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Warm bending mechanism of extrados and intrados of large diameter thin-walled CP-Ti tubes 被引量:2
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作者 张晓丽 杨合 +2 位作者 李恒 张志勇 李龙 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第10期3257-3264,共8页
In order to develop the warming bending technology of the large diameter thin-walled(LDTW) commercial pure titanium alloy CP-Ti tubes, the warm bending mechanism of the extrados and intrados of LDTW CP-Ti tubes was ... In order to develop the warming bending technology of the large diameter thin-walled(LDTW) commercial pure titanium alloy CP-Ti tubes, the warm bending mechanism of the extrados and intrados of LDTW CP-Ti tubes was researched. By EBSD analysis and Vickers hardness test, the changes of microstructure and strength of the tubes at different bending temperatures of 293, 423 and 573 K, were analyzed. The results show: 1) The extrados of the bent tube deforms mainly by slip, along with few twinning, and the preferred orientation is similar to that of the initial tube; the intrados of the bent tube experiences compression deformation mainly by {1 012} tensile twinning, and the twinning makes the preferred orientation of wall materials change sharply. 2) The Vickers hardness values of both the extrados and intrados of the samples after bending increase greatly; the Vickers hardness values of the intrados are much higher than those of the extrados, and Vickers hardness values of the RD-TD planes are always higher than those of the RD-LD planes, which are related to the different deformation mechanisms. 展开更多
关键词 large diameter thin-walled CP-Ti bent tube warm bending texture TWINNING deformation mechanism
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Forming limits under multi-index constraints in NC bending of aluminum alloy thin-walled tubes with large diameters 被引量:21
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作者 YAN Jing, YANG He, ZHAN Mei & LI Heng College of Materials Science and Engineering, State Key Laboratory of Solidification Processing, Northwestern Polytechnical University, Xi’an 710072, China 《Science China(Technological Sciences)》 SCIE EI CAS 2010年第2期326-342,共17页
With increasing diameters of aluminum alloy thin-walled tubes (AATTs), the tube forming limits, i.e. the minimum bending factors, and their predictions under multi-index constraints including wrinkling, thinning and f... With increasing diameters of aluminum alloy thin-walled tubes (AATTs), the tube forming limits, i.e. the minimum bending factors, and their predictions under multi-index constraints including wrinkling, thinning and flattening have been being a key problem to be urgently solved for improving tube forming potential in numerical control (NC) bending processes of AATTs with large diameters. Thus in this paper, a search algorithm of the forming limits is put forward based on a 3D elastic-plastic finite element (FE) model and a wrinkling energy prediction model for the bending processes under axial compression loading (ACL) or not. This algorithm enables to be considered the effects of process parameter combinations including die, friction parameters on the multi-indices. Based on this algorithm, the forming limits of the different size tubes are obtained, and the roles of the process parameter combinations in enabling the limit bending processes are also revealed. The followings are found: the first, within the appropriate ranges of friction and clearances between the different dies and the tubes enabling the bending processes with smaller bending factors, the ACL enables the tube limit bending processes after a decrease of the mandrel ball thickness and diameters; then, without considering the effects of the tube geometry sizes on the tube constitutive equations, the forming limits will be decided by the limit thinning values for the tubes with diameters smaller than 80 mm, while the wrinkling for the tubes with diameters no less than 80 mm. The forming limits obtained from this algorithm are smaller than the analytical results, and reduced by 57.39%; the last, the roles of the process parameter combinations in enabling the limit bending processes are verified by experimental results. 展开更多
关键词 forming LIMIT NC tube bending aluminum alloy thin-walled tubeS with large diameterS multi-index CONSTRAINTS finite element method
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工艺参数对大口径薄壁矩形管弯曲成形的影响 被引量:6
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作者 刘红 郭超 +5 位作者 蒋兰芳 曹翔 贾平平 陈先立 胡昌国 沈开勇 《模具工业》 2013年第9期23-26,共4页
基于动态显示分析有限元平台Abaqus/explicit,建立了大口径薄壁矩形管弯曲成形的三维有限元模型,模拟分析了变形速度对矩形管弯曲成形失稳起皱的影响规律,试验结果表明:在单独施加旋转速度时薄壁矩形管的失稳起皱程度较大,同步施加旋转... 基于动态显示分析有限元平台Abaqus/explicit,建立了大口径薄壁矩形管弯曲成形的三维有限元模型,模拟分析了变形速度对矩形管弯曲成形失稳起皱的影响规律,试验结果表明:在单独施加旋转速度时薄壁矩形管的失稳起皱程度较大,同步施加旋转速度和助推速度时管件的失稳起皱趋势有所减缓,起皱系数ζ也随着减小。研究结果对薄壁矩形截面管材弯曲成形中工艺参数的选择和优化具有重要意义。 展开更多
关键词 大口径薄壁矩形管 弯曲成形 失稳起皱 变形速度
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