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Fractographic features of technically pure magnesium, AZ31 and ZK60 alloys subjected to stress corrosion cracking

机译:经受应力腐蚀开裂的技术纯镁,AZ31和ZK60合金的分形特征

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摘要

Using quantitative fractography, the present study clarifies the effect of chemical composition and preliminary plastic deformation on the fracture mode of structural magnesium alloys experienced stress corrosion cracking (SCC). It is demonstrated that the fracture surfaces of alloys ZK60 and AZ31 failed during slow strain rate testing (SSRT) under SCC conditions are commonly featured by (ⅰ) the close-to-side surface region of typically brittle fracture initiation composing of intergranular and cleavage facets, which gradually transforms to (ⅱ) the region of transgranular fluted facets optionally followed by the regions of (ⅲ) fluted facets with secondary cracks, (ⅳ) flat dimpled rapture and (ⅴ) slant dimpled rapture. Counterintuitively, the preliminary plastic strain introduced in air results in the increase of the fraction of the ductile mode on the fracture surface, elongation and stress at fracture of both alloys SSRT tested in corrosive media. The positive effect of pre-straining can be likely explained from the mechanistic viewpoint due to the increase of the yield stress, which has to be overcome to trigger plastic deformation needed to break the surface protective film. Features of the SCC mechanisms affecting the fracture surface appearance are quantified and discussed.
机译:本研究使用定量分形术,阐明了化学成分和初步塑性变形对经历应力腐蚀开裂(SCC)的结构镁合金断裂模式的影响。结果表明,在SCC条件下,在缓慢应变速率测试(SSRT)下失败的ZK60和AZ31合金的断裂表面通常具有以下特征:(ⅰ)典型的脆性断裂开始的近侧表面区域,由晶间和解理面组成,逐渐转变为(ⅱ)横纹槽纹小平面区域,然后依次转换为(ⅲ)带有次级裂纹,(ⅳ)平坦凹痕和(ⅴ)倾斜凹痕的沟槽。与直觉相反,在空气中引入的初始塑性应变会导致在腐蚀性介质中测试的两种合金SSRT的断裂表面塑性,断裂伸长率和应力增加。由于屈服应力的增加,从机械的角度来看,预应变的积极作用可能会得到解释,屈服应力的增加必须克服,以引发破坏表面保护膜所需的塑性变形。量化和讨论了影响断裂表面外观的SCC机制的特征。

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