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MITIGATION OF PRIMARY WATER STRESS CORROSION CRACKING INITIATION OF ALLOY 600

机译:合金600的初始水应力腐蚀开裂的缓解

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This paper describes a program aimed at betterunderstanding the effect of surface condition on PrimaryWater Stress Corrosion Cracking (PWSCC) initiation ofAlloy 600. Manufacturing techniques used on plantcomponents can induce residual stresses, changes to themicrostructure and plastic deformation at the surface ofcomponents, whilst affecting the surface roughness. Thisstudy examines surface condition factors and their effecton PWSCC initiation susceptibility to inform mitigationapproaches. Advances to the understanding of the SCCinitiation test method, via finite element modelling andunderstanding of in-test strains, will also be presented insupport of this aim.Surface roughness, residual stress and the depth ofdamage and nano-crystalline surface layers induced bymachining were characterized using profilometry, X-RayDiffraction (XRD), micro-hardness and ElectronBackscatter Diffraction (EBSD). Initiation tests usedtensile specimens manufactured from Alloy 600 withvarying cold work levels, orientation with respect to coldwork, surface roughness, depth of nano-crystalline surfacelayers, and surface residual stress (ranging from highlytensile to highly compressive). Tests were conducted at360°C, with active loading to yield in a PWR primaryenvironment. The onset of initiation was detected by in-situDirect Current Potential Drop (DCPD) measurement.Results indicate that residual stress and orientation withrespect to cold work are critical parameters for Alloy 600PWSCC susceptibility, with PWSCC mitigated bycompressive residual stresses.
机译:本文介绍了一个旨在更好地解决问题的程序 了解表面状况对原发性的影响 的水应力腐蚀开裂(PWSCC)引发 合金600。工厂使用的制造技术 组件可能会引起残余应力,改变 合金表面的组织和塑性变形。 零件,同时影响表面粗糙度。这 研究检查了表面条件因素及其影响 PWSCC起始易感性以减轻影响 方法。增进对SCC的理解 初始测试方法,通过有限元建模和 对测试菌株的了解,也将在 支持这一目标。 表面粗糙度,残余应力和深度 损伤和纳米晶表面层的诱导 使用轮廓测量,X射线对加工进行了表征 衍射(XRD),显微硬度和电子 反向散射衍射(EBSD)。使用的启动测试 合金600制成的拉伸试样 变化的冷作水平,关于冷的方向 功,表面粗糙度,纳米晶体表面的深度 层和表面残余应力(范围从 拉伸至高度压缩)。测试在 360°C,有效负载时可在PWR初级中屈服 环境。通过原位检测起始的发作 直流电势降(DCPD)测量。 结果表明,残余应力和取向与 关于冷加工是600合金的关键参数 PWSCC易感性,通过以下方法缓解了PWSCC 压缩残余应力。

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