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Combustion foaming of Al-Ti intermetallics studied in situ by fast X-ray radioscopy

机译:通过快速X射线放射透视通过SITU研究AL-TI金属间金属间金属间金属间的燃烧发泡

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Combustion foaming of Al-Ti intermetallics was observed in-situ by X-ray radioscopy at the Technical University Berlin, Germany, and at the experimental station ID-19 of the European Synchrotron Radiation Facility (ESRF) in Grenoble, France. The acquisition rates were 6.7 fps and up to 500 fps, respectively. This allowed for observing in detail the internal structure development during combustion foaming of extruded Al-Ti powder compacts made with Al/Ti molar ratios of 3, 4 and 7 and containing 10 and 20 vol.% exothermic agent (Ti + B4C). At the beginning of the foaming process, μm-sized pores were observed. Foam shrinkage and pore coarsening started immediately after the combustion process. Specimens made with an Al/Ti ratio = 7 showed pore coarsening and a longer solidification time. Specimens with 10 vol.% exothermic agent experienced less volume expansion and pore coarsening than specimens with 20 vol.% exothermic agent. The specimens with an Al/Ti ratio = 4 contained fewer micropores than the one with an Al/Ti ratio = 3.
机译:德国技术大学X射线辐射镜检查,德国欧洲同步辐射设施(ESRF)实验站ID-19的X射线辐射镜检查,在法国格勒诺布尔欧洲同步辐射设施(ESRF)的实验站ID-19,观察了Al-Ti金属间质的燃烧发泡。收购率分别为6.7 FPS,高达500 FPS。这允许在用3,4和7的Al / Ti摩尔比和含有10和20体积的含有Al / Ti摩尔比制成的挤出的Al-Ti粉末压块燃烧发泡过程中的内部结构显影。%放热剂(Ti + B4C)。在发泡过程开始时,观察到μm尺寸的孔隙。燃烧过程后立即开始泡沫收缩和孔粗化。用Al / Ti比率制备的标本= 7显示孔粗化和较长的凝固时间。具有10 Vol的标本。%放热剂的体积膨胀和孔粗糙度比20体积20体积的标本较少。%放热剂。具有Al / Ti比率= 4的样品含有比具有Al / Ti比率= 3的微孔的微孔。

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