• Title/Summary/Keyword: 계면응력

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Boundary Element Evaluation of Stress Intensity Factor for Interface Crack in Elastic and Viscoelastic Composite Materials (경계요소법에 의한 탄성-점탄성 복합구조체의 계면균열 해석)

  • 이상순;김정규;황종근
    • Computational Structural Engineering
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    • v.9 no.1
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    • pp.85-91
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    • 1996
  • The focus of the present work is on the computation of the stress intensity factor for the crack at the elastic-viscoelastic bimaterial interface. First, the stress intensity factor for an interface crack in dissimilar elastic and viscoelastic materials is dervied by applying the correspondence principle to associated elastic expression. Then the time-domain boundary element analysis is performed to calculate the stress intensity factor. Numerical results show that the proposed method is very useful for the analysis of the interface crack in elastic and viscoelastic materials.

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Study on the Stress Singularity of Interface Crack by using Boundary Element Method (경계요소법을 이용한 계면균열의 응력특이성에 관한 고찰)

  • Cho, Chong-Du;Kwahk, Si-Young
    • Journal of the Korean Society for Precision Engineering
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    • v.16 no.4 s.97
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    • pp.197-204
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    • 1999
  • The boundary element method was used for studying singularities of an interface crack with contact zones. The iterative procedure is applied to estimate the contact zone size. Because the contact zone size was extremely small in a tension field, a large number of Gaussian points were used for numerical integration of the Kernels. Stress extrapolation method and J-integral were used ofr determining stress intensity factors. When the interface crack was assumed to have opened tips, oscillatory singularities appear near the tips of the interface crack. But the interface crack with contact zone which Comninou suggested had no oscillatory behavior. The contact zone size under shear loading was much larger than that under tensile. The stress intensity factors computed by stress extrapolation method were close to those of Comninou's solution. And the stress intensity factor evaluated by J-integral was similar to that by stress extrapolation method.

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Analysis of Stress Singularities on Interfaces of Friction Welded Dissimilar Materials (마찰용접에 의한 이종재 접합계면에 대한 응력특이성의 해석)

  • Chung, Nam-Yong;Park, Chul-Hee
    • Transactions of the Korean Society of Automotive Engineers
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    • v.13 no.2
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    • pp.142-148
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    • 2005
  • In this paper, the stress singularity on interface of friction welded dissimilar materials was investigated by using 2-dimensional elastic boundary element method. It is required that stress distributions and stress singularities on an interface for friction welded dissimilar materials analize to establish strength evaluation. The stress singularity index ($\lambda$) and stress singularity factor ($\Gamma$) were calculated from the results of stress analysis. The stress singularities on variations for shapes and thickness of friction welded flashes were analized and discussed. This paper suggested that the strength evalution by using the stress singularity factors as fracture parameters, considering the stress singularity on an interface edge of friction welded dissimilar materials were very useful.

Theoretical Study on Interfacial Stresses at RC Beam Repair-Purpose Overlayed by Latex Modified Concrete (LMC로 덧씌우기 보수된 RC보의 계면응력에 관한 연구)

  • Kim, Hyun-Oh;Kim, Seong-Hwan;Kim, Dong-Ho;Lee, Bong-Hak
    • Journal of Industrial Technology
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    • v.24 no.A
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    • pp.179-184
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    • 2004
  • Each year, new technological advancements for repair-purpose are being introduced to overlay the old deterioration of RC bridge deck at highway by latex-modified concrete. The days may come when this old problem will be successfully resolved. While the experimental works and researches are very active at both laboratory and field, only a few theoretical studies were performed on interfacial problems, especially on stress distribution and concentration of RC beam overlayed by latex-modified concrete. The repaired and strengthened structures would induce a premature failure due to the stress concentration at the adhesive layer of different material before the design expected failure. This paper investigated and proposed an analytical model for predicting interfacial shear and normal stresses of RC beam repair-purpose overlayed by latex-modified concrete. This would be used for predicting interfacial stresses and preventing premature failure at interfaces. This study modified Smith-Teng method for applying to cementitious repairing material, which was based on a direct governing equation and linear-elastic approach for interfacial normal and shear stresses. The proposed theoretical model was verified using commercial FEA program, LUSAS, in terms of interfacial stresses predicted by the proposed model and calculated by LUSAS.

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Effect of the Stiffness of Ingerface Defect on Dynamic Interface Crack propagation (계면에 존재하는 결함의 강성도가 동적 계면균열전파에 미치는 영향)

  • 이억섭;윤해룡;황시원
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2001.04a
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    • pp.671-674
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    • 2001
  • The dynamic photoelasticity with the aid of Cranz-Shardin type high speed camera system is utilized to record the dynamically propagating behavior of the interface crack. This paper investigates the effects of the stiffness of interface defect(exist along the path of the crack propagation) on the dynamic interface crack propagation behavior by comparing the experimental isochromatic fringes to the theoretical stress fields.

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Effect of Interface Hole Shape on Dynamic Interface Crack propagation (계면에 존재하는 결함의 모양이 동적 계면균열전파에 미치는 영향)

  • 이억섭;윤해룡;조운기;황시원
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2000.11a
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    • pp.429-432
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    • 2000
  • The dynamic photoelasticity with the aid of Cranz-Shardin type high speed camera system is utilized to record the dynamically propagating behavior of the interface crack. This paper investigates the effects of the hole (existed along the path of the crack propagation) shape on the dynamic interface crack propagation behavior by comparing the experimental isochromatic fringes to the theoretical stress fields.

