首页> 外文会议>ASME international mechanical engineering congress and exposition >ANALYSIS OF THE PROCESS- STRUCTURE- BEHAVIOR INTERACTION IN BIO-SOURCED POLYMERS: ROLE OF THE CRYSTALLIZATION KINETICS
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ANALYSIS OF THE PROCESS- STRUCTURE- BEHAVIOR INTERACTION IN BIO-SOURCED POLYMERS: ROLE OF THE CRYSTALLIZATION KINETICS

机译:生物来源聚合物中的过程-结构-行为相互作用分析:结晶动力学的作用

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PLA (Poly Lactic Acid) is a bio-sourced and biodegradable polymer. It represents an alternative for polymers issued from petrochemical synthesis. Unfortunately, the crystallization kinetics of PLA is very slow and limits the possibility to extend its application in several industrials domains. The enhancement of the PLA crystallization kinetic can be obtained by addition of nucleating agents of by ordering the molecular chains during flow, as in processing conditions. During processing of thermoplastic polymer experiences several thermomechanical conditions influencing drastically its final properties and mechanical behavior. During injection molding process, macromolecules are oriented and ordered due to the shear and elongation imposed by the melt flow in the mold during the filling step. As a consequence, supplementary nucleation is created in the polymer, leading to the acceleration of the crystallization kinetics. In this work, we propose to analyze and to quantify the role of the flow, the temperature kinetics and the nucleating agent on injected PLA parts structure and their mechanical behavior. A parametric analysis of the relationship between the polymer, its structure and the processing condition will be presented. The competition (sometimes antagonism) between several parameters, as the shear rate, the temperature kinetics and the nucleating agent will be highlighted.
机译:PLA(聚乳酸)是一种生物来源的可生物降解的聚合物。它代表了由石油化学合成生产的聚合物的替代品。不幸的是,PLA的结晶动力学非常缓慢,并且限制了将其应用扩展到几个工业领域的可能性。如在加工条件下那样,可以通过在流动过程中通过排列分子链来添加成核剂来提高PLA结晶动力学。在热塑性聚合物的加工过程中,会经历多种热机械条件,这些条件会极大地影响其最终性能和机械性能。在注射成型过程中,由于填充过程中模具中熔体流动所施加的剪切力和伸长率,大分子被定向和排列。结果,在聚合物中产生了附加的成核作用,导致结晶动力学的加速。在这项工作中,我们建议分析和量化流动,温度动力学和成核剂对注入的PLA零件结构及其机械性能的作用。将对聚合物,其结构和加工条件之间的关系进行参数分析。几个参数之间的竞争(有时是拮抗作用),如剪切速率,温度动力学和成核剂将被突出显示。

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