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Columnar-to-Equiaxed Transition in SOLidification Processing (CETSOL): a project of the European Space Agency (ESA) - Microgravity Applications Promotion (MAP) programme

机译:凝固处理中的柱状到等过渡(CETSOL):欧洲空间机构(ESA)的项目 - 微匍匐应用促销(地图)计划

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The main objective of the research project of the European Space Agency (ESA) -Microgravity Application Promotion (MAP) programme entitled Columnar-to-Equiaxed Transition in SOLidification Processing (CETSOL) is the investigation of the formation of the transition from columnar to equiaxed macrostructure that takes place in casting. Indeed, grain structures observed in most casting processes of metallic alloys are the result of a competition between the growth of several arrays of dendrites that develop under constrained and unconstrained conditions, leading to the CET. A dramatic effect of buoyancy-driven flow on the transport of equiaxed crystals on earth is acknowledged. This leads to difficulties in conducting precise investigations of the origin of the formation of the equiaxed crystals and their interaction with the development of the columnar grain structure. Consequently, critical benchmark data to test fundamental theories of grain structure formation are required, that would benefit from microgravity investigations. Accordingly, the ESA-MAP CETSOL project has gathered together European groups with complementary skills to carry out experiments and to model the processes, in particular with a view to utilization of the reduced-gravity environment that will be afforded by the International Space Station (ISS) to get benchmark data. The ultimate objective of the research program is to significantly contribute to the improvement of integrated modelling of grain structure in industrially important castings. To reach this goal, the approach is devised to deepen the quantitative understanding of the basic physical principles that, from the microscopic to the macroscopic scales, govern microstructure formation in solidification processing under diffusive conditions and with fluid flow in the melt. Pertinent questions are attacked by well-defined model experiments on technical alloys and/or on model transparent systems, physical modelling at microstructure and mesoscopic scales (e.g. large columnar front or equiaxed crystals) and numerical simulation at all scales, up to the macroscopic scales of casting with integrated numerical models.
机译:欧洲航天局研究项目的主要目标(ESA) - 梅卡罗格拉维地区应用促销(MAP)计划在凝固处理中题为柱状核苷酸转变(CETSOL)是对从柱状转变为等轴大结构的形成的调查在铸造中发生。实际上,在金属合金的大多数铸造过程中观察到的晶粒结构是在受限制和无约束条件下产生的曲线的几阵阵列之间的竞争之间的竞争结果,导致CET。承认了浮力驱动流动对地球上等等轴晶体运输的巨大效果。这导致难以进行精确地研究平衡晶体的形成的起源及其与柱状晶粒结构的开发的相互作用。因此,需要临界基准数据,以测试谷物结构形成的基本理论,这将受益于微匍匐研究。因此,ESA-MAP CETSOL项目已经聚集在一起具有互补技能的欧洲群体,以进行实验并模拟过程,特别是利用国际空间站提供的减重环境(ISS )获得基准数据。研究计划的最终目标是大大促进工业上重要铸件中谷物结构综合建模的改进。为了实现这一目标,设计方法深化对基本物理原理的定量理解,从显微镜到宏观尺度,在扩散条件下控制凝固处理中的微观结构形成和熔体中的流体流动。相关问题是由技术合金和/或模型透明系统上的明确定义模型实验的攻击,在微观结构和介术尺度(例如大柱状前或等式晶体)的物理建模和所有尺度的数值模拟,直到宏观尺度用集成数值模型铸造。

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