• Title/Summary/Keyword: 적층제작

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Analysis of Buildability and Strength Characteristics of Cement-based Composite Materials by Manufacturing Method of Laminated Specimens (적층시험체 제작 방식에 따른 시멘트계 복합재료의 적층성능 및 강도 특성 분석)

  • Eun-A Seo;Ho-Jae Lee
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.27 no.5
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    • pp.9-15
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    • 2023
  • In this study, the lamination performance and strength characteristics of cement-based composite materials according to the laminated specimens manufacturing method were analyzed. As a result of evaluating the buildability according to the layer height, the highest dimensional stability was shown when the layer height was 10 mm in all parts. The mold casting specimen and the printing-Z specimen showed the same compressive strength performance at the age of 28 days. On the other hand, the compressive strength at 28 day of printing-X specimen was the lowest at 71.72 MPa, and 8% lower than that of the mold casting specimen and the printing-Z specimen. The split tensile strength of the laminated specimen may show similar performance to that of the mold casting specimen, but the strength performance may decrease by more than 10% depending on the direction of the layer and the number of layers in the specimen. As a result of the interface analysis of the laminated specimen through X-ray CT analysis, it was confirmed that pores of a certain size were distributed along the interface of the layer.

Energy Generator using Piezoelectric Multilayer Device (적층 압전 소자를 이용한 에너지 발생장치 제작 및 성능)

  • Jeong, Soon-Jong;Kim, Min-Soo;Lee, Dae-Su;Kim, In-Sung;Joo, Hyeon-Gu
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2009.06a
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    • pp.166-166
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    • 2009
  • 에너지 하베스팅 소자용 압전 적층체를 제작하고 이에 대한 성능을 조사하였다. 최근 대부분 소형 소자들을 구동하는데 있어서 이에 필요한 소비 전력은 최소한 10~20 mW 이다. 이에 적합한 mm 크기의 압전 소자를 제작하고 외부 금속 기구물을 연결한 하베스팅 소자를 제작하였다. 이러한 소자의 공진 주파수를 120 Hz로 정하고 이에 적합한 무게추를 설정하였다. 120 Hz에서 1 g 가속도로 외부에서 진동을 가했을 때, 소자는 5 V, 20 mW의 전력을 발생하였다. 또한 이러한 소자에서 발생된 전력을 저장하기 위하여 간단한 정류 및 저장 장치를 제작하였다. 회로 제작시 압전 소자의 임피던스가 매우 적으므로 이에 적합하게 임피던스 매칭을 고려한 저 임피던스 회로를 제작하였으며, 이 회로는 약 80%의 효율을 나타내었다.

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다공성 고분자 박막을 사용한 백색 유기발광소자의 광학적 특성

  • Go, Yo-Seop;Jeon, Yeong-Pyo;Chu, Dong-Cheol;Kim, Tae-Hwan
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.08a
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    • pp.120-120
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    • 2010
  • 유기 발광 소자는 차세대 디스플레이 소자와 조명 광원으로서 많은 응용성 때문에 활발한 연구가 진행되고 있다. 백색광을 구현하는 대표적인 방법으로는 밴드갭이 큰 고분자 물질에 염료를 넣는 방법, 적 녹 청을 순차적으로 증착하는 방법을 사용하지만 인가 전압의 증가 및 효율 저하, 유기물질의 수명감소, 색 안정성 감소, 제조공정의 복잡화의 문제가 발생된다. 이 문제를 해결하기 위하여 발광효율 및 안정성이 향상된 유기발광 재료 개발, 다층 이종구조 및 형광/인광성 물질의 도핑에 대한 연구가 진행되고 있다. 이와 더불어 기존의 수직 적층 구조에서 벗어난 평행하게 적 녹 청을 배열한 백색 유기 발광 소자 및 색변환 물질을 사용한 백색 유기발광소자가 제시되고 있다. 본 연구에서는 고분자 물질의 용해도가 다른 선택적 식각 방법을 이용하여 제조 공정이 간단하며 동일평면에서 적색 및 청색을 발광하여 백색을 발생하는 백색 유기발광소자를 제작하였다. 두 가지 유기물을 일정 성분비로 용매에 용해하여 적색 발광 고분자 발광층을 제작하였다. 이렇게 형성한 박막층을 한 가지 유기물만을 선택적으로 용해시켜 다공성 고분자 박막층을 형성 한 후 열 진공 증착법에 의해 청색 빛을 내는 저분자 유기물을 증착하여 적색과 청색이 동시에 발광하는 백색 유기 발광 소자를 제작하였다. 다공성고분자/저분자 층이, 수직 적층된 구조와 비교하였을 때 수직 적층된 구조는 높은 highest occupied molecular orbital 준위를 가진 저분자층으로 인해 적색에서 청색 발광층으로 정공의 주입이 일어나지 않는다. 그러나 적색과 청색이 평행한 적층 구조를 가진 발광소자인 경우 정공이 적색층과 청색층에 동시에 주입되기 때문에 문턱전압의 감소하고 백색의 빛을 발광하였다.

