首页> 外文会议>ESA Symposium on European Rocket and Balloon Programmes and Related Research >IN SITU OBSERVATION OF DIRECTIONAL SOLIDIFICATIONS OF AL - CU ALLOY DURING PARABOLIC FLIGHT CAMPAIGNS
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IN SITU OBSERVATION OF DIRECTIONAL SOLIDIFICATIONS OF AL - CU ALLOY DURING PARABOLIC FLIGHT CAMPAIGNS

机译:抛物线飞行期间铝铜合金定向凝固的原位观察。

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It is well known that the final properties of materials are strongly related to the microstructures formed during growth and to the accompanying segregation, both being very sensitive to the natural hydrodynamic movements in the melt induced by gravity. Therefore, a deeper understanding of gravity effects on the solidification microstructure is of great importance for industrial applications. In the framework of the ESA-MAP project entitled XRMON (in-situ X-Ray MONitoring of advanced metallurgical processes under microgravity and terrestrial conditions), directional solidification experiments with in situ X-ray radiography were carried out during the 60th and 61st ESA - PF campaigns onboard the Airbus A300 operated by Novespace. Parabolic flights offer several successions of periods with normal gravity between two parabolas, and hyper gravity and microgravity during each parabola, which allows the impact of gravity level variations on the solidification microstructures to be investigated. For this purpose, a dedicated apparatus was designed and developed in collaboration with SSC (Swedish Space Corporation). XRMON-PFF (Parabolic Flight Facility) includes a Bridgman furnace dedicated to the solidification of Al-based alloys with an X-ray device that enables in situ characterization. Columnar and/or equiaxed growth of refined and non-refined Al-20wt.%Cu alloys were investigated and X-ray radiography was successfully used to assess the effect of periodic variations of the gravity level on the solidification microstructure formation. Preliminary results confirmed the strong influence of gravity on the solidification microstructure development.
机译:众所周知,材料的最终性能与生长过程中形成的微结构以及随之而来的偏析密切相关,两者都对重力引起的熔体中自然的水动力运动非常敏感。因此,对重力对凝固组织的影响的深入了解对于工业应用非常重要。在名为XRMON(在微重力和地面条件下对先进的冶金过程进行原位X射线监测)的ESA-MAP项目的框架内,在60和61届ESA期间进行了采用原位X射线照相的定向凝固实验-由Novespace运营的空客A300上的PF活动。抛物线飞行提供了两个连续的周期,两个抛物线之间具有正常重力,每个抛物线期间都有超重力和微重力,这使得可以研究重力水平变化对凝固微结构的影响。为此目的,与SSC(瑞典航天公司)合作设计和开发了专用设备。 XRMON-PFF(抛物线飞行装置)包括Bridgman炉,该炉专用于具有X射线设备的Al基合金的凝固,该X射线设备能够进行原位表征。研究了精制和未精制的Al-20wt。%Cu合金的柱状和/或等轴生长,并成功地使用X射线射线照相术来评估重力水平的周期性变化对凝固组织结构的影响。初步结果证实了重力对凝固组织发展的强烈影响。

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