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Thermomechanical Extended Layerwise Method for laminated composite plates with multiple delaminations and transverse cracks

机译:具有多个分层和横向裂纹的层压复合板的热机械扩展分层法

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摘要

A Thermomechanical Extended Layerwise Method (TELM) is developed for the laminated composite plates with multiple delaminations and transverse cracks. The discontinuity of displacements and temperature induced by multiple delaminations is simulated by strong discontinuous function while the discontinuity of strain and temperature gradient between dissimilar layers is modeled by a weak discontinuous function. Transverse cracks are modeled using classical Extended Finite Element Method (XFEM). The coupled thermomechanical variational principle is employed to derive the Euler equations and the discrete forms. Since the displacement and temperature fields are solved simultaneously, a fully coupled time integration method is developed based on the Newmark integration algorithm and Crank-Nicolson scheme. The strain energy release rate for multiple delamination fronts and stress intensity factors for transverse cracks are calculated by the Virtual Crack Closure Technique and the Interaction Integral Method, respectively. The proposed method is applied to the steady-state thermomechanical problems, elastic and thermomechanical dynamic problems for isotropic and composite plates with transverse cracks and multiple delaminations.
机译:开发了一种热机械扩展分层方法(TELM),用于具有多个分层和横向裂纹的层压复合板。由多个分层引起的位移和温度的不连续性由强不连续函数模拟,而异种层之间的应变和温度梯度的不连续性则由弱不连续函数建模。使用经典的扩展​​有限元方法(XFEM)对横向裂纹进行建模。耦合热机械变分原理用于推导欧拉方程和离散形式。由于位移场和温度场是同时求解的,因此在Newmark积分算法和Crank-Nicolson方案的基础上,开发了一种完全耦合的时间积分方法。分别通过虚拟裂纹闭合技术和相互作用积分法计算了多个分层前沿的应变能释放率和横向裂纹的应力强度因子。该方法适用于具有横向裂纹和多次分层的各向同性和复合板的稳态热力学问题,弹性和热力学动力学问题。

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