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Influence of Heat Treatment on the Structure and Properties of ZhS6U High-Temperature Nickel-Based Alloy

机译:热处理对ZHS6U高温镍基合金结构和性能的影响

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This study considers the structure and properties of a high-temperature nickel-based alloy (ZhS6U) after different regimes of heat treatment. Cast samples were subjected to quenching and annealing at the temperatures of 900, 1000, 1100 and 1200°C during 1 hour. The structure was investigated by optical microscopy (OM) and scanning electron microscopy (SEM). Additionally, microhardness and compression strength were measured in this study. It was shown that a cast material consisted of crystallites with a length of 100 mm and had a dendritic cellular structure. The main phases observed in samples were: free-form carbides (MC-type), elongated carbides of M23C6 and M_6C probable stoichiometry, y'-phase and non-equilibrium eutectic with composition of (y' + y). It was found that heat treatment had no influence on the microstructure of samples and the morphology of carbide particles. The minimum size of the y' reinforcing phase (below 0.3 μm) and its minimum volume fraction were obtained after quenching from 1200°C and holding for 1 hour. The maximum microhardness value reached 598 HV after quenching from 900°C. The minimum value (449 HV) corresponded to the samples quenched from 1200°C. Compression tests revealed that ultimate tensile strength (UTS) of all samples was almost at the same level (1900-2100 MPa). Plastic strain of materials heated up to 1200°C proceeded with formation of cracks.
机译:该研究考虑了在不同热处理制度之后的高温镍基合金(ZhS6U)的结构和性质。在1小时内,对900,1000,1100和1200℃的温度进行淬火和退火。通过光学显微镜(OM)和扫描电子显微镜(SEM)研究了该结构。另外,在该研究中测量了显微硬度和压缩强度。结果表明,铸造材料由长度为100mm的微晶组成并具有树突细胞结构。在样品中观察到的主要阶段是:自由形状的碳化物(MC型),M23C6和M23C6和M_6C的细长碳化物,具有(Y'+ Y)的组合物的Y'-相和非平衡共晶。发现热处理对样品的微观结构和碳化物颗粒的形态没有影响。在淬火1200℃并保持1小时后,获得Y'增强相(低于0.3μm)的最小尺寸及其最小体积分数。在900°C淬火后,最大微硬度值达到598HV。最小值(449HV)与样品相对应于1200℃淬灭的样品。压缩试验显示所有样品的最终拉伸强度(UTS)几乎处于相同的水平(1900-2100MPa)。塑料应变的材料加热至1200°C,形成裂缝的形成。

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