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EFFECT OF HEAT TREATMENT ON THE PROPERTIES OF ADDITIVELY MANUFACTURED TYPE 316L STAINLESS STEEL

机译:热处理对316L不锈钢增材制造性能的影响

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Thin wall test articles were made using Fusion Powder Bed processing of Type 316L stainless steel. This hollow structure was fabricated using a Renishaw AM250. The material was characterized in the as fabricated condition using optical, scanning electron microscopy, and tensile testing. The tensile behavior indicates high initial residual stress due to the higher than annealed material yield strength. A series of thermal treatments were investigated to determine the effect on mechanical properties and microstructural evolution. In order to determine these effects, miniature flat tensile test samples and metallographic samples were wire electrical discharge machined from the structure. These samples were vacuum heat treated at 870, 1040 and 1080°C for 30 to 120 minutes and metallographically examined to determine the microstructural evolution. The samples were tensile tested and the data are evaluated based on the power-law type relationships. AM Type 316L SS exhibits less strain hardening than wrought stainless steel. In addition, the ductility is somewhat lower in the as-fabricated condition compared to the heat-treated condition. The results of the testing and the rationale for these different behaviors will be discussed.
机译:薄壁测试制品是使用316L型不锈钢的熔融粉末床处理制成的。该中空结构是使用雷尼绍AM250制造的。使用光学,扫描电子显微镜和拉伸测试在制造条件下表征该材料。由于高于退火材料的屈服强度,所以拉伸行为表明较高的初始残余应力。研究了一系列热处理以确定对机械性能和微观结构演变的影响。为了确定这些影响,对微型扁平拉伸测试样品和金相样品进行了线电火花加工。将这些样品在870、1040和1080°C真空热处理30至120分钟,然后进行金相检查以确定显微组织的演变。对样品进行拉伸测试,并根据幂律类型关系对数据进行评估。 AM 316L SS的应变硬化性比锻造不锈钢小。另外,与热处理条件相比,在制造条件下的延展性略低。将讨论测试结果以及这些不同行为的原理。

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