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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Investigation of High-strength Lead-free Machinable Cu40Zn Duplex Graphite Brasses by Powder Metallurgy
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Investigation of High-strength Lead-free Machinable Cu40Zn Duplex Graphite Brasses by Powder Metallurgy

机译:粉末冶金研究高强度无铅可加工Cu40Zn双相石墨黄铜

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摘要

Graphite was proposed as candidate to substitute lead for increasing machinability of Cu40Zn brass in this study. Cr, Fe, Ti and Sn were used as trace alloying elements to improve the mechanical properties and strengthen graphite/brass boundary bonding. The brass powder prepared by water atomisation process were premixed with graphite particles and consolidated by warm compact. The sintered billet was hot extruded to increase density and improve microstructure. The super-saturated solid solution of alloying elements precipitated in form of nano/micro scale particles in the subsequent hot working. Graphite particles with appreciate content can improve machinability effectively without deteriorating the mechanical properties. Graphite content and hot working temperatures are essential parameters which affect machinability and mechanical properties of the graphite brasses.
机译:在这项研究中,提出了石墨作为替代铅的候选材料,以提高Cu40Zn黄铜的可切削性。 Cr,Fe,Ti和Sn被用作痕量合金元素,以改善机械性能并加强石墨/黄铜的边界键合。将通过水雾化工艺制得的黄铜粉与石墨颗粒预混合,并通过热压粉进行固结。将烧结的坯料热挤出以增加密度并改善微观结构。在随后的热加工中,合金元素的超饱和固溶体以纳米/微米级颗粒的形式沉淀。具有令人满意的含量的石墨颗粒可以有效地改善切削性,而不会降低机械性能。石墨含量和热加工温度是必不可少的参数,它们会影响石墨黄铜的可加工性和机械性能。

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