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Formability of Materials with Small Tools in Incremental Forming 被引量:1
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作者 Hongyu Wei G.Hussain +3 位作者 X.Shi B.B.L Isidore Mohammed Alkahtani Mustufa Haider Abidi 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2020年第4期150-158,共9页
Single point incremental forming(SPIF)is an innovative sheet forming process with a high economic pay-off.The formability in this process can be maximized by executing forming with a tool of specific small radius,rega... Single point incremental forming(SPIF)is an innovative sheet forming process with a high economic pay-off.The formability in this process can be maximized by executing forming with a tool of specific small radius,regarded as threshold critical radius.Its value has been reported as 2.2 mm for 1 mm thick sheet materials.However,with a change in the forming conditions specifically in the sheet thickness and step size,the critical radius is likely to alter due to a change in the bending condition.The main aim of the present study is to undertake this point into account and develop a relatively generic condition.The study is composed of experimental and numerical investigations.The maximum wall angle(θmax)without sheet fracturing is regarded as sheet formability.A number of sheet materials are formed to fracture and the trends correlating formability with normalized radius(i.e.,R/To where R is the tool-radius and To is the sheet thickness)are drawn.These trends confirm that there is a critical tool-radius(Rc)that maximizes the formability in SPIF.Furthermore,it is found that the critical radius is not fixed rather it shows dependence on the sheet thickness such that Rc=βTo,whereβvaries from 2.2 to 3.3 as the thickness increases from 1 mm to 3 mm.The critical radius,however,remains insensitive to variation in step size ranging from 0.3 mm to 0.7 mm.This is also observed that the selection of tool with R<Rc narrows down the formability window not only on the higher side but also on the lower side.The higher limit,as revealed by the experimental and FEA results,diminishes due to excessive shearing because of in-plane biaxial compression,and the lower limit reduces due to pillowing in the bottom of part.The new tool-radius condition proposed herein study would be helpful in maximizing the formability of materials in SPIF without performing experimental trials. 展开更多
关键词 Incremental forming Critical tool-radius Formability curve Finite element analysis
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一种高速数控加工自适应进给速度生成算法 被引量:2
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作者 陈晓兵 廖文和 孙全平 《中国机械工程》 CAS CSCD 北大核心 2008年第2期204-207,共4页
以机床运动特性为约束,确定刀轨不同法曲率处的最大进给速度;以实际切削速度的变化比率为调节系数,将刀轨法曲率半径划分为不同的区域;通过设定初始曲率半径划分步长,将整个曲率半径范围分割成若干个子区域,并在子区域内对曲率半径进行... 以机床运动特性为约束,确定刀轨不同法曲率处的最大进给速度;以实际切削速度的变化比率为调节系数,将刀轨法曲率半径划分为不同的区域;通过设定初始曲率半径划分步长,将整个曲率半径范围分割成若干个子区域,并在子区域内对曲率半径进行划分;通过自适应进给速度生成算法,实现了进给速度随曲率半径区域的变化而自适应变化,并对相邻刀轨区域的进给速度进行了过渡处理。 展开更多
关键词 计算机辅助制造 自适应进给速度生成 刀轨法曲率划分 高速数控加工
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T68镗床无差动径向进给传动链之探讨 被引量:1
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作者 张兆尧 《东莞理工学院学报》 1996年第1期45-50,共6页
本文对T68镗床平旋盘刀具溜板径向进给传动链提出了无差动机构的径向进给传动链,并进行分析与计算,结果证明满足机床的工作要求。
关键词 平旋盘 刀具溜板 差动机构 径向进给传动链 镗床
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