Mechanics of fracture in hot rolled Al-7Mg alloy prepared from rapidly solidified powder

T. Sheppard, M. Zaidi
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引用次数: 3

Abstract

AbstractAl-7Mg rapidly solidified powders were processed by extrusion to prepare billets for rolling. The billets were rolled at temperatures between 300 and 500°C and tested in tension. The fracture surfaces were examined and this paper illustrates that in the absence of larger precipitates the fracture mechanism is dependent upon the oxide content and morphology inherent in the air atomized powders. When larger particles are present (1–3 μm), the fracture is initiated and propagated by the particles; the oxide does not feature in the fracture process. Some billets were rolled in multi passes and it is shown that a maximum of about 40% reduction may be obtained before the oxide particles cause exfoliation by fracture at prior particle boundaries. It is concluded that the thermomechanical process route for the production of engineering materials must pay particular attention to the distribution of the oxide film and to maintaining the thermal stablhty of the atomized powders.
快速凝固粉末制备Al-7Mg合金的热轧断裂力学
摘要:采用挤压法对al - 7mg快速凝固粉末进行加工,制备轧制坯料。坯料在300至500°C的温度下轧制并进行张力测试。对断口表面进行了检查,并说明在没有较大析出物的情况下,断裂机制取决于空气雾化粉末中固有的氧化物含量和形貌。当较大颗粒(1 ~ 3 μm)存在时,裂纹由颗粒引发并扩展;在断裂过程中不含氧化物。对一些钢坯进行了多道次轧制,结果表明,在氧化颗粒在先前的颗粒边界处断裂导致剥落之前,最大可获得约40%的还原。因此,工程材料生产的热机械工艺路线必须特别注意氧化膜的分布和保持雾化粉末的热稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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