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Simulation of the Processes of Aluminum Alloys Preforms and Semifinished Products Manufacture under Influence of Technological Heredity and Phase Transitions

机译:技术遗传和相变影响下铝合金预成型件和半成品制造过程的模拟

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In the present work, there are presented the results of experimental studies on the basis of regression analysis and FEM-based modeling of the processes of aluminum alloys preforms and semi-finished products manufacture including such widely known processes as cutting rolled products by shear and thixotropic stamping (stamping of metal during crystallization). It is investigated the influence of technological heredity created by variation of cant angles of end surfaces and mono- and poly-directional pulling-down by shear in cutting rolled blanks on stability of the process of subsequent longitudinal upsetting while producing preforms for bulk stamping. As a result of studying the ways of eliminating such negative consequences of technological heredity and increasing high-strength aluminum alloys technological plasticity, there is revealed the possibility of using phase transitions (from solid to liquid state and back) while manufacturing semifinished products in thixotropic conditions close to superplastic deformation.
机译:在目前的工作中,基于铝合金预成型件和半成品制造过程的回归分析和基于有限元模型的建模,提供了实验研究的结果,包括通过剪切和触变性切割轧制产品等众所周知的过程。冲压(结晶过程中金属的冲压)。研究了在切割轧制坯料时端面倾斜角度的变化以及剪切对剪切进行的单向和多向下拉所产生的技术遗传对后续纵向up锻工艺的稳定性的影响,同时为批量冲压生产预成型坯。研究了消除技术遗传的负面影响并增加高强度铝合金技术可塑性的方法的结果,揭示了在触变条件下制造半成品时,可以使用相变(从固态到液态,再回到固态)的可能性。接近超塑性变形。

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