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Research of Anti-extrusion Process for Cylinder of Spray-formed Ultra-high Strength Aluminum Alloy

机译:喷涂超高强度铝合金气缸抗挤出工艺研究

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Anti-extrusion process for the cylinder of spray-formed ultra-high strength aluminum alloy is researched in this paper. The spray-formed 7xxx aluminum alloy is treated by a two-step homogenization treatment (440°C/12h + 472°C/24h) after hot isostatic pressing (HIP), and then hot compression tests are carried out for getting the stress-strain relationship under different forming conditions. Anti-extrusion process for the cylinder is improved including changing the shape of mould and billet, and numerical simulation is used for researching the anti-extrusion process. According to the distribution of strain-effective, it can be seen that the improved scheme of anti-extrusion process can get more deformation than the common scheme at the bottom. The result of anti-extrusion experiments shows that the microstructure is evenly distributed across the cylinder under the improved scheme.
机译:本文研究了喷涂超高强度铝合金气缸的抗挤出工艺。在热等静压(臀部)后,通过两步均质化处理(440℃/ 12h + 472℃/ 24h)处理喷涂的7xxx铝合金,然后进行热压缩测试以获得压力 - 不同成形条件下的应变关系。汽缸的防挤出工艺得到改善,包括改变模具和坯料的形状,数值模拟用于研究防挤出过程。根据应变有效的分布,可以看出,抗挤出过程的改进方案可以比底部的共同方案变得更加变形。抗挤出实验的结果表明,在改进的方案下,微结构在圆柱体上均匀地分布。

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