• 제목/요약/키워드: elastic modulus ratio

검색결과 478건 처리시간 0.029초

경계요소법에 의한 다결정 직교 이방성 재료의 유효 재료 상수의 계산 (Calculation of Effective Material Property for Multi-Grain Orthotropic Material by BEM)

  • 김동은;이상훈;정일중;이석순
    • 대한기계학회논문집A
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    • 제32권9호
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    • pp.713-719
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    • 2008
  • Most of the MEMS parts are made of multi-grain silicon wafer, which is the orthotropic material and its material direction is arbitrary. The reliability of the parts must be guaranteed in order to use for the commercial usage. The need of the structural analysis of its parts emerges an important factor. The material properties of the MEMS parts are calculated by the numerical method in order to reduce a material test. In this study, the effective elastic modulus and its Poisson's ratio are calculated by the boundary element method(BEM) and are compared with the results by the finite element method(FEM).

판재에 있는 구멍 또는 이종재료 사이에서의 크랙 전파 거동 (A Behavior of the Crack Propagation between Holes or Another Materials on the Panel)

  • 조재웅;한문식
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2005년도 춘계학술대회 논문집
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    • pp.264-271
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    • 2005
  • This study investigates the behavior of fatigue crack propagating between holes or holes filled with another materials. When holes or the holes bonded with another materials exist near center crack symmetrically, crack propagation rate is influenced by the bonding force of brazing part and the elastic modulus ratio of another material to matrix. It is experimentally and analytically confirmed that the center crack stops when its tip reaches near the center line of the holes and a small crack is initiated from the boundaries of holes or the holes filled with another materials and it propagates to final fracture. The mechanical behaviors of center crack near another materials are also investigated.

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판재에 있는 구멍 또는 이종재료 사이에서의 크랙 전파 거동 (A Behavior of the Crack Propagation between Holes or Another Materials on the Panel)

  • 한문식;조재웅
    • 한국공작기계학회논문집
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    • 제14권6호
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    • pp.74-82
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    • 2005
  • This study investigates the behavior of fatigue crack propagating between holes or holes filled with another materials. When holes or the holes bonded with another materials exist near center crack symmetrically, crack propagation rate is influenced by the bonding force of brazing part and the elastic modulus ratio of another material to matrix. It is experimentally and analytically confirmed that the center crack stops when its tip reaches near the center line of the holes and a small crack is initiated from the boundaries of holes or the holes filled with another materials and it propagates to final fracture. The mechanical behaviors of center crack near another materials are also investigated.

가속도계를 이용한 재료의 영계수 측정방법 (Measuring Young's Modulus of Materials by Using Accelerometer)

  • 손창호;박진호;윤두병;정의필;최영철
    • 한국소음진동공학회논문집
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    • 제16권11호
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    • pp.1158-1164
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    • 2006
  • For the description of the elastic properties of linear objects a convenient parameter is the ratio of the stress to the strain, a parameter called the Young's modulus of the material. Young's modulus can be used to predict the elongation or compression of an object as long as the stress is less than the yield strength of the material. Conventional method for estimating Young's modulus measured the ratio of stress to corresponding strain below the proportional limit of a material using a tensile testing machine. But the method needs precision specimens and expensive equipment. In this paper, we proposed method for estimating Young's modulus using accelerometer. The basic idea comes from that the wave velocity is different as the Young's modulus. To obtain Young's modulus, a group velocity is obtained. It is difficult to measure group velocity. This is because plate medium has a dispersive characteristics which has different wave speed as frequency. In this paper, we used Wigner-Ville distribution to measure group velocity. To verify the proposed method, steel and acryl plate experiments have been performed. Experimental results show that the proposed method is powerful for estimating Young's modulus.

가속도계를 이용한 재료의 영계수 측정방법 (Measuring Young's Modulus of Materials by using Accelerometer)

  • 최영철;박진호;윤두병;손창호;황일순
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2007년도 춘계학술대회논문집
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    • pp.1027-1032
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    • 2007
  • For the description of the elastic properties of linear objects a convenient parameter is the ratio of the stress to the strain, a parameter called the Young's modulus of the material. Young's modulus can be used to predict the elongation or compression of an object as long as the stress is less than the yield strength of the material. Conventional method for estimating Young's modulus measured the ratio of stress to corresponding strain below the proportional limit of a material using a tensile testing machine. But the method needs precision specimens and expensive equipment. In this paper, we proposed method for estimating Young's modulus using accelerometer. The basic idea comes from that the wave velocity is different as the Young's modulus. To obtain Young's modulus, a group velocity is obtained. It is difficult to measure group velocity. This is because plate medium has a dispersive characteristics which has different wave speed as frequency. In this paper, we used Wigner-Ville distribution to measure group velocity. To verify the proposed method, steel and acryl plate experiments have been performed. Experimental results show that the proposed method is powerful for estimating Young's modulus.

