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Effect of tool rotating rate on foaming properties of porous aluminum fabricated by using friction stir processing

机译:刀具转速对摩擦搅拌法制备多孔铝泡沫性能的影响

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摘要

A1050 porous aluminum is fabricated by the FSP route and the effect of the tool rotating rate on the porosity and morphology of the pores is investigated. To fabricate high-porosity porous aluminum with a uniform pore size distribution, a certain amount of stirring action is necessary; however, excessive stirring action is ineffective. A sufficiently uniform mixture is realized by traversing the FSP tool two times at a tool rotating rate exceeding 2200 rpm. The results indicate the minimum necessary amount of stirring action and will provide a guideline for improving productivity. Also, to improve the morphology of pores, optimizing the amount of Al_2O_3 is effective. Closed-cell porous aluminum with a porosity of about 80% was successfully fabricated by 2-pass FSP at 2200 rpm with the addition of 7 mass% Al_2O_3, a holding temperature of 998 K and a holding time of 10min.
机译:采用FSP工艺制备了A1050多孔铝,研究了刀具转速对孔的孔隙率和形貌的影响。为了制造具有均匀孔径分布的高孔隙率多孔铝,必须进行一定程度的搅拌。但是,过度的搅拌作用是无效的。通过以超过2200 rpm的转速旋转FSP工具两次,可以实现足够均匀的混合。结果表明搅拌动作的最小必要量,将为提高生产率提供指导。同样,为了改善孔的形态,优化Al_2O_3的量也是有效的。通过以2200 rpm的速度通过2道FSP,并添加7质量%的Al_2O_3,保持温度998 K和保持时间10min,成功地制造了孔隙率约为80%的闭孔多孔铝。

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