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Electric aging phenomena of $0.2(PbMg_{1/3}Nb_{2/3}O_3)-0.8(PbZr_{0.475}Ti_{0.525}O_3)$ Multilayer Ceramic Actuators ($0.2(PbMg_{1/3}Nb_{2/3}O_3)-0.8(PbZr_{0.475}Ti_{0.525}O_3)$ 적층형 세라믹 액츄에이터의 전기적 열화 특성)

  • Koh, Jung-Hyuk;Jeong, Soon-Jong;Ha, Moon-Su;Lee, Dong-Man;Song, Jae-Sung
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2003.05c
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    • pp.219-222
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    • 2003
  • $0.2(PbMg_{1/3}Nb_{2/3}O_3)-0.8(PbZr_{0.475}Ti_{0.525}O_3)$ 조성을 이용하여 $5{\times}5{\times}5mm^3$의 적층형 세라믹 액츄에이터 소자를 tape casting 방법으로 제작하였다. 전극재로서는 Ag-Pd를 이용하여 총 50층의 layer를 적층하였으며, 적층된 액츄에이터를 $1100^{\circ}C$의 온도에서 소결하였다. X-ray diffractometer를 이용하여 제작된 소자와 열화된 소자의 구조적인 특성을 분석하였다. 제작된 소자의 열화 특성을 알아보기 위하여 60 Hz 의 triangular wave를 인가하여 열화전과 후의 p-E hystcresis loop의 변화를 살펴보았으며, 인가된 전압의 변화에 따라서 소자에서 발생되는 양의 열을 측정하였다. 파괴된 소자의 파단면에 대한 SEM 분석을 통하여 소자의 파괴 메카니즘을 알아보도록 하였다. 이로부터 전기적 기계적 열화가 소자의 동작에 미치는 영향에 대해서 알아 보았다.

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Production of Casting Cores using Powder Bed Fusion Techniques (분말적층용융 기술을 활용한 산업용 중자 제작)

  • Choi, Jin-Yong;Shin, Seung-Jung
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.19 no.5
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    • pp.239-244
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    • 2019
  • Traditional casting methods require long production lead time and high cost while not accommodating design changes easily. One of the technological alternatives to improve casting method to meet diversifying needs is Additive Manufacturing (AM). Among the 7 AM techniques, Powder Bed Fusion (PBF) is deemed most appropriate for casting applications. Currently, most AM machines are imported; therefore limiting the scope of available services and applications. This paper explores the domestic development of AM machines as well as the applications in casting. Each chapter describes development phases of PBF machines, applicable materials and parameter settings, while the last chapter illustrates a successful case of additive manufacturing industrial casting cores.

Optimization for high speed manufacturing of Ti-6Al-4V alloy by a selective laser melting technique (SLM 기술을 이용한 Ti-6Al-4V 합금의 고속 적층 공정 최적화 연구)

  • Lee, Kang Pyo;Kim, Kang Min;Kang, Suk Hyun;Han, Jun Hyun;Jung, Kyung Hwan
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.28 no.5
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    • pp.217-221
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    • 2018
  • Selective laser melting (SLM) technique is one of the additive manufacturing processes, in which functional, complex parts can be directly manufactured by selective melting layers of powder. SLM technique has received great attention due to offering a facile part-manufacturing route and utilizing a hard-to-manufacturing material (e.g. Ti6Al4V). The SLM process allows the accurate fabrication of near-net shaped parts and the significant reduction in the consumption of raw materials when compared to the traditional manufacturing processes such as casting and/or forging. In this study, we focus the high-speed additive manufacturing of Ti6Al4V parts in the aspect of manufacturing time, controlling various process parameters.

Development of Energy Harvesting Hybrid system consisted of Electrochromic Device and Dye-Sensitized Solar Cell using Nano Particle Deposition System (나노 입자 적층 시스템(NPDS)을 이용한 염료 감응 태양전지 - 전기 변색 통합 소자 및 에너지 하베스팅 시스템에 대한 연구)

  • Kim, Kwangmin;Kim, Hyungsub;Choi, Dahyun;Lee, Minji;Park, Yunchan;Chu, Wonshik;Chun, Dooman;Lee, Caroline Sunyong
    • Journal of the Microelectronics and Packaging Society
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    • v.23 no.2
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    • pp.65-71
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    • 2016
  • In this study, Antimony Tin Oxide (ATO) ion storage layer and $TiO_2$ working electrode were fabricated using Nano Particle Deposition System. NPDS is the cutting-edge technology among the dry deposition methods. Accelerated particles are deposited on the substrate through the nozzle using NPDS. The thicknesses for coated layers were measured and layer's morphology was acquired using SEM. The fabricated electrochromic cell's transmittance was measured using UV-Visible spectrometer and power source at 630 nm. As a result, the integrated electrochromic/DSSC hybrid system was successfully fabricated as an energy harvesting system. The fabricated electrochromic cell was self-operated using DSSC as a power source. In conclusion, the electrochromic cell was operated for 500 cycles, with 49% of maximum transmittance change. Also the photovoltaic efficiency for DSSC was measured to be 2.55% while the electrochromic cell on the integrated system had resulted in 26% of maximum transmittance change.

