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The Effect of Strain Rate on the Material Characteristics of Nickel-based Superalloy Inconel 718

机译:应变率对镍基超合金的材料特性718的影响

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摘要

The dynamic response of the turbine blade materials is indispensable for analysis of erosions of turbine blades as a result of impulsive loading associated with gas flow. This paper is concerned with the dynamic material properties of the Inconel 718 alloy which is widely used in the high speed turbine blade. The dynamic response at the corresponding level of the strain rate should be acquired with an adequate experimental technique and apparatus due to the inertia effect and the stress wave propagation. In this paper, the dynamic response of the Inconel 718 at the intermediate strain rate ranged from 1/s to 400/s is obtained from the high speed tensile test and that at the high strain rate above 1000/s is obtained from the split Hopkinson pressure bar test. The effects of the strain rate on the dynamic flow stress, the strain rate sensitivity and the failure elongation are evaluated with the experimental results. Experimental results from both the quasi-static and the high strain rate up to 3000/s are interpolated in order to construct the constitutive relation that should be applied to simulate the dynamic behavior of the turbine blade made of the Inconel 718.
机译:由于与气流相关的冲动负载,涡轮叶片材料的动态响应对于涡轮机叶片的腐蚀的分析是必不可少的。本文涉及广泛应用于高速涡轮叶片的Inconel 718合金的动态材料性能。应通过惯性效应和应力波传播,以足够的实验技术和装置获得相应水平的应变速率的动态响应。在本文中,从高速拉伸试验中获得1 / s至400 / s的中间应变速率的Inconel 718的动态响应,并且从拆分霍普金森获得1000 / s以上的高应变率压力杆试验。用实验结果评价应变率对动态流量应力,应变速率灵敏度和故障伸长的影响。额静压和高应变率高达3000 / s的实验结果是插值的,以构建应应用于模拟由Inconel 718制成的涡轮机叶片的动态行为的本构关系。

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