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The Effect of Boron on the Sliding Wear Behavior of Iron-based Hardfacing Alloys for Nuclear Power Plants Valves

机译:硼对核电站铁基硬坯合金滑动磨损行为的影响

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A new iron-based wear resistance alloy was developed to replace the Co-containing Stellite 6 alloys in nuclear power industry. The effect of B addition on the wear resistance was investigated. Sliding wear tests of Fe-Cr-C-Si-xB (x = 0.0, 0.3, 0.6, 1.0 and 2.0 wt%) alloys were performed in air at the room temperature under a contact stress of 103 MPa. Low-boron alloys containing less than 0.6 wt% boron showed an excellent wear resistance than any other tested alloys. The improvement was associated with the matrix hardening by promotion of the γ → α′ strain-induced martensitic transformation occurring during the wear test. However, the alloys containing more than 1.0 wt% boron showed slightly increased wear loss compared to the low-boron alloys because of the absence of the strain-induced martensitic transformation and the presence of the brittle FeB particles, aiding crack initiation.
机译:开发了一种新的铁基耐磨性合金,以取代核电力行业的含有共同的稳定6合金。研究了B添加对耐磨性的影响。在室温下在103MPa的接触应力下在室温下在空气中进行Fe-Cr-C-Si-Xb(x = 0.0,30,0.6,1.0和2.0wt%)合金的滑动磨损试验。含有少于0.6wt%硼的低硼合金显示出优于任何其他测试合金的优异耐磨性。通过在磨损试验期间通过促进γ→α'应变诱导的马氏体转化,改善与基质硬化相关。然而,由于没有应变诱导的马氏体转化和脆性2月颗粒的存在,与低硼合金相比,含有超过1.0wt%硼的合金显示出略微增加的磨损损失。

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