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魏培,合肥工業(yè)大學(xué)副教授/碩士生導(dǎo)師,“黃山學(xué)者”學(xué)術(shù)骨干,中國(guó)材料研究學(xué)會(huì)增材制造分會(huì)委員。2018年6月博士畢業(yè)于西安交通大學(xué),專業(yè)機(jī)械工程,研究方向:金屬激光增材制造;2018年6月年月入職西安交通大學(xué)任助理教授,同時(shí)任職于國(guó)家增材制造創(chuàng)新中心,研究方向:金屬高能束增材制造;2022年6月進(jìn)入合肥工業(yè)大學(xué)機(jī)械工程學(xué)院工作,從事增材制造相關(guān)教學(xué)與科研工作。主要開展了金屬增材制造技術(shù)的材料研發(fā)、成形工藝及多尺度多物理場(chǎng)數(shù)值仿真等技術(shù)研究,主持并參與了中國(guó)博士后科學(xué)基金面上項(xiàng)目、國(guó)防“973”、科技部重點(diǎn)研發(fā)計(jì)劃、軍委軍工委、國(guó)家重點(diǎn)實(shí)驗(yàn)室開放基金、廣東省科技發(fā)展專項(xiàng)資金等項(xiàng)目,以第一或通訊作者發(fā)表SCI論文30余篇,申請(qǐng)發(fā)明專利20余項(xiàng);擔(dān)任Additive Manufacturing、Composites Part B、Materials Science and Engineering A等期刊審稿人。
研究方向
1、金屬增材制造(3D打。
2、多尺度多物理場(chǎng)仿真
3、超材料/超結(jié)構(gòu)一體化成形
4、材料設(shè)計(jì)與分析
5、智能制造與智能控制
部分科研項(xiàng)目
1、中國(guó)博士后科學(xué)基金面上資助,鋁合金石墨烯摻雜激光選區(qū)熔化成形強(qiáng)韌化機(jī)制,2018/12-2021/12,結(jié)題,主持
2、江蘇省特種設(shè)備安全監(jiān)督檢驗(yàn)研究院委托項(xiàng)目,202011122,石墨烯納米復(fù)合高強(qiáng)鋼的SLM成形強(qiáng)韌化研究,2020/10-2022/09,結(jié)題,主持
3、凝固技術(shù)國(guó)家重點(diǎn)實(shí)驗(yàn)室開放基金,SKLSP202018,ZrO2-GNPs/AlSi10Mg復(fù)合材料SLM成形熔凝機(jī)理及其界面形成機(jī)制研究,2020/01-2021/12,結(jié)題,聯(lián)合主持
4、中國(guó)運(yùn)載火箭技術(shù)研究院航天創(chuàng)新基金,CALT201909,石墨烯增強(qiáng)NiCrWFeTi高熵合金增材制造工藝及強(qiáng)韌化,2019/01-2020/12,結(jié)題,聯(lián)合主持
5、南京晨光集團(tuán)橫向項(xiàng)目,TB2020080096,航天用智能材料的4D打印技術(shù)情報(bào)研究項(xiàng)目,2020/09-2021/03,結(jié)題,聯(lián)合主持
6、科學(xué)挑戰(zhàn)專題極端制造領(lǐng)域課題,TZ2018006-0301-01,高比重鎢合金材料熔凝特性及其復(fù)雜曲面構(gòu)件成型機(jī)理與規(guī)律,2017/01-2022/12,在研,參與
7、科技部重點(diǎn)研發(fā)技術(shù),JZM202010007,大尺寸XXXX電子束增材制造XXXX,2020/01-2022/12,在研,參與
8、國(guó)防XXXX項(xiàng)目,XXXX,XXXX增材制造,2020/01-2023/12,在研,參與
9、軍委軍工委基礎(chǔ)加強(qiáng)項(xiàng)目,2020-JCJQ-XX,太空在軌XXXX增材制造技術(shù),2020/01-2024/12,在研,參與
部分學(xué)術(shù)論文
[1] Wei Pei, Chen Zhen, Yao Sen, et al. Enhancing strength and ductility of graphene and ZrO2 nanoparticles hybrid reinforced AA2024 composite fabricate by laser powder bed fusion. Composites Part A: Applied Science and Manufacturing, 2024: 108378.
