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變截面TA15鈦合金大鍛件初生α相控制與定量估算方法
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國家自然科學(xué)基金資助項目(11472054)


Quantitative Calculation and Control of Primary α Phase for the Variable Sections in Large TA15 Titanium Alloy Forging
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    摘要:

    研究了TA15鈦合金變截面大型鍛件初生α相含量與室溫和500℃高溫拉伸性能的關(guān)系,系統(tǒng)分析了TA15鈦合金兩相區(qū)鍛造工藝窗口內(nèi)鍛造加熱溫度、冷卻速率、截面厚度、加熱火次等參數(shù)對初生α相含量的影響規(guī)律。結(jié)果表明:加熱溫度高、冷卻速率快、截面厚度薄、加熱火次多,初生α相含量低;反之亦然,并給出了定量關(guān)系。對于大型復(fù)雜TA15鈦合金鍛件的制備,在制訂工藝時必須充分考慮各種因素的影響,在了解初生α相含量對性能影響規(guī)律的基礎(chǔ)上,根據(jù)服役性能要求,控制初生α相的含量。

    Abstract:

    For a large and complex shaped TA15 titanium alloy forging,the content of primary α phase generally changes with the size of the different sections and would significantly affects the mechanical properties whenever at the room temperature and high temperature. The relationship of the content of primary α phase and tensile strength at the room temperature and 500 ℃ was measured and realized in the paper. In order to control the α phase content,the influences of the forging process parameters on the content of α phase were systematically studied. The parameters included heating temperature,cooling way,section thickness and heating times within the selectable process window.The result shows that α phase content decreases with the increase of heating temperature and cooling rate,heating times,and also decreases with the thinning of the sample thickness and vice versa. Finally,the equations were obtained for calculating the content of the α phase resulted from the forging process parameters. Various factors on αphase content should be considered when we make a process route to fabricate a large forging. Therefore,to meet the requirement of the in-serve performance,primary α content control could be feasible relying on the relationship between the proportion of α phase and the mechanical properties.

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張旺峰;王玉會;李興無.變截面TA15鈦合金大鍛件初生α相控制與定量估算方法[J].鈦工業(yè)進展,2020,37(1):37-41.

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  • 在線發(fā)布日期: 2024-02-22
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