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首页> 外文期刊>Journal of Materials Research and Technology >Effects of forming temperature, soaking time and dwell time on the microstructure and mechanical properties of thixoformed nickel-based superalloy parts
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Effects of forming temperature, soaking time and dwell time on the microstructure and mechanical properties of thixoformed nickel-based superalloy parts

机译:形成温度,浸泡时间和停留时间对硫型镍基超合金零件微观结构和力学性能的影响

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摘要

Thixoforming has unique characteristics over the traditional casting and forging processes, but there is few research focusing on thixoforming of nickel-based superalloys. In this paper, nickel-based superalloy GH4037 parts were successfully formed by thixoforming with different parameters. The effects of forming temperature, soaking time and dwell time on the microstructure and mechanical properties of the formed parts were investigated. The results indicated that forming temperature and soaking time exerted a crucial role in microstructure evolution. With the increase of temperature and soaking time, the proportion of liquid phases in the microstructure increased. During thixoforming, liquid phases were squeezed from the middle region to the peripheral region, resulting in more liquid phases at the edge of the parts. MC-type carbides rich in Ti, V, W and Mo were observed in the liquid phases. When semi-solid billet was heated at 1380?°C for 30?min, the best mechanical properties including an ultimate tensile strength of 973?MPa, a yield strength of 634?MPa and an elongation of 45.6% were achieved. The dwell time had a slight effect on the microstructure and mechanical properties of the parts. The fracture surfaces of the tensile specimens exhibited mostly dimple surfaces and presented a transgranular ductile fracture mode.
机译:Thixoforming在传统的铸造和锻造过程中具有独特的特性,但很少有研究专注于镍基超合金的触变。在本文中,通过具有不同参数的触变成功地形成了基于镍的超金属GH4037零件。研究了形成温度,浸泡时间和停留时间对形成部件的微观结构和力学性能的影响。结果表明,成形温度和浸泡时间在微观结构进化中发挥了至关重要的作用。随着温度和浸泡时间的增加,微观结构中液相的比例增加。在触变期间,将液相从中间区域挤压到外周区域,导致部件边缘处的更多液相。在液相中观察到富含Ti,V,W和Mo的MC型碳化物。当半固体坯料在1380℃加热30℃时,最佳的机械性能,包括最终拉伸强度为973Ω·MPa,屈服强度为634μm≤25.6%。停留时间对部件的微观结构和机械性能有轻微影响。拉伸试样的断裂表面大多呈凹坑表面,并呈现响组韧性裂缝模式。

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