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Effect of Cu, Cr and Ni alloying elements on mechanical properties and atmospheric corrosion resistance of weathering steels in marine atmospheres of different aggressivities

机译:Cu,Cr和Ni合金化元素对不同侵略性海洋环境中风化钢的机械性能和大气耐腐蚀的影响

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摘要

This paper studies the individual and combined effect of adding Cu (0.26-1.06 wt%), Cr (0.54 wt%) and Ni (0.92-2.92 wt%) alloying elements to carbon steel with regard to mechanical behaviour and atmospheric corrosion resistance in two marine atmospheres with different chloride deposition rates (20 and 71 mg Cl-/m(2).d). Mechanical properties are assessed in terms of yield strength, ultimate strength, elongation, hardness and weldability, while atmospheric corrosion resistance is evaluated by determination of corrosion losses, rust layer structure, and nature of the corrosion products formed. The best atmospheric corrosion resistance is obtained with weathering steel (3 wt% Ni), which would be suitable for use unpainted in marine atmospheres of moderate salinity (= 20 mg Cl-/m(2).d), though a longer cooling time would be required during its manufacture in order to assure adequate weldability.
机译:本文研究了在两种机械行为和大气耐腐蚀性方面,将Cu(0.26-1.06wt%),Cr(0.26-1.06wt%),Cr(0.26-1.06wt%),Cr(0.54wt%)和Ni(0.92-2.92重量%)和Ni(0.92-2.92重量%)和Ni(0.92-2.92wt%)合金元素及两种 氯化物沉积速率不同的海洋环境(20和71mg Cl-/ M(2).D)。 在屈服强度,极限强度,伸长,硬度和可焊性方面评估机械性能,而通过测定形成的腐蚀产物的腐蚀损失,防锈层结构和性质来评估大气耐腐蚀性。 用耐候钢(3wt%Ni)获得最佳的大气耐腐蚀性,这适用于在中等盐度的海洋环境中未涂覆的(& = 20mg cl- / m(2).d)。 在制造过程中需要冷却时间,以确保足够的可焊性。

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