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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Analytical and experimental study on formation of concentrated shear band of saw tooth chip in high-speed machining
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Analytical and experimental study on formation of concentrated shear band of saw tooth chip in high-speed machining

机译:高速加工中锯齿碎片集中剪切带形成的分析与实验研究

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摘要

Saw tooth chip is a typical characteristic encountered in high-speed machining. It consists of nearly undeformed segments and highly sheared concentrated shear bands. However, no consensus on the formation of the concentrated shear band has been reached though several saw tooth chip formation models have been built. In this paper, the concentrated shear band formation procedure is analyzed based on a new proposed saw tooth chip formation model. Cutting experiments have been conducted to validate the proposed mode. It shows that the plastic side flow and elastic compression of the uncut chip are crucial for the concentrated shear band formation. The localized shear at the inner end (tool tip side) of the primary shear plane firstly takes place under the indentation of cutting tool. Then, the second localized shear is produced at the outer end (free surface side) of the primary shear plane due to stress concentration there, after which the whole concentrated shear band forms. The stress transition at the outer end of the primary shear plane makes the second localized shear easier evolve into cracks. Influences of material brittleness and cutting speed on initiation and propagation of the concentrated shear band are also analyzed.
机译:锯齿切屑是高速加工中遇到的典型特征。它由几乎未变形的部分和高度剪切的集中剪切带组成。然而,尽管已经建立了几种锯齿切屑形成模型,但仍未就集中剪切带的形成达成共识。本文基于新提出的锯齿屑形成模型,分析了集中剪切带的形成过程。已经进行了切割实验以验证所提出的模式。结果表明,未切屑的塑性侧流和弹性压缩对于集中剪切带的形成至关重要。首先在主切削平面的内端(刀尖侧)进行局部剪切。然后,由于那里的应力集中而在主剪切平面的外端(自由表面侧)产生第二局部剪切,此后形成整个集中的剪切带。主剪切平面外端的应力转变使第二个局部剪切更容易演变成裂纹。还分析了材料的脆性和切削速度对集中剪切带的萌生和扩展的影响。

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