Comparison analysis of fracture load and flexural strength of provisional restorative resins fabricated by different methods (제작방법에 따른 임시 수복용 레진의 파절강도 및 굴곡강도에 관한 연구)

  • Cho, Won-Tak;Choi, Jae-Won
    • The Journal of Korean Academy of Prosthodontics
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    • v.57 no.3
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    • pp.225-231
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    • 2019
  • Purpose: This study was undertaken to compare fracture and flexural strength of provisional restorative resins fabricated by additive manufacturing, subtractive manufacturing, and conventional direct technique. Materials and methods: Five types of provisional restorative resin made with different methods were investigated: Stereolithography apparatus (SLA) 3D printer (S3Z), two digital light processing (DLP) 3D printer (D3Z, D3P), milling method (MIL), conventional method (CON). For fracture strength test, premolar shaped specimens were prepared by each method and stored in distilled water at $37^{\circ}C$ for 24 hours. Compressive load was measured using a universal testing machine (UTM). For flexural strength test, rectangular bar specimens ($25{\times}2{\times}2mm$) were prepared by each method according to ISO 10477 and flexural strength was measured by UTM. Results: Fracture strengths of the S3Z, D3Z, and D3P groups fabricated by additive manufacturing were not significantly different from those of MIL and CON groups (P>.05/10=.005). On the other hand, the flexural strengths of S3Z, D3P, and MIL groups were significantly higher than that of CON group (P<.05), but the flexural strength of D3Z group was significantly lower than that of CON group (P<.05). Conclusion: Within the limitation of our study, provisional restorative resins made from additive manufacturing showed clinically comparable fracture and flexural strength as those made by subtractive manufacturing and conventional method.

A Study of Dynamic Characteristics of Stacking and Transferring System for the Solid Freeform Fabrication System (임의형상가공시스템의 적층 및 이송장치 동특성연구)

  • 엄태준;주영철;민상현;김승우;공용해;천인국;방재철
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.3 no.4
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    • pp.280-284
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    • 2002
  • This paper presents computer simulations of the stacking and transferring system for the fast freeform fabrication system. The stacking and transferring system is essential for the fast freeform fabrication system and its stable motion is very important for consistent stacking of the cut slices. The stacking and transferring system can be modeled as a pneumatic system. The system consists of air compressor, the control valve, and the cylinder. The governing parameters have been changed and the simulation results are shown to predict the time response of the system. The results show some parameters should be correctly tuned to obtain stable system response.

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Tensile bond strength of chairside reline resin to denture bases fabricated by subtractive and additive manufacturing (적층가공과 절삭가공으로 제작한 의치상과 직접 첨상용 레진 간의 인장결합강도 비교)

  • Kim, Hyo-Seong;Jung, Ji-Hye;Bae, Ji-Myung;Kim, Jeong-Mi;Kim, Yu-Lee
    • The Journal of Korean Academy of Prosthodontics
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    • v.58 no.3
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    • pp.177-184
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    • 2020
  • Purpose: The purpose of this study was to compare and evaluate the tensile bond strength of chairside reline resin to denture base resin fabricated by different methods (subtractive manufacturing, additive manufacturing, and conventional heat-curing). Materials and methods: Denture base specimens were fabricated as cuboid specimens with a width of 25 mm × length 25 mm × height 3 mm by subtractive manufacturing (VITA VIONIC BASE), additive manufacturing (NextDent Base) and conventional heat-curing (Lucitone 199). After storing the specimens in distilled water at 37℃ for 30 days and drying them, they were relined with polyethyl methacrylate (PEMA) chairside reline resin (REBASE II Normal). The subtractive and additive manufacturing groups were set as the experimental group, and the heat-curing group was set as the control group. Ten specimens were prepared for each group. After storing all bound specimens in distilled water at 37℃ for 24 hours, the tensile bond strength between denture bases and chairside reline resin was measured by a universal testing machine at a crosshead speed of 10 mm/min. The fracture pattern of each specimen was analyzed and classified into adhesive failure, cohesive failure, and mixed failure. Tensile bond strength, according to the fabrication method, was analyzed by 1-way ANOVA and Bonferroni's method (α=.05). Results: Mean tensile bond strength of the heat-curing group (2.45 ± 0.39 MPa) and subtractive manufacturing group (2.33 ± 0.39 MPa) had no significant difference (P>.999). The additive manufacturing group showed significantly lower tensile bond strength (1.23 ± 0.36 MPa) compared to the other groups (P<.001). Most specimens of heat-curing and subtractive manufacturing groups had mixed failure, but mixed failure and adhesive failure showed the same frequency in additive manufacturing group. Conclusion: The mean tensile bond strength of the subtractive manufacturing group was not significantly different from the heat-curing group. The additive manufacturing group showed significantly lower mean tensile bond strength than the other two groups.