首页> 外文学位 >De la caracterisation des materiaux et simulation du procede a l'optimisation de la fabrication des composites par injection sur renfort (French text).
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De la caracterisation des materiaux et simulation du procede a l'optimisation de la fabrication des composites par injection sur renfort (French text).

机译:从材料的表征和工艺模拟,到通过注射增强材料来优化复合材料的生产(法文)。

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摘要

The Liquid Composite Molding techniques (LCM) have become widely used composite manufacturing methods for medium to small production volumes. The objectives of this thesis consist of developing characteristic equations that describe the thermo-mechanical behaviour and phase changes of thermosetting matrix composites, create and implement new numerical models for process simulation and finally, propose a new and comprehensive optimization methodology based on genetic algorithms for the curing and cooling of LCM parts. In these processes, the fibrous reinforcement is progressively saturated by the liquid resin. Once the mold cavity is filled, the thermosetting resin polymerizes and solidifies. From the point of view of the numerical simulation, the process can be divided into three principal stages: (1) filling, (2) curing and (3) cooling and demolding. The material characterisation, numerical simulation and optimization of these three stages are included in the scope of works of this thesis.; The first part of this study concerns the characterization of the cure kinetics and the viscoelastic behaviour of a glass/polyester composite. A semi-empirical model was developed to take into account the effects of inhibitor decomposition and glass transition on cure kinetics. Two models are proposed to describe the chemical and thermal effects on the mechanical properties of the composite. The first one is a thermo-chemical elastic non-linear model that considers total matrix relaxation in the rubbery state above the glass transition temperature. The second one is a viscoelastic model based on the stress relaxation and the time/temperature superposition principle.; A one-dimensional solution of the heat equation coupled with stress analysis has been developed to simulate thermal, chemical and mechanical effects during cure. The calculation of residual stresses and the elastic model have been experimentally verified by molding thin composite plates. A study has been carried out on the evolution of internal stresses during the curing and cooling of thick parts.; The optimization of the pre-heating, curing and cooling stages in the manufacturing of composite parts by LCM is finally treated. This comprehensive approach incorporates several objectives in the same optimization procedure: minimization of cycle time, improvement of mechanical properties and reduction of laminate residual stresses. An evolutionary algorithm based on genetic algorithms, the code called LeCoq (Logical Evolutionary Curing Optimization and Quenching), has been developed to optimize the mold temperature transient profile. Finally, the curing of a thick composite part has been optimized with this algorithm. (Abstract shortened by UMI.)
机译:液体复合成型技术(LCM)已成为中小批量生产中广泛使用的复合材料制造方法。本文的目的包括开发描述热固性基体复合材料的热力学行为和相变的特征方程,创建并实现新的数值模型以进行过程仿真,最后,提出一种基于遗传算法的新型综合优化方法。 LCM零件的固化和冷却。在这些过程中,纤维状增强材料被液态树脂逐渐饱和。模具型腔充满后,热固性树脂聚合并固化。从数值模拟的角度来看,该过程可以分为三个主要阶段:(1)填充,(2)固化和(3)冷却和脱模。这三个阶段的材料表征,数值模拟和优化都包括在本文的工作范围之内。本研究的第一部分涉及玻璃/聚酯复合材料的固化动力学和粘弹性行为的表征。开发了一个半经验模型来考虑抑制剂分解和玻璃化转变对固化动力学的影响。提出了两个模型来描述化学和热效应对复合材料力学性能的影响。第一个是热化学弹性非线性模型,考虑了玻璃化转变温度以上橡胶态的总基质松弛。第二个是基于应力松弛和时间/温度叠加原理的粘弹性模型。已经开发了热方程的一维解决方案以及应力分析,以模拟固化过程中的热,化学和机械效应。残余应力的计算和弹性模型已经通过模制薄复合板进行了实验验证。已经对厚零件的固化和冷却过程中内部应力的演变进行了研究。最后,对通过LCM制造复合零件中的预热,固化和冷却阶段进行了优化。这种全面的方法在同一优化过程中包含了多个目标:最小化循环时间,改善机械性能并降低层压板残余应力。已经开发了一种基于遗传算法的进化算法,称为代码LeCoq(逻辑进化固化优化和淬火),以优化模具温度的瞬态曲线。最终,使用该算法优化了厚复合材料部件的固化。 (摘要由UMI缩短。)

著录项

  • 作者

    Ruiz, Eduardo.;

  • 作者单位

    Ecole Polytechnique, Montreal (Canada).;

  • 授予单位 Ecole Polytechnique, Montreal (Canada).;
  • 学科 Plastics Technology.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 427 p.
  • 总页数 427
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 整形外科学(修复外科学);工程材料学;
  • 关键词

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