首页> 外文会议>Asian Pacific Conference on Fracture and Strength;APCFS; 20061122-25;20061122-25; Sanya(CN);Sanya(CN) >Effect of Physical Property of Water on SCC Growth Rate of 316L Stainless Steels in High-temperature Water
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Effect of Physical Property of Water on SCC Growth Rate of 316L Stainless Steels in High-temperature Water

机译:水的物理性质对316L不锈钢在高温水中SCC生长速率的影响

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摘要

A number of mechanisms have been proposed to understand stress corrosion cracking (SCC) of metals, e.g. (1) slip dissolution and active pass corrosion based on anodic dissolution of metals, (2) tarnish rupture and internal oxidation based on oxidation ahead the crack tip followed by cracking of the oxides, and (3) hydrogen cracking, etc. If dissolution of metals takes the essential role in the stress corrosion cracking concerned, cracking susceptibility is expected to be significantly affected by dielectric constant of water. Because dielectric constant represents a character of water as a solvent, which determines solubility of metal oxides, and therefore corrosion rate of metals is strongly dependent on dielectric constant of water. K-constant type SCC growth rate tests have been done as a function of physical property (dielectric constant) of water by either manipulating temperature under iso-pressure condition (15MPa) or manipulating pressure under iso-thermal condition (330℃). Intergranular cracking was more enhanced and the crack growth was significantly accelerated under the condition of higher dielectric constant, indicating that dissolution of metal plays important role in the cracking mechanism of 316L stainless steels under the present testing conditions.
机译:已经提出了许多机制来理解金属例如金属的应力腐蚀开裂(SCC)。 (1)基于金属的阳极溶解的滑移溶解和主动通过腐蚀;(2)裂纹尖端前的氧化导致的锈蚀破裂和内部氧化,然后氧化物裂解,(3)氢裂解等。金属在有关的应力腐蚀开裂中起着至关重要的作用,开裂敏感性将受到水介电常数的显着影响。因为介电常数代表水作为溶剂的特性,这决定了金属氧化物的溶解度,因此金属的腐蚀速率强烈依赖于水的介电常数。通过在等压条件下(15MPa)操纵温度或在等温条件下(330℃)操纵压力,进行了K常数型SCC生长速率测试,测试结果与水的物理性质(介电常数)有关。在较高介电常数的条件下,晶界裂纹得到进一步增强,裂纹扩展明显加快,这表明在目前的测试条件下,金属的溶解在316L不锈钢的裂纹机理中起着重要的作用。

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