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首页> 外文期刊>Metallurgical and Materials Transactions A >Effect of orientation on the tensile and creep properties of coarse-grained INCONEL alloy MA754
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Effect of orientation on the tensile and creep properties of coarse-grained INCONEL alloy MA754

机译:取向对粗晶INCONEL合金MA754拉伸和蠕变性能的影响

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Elevated temperature tensile and creep-rupture tests were performed on INCONEL MA754 in longitudinal and transverse orientations at temperatures from 700°C to 1000°C. The transerve orientation was weaker and less ductile than the longitudinal orientation due to a higher grain boundary density perpendicular to the applied stress axis. This effect was especially pronounced in creep tests at 900°C and 1000°C. Threshold creep behavior was observed for the longitudinal orientation, with stress exponents ranging from 29 to 40. Stress exponents in the long transverse orientation ranged from 24 at 800°C to 5 at 1000°C, indicating a temperature-varying deformation mechanism. Creep ductility in the transverse orientation was extremely low, less than 1 pct for higher temperature, lower stress conditions. Failure in all transverse specimens was controlled by grain boundary separation. Even in the relatively weak transverse direction, the strength of MA754 compares favorably with other alloys being considered for advanced power plant applications.
机译:在700°C至1000°C的温度下,对INCONEL MA754进行了纵向和横向取向的高温拉伸和蠕变断裂测试。由于垂直于外加应力轴的晶界密度较高,所以与纵向相比,横向取向较弱,并且延展性较差。在900°C和1000°C的蠕变测试中,这种影响尤其明显。观察到纵向取向的阈值蠕变行为,应力指数在29至40范围内。长横向取向的应力指数在800°C时为24到1000°C时为5,表明温度随变形而变化。横向取向的蠕变延展性极低,对于较高温度,较低应力条件,小于1 pct。所有横向试样的破坏都通过晶界分离来控制。即使在相对较弱的横向方向上,MA754的强度也可与考虑用于高级电厂应用的其他合金相媲美。

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