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Investigating the Impact of Tool Velocity on the Process Conditions in Incremental Forming of Titanium Sheets

机译:研究钛板增量成型工艺条件对工艺条件的影响

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This paper deals with a study focused on the single point incremental forming (SPIF) of titanium Grade 2 sheets. The direct impact of the sliding velocity of the forming tool on mechanical and thermal process loads was experimentally investigated. A wide range of spindle speeds and feed rates were examined at different forming conditions. The developed profiles of the mechanical and thermal demands during the SPIF of titanium sheets are presented and discussed. Forming temperature and force were directly related to the tool rotation speed, higher temperatures and lower reactional forces correspond to higher speeds. At very high rotation, failure conditions occurred and the ability to shape a CP Grade 2 sheet is decreased; these failures were mainly due to extreme heating, leading to termination of the tests concerned. The main objective of the study is to gain a better understanding of the combined effects that the varied relative motions at the tool/sheet contact zone have on the process conditions.
机译:本文涉及专注于钛等级2片的单点增量成型(SPIF)的研究。实验研究了在机械和热处理负荷对机械和热处理负荷对机械和热处理负荷的直接影响。在不同的成形条件下检查各种主轴速度和进料速率。呈现和讨论了在钛板SPIF中的机械和热需求的开发型材。形成温度和力与刀具转速直接相关,较高的温度和较低的反逆力对应于更高的速度。在非常高的旋转处,发生故障情况并降低了塑造CP等级2张的能力;这些故障主要是由于极端加热,导致终止有关测试。该研究的主要目的是更好地了解工具/板材接触区的各种相对运动对工艺条件的组合效果。

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