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Corrosion fatigue crack growth inhibition of duplex stainless steel

机译:双相不锈钢腐蚀疲劳裂纹抑制

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The main objective of this study is to examine the inhibition effect of chromate on corrosion fatigue crack growth in a super duplex stainless steel alloy. Corrosion fatigue crack propagation tests were performed for Zeron 100 in air, 3.5 percent NaCl, and in 3.5 percent NaCl inhibited with sodium chromate (Na_2CrO_4) using two chromate concentrations. Specimens were tested in the XL orientation. Results show that crack growth rates are enhanced in 3.5 percent NaCl solution relative to air over the entire range of DELTA K tested. Addition of 0.02 M Na_2CrO_4 to 3.5 percent NaCl solution results in notable decreases in crack growth rates up to a specific value of DELTA K above which crack growth rates approach values measured in pure 3.5 percent NaCl solution. When the chromate concentration is increased by ten fold, corrosion fatigue crack growth rates are markedly reduced and approach measurements obtained in air for the entire range of DELTA K. Examination of fracture surfaces by the scanning electron microscope reveals the presence of ductile striations in austenite and brittle striations in ferrite. The basic striations characteristics in the austenitic phase are apparently the same in all the environments. However, ferrite striations appear to be DELTA K and environment dependent. Scratch tests were carried out to examine the effect of chromate concentration on repassivation kinetics of the duplex alloy. Chromate inhibition effectiveness during corrosion fatigue of duplex stainless steel is proposed to correlate with chromate repassivation kinetics and the crack tip strain rate.
机译:本研究的主要目的是检测铬酸盐对超双相不锈钢合金中腐蚀疲劳裂纹生长的抑制作用。对空气中的零100,3.5%NaCl中的Zeron 100进行腐蚀疲劳裂缝繁殖试验,并使用两种铬酸盐浓度抑制铬酸钠(Na_2CrO_4)的3.5%NaCl。在X1取向上测试标本。结果表明,在测试的整个ΔK上的空气中,在3.5%的NaCl溶液中提高了裂纹的生长速率。添加0.02M Na_2CRO_4至3.5%NaCl溶液导致裂纹生长速率的显着降低至高于ΔK的特定值,其在其纯3.5%NaCl溶液中测量的裂纹生长速率接近值。当铬酸盐浓度增加10倍时,腐蚀疲劳裂纹生长速率明显减少,并且在空气中获得的测量在空气中用于整个Delta K.通过扫描电子显微镜检查骨折表面的裂缝表面露出奥氏体中的延性条纹的存在。铁氧体的脆性条纹。在所有环境中,奥氏体相的基本条纹特性显然是相同的。然而,铁氧体纠结似乎是ΔK和环境依赖。进行划痕试验,以检测铬酸盐浓度对双链合金的回归动力学的影响。提出了双相不锈钢腐蚀过程中的铬酸盐抑制效果,以与铬酸盐重新分配动力学和裂纹尖菌速率相关。

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