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Influence of Phosphorus Microalloying on the Microstructure and Mechanical Properties of DA761 Superalloy

机译:磷微合金化对DA761高温合金组织和力学性能的影响

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Effects of phosphorus microalloying on the microstructure and mechanical properties of direct-aging DA761 alloy have been studied. The aim of this work is to find a new way to develop a higher performance of wrought superalloy. The optimum addition of phosphorus in DA761 alloy is determined by investigating effects of phosphorus and boron on the microstructure and properties of DA761 alloy, that are compared to GH761 alloy treated by standard heat treatment. The stability of microstructure and properties of fine-grain DA761 alloy with optimum content of phosphorus is proved by studying the evolution of microstructure and properties of the alloy after long-term high temperature ageing. The practicability of phosphorus microalloying in improving the mechanical properties of DA761 alloy is verified by smelting a 500 kg ingot and detecting the microstructure and properties of billet near the size of engine disk. The results verify the phosphorus microalloying and fine-grain direct aging treatment in improving commercial GH761 alloy. Mechanism of phosphorus microalloying is also discussed.
机译:研究了磷微合金化对直接时效DA761合金组织和力学性能的影响。这项工作的目的是找到一种新的方法来开发更高性能的锻造高温合金。通过研究磷和硼对DA761合金的组织和性能的影响来确定DA761合金中磷的最佳添加量,并将其与标准热处理后的GH761合金进行比较。通过研究长期高温时效后合金的组织和性能的演变,证明了磷含量最佳的细晶粒DA761合金的组织和性能的稳定性。磷微合金化在改善DA761合金力学性能方面的实用性通过熔炼500 kg铸锭并检测接近发动机盘尺寸的钢坯的组织和性能来验证。结果证明了磷微合金化和细晶粒直接时效处理在改善工业GH761合金中的应用。还讨论了磷微合金化的机理。

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