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Deciphering the deformation mechanism in single point incremental forming: experimental and numerical investigation

机译:单点增量成型中的变形机制解密:实验和数值调查

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In the present work, deformation mechanism in single-point incremental forming (SPIF) of drawing quality steel with a fully ferritic microstructure was studied. The effect of tool diameter and vertical step size on the micromechanisms of plastic deformation in SPIF was investigated by observing changes in microstructure and lattice rotation. It was observed that the fraction of grains with {111} normal direction (ND), which constitutes the gamma fiber in BCC materials, decreased with decrease in tool diameter and vertical step size. It is known that the state of deformation in SPIF is near to plane strain with the direction of major strain being always perpendicular to tool travel direction and negligible strain parallel to tool movement direction. Microstructural evidence for this observation and also for the presence of through thickness shear (TTS) components at smaller step size and tool diameter was observed. Viscoplastic self-consistent (VPSC) simulations revealed that the activity of {112} < 11<(1)over bar> > slip system decreased in comparison to {110} < 1<(1)over bar>1 > slip system in the presence of TTS which manifested as the deviation from {111} parallel to ND position at smaller step size and tool diameter.
机译:在本作的工作中,研究了具有全铁素体微结构的单点增量成型(SPIF)的单点增量成型(SPIF)。通过观察微观结构和晶格旋转的变化,研究了刀具直径和垂直步长对SPIF塑性变形的微观机制的影响。观察到,在BCC材料中构成γ纤维的{111}正常方向(Nd)的晶粒的级分,随着刀具直径和垂直步长的降低而降低。众所周知,Spif中的变形状态靠近平面应变,主要应变方向总是垂直于工具行进方向,并且与工具移动方向平行的忽略应变。观察到这种观察的微结构证据,并且还观察到通过厚度剪切(TTS)组分处于较小的步长和刀具直径。粘液自我一致(VPSC)模拟显示,与{110} <1 <(1)上的{110} <1 <(1)相比,{112} <11(1)的活性降低了杆> 1>滑动系统在较小的台阶尺寸和刀具直径下,表现为与{111}的偏差的TTS的存在。

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