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Active control of interlaminar stresses in laminated composites by through-thickness thermal gradients

机译:贯穿厚度的热梯度主动控制层合复合材料的层间应力

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Abstract: In this paper, we propose a method to actively control interlaminar stresses near the free edges of laminated composites by through-thickness thermal gradients. Theoretical solutions are given for optimal steady-state through-thickness temperature distributions under uniaxial loading that are required to eliminate or reduce the interlaminar stresses below a prescribed level. The optimal solutions are obtained by minimizing appropriate performance indices that are functions of the far-field properties, with respect to the through-thickness temperature differences. In the second part, an experimental investigation is conducted on a glass/epoxy cross-ply laminate with embedded piezoelectric sensors and a thermal heater. Through the experiment, a feasibility of the thermal control of interlaminar stresses is demonstrated. !12
机译:摘要:在本文中,我们提出了一种通过厚度方向的热梯度主动控制层合复合材料自由边缘附近的层间应力的方法。给出了用于消除或减小层间应力低于规定水平所需的单轴载荷下最佳稳态全厚度温度分布的理论解决方案。相对于整个厚度的温差,通过最小化作为远场特性的函数的适当性能指标,可以获得最佳解决方案。在第二部分中,对带有嵌入式压电传感器和热加热器的玻璃/环氧树脂交叉层压板进行了实验研究。通过实验证明了层间应力热控制的可行性。 !12

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