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Environmental Effects on Fatigue Crack Growth in Austempered Ductile Irons

机译:奥氏体球墨铸铁疲劳裂纹扩展的环境影响

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Corrosion fatigue crack growth (CFCG) behavior has been investigated for two different grades of austempered ductile irons (ADIs) which were heat treated respectively at two different austempering temperature, 573 and 633K. Fatigue crack growth (FCG) tests using compact tension (CT) specimens were conducted in humid air, lubrication oil and three aqueous environments: distilled water (pH=7.6), sodium chloride solution (pH=7.3) and sulfuric acid solution (pH=3). The results showed that fatigue crack growth rates (FCGRs) at 20Hz in humid air and aqueous environments were comparable and faster than those in lubrication oil. The FCGRs in aqueous environments were found to increase with a reduction in loading frequency or with an increase in solution temperature. The crack growth enhancement by different aqueous media appeared to be equivalent, although the ion species and pH in the bulk solutions were different. The degree of sensitivity to environmental effects for CFCG response in ADI was not essentially influenced by the austempering treatment as the relative difference in FCGR between the two grades of ADIs was not considerably changed in any of the studied.
机译:研究了两种不同等级的奥氏体球墨铸铁(ADIs)的腐蚀疲劳裂纹扩展(CFCG)行为,它们分别在两种不同的奥氏体化温度573和633K下进行了热处理。使用紧凑张力(CT)试样在潮湿空气,润滑油和三种水性环境中进行疲劳裂纹扩展(FCG)测试:蒸馏水(pH = 7.6),氯化钠溶液(pH = 7.3)和硫酸溶液(pH = 3)。结果表明,在潮湿空气和水性环境中,在20Hz时的疲劳裂纹扩展速率(FCGRs)与润滑油相当且更快。发现在水性环境中的FCGR随着装载频率的降低或溶液温度的升高而增加。尽管本体溶液中的离子种类和pH值不同,但不同水性介质对裂纹扩展的促进作用似乎是相同的。奥氏体回火处理基本上不影响ADI对CFCG响应的环境影响程度,因为在任何一项研究中,两个等级的ADI之间FCGR的相对差异均未显着变化。

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