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Environmental effect on mechanical properties of a gamma-prime strengthened nickel-based alloy: Effect of the surface oxidation and formation of gamma-prime free zones

机译:环境对γ′增强镍基合金力学性能的影响:表面氧化和γ′自由区形成的影响

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摘要

The mechanical behavior of X-750 in rough vacuum environment was explored and compared with the mechanical behavior in air at a large range of temperatures (from room temperature to 900 degrees C) for both Heat-Treated and Non-Heat-Treated X750 alloy. In the intermediate range of temperatures where the Portevin Le Chatelier (PLC) effect is observed, the effect of testing in air versus rough vacuum did not yield statistically significant different PLC characteristics. At temperatures above 650 degrees C for Heat Treated and 750 degrees C for Non-Heat-Treated X-750, the samples tested under rough vacuum had higher yield stress values than the respective samples tested under air. The decrease in yield stress under air was attributed to an oxide scale induced surface softening effect and the loss of strengthening efficiency for the gamma prime precipitates. At higher temperatures in air, around 800 degrees-900 degrees C, sinusoidal stress serrations in the stress strain curves indicated the occurrence of dynamic recrystallization (DRX). The vacuum environment however removed all stress serrations attributed to DRX, indicating that the surface oxidation with the concomitant formation of a gamma' free zone underneath the oxide layer plays a role in the DRX presence.
机译:探索了X-750在粗糙真空环境中的机械性能,并与热处理和非热处理X750合金在大范围温度(从室温到900摄氏度)下在空气中的机械性能进行了比较。在观察到Portevin Le Chatelier(PLC)效果的中间温度范围内,在空气中进行测试相对于粗糙真空的效果在统计学上不会产生明显的不同PLC特性。在高于650摄氏度(热处理)和750摄氏度(非热处理X-750)的温度下,在粗糙真空下测试的样品的屈服应力值高于在空气中测试的相应样品。空气中屈服应力的降低归因于氧化物引起的表面软化作用和γ′沉淀物强化效率的损失。在大约800到900摄氏度的较高空气温度下,应力应变曲线中的正弦应力锯齿表明发生了动态重结晶(DRX)。然而,真空环境去除了所有归因于DRX的应力锯齿,表明表面氧化以及在氧化物层下方伴随形成的γ'自由区的形成在DRX的存在中起作用。

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  • 来源
    《Materials Science and Engineering》 |2019年第3期|136-144|共9页
  • 作者单位

    Univ South Carolina, Dept Mech Engn, Columbia, SC 29208 USA;

    North Carolina State Univ, Dept Nucl Engn, Raleigh, NC 27695 USA;

    North Carolina State Univ, Dept Nucl Engn, Raleigh, NC 27695 USA;

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