0>//ND),導(dǎo)致其織構(gòu)分布更分散;爐冷條件下由于發(fā)生了強(qiáng)烈變體選擇而出現(xiàn)織構(gòu)遺傳現(xiàn)象,導(dǎo)致更強(qiáng)的相變織構(gòu)。因此可以通過(guò)提高冷卻速率來(lái)抑制變體選擇,進(jìn)而弱化相變織構(gòu)。"/>

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冷卻介質(zhì)對(duì)商業(yè)純鈦 βα 相轉(zhuǎn)變組織及織構(gòu)的影響
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作者單位:

1.重慶大學(xué) 材料科學(xué)與工程學(xué)院 國(guó)際輕合金聯(lián)合實(shí)驗(yàn)室(MOE),重慶 400044;2.攀鋼研究院,四川 成都 610031

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基金項(xiàng)目:

National Natural Science Foundation of China (51421001); Fundamental Research Funds for the Central Universities (2020CDJDPT001)


Influence of Different Cooling Mediums on βα Phase Transformation Microstructure and Texture in Commercially Pure Ti
Author:
Affiliation:

1.International Joint Laboratory for Light Alloys (Ministry of Education), College of Materials Science and Engineering, Chongqing University, Chongqing 400044, China;2.Panzhihua Iron and Steel Research Institute, Chengdu 610031, China

Fund Project:

National Natural Science Foundation of China (51421001); Fundamental Research Funds for the Central Universities (2020CDJDPT001)

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    摘要:

    利用OM、ECC、EBSD、TEM等表征技術(shù)和顯微硬度實(shí)驗(yàn)研究了經(jīng)β固溶處理的商業(yè)純鈦板材在βα相變過(guò)程中不同冷卻介質(zhì)對(duì)其組織演變、變體選擇、織構(gòu)遺傳及力學(xué)性能的影響。結(jié)果表明:隨著冷卻速率的降低,相變組織依次呈細(xì)針狀α′馬氏體(水冷和液氮冷)、Widmanst?tten組織(空冷)及粗大晶粒(爐冷),且冷卻速率越快,則轉(zhuǎn)變組織越細(xì),進(jìn)而其硬度值越高。在βα冷卻過(guò)程中,只有爐冷條件下由于出現(xiàn)了部分不滿(mǎn)足Burgers關(guān)系的取向,導(dǎo)致其并不嚴(yán)格遵循Burgers取向關(guān)系。與原始組織相比,水冷和液氮冷條件下由于出現(xiàn)新的織構(gòu)成分(<0001>//TD、<110>//ND),導(dǎo)致其織構(gòu)分布更分散;爐冷條件下由于發(fā)生了強(qiáng)烈變體選擇而出現(xiàn)織構(gòu)遺傳現(xiàn)象,導(dǎo)致更強(qiáng)的相變織構(gòu)。因此可以通過(guò)提高冷卻速率來(lái)抑制變體選擇,進(jìn)而弱化相變織構(gòu)。

    Abstract:

    The effect of cooling medium on microstructure evolution, variant selection and texture inheritance along with mechanical properties in a recrystallized commercially pure Ti sheet after β-solution treatment was investigated by combined use of optical microscopy (OM), electron channeling contrast (ECC) imaging, electron backscatter diffraction (EBSD) techniques, transmission electron microscopy (TEM) and micro-hardness test. It is found that with the decrease of cooling rate, fine needle-like α′ martensite (in water and liquid nitrogen), Widmanst?tten (in air), and coarse-grain microstructures (in furnace) are observed in turn. Additionally, the faster cooling rate results in a finer transformed structure accompanied with an attendant higher hardness value. Analyses for crystallographic orientations reveal that the Burgers orientation relationship (BOR) is strictly obeyed during the βα cooling except for the β-furnace-cooled specimen with appearance of other misorientations disobeying the BOR. As for texture characteristics, firstly, the texture distribution is largely scattered compared with the initial one and new orientation components of <0001>//TD and <>//ND appear upon the water and liquid nitrogen quenching. Secondly, the texture inheritance phenomenon occurs in furnace cooling condition because of stronger variant selection, then leading to a stronger transformation texture. Results suggest that raising cooling rates can be more feasible to weaken the transformation texture by suppressing the variant selection.

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楊曉玲,王瑩,彭琳,李軍,欒佰峰.冷卻介質(zhì)對(duì)商業(yè)純鈦 βα 相轉(zhuǎn)變組織及織構(gòu)的影響[J].稀有金屬材料與工程,2022,51(6):1957~1963.[Yang Xiaoling, Wang Ying, Peng Lin, Li Jun, Luan Baifeng. Influence of Different Cooling Mediums on βα Phase Transformation Microstructure and Texture in Commercially Pure Ti[J]. Rare Metal Materials and Engineering,2022,51(6):1957~1963.]
DOI:10.12442/j. issn.1002-185X.20210316

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  • 收稿日期:2021-04-12
  • 最后修改日期:2021-06-23
  • 錄用日期:2021-07-09
  • 在線(xiàn)發(fā)布日期: 2022-06-29
  • 出版日期: 2022-06-29