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Tool Wear Mechanisms of pcBN tooling during High-Speed Machining of Gray Cast Iron

机译:灰铸铁高速加工过程中pcBN刀具的刀具磨损机理

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The presence of graphite particles in gray cast iron commonly implies a good machinability, especially if compared to common steels. However, increasing industrial demands have resulted in a new interest for high-speed machining of these materials with higher performing tool materials than the traditionally used. Thus, the research presented in this paper focuses on evaluating the active tool wear mechanisms while high-speed machining EN-GJL-250 gray cast iron with pcBN tools with different composition, geometries and edge preparations. In addition to the expected flank and notch wear, formation of MnS, SiO2, and Al2O3tool protection layers was found on the worn surfaces. Non-chamfered tools exhibited higher tendency towards notching. In general, the tools were found to have a rather small wear land but large edged radius indicating edge rounding being a more accurate wear criterion.
机译:灰口铸铁中石墨颗粒的存在通常意味着良好的切削性,特别是与普通钢相比时。但是,工业需求的增长引起了人们对用比传统使用的高性能工具材料进行高速加工这些材料产生新的兴趣。因此,本文提出的研究重点是评估在使用具有不同成分,几何形状和刃口准备的pcBN刀具高速加工EN-GJL-250灰铸铁时的主动刀具磨损机理。除了预期的侧面和缺口磨损之外,在磨损的表面还发现了MnS,SiO2和Al2O3工具保护层的形成。非倒角工具显示出更高的开槽趋势。通常,发现工具的磨损区域较小,但倒角半径较大,表明倒圆角是更准确的磨损标准。

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