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Influence of Inclusion and Specimen Orientations on Intergranular Corrosion Testing of AISI 316LN Stainless Steel

机译:夹杂物和试样取向对AISI 316LN不锈钢晶间腐蚀测试的影响

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Fabricated components must be free from sensitization for using these in critical applications in aggressive environments. During fabrication of a hollow bar from solid bar, deep hole drilling was employed which introduces residual stresses. Stress-relieving heat treatment was employed by heating the hollow bar from room temperature to 1,065°C @ 40°C/h and soaking at 1,065°C for 1 h followed by cooling @ 40°C/h as well as 70°C/h. To detect the susceptibility to IGC, specimens were taken from both circumferential direction as well as longitudinal direction and subjected to ASTM A 262 Practice E test. In U bend, the specimens from the circumferential direction failed whereas longitudinal specimens did not fail. However specimens of both orientations showed Step structure in Practice A test indicating that no carbide has nucleated during the stress-relieving heat treatment ensuring that the cooling rates are faster than the critical cooling rates and the material is not susceptible to IGC. EDAX studies indicated the presence of numerous MnS inclusions enriched in chromium which might have led to chromium depletion around the inclusions resulting in poor passivity at these locations. This study presents the influence of orientation of MnS inclusions in causing failure in U bend test. The need to select specimens of correct orientation during IGC testing is emphasized in this investigation.
机译:为了在侵蚀性环境中的关键应用中使用预制组件,必须使其免受敏化。在由实心棒制造空心棒的过程中,采用了深孔钻,这会引入残余应力。通过将空心棒从室温以40°C / h的温度加热到1,065°C并在1,065°C的温度下均热1小时,然后以40°C / h的温度以及70°C / H。为了检测对IGC的敏感性,从圆周方向和纵向两个方向上采集样品,并进行ASTM A 262 Practice E测试。在U形弯中,从圆周方向的样本失败,而纵向样本没有失败。但是,两个方向的试样在实践A测试中均显示出阶梯结构,表明在消除应力的热处理过程中没有碳化物成核,从而确保冷却速度快于临界冷却速度,并且材料不易受IGC影响。 EDAX研究表明,存在大量富集了Mn的MnS夹杂物,这可能导致夹杂物周围的铬耗尽,从而导致这些位置的钝化性差。这项研究提出了MnS夹杂物取向在U型弯曲试验中引起失效的影响。在这项研究中强调了在IGC测试过程中需要选择方向正确的标本。

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