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Micro Fourier Rheometer에 의한 알루미나 그린 테이프의 Complex Modulus 측정 (Complex Modulus of Alumina Green Tapes Measured by Micro Fourier Rheometer)

  • 이정훈;이명현;김창은;김대준
    • 한국세라믹학회지
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    • 제36권2호
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    • pp.122-129
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    • 1999
  • 알루미나 분말/(알루미나+결합체+가소제)의 비(X)와 결합체/(결합체+가소제)의 비(Y)를 각각 변화시켜 제조한 알루미나 그린 테이프의 complex modulus를 Micro Fourier Rheometer를 이용하여 측정하였다. X와 Y의 증가에 따라 Transfer function(TF) magnitude는 증가하고 Transfer function(TF) phase는 감소하는 경향을 보였으며 이로부터 X비와 Y비의 증가가 테이프의 탄성을 증가시켜는 요인임을 알 수 있었다. 온도가 증가함에 따라 알루미나 테이프의 TF magnitude는 작아지고 TF phase는 커지는 것으로부터 테이프의 점성이 증가함을 알 수 있었다. 특히 Y비에 따른 complex modulus의 변화는 유리전이온도와 관련이 있으며 변화값은 측정 조성 범위 내에서 X비에 의한 변화값보다 큼을 볼 수 있었다. complex modulus 측정을 통하여 알루미나 테이프의 성형이 가능하기 위해서는 TF phase 값이 17$^{\circ}$이상이어야 함을 유추할 수 있었다.

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시멘트 모르타르 재료의 동탄성계수와 정탄성계수 비교 연구 (A Comparative study on Dynamic & Static elastic modulus of cement mortar specimens)

  • 오선환;김형수;장보안;서만철
    • 지구물리
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    • 제3권2호
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    • pp.127-138
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    • 2000
  • 시멘트 모르타르 재료에 대한 동탄성계수와 정탄성계수의 차이를 고찰하고자 일곱 단계의 물시멘트 혼합비에 대해 다양한 길이의 시료를 제작, 시험하였다. 이들 시료의 동탄성계수 및 정탄성계수는 비중 측정, 초음파 전파 속도 측정 및 일축 압축 시험을 통해 결정되었으며, 시료에 대해 측정된 P파 및 S파 속도 분석은 기존의 아날로그 방식이 아닌 디지털 방식을 통해 수행되었다. 일련의 자료 처리 과정을 지친 디지털 방식 자료는, 초음파 전파 속도를 정밀하게 분석하는데 결정적인 역할을 할 수 있음이 확인되었으며, 복수 시료를 이용한 거리 변화에 따른 파의 지연 시간 변화를 이용한 속도 산정 방식이, 단일 시료 길이와 전파 시간을 이용한 기존 속도 산정 방식보다 더욱 정밀한 값을 보여주는 것으로 판명되었다. 밀도는 시료의 P파 및 5파 속도와 뚜렷한 양의 상관성을 보여주며, 일축 압축 강도 역시, 밀도와 뚜렷한 양의 상관성을 보여준다. 초음파 전파 속도를 통해 측정된 동탄성계수$(E_D)$와 일축 압축 시험을 통해 측정된 정탄성계수$(E_S)$의 비율$(E_D/E_S)$은 시료의 강도가 커질수록 함께 커지는 경향을 보여주었으며, 모든 시료에 대해 항상 동탄성계수가 정탄성계수보다 높게 평가됨이 확인되었다. 그러나 동포아송비$({\nu}_D)$와 정포아송비$({\nu}_S)$의 비율$({\nu}_D/{\nu}_S)$은 강도와 특별한 상관성을 보여주지 않았으며, 그 비율도 $69{\sim}122\;%$정도로 동포아송비와 정포아송비가 큰 차이를 보이지 않는 것으로 나타났다.

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초음파에 의한 알루미늄 소결체 설계를 위한 탄성계수 예측 (Elastic Modulus Prediction for Design of Sintered Aluminum by Ultrasonic)

  • 남영현
    • 대한기계학회논문집A
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    • 제32권7호
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    • pp.590-596
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    • 2008
  • The ultrasonic velocities of sintered aluminum with varying density were measured in order to deduce the mechanical properties for optimum design of the sintered aluminum. Specimens with different densities were prepared by the plasma activated sintering machine. The density distribution of sintered aluminum becomes partially inhomogeneous because of the friction between the powder and the die during compaction. The elastic moduli are increased as the ultrasonic velocity is increased. Furthermore, Poisoon's ratio is depending on not only the density but also the size and distribution of voids. As the specimen's thickness increases, the center frequency in the frequency spectrum of the reflection wave is shifted to the low frequency. The attenuation coefficient of ultrasonic wave is decreased inversely as the density increased.

팽창점토를 사용한 경량콘크리트의 특성에 관한 실험적 연구 (An Experimental Study on the Properties of Lightweight Concrete Using Expanded Clay)

  • 김종인;최영화;하상진
    • 한국산업융합학회 논문집
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    • 제5권3호
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    • pp.225-232
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    • 2002
  • The purpose of this study is to find the mechanical properties of lightweight concrete using expanded clay. Thus, slump, air content, compressive strength, elastic modulus, tensile strength, length change ratio, unitweight change ratio and absorption of lightweight concrete have been investigated. The conclusions of this study are as follows ; 1. The loss of slump and air content of concrete increased as the expanded clay content increased and the size of coarse aggregate decreased. 2. The compressive strength of concrete using 100% expanded clay of 13, 19mm size at 28 days were respectively 282, $252kgf/cm^2$. 3. The elastic modulus and tensile strength of concrete decreased with increase of expanded clay content. 4. The length change ratio of concrete increased with the larger coarse aggregate size, and decreased with the increase of expanded clay content. 5. The unit weight of concrete decreased with the increase of expanded clay content, and the ratio of that was larger at the early age.

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