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A multiscale model for damage progression and detection in piezo/pyroelectric composite laminates

机译:压电/热电复合层合板损伤进展和检测的多尺度模型

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摘要

Assessment of damage initiation and progression in composite structures reinforced with electrically active filaments is modeled in a multiscale analysis. The analysis developed is a two-tier, interactive analysis, which involves two length scales; macroscopic, and microscopic. The proposed multiscale analysis provides seamless integration of the mechanics at the two length scales, including piezoelectric and pyroelectric coupling effects and damage under overall thermomechanical loads and an electric field applied to electroactive fibers. The macromechanical analysis is performed for multidirectional, fibrous laminates using the lamination theory, including bending, and the micromechanical analysis is performed using a two-phase model and a periodic array model. The effect of eigenstrains caused by thermomechanical, electromechanical, and thermoelectric coupling at both the microscopic and macroscopic length scales is accounted for by a two-tier transformation field analysis (TFA). (C) 2017 Elsevier Ltd. All rights reserved.
机译:在多尺度分析中对用电活性细丝增强的复合结构中的损伤引发和进展进行评估。所开发的分析是一个两层交互式分析,涉及两个长度范围。宏观的和微观的。拟议的多尺度分析在两个长度尺度上提供了力学的无缝集成,包括压电和热电耦合效应以及在整体热机械载荷和施加于电活性纤维的电场下的破坏。使用包括弯曲在内的层压理论对多向纤维层压板进行宏观力学分析,并使用两相模型和周期阵列模型进行微观力学分析。由热力学,机电和热电耦合引起的本征应变在微观和宏观长度尺度上的影响都可以通过两级转换场分析(TFA)来解决。 (C)2017 Elsevier Ltd.保留所有权利。

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