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Fracture Mechanics Analysis of a Interface Crack in the Weld of Dissimilar Steels using the J-integral (J-적분을 이용한 이종강재 용접접합부 계면균열의 파괴역학적 해석)

  • Lee Chin-Hyung;Chang Kyong-Ho
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.17 no.4
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    • pp.423-431
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    • 2004
  • For the fracture mechanics analysis of cracks in welds of dissimilar steels, residual stress analysis and fracture analysis must be performed simultaneously. The standard definition of the J -integral leads to a path dependent value in the presence of a residual stress field. And unlike cracks in homogeneous materials, a bimaterial interface crack always induces both opening and shearing modes of stress in the vicinity of the crack tip. Therefore, it is necessary to develope a path independent J-integral definition for a crack in a residual stress field generated by welding of dissimilar steels. This paper addresses the modification of the Rice-J-integral to produce a path independent J -integral when residual stresses due to welding of dissimilar steels and external forces are present. The residual stress problem is treated as an initial strain problem and the J-integral proposed for this class of problems is used. And a program which can evaluate the J -integral for a crack in a weld of dissimialr steels is developed using proposed J integral definition.

A Study on the measurement of Interfacial Pressure for the Stress Relief Cone in the High Voltage Level Prefabricated Type Joint Box (초고압용 종단접속함 스트레스 콘의 계면압 측정 연구)

  • Kim, Ki-Sang;Hong, Dong-Suk;Jung, Chae-Kyun;Jang, Tae-In;Kang, Ji-Won
    • Proceedings of the KIEE Conference
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    • 2015.07a
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    • pp.445-446
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    • 2015
  • 본 논문은 지중송전 케이블 접속함의 이종 절연물에 대한 계면압력 측정에 대하여 기술하였다. 일반적으로 지중 송전케이블의 접속함의 경우, 운전 및 외부조건에 따라 절연물간의 계면압력은 변화하게 되고, 특히 저온에서 계면의 절연성능이 저하되면 고장발생 가능성이 높아진다. 이러한 계면압력 변화 경향을 파악하기 위하여 본 논문에서는 유압 시험을 통해 접속함 조립 시의 초기 계면압력을 측정하였고 그 결과를 기술하였다. 또한 응력 시뮬레이션과 유압 측정값을 비교하여 이론 및 실측값에 대한 신뢰성을 확보하였다.

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$Si_3N_4$를 이용한 금속-유전체-금속 구조 커패시터의 유전 특성 및 미세구조 연구

  • 서동우;이승윤;강진영
    • Proceedings of the Korean Vacuum Society Conference
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    • 2000.02a
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    • pp.75-75
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    • 2000
  • 플라즈마 화학증착법(Plasma Enhanced Chemical Vapor Deposition, PECVD)을 이용하여 양질의 Si3N4 금속-유전막-금속(Metal-Insulator-Metal, MIM) 커페시터를 구현하였다. Fig.1에 나타낸 바와 같이 p형 실리콘 웨이퍼의 열 산화막 위에 1%의 실리콘을 함유하는 알루미늄을 스퍼터링으로 증착하여 전극을 형성하고 두 전극사이에 Si3N4 박막을 증착하여 MIM구조의 박막 커패시터를 제조하였다. Si3N4 유전막은 150Watt의 RF 출력하에서 반응 가스 N2/SiH4/NH3를 각각 300/10/80 sccm로 흘려주어 전체 압력을 1Torr로 유지하면서 40$0^{\circ}C$에서 플라즈마 화학증착법을 이용하여 증착하였으며, Al과 Si3N4 층의 계면에는 Ti과 TiN을 스퍼터링으로 증착하여 확산 장벽으로 이용하였다. 각 시편의 커패시턴스 및 바이어스 전압에 따른 누설 전류의 변화는 LCR 미터를 이용하여 측정하였고 각 시편의 커패시턴스 및 바이어스 전압에 따른 누설 전류의 변화는 LCR 미터를 이용하여 측정하였고 각 시편의 유전 특성의 차이점을 미세구조 측면에서 이해하기 이해 극판과 유전막의 단면 미세구조를 투과전자현미경(Transmission Electron Microscope, TEM)을 이용하여 분석하였다. 유전체인 Si3N4 와 전극인 Al의 계면반응을 억제시키기 위해 TiN을 확산 장벽으로 사용한 결과 MIM커패시터의 전극과 유전체 사이의 계면에서는 어떠한 hillock이나 석출물도 관찰되지 않았다. Fig.2와 같은 커패시턴스의 전류-전압 특성분석으로부터 양질의 MIM커패시터 특성을 f보이는 Si3N4 의 최소 두께는 500 이며, 그 두께 미만에서는 대부분의 커패시터가 전기적으로 단락되어 웨이퍼 수율이 낮아진다는 사실을 알 수 있었다. TEM을 이용한 단면 미세구조 관찰을 통해 Si3N4 층의 두께가 500 미만인 커패시터의 경우에 TiN과 Si3N4 의 계면에서 형성되는 슬릿형 공동(slit-like void)에 의해 커패시터의 유전특성이 파괴된다는 사실을 알게 되었으며, 이러한 슬릿형 공동은 제조 공정 중 재료에 따른 열팽창 계수와 탄성 계수 등의 차이에 의해 형성된 잔류응력 상태가 유전막을 기준으로 압축응력에서 인장 응력으로 바뀌는 분포에 기인하였다는 사실을 확인하였다.

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