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Reliability-Based Evaluation of the Suitability of Polymers for Additive Manufacturing Intended for Extreme Operating Conditions

机译:基于可靠性的可靠性评价用于极端操作条件的添加剂制造的适用性

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摘要

A reliability engineering program must be implemented from the conceptual phase of the physical asset to define the performance requirements of the components and equipment. Thus, in this work, the aim is to find the most optimal solution to manufacture polymer-based parts for the nuclear power industry using additive manufacturing routes. This case study application has been selected because polymers processed by additive manufacturing (AM) can be well suited for nuclear applications. The methodology includes—firstly—an analysis of the suitability of materials based on high-temperature resistance, thermal aging and irradiation tolerance, considering operation conditions. Secondly, an analysis of materials’ processability considering their associated AM routes is performed based on thermal analysis and evaluation of physical properties of materials. A final assessment integrating the in-service suitability and AM processability is performed using a reliability approach, solving different emerging objective conflicts through defined constraints and selection criteria. According to the integrated in-service performance evaluation: Polypropylene-ethylene polyallomer (PPP), Epoxy (EP), Phenolics (Ph), Polyurethane (PU) and Acrylonitrile butadiene rubber (NBR) are the best options for mild operation conditions and EP, Ph and PU, considering high temperature along with radiation exposure. Considering AM techniques: EP and Ph can be manufactured using VAT photopolymerization-stereolithography (VP-SLA) with a good expected processability being these materials valid for high temperature environments. Consequently, this research work analyzes the viability, processability and in-service behavior of parts.
机译:必须从物理资产的概念阶段实现可靠性工程计划,以定义组件和设备的性能要求。因此,在这项工作中,目的是使用添加剂制造路线找到为核电工业制造基于聚合物的零件的最佳解决方案。本案例研究申请已被选中,因为添加剂制造(AM)加工的聚合物非常适合核应用。该方法包括首先 - 考虑到操作条件,首先是基于高温电阻,热老化和照射耐药性的材料的适用性分析。其次,考虑到其相关的AM路线的材料的分析是基于材料的热分析和物理性质的评估来进行。使用可靠性方法执行整合服务适用性和AM可加工性的最终评估,通过定义的约束和选择标准解决不同的新出现的目标冲突。根据综合的在线性能评价:聚丙烯 - 乙烯聚缩醛(PPP),环氧(EP),酚菌(PH),聚氨酯(PU)和丙烯腈丁二烯橡胶(NBR)是温和操作条件和EP的最佳选择,考虑到高温以及辐射暴露,PH和PU。考虑到AM技术:EP和PH可以使用VAT光聚合 - 立体光刻(VP-SLA)制造,具有良好的预期可加工性,这些材料适用于高温环境。因此,该研究工作分析了部件的可行性,可加工性和服务中的行为行为。

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