工艺参数对平面复合材料零件残余应力影响的数值分析

E. Zappino, M. Santori, R. Masia, N. Zobeiry, M. Petrolo
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引用次数: 0

摘要

本文提出了一种评估工艺参数对复合材料零件力学性能影响的数值方法。采用一维热化学模型预测树脂在固化周期内的固化过程。采用固化硬化瞬时线弹性模型推导材料性能,并采用Carrera统一公式框架下的一维精细化模型,得到有关过程诱发应力的准确结果。评估了各种工艺参数,如保温温度和加热速率。结果表明,纤维体积分数和保温温度等工艺参数对复合材料的性能和工艺诱发应力有显著影响。研究还表明,对固化周期的修改可能不会影响性能,从而降低能量开销。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Analysis of the Impact of Process Parameters on the Residual Stress of a Flat Composite Part

This paper presents a numerical approach to assess the influence of process parameters on a composite part’s mechanical properties. A one-dimensional thermochemical model is used to predict the curing progress of the resin during the curing cycle. Material properties are derived using the cure hardening instantaneous linear elastic model, and a refined one-dimensional model derived within the Carrera Unified Formulation framework is used to obtain accurate results concerning process-induced stresses. Various process parameters, such as the holding temperature and heating rate, are evaluated. The results show that some process parameters, such as the fiber volume fraction and holding temperature, significantly influence composite characteristics and process-induced stresses. It is also shown that modifications to curing cycles leading to reduced energy overhead may not affect performances.

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