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On thermomechanical behaviors of the functional graded shape memory alloy composite for jet engine chevron

机译:喷气发动机人字形功能梯度形状记忆合金复合材料的热力学行为

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摘要

This study presents a theoretical work for a novel adaptive jet engine chevron concept based upon embedding the functionally graded shape memory alloy actuators in a composite laminate, termed a functionally graded shape memory alloy actuator composite. The constitutive models of the functionally graded shape memory alloy actuator composites including the monolayer shape memory alloy composites and multilayer shape memory alloy composites with different volume fractions of the shape memory alloy were first given. An example using such models was discussed on a published finite element work on a shape memory alloy hybrid composite jet engine chevron concept to prove the validity of the theoretical work. The thermomechanical behaviors of the functionally graded shape memory alloy actuator composite with different volume fractions of the shape memory alloy subjected to the thermal loading were then discussed using the obtained constitutive model. The tip deflections of the jet engine chevron with different embedding patterns of the shape memory alloy were finally obtained.
机译:这项研究提出了一种新颖的自适应喷气发动机人字形概念的理论工作,该概念基于将功能梯度形状记忆合金致动器嵌入复合材料层压板中,这种复合材料称为功能梯度形状记忆合金致动器复合材料。首先给出了功能梯度形状记忆合金促动器复合材料的本构模型,包括具有不同体积分数的形状记忆合金的单层形状记忆合金复合物和多层形状记忆合金复合物。在形状记忆合金混合复合喷气发动机人字形概念的已发表有限元研究中,讨论了使用此类模型的示例,以证明理论研究的有效性。然后,使用获得的本构模型,讨论了具有不同体积分数的形状记忆合金经受热负荷的功能梯度形状记忆合金致动器复合材料的热力学行为。最终获得了具有不同形状记忆合金嵌入图案的喷气发动机人字形的尖端挠度。

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