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Numerical Analysis of Piezoelectric Active Repair in the Presence of Frictional Contact Conditions

机译:摩擦接触条件下压电主动修复的数值分析

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The increasing development of smart materials, such as piezoelectric and shape memory alloys, has opened new opportunities for improving repair techniques. Particularly, active repairs, based on the converse piezoelectric effect, can increase the life of a structure by reducing the crack opening. A deep characterization of the electromechanical behavior of delaminated composite structures, actively repaired by piezoelectric patches, can be achieved by considering the adhesive layer between the host structure and the repair and by taking into account the frictional contact between the crack surfaces. In this paper, Boundary Element (BE) analyses performed on delaminated composite structures repaired by active piezoelectric patches are presented. A two-dimensional boundary integral formulation for piezoelectric solids based on the multi-domain technique to model the composite host damaged structures and the bonded piezoelectric patches is employed. An interface spring model is also implemented to take into account the finite stiffness of the bonding layers and to model the frictional contact between the delamination surfaces, by means of an iterative procedure. The effect of the adhesive between the plies of piezoelectric bimorph devices on the electromechanical response is first pointed out for both sensing and actuating behavior. Then, the effect of the frictional contact condition on the fracture mechanics behavior of actively repaired delaminated composite structures is investigated.
机译:压电材料和形状记忆合金等智能材料的不断发展,为改善修复技术开辟了新的机遇。特别地,基于逆压电效应的主动修复可以通过减少裂纹开口来增加结构的寿命。通过考虑主体结构和修补物之间的粘合层并考虑裂纹表面之间的摩擦接触,可以实现对分层复合结构的机电行为的深入表征,该复合力学行为由压电膜片主动修复。在本文中,提出了对由有源压电贴片修复的分层复合结构进行的边界元(BE)分析。采用基于多域技术的压电固体二维边界积分公式,对复合材料主体受损结构和粘结的压电贴片进行建模。还实施了界面弹簧模型,以考虑到粘结层的有限刚度,并通过迭代过程来模拟分层表面之间的摩擦接触。首先指出了压电双压电晶片装置的层之间的粘合剂对机电响应的影响,以用于感测和致动行为。然后,研究了摩擦接触条件对主动修复的分层复合结构断裂力学行为的影响。

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