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Micromechanical characterisation of the influence of rhenium on the mechanical properties in nickel-base superalloys

机译:nickel对镍基高温合金力学性能的影响的微观力学表征

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摘要

Three commercial single-crystalline nickel-base superalloys CMSX-6, CMSX-4 and CMSX-10 which have an increasing amount of rhenium and tungsten were investigated and the micromechanical properties such as hardness and modulus of elasticity of the individual phases were tested in a nanoindenting atomic force microscope. The hardness of the matrix phase increases with the concentration of refractory elements, whereas only a small change in the hardness of the precipitates was found. The hardness ratio of precipitate and matrix decreases significantly with increasing rhenium content in the initial condition and after heat treatment. In the initial condition the hardness ratio ranges from 1.31 for CMSX-10 to 1.41 for CMSX-4 and 1.67 for CMSX-6. Moreover, the modulus of elasticity increases with the concentration of refractory elements.
机译:研究了三种commercial和钨含量增加的商品化单晶镍基高温合金CMSX-6,CMSX-4和CMSX-10,并在相同的温度下测试了微机械性能,如硬度和各相的弹性模量。纳米压痕原子力显微镜。基质相的硬度随难熔元素的浓度增加而增加,而沉淀物的硬度只有很小的变化。在初始条件下和热处理后,随着and含量的增加,析出物和基体的硬度比显着降低。在初始条件下,硬度比范围从CMSX-10的1.31到CMSX-4的1.41和CMSX-6的1.67。此外,弹性模量随耐火元素浓度的增加而增加。

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