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首页> 外文期刊>Journal of Materials Engineering and Performance >Fracture Behavior and Characterization of Lead-Free Brass Alloys for Machining Applications
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Fracture Behavior and Characterization of Lead-Free Brass Alloys for Machining Applications

机译:机械加工用无铅黄铜合金的断裂行为和表征

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摘要

The stricter environmental, health, and safety regulations address the harmful effects of lead and provide the driving force for the development of lead-free brass alloys. Conventional leaded brass rods are widely used in several manufacturing sectors (i.e., fabrication of hydraulic components, fittings, valves, etc.) due to their superior workability in extrusion and drawing as well as their superior machinability. As machinability performance involves shear and dynamic fracture processes evolved under high strain-rate conditions, the understanding of the mechanical behavior/microstructure interaction is critical in order to successfully tailor candidate lead-free alloys for improved machinability without compromising the reliability of manufactured components. In this work, the mechanical behavior under static and dynamic loading of three lead-free brass alloys (CW510L-CW511L-C27450) in comparison to a conventional leaded brass alloy (CW614N) was studied. The fractographic evaluation of the texture of conjugate fracture surfaces was performed to identify the involved fracture mechanisms and their relation to the alloy microstructure. It was shown that the CW510L lead-free brass alloy is a potential candidate in replacing conventional CW614N leaded brass, combining high tensile strength and fracture toughness, due to the prevalence of the β-intermetallic phase in the alloy microstructure.
机译:更加严格的环境,健康和安全法规解决了铅的有害影响,并为无铅黄铜合金的发展提供了动力。常规的铅黄铜棒由于其在挤压和拉拔过程中的出色加工性以及出色的可加工性而被广泛用于几个制造行业(即液压元件,配件,阀门等的制造)。由于机械加工性能涉及在高应变速率条件下发生的剪切和动态断裂过程,因此,对机械行为/微观结构相互作用的理解至关重要,这是为了成功地量身定制无铅合金以提高机械加工性能而不损害制造部件的可靠性。在这项工作中,研究了三种无铅黄铜合金(CW510L-CW511L-C27450)与常规铅黄铜合金(CW614N)在静态和动态载荷下的力学行为。对共轭断裂表面的织构进行了形貌评估,以确定所涉及的断裂机理及其与合金微观结构的关系。结果表明,由于β-金属间相在合金微观结构中的普遍性,CW510L无铅黄铜合金是替代常规CW614N铅黄铜的潜在候选者,兼具高拉伸强度和断裂韧性。

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