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EFFECT OF ULTRASONIC IMPACT TREATMENT ON THE STRESS CORROSION CRACKING OF 304 STAINLESS STEEL WELDED JOINTS

机译:超声冲击处理对304不锈钢焊接接头应力腐蚀开裂的影响

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High tensile weld residual stress is an important factor contributing to stress corrosion cracking (SCC). Ultrasonic impact treatment (UIT) can produce compressive stresses on the surface of welded joints that negate the tensile stresses to enhance the SCC resistance of welded joints. In the present work, X-ray diffraction method was used to obtain the distribution of residual stress induced by UIT. The results showed that UIT could cause a large compressive residual stress up to 325.9MPa on the surface of the material. A 3D finite element model was established to simulate the UIT process by using a finite element software ABAQUS. The residual stress distribution of the AISI 304 stainless steel induced by UIT was predicted by finite element analysis. In order to demonstrate the improvement of the SCC resistance of the welded joints, the specimens were immersed in boiling 42% magnesium chloride solution during SCC testing, and untreated specimen cracked after immersion for 23 hours. In contrast, treated specimens with different coverage were tested for 1000 hours without visible stress corrosion cracks. The microstructure observation results revealed that a hardened layer was formed on the surface and the initial coarse-grained structure in the surface was refined into ultrafme grains. The above results indicate that UIT is an effective approach for protecting weldments against SCC.
机译:高拉伸焊缝残余应力是导致应力腐蚀开裂(SCC)的重要因素。超声冲击处理(UIT)会在焊接接头的表面产生压缩应力,从而抵消拉伸应力,从而增强焊接接头的SCC抵抗力。在目前的工作中,使用X射线衍射方法来获得由UIT引起的残余应力的分布。结果表明,UIT可能在材料表面产生高达325.9MPa的较大压缩残余应力。通过使用有限元软件ABAQUS,建立了一个3D有限元模型来模拟UIT过程。通过有限元分析预测了UIT引起的AISI 304不锈钢的残余应力分布。为了证明焊接接头的耐SCC性提高,在SCC测试中将样品浸入沸腾的42%氯化镁溶液中,未经处理的样品在浸入23小时后开裂。相反,具有不同覆盖率的处理过的样品进行了1000小时的测试,没有可见的应力腐蚀裂纹。显微组织观察结果表明,在表面上形成了硬化层,并且表面上的初始粗晶组织被细化为超细晶粒。以上结果表明,UIT是一种保护焊件不受SCC影响的有效方法。

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