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Fully-coupled piezoelectric assumed-strain least-squares nonlinear shell

机译:全耦合压电假设应变最小二乘非线性壳

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摘要

Relevance of finite strain shell piezoelectric analysis is significant due to the general use of polyvinylidene fluoride (PVDF). A finite-strain geometrically exact shell model for the analysis of piezoelectric laminated structures is introduced. An assumed-strain formulation is employed, with least-squares fitting of contravariant linear stress fields. This allows the condensation of internal degrees-of-freedom corresponding to the assumed strains. The resulting piezoelectric shell has 8 degrees-of-freedom in each node, with 3 position/displacement degrees-of-freedom, 3 rotation parameters and the upper and lower electrostatic potential at the nodes. This contrasts with available formulations where only one electric degree-of-freedom is considered. A total of 32 degrees-of-freedom in each 4-node element are used. In term of implementation, we use a generalized strain and generalized stress formulation to reproduce the conventional finite element organization. Six examples are presented, with transversely isotropic and orthotropic cases, including finite strains and asymmetric plies. Results show a remarkably good agreement with the sources and we achieve higher values of actuation.
机译:由于通常使用聚偏二氟乙烯(PVDF),因此有限应变壳压电分析的相关性很重要。介绍了用于压电叠层结构分析的有限应变几何精确壳模型。采用假定应变公式,并用最小二乘拟合线性线性应力场。这允许对应于假定应变的内部自由度的凝结。所得的压电壳在每个节点中具有8个自由度,具有3个位置/位移自由度,3个旋转参数以及节点上的上下静电势。这与仅考虑一个电自由度的现有配方形成对比。每个4节点元素中总共使用32个自由度。在实现方面,我们使用广义应变和广义应力公式来再现常规的有限元组织。给出了六个示例,包括横观各向同性和正交各向异性情况,包括有限应变和不对称层。结果显示出与信号源的良好一致性,并且我们获得了更高的驱动值。

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