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Studies on the Work-Hardening Behavior of AA2219 under Different Aging Treatments

机译:不同时效处理下AA2219的工作约束行为研究

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Uniaxial tensile tests were performed to examine the influence of the precipitation state on the yield strength and work-hardening behavior of AA2219 for different aging treatments. The microstructural observations in four aging treatments (viz. natural aging, underaging, peak aging, and overaging) were made through transmission electron microscopy (TEM) to understand the type of phase or intermediate stages of the phase present (Guinier–Preston (GP) zones, θ″, θ′, and θ). To characterize the work-hardening behavior, the analysis of the experimental results has focused on two parameters, viz. the initial work-hardening rate Θmax (≡dσ/dε) and the slope (dΘ/dσ) of the Θ-σ plot, which is related to the rate of dynamic recovery. The initial work-hardening rate (Θmax) first drops as aging proceeds and then increases significantly upon overaging. The large increase in Θmax is also associated with a concomitant increase in the slope (dΘ/dσ) of the Θ-σ curve. The material constants in the differential equation for the dislocation density are evaluated and flow stress vs plastic strain curves are generated using the flow stress contributions from the solid-solution, dislocation, and precipitation hardening. The model predictions are found to be in excellent agreement with the experimental data for a range of precipitation states from underaged (UA) to overaged (OA) conditions. Curves of flow stress due to dislocation hardening with the plastic strain were also generated in the presence of shearable and nonshearable precipitates.
机译:进行了单轴拉伸试验,以检验沉淀状态对AA2219在不同时效处理下的屈服强度和加工硬化行为的影响。通过透射电子显微镜(TEM)对四种时效处理(即自然时效,欠老化,峰值时效和过时效)进行了显微观察,以了解存在的相或中间相的类型(吉尼尔-普雷斯顿(GP)区域θ'',θ'和θ)。为了表征工作硬化行为,对实验结果的分析集中于两个参数,即。初始工作硬化率Θmax(≡dσ/dε)和Θ-σ图的斜率(dΘ/dσ)与动态恢复速率有关。初始加工硬化率(Θmax)随着老化的进行而先下降,然后在过度老化时显着增加。 Θmax的大增加还与Θ-σ曲线的斜率(dΘ/dσ)的随之增加有关。计算了位错密度的微分方程中的材料常数,并使用固溶,位错和沉淀硬化的流应力贡献生成了流应力与塑性应变曲线。发现该模型预测与从不足年龄(UA)到过量(OA)条件的一系列降水状态的实验数据非常吻合。在存在可剪切和不可剪切的沉淀物的情况下,还产生了由于塑性应变引起的位错硬化而引起的流动应力曲线。

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