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Study of the Influence of Outgassing Parameters, Powder Particle Size and HIP Temperature in the Mechanical Properties of IN718

机译:脱气参数,粉末粒度和HIP温度对IN718力学性能的影响研究

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In this work the influence of outgassing parameters on the strength and ductility and on themicrostructure and oxygen content of IN718 has been studied because oxide and carbide precipitateson prior particle boundaries (PPB) limit interparticle bonding and are the main cause of poor ductility ofHIPped IN718. Three outgassing temperatures were chosen in this work: room temperature, 800 ℃and 1100 ℃. It was found that outgassing at 800 ℃ and 1100 ℃ maintained the same oxygen levelfrom the initial powder in the as-HIP samples and the ductility and strength were not improved afterhigh temperature outgassing. It was found that HIP temperatures above the Laves/gamma eutecticare required to obtain good mechanical properties. The ductility was found to increase with the HIPtemperature while the strength decreases. However at temperatures of the first stage of melting theincrease in the ductility was related to incipient melting and not to a decrease of PPB content. The as-HIPped microstructures have been analysed, using scanning electron microscopy after different HIPprocesses, in order to understand the influence of the microstructure on the mechanical properties.
机译:在这项工作中,已经研究了除气参数对IN718的强度和延展性以及对微观结构和氧含量的影响,因为氧化物和碳化物在先验颗粒边界(PPB)上的析出限制了颗粒间的结合,并且是HIPped IN718延展性差的主要原因。这项工作选择了三个排气温度:室温,800℃和1100℃。结果表明,在高温脱气后,在800℃和1100℃下的脱气保持了与as-HIP样品中初始粉末相同的氧含量,并且延展性和强度没有得到改善。发现需要高于Laves /γ共晶的HIP温度才能获得良好的机械性能。发现延性随着HIP温度而增加,而强度降低。但是,在熔融第一阶段的温度下,塑性的提高与初期熔融有关,与PPB含量的降低无关。为了理解显微结构对机械性能的影响,已经在不同的HIP处理之后使用扫描电子显微镜对as-HIPped的显微结构进行了分析。

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