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Hot workability and models for flow stress of NIMONIC 115 Ni-base superalloy

机译:Nimonic 115 Ni基超合金流量应力的热可加工性和模型

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The hot workability of the nickel-base alloy NIMONIC 115 has been investigated by means of torsion testing in extended ranges of strain rate (0.01-1 s~(-1)) and temperature (1140-1180 °C). The flow curves have shown, in general, an increase in equivalent stress up to a peak value followed by a softening until rupture. At 1140°C, for strain rates varying between 0.01 and 1 s~(-1), the peak in flow stress is followed by a marked softening up to a steady state condition which can be attributed to the occurrence of dynamic recrystallisation. The hot ductility vs. true temperature, occurring during torsion tests, has been analysed. Flow behaviour of NIMONIC 115 alloy vs. process parameters has been modelled by means of an equation relating the hyperbolic sine of flow stress to the temperature-modified strain rate. The results have been analysed and discussed.
机译:通过延长应变率(0.01-1S〜(-1))和温度(1140-1180°C)的延伸范围的扭转测试研究了镍基合金镍氢115的热可加工性。通常,流动曲线一般来说,等效应力增加到峰值,然后软化直至破裂。在1140℃下,对于0.01和1 s〜(-1)之间的应变速率,流量应力的峰随后被标记的软化至稳态条件,其可归因于动态重结晶的发生。分析了在扭转试验期间发生的热延展性与真温。 Nimonic 115合金与过程参数的流动性能通过与流量应力的双曲线正弦与温度改性应变率相关的等式进行了建模。已经分析和讨论了结果。

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