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首页> 外文期刊>Journal of Materials Science >ELEVATED TEMPERATURE DEFORMATION BEHAVIOUR OF MULTI-PHASE NI-20 AT-PERCENT AL-30 AT-PERCENT FE AND ITS CONSTITUENT PHASES
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ELEVATED TEMPERATURE DEFORMATION BEHAVIOUR OF MULTI-PHASE NI-20 AT-PERCENT AL-30 AT-PERCENT FE AND ITS CONSTITUENT PHASES

机译:Ni-20%Al-30%Fe多相及其成分相的升高的温度变形行为

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The mechanical behaviour of the multi-phase (beta' + gamma/gamma') alloy Ni-20 at % Al-30 at % Fe and alloys similar to its constituent beta' and gamma/gamma' phases, Ni-30 at % Al-20 at % Fe and Ni-12 at % Al-40 at % Fe, respectively, were investigated. When tested in tension at 300 K, the alloys exhibited approximate to 20%, 2% and 28% elongation, respectively. At elevated test temperatures (700, 900 and 1100 K), the multi-phase alloy exhibited increased ductility, reaching an elongation in excess of 70% at 1 100 K without necking or fracture. Similarly, the beta' alloy demonstrated increased ductility with increasing test temperatures. In contrast, the gamma/gamma' alloy showed greatly reduced ductility with increasing temperature and was quite brittle both at 900 and 1100 K. Thus, whilst at room temperature the gamma/gamma' phase improved the ductility of the beta' + gamma/gamma' aggregate, at elevated temperatures the beta' phase alleviated the brittleness of the gamma/gamma' phase, thereby preventing any embrittlement of the multi-phase alloy over the temperature range 300-1100 K. Also, whilst the beta' phase improved the room-temperature strength of the multi-phase alloy, at elevated temperatures where the beta' phase is known to be weak, the gamma/gamma' phase improved the strength of the multi-phase alloy up to 900 K, beyond which the strength deteriorated due to disordering and lack of anomalous strengthening in the gamma/gamma' component. [References: 27]
机译:多相(β'+γ/γ')Ni-20在%Fe-30%Al-30时的力学行为以及类似于其组成的β'和γ/γ'相的合金Ni-30 at%Al的机械性能分别研究了-20 at%Fe和Ni-12 at Al-40 at%Fe。在300 K的张力下进行测试时,合金的伸长率分别约为20%,2%和28%。在升高的测试温度(700、900和1100 K)下,多相合金的延展性提高,在1100 K下伸长率超过70%,而没有颈缩或断裂。同样,随着测试温度的升高,β'合金的延展性提高。相反,随着温度的升高,γ/γ'合金的延展性大大降低,并且在900和1100 K时都非常脆。因此,在室温下,γ/γ'相提高了β'+γ/γ的延展性。 “聚集,在高温下,β”相减轻了γ/γ′相的脆性,从而防止了多相合金在300-1100 K的温度范围内变脆。此外,β′相改善了房间相合金的高温强度,在已知β'相较弱的高温下,γ/γ'相将多相合金的强度提高到900 K,超过该强度,强度会降低混乱和伽玛/伽玛'成分缺乏异常强化。 [参考:27]

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