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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Influence of Preheating on Chip Segmentation and Microstructure in Orthogonal Machining of Ti6Al4V
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Influence of Preheating on Chip Segmentation and Microstructure in Orthogonal Machining of Ti6Al4V

机译:Ti6Al4V正交加工中预热对切屑和组织的影响

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摘要

Chip segmentation due to shear localization during machining of titanium alloys affects cutting forces and their machinability. Despite several studies on modeling and understanding influence of chip segmentation, little is known about the effect of preheating on it. This work therefore, involves orthogonal machining of Ti6Al4V alloy under preheating between 100°C and 350°C to investigate chip segmentation, shear band configuration, and microstructure of machined surfaces, through optical and scanning electron microscopy of chips and chip roots. Conceptual models of chip segment formation have been evolved. Shear band formation appears to be the dominant mechanism of chip segmentation up to 260 °C preheating, however at 350 °C, extent of fracture along the shear plane increases. The preheating increases spacing between shear bands in chips, reduces shear band thickness from 21 μm at 100°C to 8 μm at 350° C, and ultimately reduces cutting forces fluctuation, and compressive residual stresses in the machined surfaces.
机译:钛合金加工过程中由于剪切局部化而导致的切屑分割会影响切削力及其切削性。尽管已进行了许多建模和了解切屑分割影响的研究,但对预热对其的影响知之甚少。因此,这项工作涉及在100°C至350°C的预热下对Ti6Al4V合金进行正交加工,以通过切屑和切屑根的光学和扫描电子显微镜研究切屑分割,剪切带构型和加工表面的微观结构。芯片段形成的概念模型已经发展。剪切带的形成似乎是预热至260°C时切屑分段的主要机理,但是在350°C时,沿剪切面的断裂程度会增加。预热增加了切屑中剪切带之间的间距,将剪切带厚度从100°C时的21μm减小到350°C时的8μm,并最终减小了切削力的波动以及机加工表面的压缩残余应力。

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