호
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    • pp.403-413
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    • 2022
  • The purpose of this study was to develop a 3D mesh-type impact protection pad with excellent motion adaptability and functionality by applying 3D printing technology. The hexagonal 3D mesh, which constitutes the basic structure of the pad, comprises two types: small and large. The bridge connecting the basic units was designed as the I-type, V-type, IV-type, and VV-type. After evaluating the characteristics of the bridge, it was found that the V-type bridge had the highest flexibility and tensile elongation. The hip joint pad and knee pad were completed by combining the hexagonal 3D mesh structure with the optimal bridge design. The impact protection pad was printed using a fused deposition modeling-type 3D printer with a filament made of thermoplastic polyurethane material, and the protection pad's performance was evaluated. When an impact force of approximately 6,500N was applied to the pad, the force attenuation percentage was 78%, and when an impact force of approximately 8,000N was applied, the force attenuation percentage was 75%. Through these results, it was confirmed that the 3D-printed impact protection pad with a hexagonal 3D mesh structure connected by a V-shaped bridge developed in this study can adapt to changes in the body surface according to movement and provides excellent impact protection performance.

Cooling and Deformation Analysis of a Layered Road in a FDM Type 3D Printing Through Thermal-structural Coupled Simulation

  • Kim, S.L.;Lyu, M.Y.
    • Elastomers and Composites
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    • 제52권3호
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    • pp.216-223
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    • 2017
  • The additive manufacturing technology, also called 3D printing, is growing fast. There are several methods for 3D printing. Fused deposition modeling (FDM) type 3D printing is the most popular method because it is simple and inexpensive. Moreover, it can be used for printing various thermoplastic materials. However, it contains the cooling of layered road and causes thermal shrinkage. Thermal shrinkage should be controlled to obtain high-quality products. In this study, temperature distribution and cooling behavior of a layered road with cooling are studied through computer simulation. The thermal shrinkage of the layered road was simulated using the calculated temperature distribution with time. Shape variation of the layered road was predicted as cooling proceeded. Stress between the bed and the layered road was also predicted.This stress was considered as the detaching stress of the layered road from the bed. The simulations were performed for various thermal conductivities and temperatures of the layered road, bed temperature, and chamber temperature of a 3D printer. The simulation results provide detailed information about the layered road for FDM type 3D printing under operational conditions.

3D 프린터로 출력된 시멘트 복합체의 내구성에 미치는 폴리머 후처리의 영향 (Effect of Polymer Post-treatment on the Durability of 3D-printed Cement Composites)

  • 서지석;현창진;김윤용
    • 한국구조물진단유지관리공학회 논문집
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    • 제26권5호
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    • pp.20-29
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    • 2022
  • 이 연구에서는 ME 방식 3D 프린터로 출력한 시멘트 복합체의 내구성을 개선하기 위해 PDMS, 규산나트륨, 표면강화재를 침지 후 도포하는 방식으로 후처리 하였으며 각각의 내구성 개선 정도를 평가하였다. 그 결과, 모든 평가에서 후처리 한 시험체의 내구성능이 그렇지 않은 시험체에 비해 내구성이 개선되는 경향을 나타냈다. 내흡수성과 염소이온 침투 저항성, 탄산화 저항성의 경우 PDMS로 후처리 했을 때 후처리 하지 않은 시험체에 비해 각각 평균 36.3 %, 77.1 %, 50.4 % 개선되어 가장 우수한 것으로 나타났으며 내동해성의 경우 규산나트륨으로 후처리 했을 때 평균 47.5 % 개선되어 가장 우수한 것으로 나타났다. 3D 프린팅용 시멘트 복합체의 후처리 용액 중 대체로 PDMS가 우수한 것으로 나타났으나 이 연구에서 제안한 바와 같이 침지 후 도포하는 후처리 방식은 3D 프린터로 출력한 시멘트 복합체 구조물에 실질적으로 적용하기 어려울 수 있으므로 시공성을 고려한 성능개선재료에 대한 후속 연구가 필요할 것으로 판단된다.

3D 프린팅 및 밀링 방법으로 제작된 임시 보철물 적합도 비교 분석 (Marginal and internal fit of interim crowns fabricated with 3D printing and milling method)

  • 손영탁;손큰바다;이규복
    • 구강회복응용과학지
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    • 제36권4호
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    • pp.254-261
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    • 2020
  • 목적: 본 연구의 목적은 서로 다른 제작 방법인 절삭 가공과 적층 가공 기술로 제작된 임시 보철물의 변연 및 내면 적합도를 평가하는 것이다. 연구 재료 및 방법: 상악 우측 제1대구치를 도재 수복을 위한 지대치 모형으로 준비하였다. 석고를 이용하여 총 40개의 실험 모형으로 복제하였고, 각각의 실험 모형을 구강 스캐너를 사용하여 스캔 데이터를 획득하였다. 3종의 3D 프린터(Meg-printer 2; Megagen, Zenith U; Dentis 그리고 Zenith D; Dentis) 및 1종의 밀링 장비(imes-icore 450i; imes-icore GmbH)를 사용하여 각 그룹당 10개의 임시 보철물을 제작하였다. 임시 보철물의 내면에 실리콘을 채우고 모형에 적합하여 중합이 완료된 후, 실리콘으로 내면이 복제되어 있는 실험 모형을 구강 스캐너를 사용하여 스캔 데이터를 획득하였다. 3차원 검사 소프트웨어(Geomagic control X; 3D Systems)를 이용하여 변연 간격, 절대 변연 간격, 섐퍼, 축벽, 교두, 교합 영역의 적합도를 분석하였다. 통계 분석은 제작 방법의 차이를 비교하기 위해서 Kruskal-Wallis test를 사용하여 검증하였으며, 사후 검정을 위해서 Mann-Whitney U-test and Bonferroni correction method을 사용하였다(α = 0.05). 결과: 3종의 3D 프린터와 1종의 밀링 장비에서 제작된 임시 보철물의 절대 변연 간격은 유의한 차이를 보이지 않았다(P = 0.812). 축벽, 교합 간격에서 밀링 장비와 3D 프린터 사이에 유의한 차이를 보였다(P < 0.001). 결론: 3종의 3D 프린터로 제작된 임시 보철물의 변연 적합도는 모두 임상적 허용 범위(< 120 ㎛)에 있었으므로, 적합도 측면에서 본다면 임시 보철물 제작을 위해서 충분히 사용될 수 있다.