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新型鎳基單晶高溫合金CSU-B2的顯微組織與力學(xué)性能
發(fā)布人:上海艾荔艾金屬材料有限公司bt990.com.cn
更新時間:2015-10-31
采用高通量的合金設(shè)計方法設(shè)計一種新型鎳基單晶高溫合金CSU-B2,并對該合金進行了一系列的研究。
新型鎳基單晶高溫合金的顯微組織與力學(xué)性能Microstructure and mechanical properties of new nickel-base single crystal superalloy
采用高通量的合金設(shè)計方法設(shè)計一種新型鎳基單晶高溫合金CSU-B2,并對該合金進行了一系列的研究。結(jié)果表明:該合金在鑄態(tài)下樹枝晶分布均勻,枝晶間距約為500μm,沒有三次枝晶出現(xiàn)。通過對合金進行固溶和時效處理,合金中的γ′析出相呈現(xiàn)方塊狀,平均顆粒尺寸為0.5~0.8μm。在1100和1150 ℃下對合金的抗氧化性能進行研究發(fā)現(xiàn),試樣單位面積質(zhì)量隨時間的變化遵循類拋物線的規(guī)律,在氧化層的下面都存在著γ′相消失的區(qū)域。最后對合金的高溫拉伸性能進行了表征,在760 ℃時,合金的屈服強度為706MPa;在980℃時,合金的屈服強度為484MPa。在兩個溫度下,試樣的斷裂為兩種不同的機制。
A new nickel-base single crystal superalloy named CSU-B2 was designed by high-throughput alloy design method and a series of investigations were done to characterize the superalloy. The results show that the primary dendrites are uniformly distributed and the spacing size in the as-cast alloy is about 500 μm, where tertiary dendrite is absent. After solution and ageing treatments, theγ′ prime precipitates are cuboidal-shaped and the average size is 0.5-0.8μm. The oxidation-resistance property of the new alloy is evaluated at 1100 and 1150 ℃, the results show that the oxide growth of the new alloy obeys the parabolic law for both under isothermal and cyclic oxidation, and there both have aγ′ free zone under the oxide scale. The yield strengths under the temperature of 760 and 980 ℃are measured to be 706 and 484 MPa, respectively, and two different mechanisms govern the failure processes.
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