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Enhancing elevated temperature strength of copper containing aluminium alloys by forming L1(2) Al3Zr precipitates and nucleating theta `' precipitates on them

机译:通过形成L1(2)Al3Zr析出物并在其上形核theta析出物来提高含铜铝合金的高温强度

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摘要

Strengthening by precipitation of second phase is the guiding principle for the development of a host of high strength structural alloys, in particular, aluminium alloys for transportation sector. Higher efficiency and lower emission demands use of alloys at higher operating temperatures (200 degrees C-250 degrees C) and stresses, especially in applications for engine parts. Unfortunately, most of the precipitation hardened aluminium alloys that are currently available can withstand maximum temperatures ranging from 150-200 degrees C. This limit is set by the onset of the rapid coarsening of the precipitates and consequent loss of mechanical properties. In this communication, we present a new approach in designing an Albased alloy through solid state precipitation route that provides a synergistic coupling of two different types of precipitates that has enabled us to develop coarsening resistant high-temperature alloys that are stable in the temperature range of 250-300 degrees C with strength in excess of 260 MPa at 250 degrees C.
机译:通过第二相的沉淀来强化是开发多种高强度结构合金,尤其是用于交通运输业的铝合金的指导原则。更高的效率和更低的排放要求在更高的工作温度(200摄氏度至250摄氏度)和应力下使用合金,尤其是在发动机零件的应用中。不幸的是,当前可用的大多数沉淀硬化铝合金都可以承受150-200摄氏度的最高温度。该极限是由沉淀物的快速粗化和随之而来的机械性能损失所决定的。在本交流中,我们提出了一种通过固态沉淀途径设计Al基合金的新方法,该方法提供了两种不同类型沉淀物的协同耦合,这使我们能够开发在温度范围内稳定的耐粗化高温合金。 250-300摄氏度,在250摄氏度时强度超过260 MPa。

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