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Influence of cutting edge micro-geometry in micro-milling of copper alloys with reduced lead content

机译:铅含量减少铜合金微铣削切削刃微观几何的影响

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Especially copper-zinc alloys(CuZn)with good machining properties are used for electrical components and fittings.By using copper alloys with lead content of 1 % ≤ Pb ≤ 3 % an improved chip breakage can be achieved.Legal regulations require the reduction of lead and demand further knowledge about the effect of the material properties in interaction with the used micro-milling tools In this contribution the cutting conditions of copper as well as four copper alloys were examined The results show considerable differences in the resultant surface roughness and burr formation.Furthermore,the influence of two different tool geometries and variied cutting edge micro-geometries were investigated while machining CuZn21Si3P.Thereby,tools with increased cutting edge radii rβ showed increased active forces Fa,burr height h0 and decreased surface roughness.
机译:特别是具有良好加工性能的铜锌合金(Cuzn)用于电气部件和配件。通过铅含量为1%≤PB的铜合金≤3%,可以实现改进的芯片破损.Legal法规需要减少铅并且需要进一步了解材料性质在该贡献中与使用的微铣刀相互作用的影响,研究了铜的切割条件以及四种铜合金的切割条件,结果表明所得表面粗糙度和毛刺形成的相当大的差异。此外,在加工Cuzn21si3p的同时研究了两种不同工具几何形状和变化切削刃微观物质的影响。具有增加的切削刃半径Rβ的工具显示出增加的主动力Fa,毛刺高度H0和表面粗糙度降低。

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