[2] Wei Pei, Chen Zhen, Zhang Shuzhe, et al. Microstructure and mechanical properties of graphene and nano-zirconia reinforced AlSi10Mg composite fabricated by laser powder bed fusion. Materials Science and Engineering: A, 2023: 144574.
[3] Zhang Shuzhe, Wei, Pei, Chen Zhen, Li Bobo, Huang Ke, Zou Yatong, Lu Bingheng,Graphene/ZrO2/aluminum alloy composite with enhanced strength and ductility fabricated by laser powder bed fusion. Journal of Alloy and Compounds, 2022, 910:164941.
[4] Chen Zhen, Wei Pei, Chen Hanfeng, Chen Xinggang, Ruan Yi, Zhou Wenzheng, Lu Sujun, Laser Powder Bed Fusion of K418 Superalloy: Process, Microstructure, Texture Feature, and Mechanical Property. Metals, 2022, 12(4):611.
[5] Zhang Shuzhe, Chen Zhen, Wei Pei, Liu Wenjie, Zou Yatong, Lei Yunpei, Yao Sen,Zhang Siwei, Lu Bingheng, Zhang Lijuan, Wear properties of graphene/zirconia biphase nano-reinforced aluminium matrix composites prepared by SLM. Materials Today Communications, 2022, 30: 103009.
[6] Zhang Shuzhe, Chen Zhen, Wei Pei, Huang Ke, Zou Yatong,Yao Sen, Li Min, Lu Bingheng, Xing Jiandong, Microstructure and properties of a nano-ZrO2-reinforced AlSi10Mg matrix composite prepared by selective laser melting. Materials Science and Engineering A, 2022, 838(-): 142792.
[7] Pei Wei, Zhen Chen, Shuzhe Zhang. Xuewei Fang, Bingheng Lu, Lijuan Zhang, Zhengying Wei, Effect of T6 heat treatment on the surface tribological and corrosion properties ofAlSi10Mg samples produced by selective laser melting, Materials Characterization, 2021, 171:110769.
[8] Zhang Shuzhe, Lei Yunpei, Chen Zhen, Wei Pei, Lu Bingheng, Effect of laser energy density on the microstructure andtexture evolution of hastelloy-x alloy fabricated by laser powder bed fusion. Materials, 2021, 14(15), 4305.
[9] Chen Zhen, Wei Pei et al. Graphene reinforced nickel-based superalloy composites fabricated by additive manufacturing. Materials Science and Engineering: A, 2020, 769:138484.
[10] Wei Pei, Wei Zhengying, Chen Zhen, Du Jun, He Yuyang, Li Junfeng, Zhou Yatong,The AlSi10Mg samples produced by selective laser melting: single track, densification, microstructure and mechanical behavior. Applied Surface Science, 2017, 408:38-50.
部分發(fā)明專利
[1] 陳禎,魏培,張樹哲,盧秉恒等.一種應(yīng)用于增材制造的氣氛保護(hù)裝置, CN201811564387.8
[2] 陳禎,魏培,張樹哲等.一種石墨烯合金納米復(fù)合材料制備方法和SLM成形工藝, CN201811557886.4
[3] 陳禎,魏培,張樹哲等.一種多能場(chǎng)增材制造成形系統(tǒng), CN201811564118.1
[4] 張樹哲,陳禎,魏培等.一種用于金屬激光選區(qū)熔化成形工藝的掃描方法, CN201811416096.4
[5] 鄒亞桐,陳禎,張樹哲,魏培等.一種增材制造設(shè)備成形缸結(jié)構(gòu)及成型方法,CN201910294319.2
[6] 陳禎,鄒亞桐,張樹哲,魏培等.一種多工位環(huán)形鋪粉激光選區(qū)熔化成型設(shè)備,CN201811231332.5
[7] 陳禎,楊喜剛,張樹哲,魏培等.一種高強(qiáng)韌高熵合金及其制備方法,CN201811408539.5
[8] 盧秉恒,陳禎,張麗娟,魏培等,一種增材制造動(dòng)態(tài)鋪粉系統(tǒng),CN201811563473.7
[9] 盧秉恒,陳禎,鄒亞桐,張樹哲,魏培等.一種環(huán)形連續(xù)鋪粉結(jié)構(gòu)及增材制造成形設(shè)備. PCT/CN2019/115794 (國(guó)際專利)
個(gè)人主頁(yè):http://jxxy.hfut.edu.cn/2018/1023/c8975a288856/page.htm
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