首页> 外文期刊>Journal of Failure Analysis and Prevention >Use of Mechanical and Metallurgical Analysis to Evaluate Cause of Fractures in a Cast 310 Stainless Steel Pintle Chain
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Use of Mechanical and Metallurgical Analysis to Evaluate Cause of Fractures in a Cast 310 Stainless Steel Pintle Chain

机译:利用机械和冶金分析评估铸造310不锈钢销链中的断裂原因

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A pintle chain composed of a cast 310 stainless steel material experienced embrittlement, deformation, and multiple fractures after operating six months inside a furnace. The design is such that the chain travels the length of the furnace, experiencing temperatures cycling between ambient and 1,700 F in an oxidizing atmosphere. Pins comprising the individual chain links had experienced deformation, and in some cases, had also fractured in a brittle manner. The links comprising the chain had also experienced numerous fractures in a brittle manner. An analysis of the loads experienced by the pins and links determined that both the short-term yield strength and the long-term creep strength of the pins had been exceeded at the normal operating temperature of the furnace. Furthermore, metallurgical analysis of the pins and links determined that carburization had taken place, embrittling the pins and links. A change to the original design of the furnace had resulted in the unintended presence of the carburizing atmosphere inside the furnace during the first 6 months of operation. The carburizing atmosphere was alleviated by returning to the original furnace design. Upgrading the alloy selection for the chain provided further resistance to service-related embrittlement, increased ductility when cycling to ambient temperature, and increased high temperature strength. Increasing the size of the links and pins was recommended (an upgrade to a higher chain load rating), but was not practical, given the dimensional constraints of running the chain in the furnace.
机译:由铸310不锈钢材料制成的枢轴链在炉内运行六个月后会发生脆化,变形和多次断裂。这种设计使链条在炉子的整个长度上移动,在氧化气氛中,温度在环境温度和1,700 F之间循环。组成各个链节的销钉发生变形,在某些情况下还以脆性方式断裂。组成链条的链节也经历了许多脆性断裂。对销和链节承受的载荷进行的分析确定,在炉子的正常工作温度下,销的短期屈服强度和长期蠕变强度均被超过。此外,对销和链节的冶金分析确定渗碳已经发生,使销和链节变脆。对熔炉原始设计的更改导致在运行的前6个月内,熔炉内部意外地出现了渗碳气氛。回到最初的熔炉设计可以减轻渗碳气氛。升级链条的合金选择可进一步抵抗与维修相关的脆性,在循环至环境温度时可延展韧性,并提高高温强度。建议增加链节和销的尺寸(升级至更高的链条额定载荷),但鉴于在炉中运行链条的尺寸限制,因此不切实际。

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