[1]郝夢(mèng)園,李沛,王棟.相場(chǎng)模擬輔助鈦合金多尺度微觀組織設(shè)計(jì)及性能優(yōu)化[J].中國(guó)材料進(jìn)展,2022,41(07):497-507.[doi:10.7502/j.issn.1674-3962.202112021]
HAO Mengyuan,Li Pei,WANG Dong.Heterogeneous Microstructure Design and Property Optimization of Titanium Alloys Assisted by Phase Field Simulation[J].MATERIALS CHINA,2022,41(07):497-507.[doi:10.7502/j.issn.1674-3962.202112021]
點(diǎn)擊復(fù)制
相場(chǎng)模擬輔助鈦合金多尺度微觀組織設(shè)計(jì)及性能優(yōu)化(
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中國(guó)材料進(jìn)展[ISSN:1674-3962/CN:61-1473/TG]
- 卷:
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41
- 期數(shù):
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2022年第07期
- 頁(yè)碼:
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497-507
- 欄目:
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- 出版日期:
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2022-07-30
文章信息/Info
- Title:
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Heterogeneous Microstructure Design and Property Optimization of Titanium Alloys Assisted by Phase Field Simulation
- 文章編號(hào):
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1674-3962(2022)07-0497-11
- 作者:
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郝夢(mèng)園1; 2; 李沛3; 王棟1; 2
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(1. 西安交通大學(xué)前沿科學(xué)技術(shù)研究院,陜西 西安 710049) (2. 西安交通大學(xué) 金屬材料強(qiáng)度國(guó)家重點(diǎn)實(shí)驗(yàn)室,陜西 西安 710049) (3. 西安熱工研究院有限公司 清潔低碳熱力發(fā)電系統(tǒng)集成及運(yùn)維國(guó)家工程研究中心,陜西 西安 710032)
- Author(s):
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HAO Mengyuan1; 2; Li Pei3; WANG Dong1; 2
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(1. Frontier Institute of Science and Technology, Xi’an Jiaotong University, Xi’an 710049, China) (2. State Key Laboratory for Mechanical Behavior of Materials, Xi’an Jiaotong University, Xi’an 710049, China) (3. Thermal Power Research Institute Co. Ltd., National Engineering Research Center of Integration and Maintenance of Clean and Low-Carbon Thermal Power Generation System, NERC of TPGS, Xi’an 710032, China)
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- 關(guān)鍵詞:
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鈦合金; 相場(chǎng)模擬; 雙步時(shí)效; 連續(xù)冷卻; 多尺度微觀組織
- Keywords:
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titanium alloy; phase field simulation; two-step aging; continuous cooling; heterogeneous microstructure
- 分類號(hào):
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TG146.23
- DOI:
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10.7502/j.issn.1674-3962.202112021
- 文獻(xiàn)標(biāo)志碼:
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A
- 摘要:
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在科學(xué)研究和工程應(yīng)用中,同時(shí)提高結(jié)構(gòu)材料的強(qiáng)度和塑性仍然面臨著巨大的挑戰(zhàn)。根據(jù)相場(chǎng)模擬微觀組織指導(dǎo)模型材料設(shè)計(jì)的思路,提出了通過(guò)激活不同的形核機(jī)制設(shè)計(jì)合金多尺度微觀組織的新方法,進(jìn)而克服結(jié)構(gòu)材料強(qiáng)度和塑性不匹配效應(yīng)。以雙相鈦合金為例,將真實(shí)熱力學(xué)數(shù)據(jù)庫(kù)與相場(chǎng)模型相耦合,探索了不同熱處理工藝對(duì)合金微觀組織的影響規(guī)律,提出了選擇合適溫度和時(shí)間的雙步時(shí)效和調(diào)控冷速的熱處理方案;谀M結(jié)果,實(shí)驗(yàn)時(shí)在Ti1023合金中分別提出了650 ℃/10 min+550 ℃/180 min雙步時(shí)效工藝、0.3125 ℃/min連續(xù)冷卻的熱處理工藝,并產(chǎn)生了多尺度析出組織。進(jìn)一步的力學(xué)性能測(cè)試表明,相較于傳統(tǒng)的均勻組織,新獲得的多尺度微觀組織具有更好的強(qiáng)度與塑性匹配性能。所提出的基于相變理論的熱處理工藝通過(guò)調(diào)控多尺度析出組織來(lái)優(yōu)化性能的思路,為其它結(jié)構(gòu)材料的性能提高提供了方向。
- Abstract:
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Improving the strength and ductility of structural materials simultaneously is still facing great challenges in scientific research and engineering applications. With the idea of guiding the design of model materials by phase field simulating microstructure, this paper proposes new methods for designing heterogeneous microstructure by activating different nucleation mechanisms to overcome the trade-off strength and ductility in structural material. Taking dual-phase titanium alloy as an example, this paper explores the influence of different heat treatment processes on the microstructure of the alloy by coupling the real thermodynamic database and the phase field model, and proposes a two-step aging that selects an appropriate aging temperature and time and a heat treatment scheme that regulates the cooling rate. Based on the simulation results, in the experiment, two-step aging (650 ℃/10 min+550 ℃/180 min) and continuous cooling (0.3125 ℃/min) were proposed in the Ti1023 alloy, and multi-scale heterogeneous microstructures were produced in the β titanium alloy. Further mechanical properties tests showed that the newly obtained heterogeneous microstructures have better strength-ductility matching properties compared to the conventional homogeneous microstructure. The idea of optimizing the properties by modulating the multiscale precipitation microstructure through the heat treatment process based on the phase transition theory proposed in our work provides a direction for the performance improvement of other structural materials.
備注/Memo
- 備注/Memo:
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收稿日期:2021-12-27 修回日期:2022-03-22 基金項(xiàng)目:國(guó)家自然科學(xué)基金資助項(xiàng)目(52171012)第一作者:郝夢(mèng)園,女,1995年生,博士研究生, Email:myhaoxjtu@163.com 通訊作者:王棟,男,1983年生,教授,博士生導(dǎo)師, Email:wang_dong1223@mail.xjtu.edu.cn
更新日期/Last Update:
2022-06-29