• 제목/요약/키워드: Coefficients of Mooney-Rivlin

검색결과 4건 처리시간 0.02초

비선형거동을 고려한 방진고무의 강성해석 및 최적설계 (The Stiffness Analysis and Optimization of the Rubber Seat Considering Nonlinear Behavior)

  • 이동훈;서상호;윤영훈;박진구
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2002년도 추계학술대회논문집
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    • pp.244-249
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    • 2002
  • Rubber seat is extensively used to reduce the vibration of machine or structure. Over the years an enormous effort has been put into developing procedures to provide properties of rubber material for design function. However, there are still a lot of difficulties to analyze static characteristics of rubber components with hyper elasticity and nonlinear large deformation. In this paper material property is obtained by strain-stress curve using a tension test. Mooney-Rivlin Coefficients are gotten by fitting strain-stress curve. The visco-elastic characteristics of refrigerator rubber mount is determined by using ANSYS. And to minimize the rubber stiffness, the rubber seat shape optimization is performed.

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대변형을 하는 고무 부품의 거동에 관한 해석 (An analysis about the behavior of rubber component with large deformation)

  • 한문식;조재웅
    • 한국공작기계학회논문집
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    • 제14권3호
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    • pp.47-53
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    • 2005
  • The non-linear finite element program of the large deformation analysis by computer simulation has been used in the prediction and evaluation of the behaviors of the non-linear rubber components. The analysis of rubber components requires the tools modelling the special materials that are quite different from those used for the metallic parts. The nonlinear simulation analysis used in this study is expected to be widely applied in the design analysis and the development of several rubber components which are used In the manufacturing process of many industries. By utilizing this method, the time and cost can also be saved in developing the new rubber product. The objective of this study is to analyze the rubber component with the large deformation and non-linear properties.

압착되어 회전하는 강체/변형 롤의 동적 특성에 관한 수치해석 연구 (A Numerical Study on Dynamic Characteristics of Counter-Rotating Rigid/Deformable Rolls in Press Contact)

  • 이문규;이상혁;허남건;서영진;김인철;이성진
    • 대한기계학회논문집A
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    • 제35권8호
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    • pp.869-876
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    • 2011
  • 동적 특성에 영향을 받는 롤 코팅의 평형적인 두께 예측과 불안정성을 분석함은 중요하다. 본 연구에서는 강체/변형롤 사이에서 생성되는 마이크로 코팅액의 두께를 예측하기에 앞서 압착되어 회전하는 두 롤 사이에 발생하는 접촉 압력의 분포와 변형롤의 변형 형상을 예측하고자 한다. 또한 변형롤의 재료상수와 롤의 속도 및 마찰계수 그리고 압착 크기 등의 변수들에 대한 접촉압력분포를 수치적인 방법으로 측정하여 유효한 변수들의 영향을 분석하고자 한다. 수치해석 방법으로는 유한요소법을 사용하였고 두 롤을 모델링하여 변형롤에 고무물성치를 초탄성체 모델로 가정하여 일반적으로 사용되는 Mooney Rivlin 계수를 사용하였고 40~80rpm 사이의 속도로 회전할 때 접촉 형상 및 압력분포를 분석하였다. 접촉형상의 경우 압착정도에 따라 변하고 그외 변수들에는 영향을 받지 않고 접촉압력의 경우 변형롤의 물성치와 압착정도에 의해 주요한 영향을 받고 속도 및 마찰계수에는 영향을 받지 않음을 알 수 있다.

체적의 변화를 통한 방광벽 두께와 기계적 재료상수 변화가 배뇨근 활동에 미치는 영향 (Effect of Bladder Wall Thickness Through Change of Bladder Volume and Material Properties on Detrusor activity Study)

  • 전수민;이문규;최범규
    • 한국정밀공학회지
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    • 제29권5호
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    • pp.584-590
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    • 2012
  • The structural and functional disorder of a detrusor induces a bladder hypertrophy and degenerates a bladder muscle gradually by preventing normal urination. Thus, the thickness of the bladder wall has been increased in proportion to the degree of bladder outlet obstruction. In this study, the mechanical characteristics of the detrusor is analyzed for the physical properties and the thickness changes of the bladder muscle using a mathematically analytic method. In order to obtain the mechanical property of the bladder muscle, the tensile test of porcine bladder tissue is performed because its property is similar to that of human. The result of tensile test is applied to the mathematically model as Mooney Rivlin coefficients which represent the hyperelastic material. The model of the bladder is defined as the spherical shape with the initial volume of 50ml. The principal stress and strain according to the thickness are analyzed. Also, computer simulations for three types of the material property for the model of the bladder are performed based on the fact that the stiffness of the bladder is weakened as the progress of the benign prostatic hyperplasia. As a result, the principal stress is 341kPa at the initial thickness of 2.2mm, and is 249kPa at 6.5mm. As the bladder wall thickness increases, the principal stress decreases. The principal stress and strain decrease as the stiffness of the bladder decreases under the same thinkness.