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作 者:章桥新[1] 李国豪[1] 刘兆冰 赵安国[1] 熊新红[1] 雷永杰 Zhang Qiaoxin;Li Guohao;Liu Zhaobing;Zhao Anguo;Xiong Xinhong;Lei Yongjie(Wuhan University of Technology,Wuhan 430070,China;The 9th Designing of China Aerospace Science Industry Corporation,Wuhan 430040,China)
机构地区:[1]武汉理工大学,湖北武汉430070 [2]中国航天科工集团第九总体设计部,湖北武汉430040
出 处:《稀有金属材料与工程》2018年第12期3659-3665,共7页Rare Metal Materials and Engineering
基 金:National Natural Science Foundation of China(51210008);Fundamental Research Funds for the Central Universities(WUT:2017IVA017,WUT:2017III047);Excellent Dissertation Cultivation Funds of Wuhan University of Technology(2016-YS-037)
摘 要:用不同的主轴转速来成形2种典型零件,研究了AA7075-O铝合金板料摩擦搅拌渐进成形零件的综合性能:成形性、表面质量、拉伸性能、显微硬度和壁厚分布。试验结果表明,板料的成形性随着转速增加而呈现增强趋势;接触面的表面粗糙度在水平和竖直方向表现出不同的变化趋势;非接触面的表面质量几乎不受转速影响;相比原板料,成形零件的拉伸性能和显微硬度明显增强,但转速超过3000 r/min后,硬度值开始逐步下降;在高转速下成形零件的壁厚分布略微优于低转速下的成形零件。总体上,除了力学性能,高转速下成形零件的综合性能比低转速下的成形零件好。A comprehensive performance of formed parts by AA7075-O sheets was studied in friction stir incremental forming (FSIF).Various tool rotation speeds were set to form two typical parts (truncated funnel and pyramid frustum).The formability, surface quality,tensile strength,micro-hardness and thickness distribution of the formed parts were investigated.Results show that the formability generally increases as tool rotation speeds increase.On the contact surface,variation trends of the surface roughness are different in horizontal direction (parallel to tool path)and vertical direction (perpendicular to tool path).However,the surface roughness on the non-contact surface is almost not affected by tool rotation speed.Furthermore,mechanical properties including tensile strength and surface micro-hardness in formed parts are obviously enhanced compared to those of the initial sheet,of which the hardness values begin to fall down gradually after rotation speed reaches 3000r/min.As for thickness measurement,more uniform thickness distribution of formed parts can be obtained at relative high tool rotation speeds.In general,parts formed at high rotation speed have a better comprehensive performance except the mechanical property.
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