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熱處理工藝對Ti60合金持久性能的影響
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Effect of Heat Treatment on Rupture Property of Ti60 Alloy
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    摘要:

    將α+β兩相區(qū)變形的Ti60合金鍛件分別在950、995、1 015℃進(jìn)行固溶處理,研究了固溶溫度和冷卻方式對Ti60合金微觀組織及持久性能的影響。結(jié)果表明:Ti60合金的顯微組織和持久性能受固溶溫度和冷卻方式的雙重影響。950℃固溶處理,冷卻方式對合金組織的影響較小,空冷試樣的持久性能略低于油冷試樣。995℃和1 015℃固溶處理,隨溫度的升高組織中的初生α相含量降低,空冷組織中的初生α相尺寸略大于油冷組織;在實(shí)驗(yàn)溫度范圍內(nèi),Ti60合金的持久性能隨固溶溫度的升高而升高,且在相同固溶溫度下,空冷試樣在600℃、340 MPa下的持久壽命明顯高于油冷試樣。次生α相的含量和α板條/α集束的尺寸是影響Ti60合金持久壽命的重要因素,合金的持久壽命與二者成正相關(guān)。

    Abstract:

    The effects of solution temperature and cooling method on the microstructure and rupture property of Ti60 alloy were studied. The Ti60 alloy forging was deformed in the α + β two-phase field. And the small samples cutted from the rolling ring were heat-treated at 950 ℃,995 ℃ and 1 015 ℃ . The results show that the microstructure and rupture property are affected by both the solution treatment and the cooling method. After 950 ℃ solid solution treatment,the cooling method has little effect on the microstructure,and the rupture property of air-cooled sample is slightly lower than that of oil-cooled sample. At 995 ℃ and 1 015 ℃,the content of primary α phase decreases with the increase of solution temperature,and the size of primary α phase in the air-cooled sample is slightly larger than that in the oil-cooled sample. In this temperature range,the rupture property of Ti60 alloy increases with the increase of solution temperature,and the rupture property of air-cooled sample at 600 ℃ and 340 MPa is significantly higher than that of oil-cooled sample. The content of secondary α phase and the size of α laths/colony are important factors influencing the rupture life of Ti60 alloy and they are positively related.

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孫昊;劉征;趙子博;劉建榮;王清江.熱處理工藝對Ti60合金持久性能的影響[J].鈦工業(yè)進(jìn)展,2020,37(1):22-26.

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  • 在線發(fā)布日期: 2024-02-22
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