Impingement-Corrosion Failure of a Ferritic Malleable Iron Elbow

{"title":"Impingement-Corrosion Failure of a Ferritic Malleable Iron Elbow","authors":"","doi":"10.31399/asm.fach.modes.c0091402","DOIUrl":null,"url":null,"abstract":"\n Leakage was detected in a malleable iron elbow (ASTM A 47, grade 35018) after only three months in service. Life expectancy for the elbow was 12 to 24 months. The piping alternately supplied steam and cooling water to a tire-curing press. The supply line and elbow were subjected to 14 heating and cooling cycles per hour for at least 16 h/day, or a minimum of 224 cycles/day. Steam and water pressure were 1035 kPa (150 psi) and 895 kPa (130 psi) respectively, and water-flow rate was estimated to be 1325 L/min (350 gal/min) based on pump capacity. Water-inlet temperature was 10 to 15 deg C (50 to 60 deg F) and outlet temperature was 50 to 60 deg C (120 to 140 deg F). The pH of the water was 6.9. Investigation (visual inspection, chemical analysis, and 67x nital etched micrographs) supported the conclusion that the elbows had been given the usual annealing and normalizing treatment for ferritizing malleable iron. This resulted in lower resistance to erosion and corrosion than pearlitic malleable iron. Recommendations included replacing the elbows with heat-treated fittings with a pearlitic malleable microstructure.","PeriodicalId":231268,"journal":{"name":"ASM Failure Analysis Case Histories: Failure Modes and Mechanisms","volume":"98 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2019-06-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"ASM Failure Analysis Case Histories: Failure Modes and Mechanisms","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.31399/asm.fach.modes.c0091402","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

Leakage was detected in a malleable iron elbow (ASTM A 47, grade 35018) after only three months in service. Life expectancy for the elbow was 12 to 24 months. The piping alternately supplied steam and cooling water to a tire-curing press. The supply line and elbow were subjected to 14 heating and cooling cycles per hour for at least 16 h/day, or a minimum of 224 cycles/day. Steam and water pressure were 1035 kPa (150 psi) and 895 kPa (130 psi) respectively, and water-flow rate was estimated to be 1325 L/min (350 gal/min) based on pump capacity. Water-inlet temperature was 10 to 15 deg C (50 to 60 deg F) and outlet temperature was 50 to 60 deg C (120 to 140 deg F). The pH of the water was 6.9. Investigation (visual inspection, chemical analysis, and 67x nital etched micrographs) supported the conclusion that the elbows had been given the usual annealing and normalizing treatment for ferritizing malleable iron. This resulted in lower resistance to erosion and corrosion than pearlitic malleable iron. Recommendations included replacing the elbows with heat-treated fittings with a pearlitic malleable microstructure.
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铁素体可锻铸铁弯头的冲击腐蚀失效
可锻铸铁弯头(ASTM a 47,等级35018)在使用仅三个月后就检测到泄漏。肘部的预期寿命为12至24个月。这些管道交替地向轮胎硫化机提供蒸汽和冷却水。供水管和弯头每小时进行14次加热和冷却循环,每天至少16小时,或每天至少224次循环。蒸汽和水的压力分别为1035 kPa (150 psi)和895 kPa (130 psi),根据泵的容量,流量估计为1325升/分钟(350加仑/分钟)。进水温度为10至15摄氏度(50至60华氏度),出水温度为50至60摄氏度(120至140华氏度),水的pH值为6.9。调查(目视检查、化学分析和67x数字蚀刻显微照片)支持这样的结论,即肘部经过了铁素体化可锻铸铁的常规退火和正火处理。这导致较低的抗侵蚀和腐蚀比珠光体可锻铸铁。建议包括用珠光体可锻铸微观结构的热处理配件替换弯头。
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