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Chemical composition of new copper alloys for machining and its effect on their susceptibility to corrosion cracking

机译:新型加工用铜合金的化学成分及其对腐蚀裂纹敏感性的影响

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摘要

Zinc-containing copper alloys, the so-called α + β brasses, are commonly used in contact with potable water. These materials are alloyed with lead to improve machinability. In wrought special brass alloys, reducing the content of this alloying element or replacing it with alternative alloying additions may give rise to a new type of machinable copper alloys which differ from the original alloys by their contents of other modifier elements such as Si (or possibly, Mg, Bi, and P). These alloys have a very low content of lead required for the break-up of chips during machining. Even though these types of brass exhibit a very good machinability, the effects of their chemical composition on the resistance of the alloy to corrosion cracking have not yet been given sufficient attention. This paper aims to present an assessment of three new types of machinable copper alloys regarding their susceptibility to stress corrosion cracking, in comparison to that of the lead-alloyed variety, in 0.05 M NaCl, NaNO{sub}2, and Na{sub}2SO{sub}4 solutions. The slow strain rate test has been used for this purpose, and its results were correlated with metallographic evaluation of the number and depth of the cracks observed on the test specimen surfaces on completion of the test.
机译:含锌的铜合金,即所谓的α+β黄铜,通常与饮用水接触。这些材料与铅合金化以改善可加工性。在锻造的特殊黄铜合金中,减少该合金元素的含量或用替代合金添加物替代可能会导致一种新型的可机加工铜合金,该合金与原始合金的不同之处在于它们的其他改性元素(例如Si(或可能,Mg,Bi和P)。这些合金具有极低的铅含量,在加工过程中碎裂所需的铅含量很高。尽管这些类型的黄铜表现出非常好的机加工性能,但它们的化学组成对合金抗腐蚀开裂性的影响尚未得到足够的重视。本文旨在评估三种新型可加工铜合金与铅合金相比在0.05 M NaCl,NaNO {sub} 2和Na {sub}中对应力腐蚀开裂的敏感性。 2SO {sub} 4解决方案。慢应变速率测试已被用于此目的,并且其结果与测试完成后在试样表面上观察到的裂纹数量和深度的金相评价相关。

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