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首页> 外文期刊>Journal of Materials Science >The effect of heat treatments on the creep–rupture properties of a wrought Ni–Cr heat-resistant alloy at 973 K
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The effect of heat treatments on the creep–rupture properties of a wrought Ni–Cr heat-resistant alloy at 973 K

机译:热处理对973 K变形Ni-Cr耐热合金蠕变-断裂性能的影响

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The effect of heat treatments on the creep–rupture properties was investigated on a wrought Ni–Cr heat-resistant alloy at 973 K. Short-time aging (aging for 3.6 ks (1 h) at 973 K) was made on the solution-treated specimens with different grain sizes. The fine-grained specimen (the grain diameter, d = 45.2 μm) produced by short-time solution treatment exhibited almost the same rupture life and superior creep ductility as those of the medium-grained specimen (d = 108 μm) produced by normal solution treatment. The fine-grained specimen and medium-grained specimen showed the longer rupture life compared with the specimen with recommended aging. The principal strengthening of specimens was attributed to the precipitation hardening by γ′ phase particles. The fine-grained specimen had the highest hardness, and the increase of the hardness was observed in both the fine-grained and the medium-grained specimens during creep at 973 K. However, coarse-grained specimen (d = 286 μm) with high-temperature long-time solution treatment exhibited significantly short rupture life owing to insufficient precipitation hardening after the short-time aging and during creep. Ductile intergranular fracture with dimples occurred in the fine-grained specimen, while brittle intergranular fracture was observed in the medium-grained specimen and in the specimen with recommended aging. Both transgranular fracture and brittle intergranular fracture were observed in the coarse-grained specimen. A simple heat treatment composed of short-time solution treatment and short-time aging is applicable to high-temperature components of wrought Ni–Cr alloys.
机译:在973 K变形的Ni-Cr耐热合金上研究了热处理对蠕变断裂性能的影响。在溶液上进行了短时效处理(在973 K时时效为3.6 ks(1 h))-处理后的试样具有不同的晶粒尺寸。短时间固溶处理产生的细晶粒样品(粒径d = 45.2μm)与普通溶液产生的中粒试样(d = 108μm)具有几乎相同的断裂寿命和优异的蠕变延展性治疗。与建议老化的试样相比,细晶粒和中晶粒试样的断裂寿命更长。样品的主要强化归因于γ'相颗粒的沉淀硬化。细粒样品的硬度最高,在973 K蠕变过程中,在细粒和中粒样品中均观察到硬度的增加。但是,粗粒样品(d = 286μm)具有较高的硬度。在短时效后和蠕变过程中,由于沉淀硬化不足,高温长期固溶处理的断裂寿命明显缩短。细粒样品中发生了带凹痕的延性球粒间断裂,而中粒样品和建议老化的样品中观察到了脆性粒间断裂。在粗粒样品中均观察到了经晶断裂和脆性晶间断裂。由短时固溶处理和短时效处理组成的简单热处理适用于变形Ni-Cr合金的高温部件。

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