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Effects of External Hydrostatic Pressure on Orthogonal Cutting Characteristics

机译:外静压压力对正交切割特性的影响

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In this paper, effects of external hydrostatic pressure on the cutting characteristics are investigated. Orthogonal cutting experiments are conducted in a high pressure chamber using four kinds of materials; two of them are brittle materials and the others are ductile materials. Chip formation processes of soda glass specimen are studied by in-situ observation. It is confirmed that chip formation style changes from the crack type to the segmented chip type, then to the continuous chip type with the increase of hydrostatic pressure. Furthermore, cutting forces under various hydrostatic pressures are measured, and effects of hydrostatic pressure on the cutting forces are studied. It is found that hydrostatic pressure increases the cutting force in the brittle mode cutting of glasses, but does not affect the cutting force in ductile mode cutting. In case of ductile materials, hydrostatic pressure increases the cutting force of polycarbonate too, but does not affect the cutting force of pure aluminum. Based on those experimental results, mechanism of hydrostatic pressure effects on cutting characteristics is discussed.
机译:本文研究了外部静压压力对切割特性的影响。正交切割实验使用四种材料在高压室中进行;其中两个是脆性材料,其他物质是韧性材料。通过原位观察研究了苏打玻璃样品的芯片形成过程。确认芯片地层风格从裂缝型变为分段芯片型,然后随着静水压力的增加而变为连续芯片型。此外,测量各种静水压力下的切割力,研究了静压压力对切割力的影响。结果发现,静水压力增加了玻璃脆性模式切割中的切割力,但不会影响延性模式切割中的切割力。在延展材料的情况下,静压压力也增加了聚碳酸酯的切割力,但不影响纯铝的切割力。基于这些实验结果,讨论了静压压力效应对切割特性的机制。

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