• 제목/요약/키워드: material development

검색결과 9,044건 처리시간 0.041초

조립재료의 변형-강도특성에 대하여(I) - 대형삼축시험장치의 개발 - (The Deformation-Strength Characteristic for Gravel Material(1) - Development for Large Triaxial Test Device -)

  • 신동훈;오병현;박한규;박성진;황성춘
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 가을 학술발표회 논문집
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    • pp.311-318
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    • 2000
  • In constructions of dams and ports structure, gravels are used as principle structural materials. Gravels have different material property compared with other materials like soil and concretes, etc. For example, material properties of gravels obtained from normal triaxial compression test are usually overestimated due to scale and penetration effects. Also, material properties of gravels under dynamic loads are the main interest when structural behavior of rockfill dam under earthquake loads is analyzed. The development of large triaxial compression apparatus is needed for the better estimation of material property of gravel. This paper reports work in progress to development of large triaxial compression apparatus.

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The high-rate brittle microplane concrete model: Part I: bounding curves and quasi-static fit to material property data

  • Adley, Mark D.;Frank, Andreas O.;Danielson, Kent T.
    • Computers and Concrete
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    • 제9권4호
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    • pp.293-310
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    • 2012
  • This paper discusses a new constitutive model called the high-rate brittle microplane (HRBM) model and also presents the details of a new software package called the Virtual Materials Laboratory (VML). The VML software package was developed to address the challenges of fitting complex material models such as the HRBM model to material property test data and to study the behavior of those models under a wide variety of stress- and strain-paths. VML employs Continuous Evolutionary Algorithms (CEA) in conjunction with gradient search methods to create automatic fitting algorithms to determine constitutive model parameters. The VML code is used to fit the new HRBM model to a well-characterized conventional strength concrete called WES5000. Finally, the ability of the new HRBM model to provide high-fidelity simulations of material property experiments is demonstrated by comparing HRBM simulations to laboratory material property data.

The high-rate brittle microplane concrete model: Part II: application to projectile perforation of concrete slabs

  • Frank, Andreas O.;Adley, Mark D.;Danielson, Kent T.;McDevitt, Henry S. Jr.
    • Computers and Concrete
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    • 제9권4호
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    • pp.311-325
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    • 2012
  • In this paper, we examine the behavior of the High-Rate Brittle Microplane (HRBM) concrete model based on a series of penetration experiments. These experiments were conducted with three different slab thicknesses (127, 216 and 254 mm) that provided a significant challenge for the numerical simulations. The 127 mm slab provided little resistance, the 216 mm slab provided nominal resistance and the 254 mm slab approached the perforation limit thickness of the projectile. These experiments provide a good baseline for evaluating material models since they have been shown to be extremely challenging; in fact, we have not encountered many material models that can provide quantitatively predictive results in terms of both projectile exit velocity and material damage. In a companion paper, we described the HRBM material model and its fit to various quasi-static material property data for WES-5000 concrete. In this paper, we show that, when adequately fit to these quasi-static data, the HRBM model does not have significant predictive capabilities, even though the quasi-static material fit may be exceptional. This was attributed to the rate-dependent response of the material. After various rate effects were introduced into the HRBM model, the quantitative predictive nature of the calculations dramatically increased. Unfortunately, not much rate-dependent material property data are in the literature; hence, accurate incorporation of rate effects into material models is difficult. Nonetheless, it seems that rate effects may be critical in obtaining an accurate response for concrete during projectile perforation events.

High efficiency and long lifetime green OLED with a new electron transport material and a three-component RGB white OLED for full-color display applications.

  • Tokairin, Hiroshi;Kuma, Hitoshi;Yamamoto, Hiroshi;Funahashi, Masakazu;Fukuoka, Kenichi;Hosokawa, Chishio
    • 한국정보디스플레이학회:학술대회논문집
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    • 한국정보디스플레이학회 2005년도 International Meeting on Information Displayvol.II
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    • pp.1138-1142
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    • 2005
  • We achieved a highly efficient green OLED with an efficiency of 30cd/A by using a new electron transport material and optimizing the device structure. The luminous efficiency was 16.8lm/W at $3000cd/m^2$ and the lifetime was over 60,000hr at an initial luminance of $1000cd/m^2$. Furthermore, we obtained a threecomponent RGB white OLED by using the highly efficient green material. This RGB white OLED shows more excellent color reproducibility for full color displays with color filters, compared to a twocomponent white OLED.

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변이할당분석을 이용한 소재·부품·장비 산업 충청지역 경쟁력 분석 (Material·Part·Equipment Industry Chungcheong Region Competitiveness Analysis Using Shift-Share Analysis)

  • 이나영;채성욱
    • 지능정보연구
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    • 제29권4호
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    • pp.415-430
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    • 2023
  • 소재·부품·장비 산업은 중소기업 중심의 제조업 경쟁력의 원천이 되는 지역경제 활성화에 중요한 산업이다. 충청지역 소재·부품·장비 산업의 경쟁력 분석을 통해 소재·부품·장비 산업 발전에 필요한 시사점을 도출 하고자 충청지역의 소재·부품·장비 산업을 대상으로 사업체 규모계수, 산업 성장률, 산업 특화도, 변이할당분석 기법의 지역 경쟁력 수치 등에 기반하여 각 권역별(대전, 세종, 충남, 충북) 산업 발전 단계 및 경쟁력을 분석하였다. 2014년 및 2019년의 종업원수, 사업체수 및 생산액 등의 자료를 이용하여 산업의 특화 수준과 지역 경쟁력이 고려된 유의미한 권역별 산업군을 확인하고, 이들 유의미한 산업군에 대한 산업 발전 단계상에서의 위치를 파악하여, 충청지역 소재·부품·장비 산업의 발전을 위한 시사점을 제시하였다.

저온소결을 통한 초고용량 MLCC 개발 (Development of Ultra-high Capacitance MLCC through Low Temperature Sintering)

  • 손성범;김효섭;송순모;김영태;허강헌
    • 한국세라믹학회지
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    • 제46권2호
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    • pp.146-154
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    • 2009
  • It is necessary to minimize the thickness of Ni inner electrode layer and to improve the coverage of inner electrode, for the purpose of developing the ultra high-capacity multi layered ceramic capacitor (MLCC). Thus, low temperature sintering of dielectric $BaTiO_3$ ceramic should be precedently investigated. In this work, the relationship between dielectric properties of MLCC and batch condition such as mixing and milling methods was investigated in the $BaTiO_3$(BT)-Dy-Mg-Ba system with borosilicate glass as a sintering agent. In addition, several chip properties of MLCC manufactured by low temperature sintering were compared with conventionally manufactured MLCC. It was found that low temperature sintered MLCC showed better DC-bias property and lower aging rate. It was also confirmed that the thickness of Ni inner electrode layer became thinner and the coverage of inner electrode was improved through low temperature sintering.