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Temperature dependence of single crystal elastic constants in a CoNi-Base alloy: A new methodology

机译:单晶弹性常数在同碱基合金中的温度依赖性:一种新方法

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摘要

A novel experimental setup combining induction heating, contactless (infrared thermometer) temperature measurements, and custom 15 cm length SiC-tipped piezoelectric transducers has been developed to rapidly collect resonant ultrasound spectroscopy (RUS) data from metallic rectangular parallelepiped (RP) specimens heated in air. This setup is used to collect over 70 of the lowest-frequency resonance modes from a single crystal of the novel CoNi-based superalloy SB-CoNi-10+-an alloy identified for further study due to a promising set of high temperature properties. RUS spectra from room temperature (RT) to 927 °C (1200 K) along with dila-tometry measurements of the thermal expansion behavior are supplied to a robust, open-sourced, Bayesian inference code for simultaneous estimation of: three single crystal elastic constants, three crystal axis misori-entation parameters, and a noise parameter. This study is the first application of the Bayesian RUS methodology at elevated temperatures, and the first to characterize SB-CoNi-10+. A monotonic decrease in elastic constants (C_(11), C_(12), C_(44)) from (236.4, 150.8, 134.1) GPa to (190.7, 138.1, 95.2) GPa and a 15% increase in elastic anisotropy from A = 3.131 → 3.618 is observed upon heating from RT to 927 °C, with an increased rate of softening above 600 °C (873 K).
机译:一种新型实验设置相结合的感应加热,非接触式(红外温度计)温度测量和定制15cm长度SiC尖端的压电传感器,以便在空气中加热的金属矩形平行六面体(RP)标本快速收集共振超声波光谱(RUS)数据。该设置用于从新的基于Coni基超合金SB-Coni-10 + -An合金的单晶的70个最低频率共振模式收集到鉴定的新型高温性的合金。由于高温性质的有希望的一组,以进一步研究。从室温(RT)到927°C(1200 k)的Rus光谱以及Dira-Tometry测量的热膨胀行为提供给坚固,开放的贝叶斯推理代码,用于同时估计:三个单晶弹性常数,三个晶体轴Misori-entation参数,以及噪声参数。本研究是在升高温度下的贝叶斯RUS方法的第一次应用,以及第一个表征SB-CONI-10 +。弹性常数的单调减少(C_(11),C_(12),C_(44))来自(236.4,150.8,134.1)GPA至(190.7,138.1,95.2)GPA和来自A的弹性各向异性的15%增加在从RT至927℃加热时观察到3.131→3.618,高于600℃(873 k)的软化率增加。

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