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Characterization of subsurface deformation of turned brasses: lead brass (CuZn_(39)Pb_3) and lead free brass (CuZn_(21)Si_3P)

机译:变形黄铜地下变形的表征:铅黄铜(CUZN_(39)PB_3)和无铅黄铜(CUZN_(21)SI_3P)

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The adverse effects of lead on human health and the recycling problems of copper alloys with lead content has led to the increase in concern for reducing/eliminating the use of lead in brass and other copper alloys. The real challenge prevails in sustainable manufacturing of lead free brass and to maintain as well as control the surface integrity when lead is substituted in the brass with silicon. This article is part of the study that focuses on characterizing the surface integrity of machined lead brass and lead free brass. This paper deals with the study of surface layer characteristics of brass samples, investigating the subsurface deformation influenced by the turning operation. It is important to study the plastic deformation under the machined surface which directly affects the performance of the material on further machining or application. In this study, metallographic investigations are performed on turned samples of lead brass and lead free brass and include comparisons between the study samples based on the plastic deformations quantified by grain orientations and microhardness measurements. The study performed successfully characterizes the subsurface deformation and the results suggest slightly higher subsurface deformation in turned lead brass as compared to lead free brass.
机译:铅对人体健康的不利影响以及铜合金具有铅含量的循环问题导致了对减少/消除黄铜和其他铜合金中铅的担忧的增加。铅免黄铜可持续制造中的真正挑战是占上可可持续制造的,并在用硅子在黄铜中取代时控制表面完整性。本文是研究的一部分,专注于表征机加工铅黄铜的表面完整性和无铅黄铜。本文涉及黄铜样品表面层特征的研究,研究了由转动操作影响的地下变形。研究加工表面下的塑性变形非常重要,这直接影响材料的性能在进一步的加工或应用上。在该研究中,对铅黄铜和无铅黄铜样品进行了金相研究,并且基于通过晶粒取向和微硬度测量的塑性变形来包括研究样品之间的比较。该研究表演成功表征了地下变形,结果表明,与无铅黄铜相比,在转动的铅黄铜中表达略高的地下变形。

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