• 제목/요약/키워드: Uniform Radial Shrinkage

검색결과 3건 처리시간 0.014초

외주에 균일한 압축을 받는 두꺼운 복합원관의 분지거동 (Bifurcation Behaviours of Composite Tubes With Two Different Materials Subjected To Uniform Radial Shrinkage At The External Surface)

  • 김영석;추석만
    • 대한기계학회논문집
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    • 제14권2호
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    • pp.269-275
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    • 1990
  • Nonaxisymmetric bifurcation behaviours of composite tubes two different materials subjected to uniform radial shrinkage at the external surface have been investigated and compared with those of single tube. The effect of material parameters normalized with respect to those of outer tube upon the bifurcation point and corresponding mode has been clarified. The parameters substantially affect the bifurcation mode with long-wavelength so that the composite tube with low hardening exponent or with high yield stress of inner tube destabilizes the overall deformation of the tube. However surface type bifurcation, short-wavelength mode, shown on the traction-free inner surface is hardly affected by the material parameters. The surface type bifurcation completely depends on the material characteristics of inner tube and the bifurcation point of composite tube almost coincides with the of single tube.

디지털 이미지 상관법을 이용한 Methacrylate기질과 Silorane기질 복합레진의 치아 수복 시 중합수축거동 (Polymerization Shrinkage Behavior Measured by Digital Image Correlation for Methacrylate-based and Silorane-based Composites During Dental Restoration)

  • 박정훈;최낙삼
    • Composites Research
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    • 제33권3호
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    • pp.125-132
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    • 2020
  • 치과용 복합레진 Filtek P90 (3M ESPE, USA)과 Clearfil AP-X (Kuraray, Japan)를 대상으로 디지털 이미지 상관법을 이용하여 광중합 시 발생하는 수축거동을 관찰하고 등가탄성계수를 적용한 유한요소해석을 통해 시편표면의 응력분포를 산출하여 수축률분포와 비교하였다. 광조사 중과 광조사 후의 촬영 조건을 달리하여 CCD 카메라를 이용한 시편의 변형사진을 획득하고 디지털 이미지 상관분석을 하였다. DIC 분석 결과 상기의 복합레진 모두에서, 비균일한 수축변형률 분포가 관찰되었으며 링시편 내부의 레진 중심부가 자유로운 유동성으로 레진/링의 계면부보다 큰 수축 변형률이 발생하였다. 레진의 중심으로부터 거리가 멀어질수록 반경방향 평균수축률은 감소하였으며, 광조사동안에 발생한 반경방향 평균수축률은 경화시험종료(10 min) 후 발생한 반경방향 평균수축률 값을 기준으로 P90은 33%, AP-X는 57% 수준이었다. P90과 AP-X가 광조사 중의 수축거동이 크게 달랐음을 확인하였다. 레진/링의 계면부에 가까운 레진에서는 광조사 후에 인장변형률이 급격히 커져서 계면부가 인장응력을 받아 취약하게 됨을 확인하였다.

Long-term structural analysis and stability assessment of three-pinned CFST arches accounting for geometric nonlinearity

  • Luo, Kai;Pi, Yong-Lin;Gao, Wei;Bradford, Mark A.
    • Steel and Composite Structures
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    • 제20권2호
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    • pp.379-397
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    • 2016
  • Due to creep and shrinkage of the concrete core, concrete-filled steel tubular (CFST) arches continue to deform in the long-term under sustained loads. This paper presents analytical investigations of the effects of geometric nonlinearity on the long-term in-plane structural performance and stability of three-pinned CFST circular arches under a sustained uniform radial load. Non-linear long-term analysis is conducted and compared with its linear counterpart. It is found that the linear analysis predicts long-term increases of deformations of the CFST arches, but does not predict any long-term changes of the internal actions. However, non-linear analysis predicts not only more significant long-term increases of deformations, but also significant long-term increases of internal actions under the same sustained load. As a result, a three-pinned CFST arch satisfying the serviceability limit state predicted by the linear analysis may violate the serviceability requirement when its geometric nonlinearity is considered. It is also shown that the geometric nonlinearity greatly reduces the long-term in-plane stability of three-pinned CFST arches under the sustained load. A three-pinned CFST arch satisfying the stability limit state predicted by linear analysis in the long-term may lose its stability because of its geometric nonlinearity. Hence, non-linear analysis is needed for correctly predicting the long-term structural behaviour and stability of three-pinned CFST arches under the sustained load. The non-linear long-term behaviour and stability of three-pinned CFST arches are compared with those of two-pinned counterparts. The linear and non-linear analyses for the long-term behaviour and stability are validated by the finite element method.