
趙亦希
長(zhǎng)聘教授所在系所:薄板結(jié)構(gòu)制造研究所
辦公電話(huà):021-34206304
電子郵件:yxzhao@sjtu.edu.cn
通訊地址:上海交大機(jī)械與動(dòng)力工程學(xué)院A樓623室
個(gè)人主頁(yè):暫無(wú)
教育背景
2002-2007上海交通大學(xué)車(chē)輛工程專(zhuān)業(yè)博士
1995-1998上海交通大學(xué)車(chē)輛工程專(zhuān)業(yè)碩士
1989-1993上海交通大學(xué)機(jī)械制造與設(shè)備專(zhuān)業(yè)學(xué)士
工作經(jīng)歷
2019.01- 上海交通大學(xué)機(jī)械與動(dòng)力工程學(xué)院 教授
2002.09-2018.12 上海交通大學(xué)機(jī)械與動(dòng)力工程學(xué)院 副教授
1997.09-2002.08 上海交通大學(xué)機(jī)械與動(dòng)力工程學(xué)院 講師
1993.08-1997.08 上海交通大學(xué)機(jī)械工程系基礎(chǔ)部 助教
研究方向
1、金屬塑性成形理論及數(shù)值仿真
2、增量成形技術(shù)與智能規(guī)劃
3、薄板制造質(zhì)量智能管控
4、先進(jìn)成形新工藝方法與裝備
課程名稱(chēng):工程材料 學(xué)時(shí)數(shù):48 學(xué)分:3
課程名稱(chēng):制造工藝 學(xué)時(shí)數(shù):64 學(xué)分:4
科研項(xiàng)目
2024.01-2027.12 交叉筋薄壁筒體展成旋擠材料流動(dòng)機(jī)理及成形精度調(diào)控,國(guó)家自然基金面上項(xiàng)目, 52375356 主持
2023.11-2026.10 基于多信息維度的數(shù)字化精益制造技術(shù)研究與應(yīng)用,廣西科技重大專(zhuān)項(xiàng)(廣西新能源汽車(chē)實(shí)驗(yàn)室專(zhuān)項(xiàng)),交大負(fù)責(zé)
2022.01-2022.12 薄板加工成形內(nèi)應(yīng)力生成機(jī)理及控制方法研究,中國(guó)船舶集團(tuán)有限公司-上海交通大學(xué)海洋裝備前瞻創(chuàng)新聯(lián)合基金,主持
2020.12-2025.11 帶多級(jí)縱橫筋超鋁合金短殼旋擠成形機(jī)理與流變均勻性調(diào)控,國(guó)家重點(diǎn)研發(fā)計(jì)劃 2020YFA0711102,課題負(fù)責(zé)人
2021.01-2021.12 居住艙室及公共區(qū)域薄板矯平工藝研究,工信部高技術(shù)船舶智能制造專(zhuān)項(xiàng)課題負(fù)責(zé)
2019.03-2019.12 一院高校聯(lián)合創(chuàng)新基金 CALT201809,主持
2019.01-2022.12 鋁合金帶筋薄壁構(gòu)件超聲輔助旋壓成形材料流動(dòng)行為及工藝控制,國(guó)家自然科學(xué)基金 51875352 主持
2018.08-2020.12 新能源汽車(chē)整車(chē)制造數(shù)字化車(chē)間集成標(biāo)準(zhǔn)研究與試驗(yàn)驗(yàn)證,工信部智能制造標(biāo)準(zhǔn),交大主持
2014.01-2017.12 大型鋁鋰合金薄壁構(gòu)件電輔助雙面多點(diǎn)增量成形材料流變行為及工藝研究,國(guó)家自然基金 51375308,主持
2014.01-2017.12 高徑厚比曲面構(gòu)件旋壓成形失穩(wěn)機(jī)理及流變均勻控制,國(guó)家973子課題2014CB046600,學(xué)術(shù)骨干
2011.01-2013.12 高強(qiáng)度雙相鋼汽車(chē)板成形剪切斷裂機(jī)理及評(píng)價(jià)準(zhǔn)則,國(guó)家自然基金51075267,主持
2011.04-2014.04 面向中美清潔能源合作的電動(dòng)汽車(chē)前沿技術(shù)研究,科技部中美合作項(xiàng)目,主要完成人
2007.10-2009.09 車(chē)身覆蓋件柔性輥壓包邊過(guò)程仿真與工藝路徑優(yōu)化技術(shù)研究,國(guó)家863計(jì)劃,項(xiàng)目副組長(zhǎng)
2020.04-2020.11 標(biāo)準(zhǔn)技術(shù)管理專(zhuān)項(xiàng)——標(biāo)準(zhǔn)化文化建設(shè)相關(guān)問(wèn)題研究,國(guó)家市場(chǎng)監(jiān)管總局,主持
2018.11-2021.12 共建上海交通大學(xué)機(jī)械與動(dòng)力工程學(xué)院— 敏實(shí)集團(tuán) 汽車(chē)零部件輕量化 聯(lián)合實(shí)驗(yàn)室,主持
2018.01-2018.06 上海市十年質(zhì)量狀況分析,上海市質(zhì)監(jiān)局,主持
2017.06-2018.02 鋁合金鏈接試驗(yàn),上汽乘用車(chē)技術(shù)中心,主持
2017.01-2017.12 翻邊件質(zhì)量提升研究,寧波信泰機(jī)械有限公司,主持
2017.01-2017.12 Q7后三角擠出鋁型材沖壓成型工藝研究,寧波敏實(shí)集團(tuán),主持
2016.03-2017.02 新能源汽車(chē)鋁合金車(chē)身結(jié)構(gòu)關(guān)鍵技術(shù),上汽乘用車(chē)技術(shù)中心,主持
2015.01-2017.12 Shear Fracture Mechanism and Modeling for Aluminum and Advanced High Strength Steels,美國(guó)福特汽車(chē)公司,主持
2015.03-2016.12 百萬(wàn)級(jí)平臺(tái)車(chē)身差異化制造質(zhì)量控制2mm工程,上汽通用五菱,參加
代表性論文專(zhuān)著
[1] Ouyang, YW; Zhao, YX; Li, SL; Cheng, X; Yu, ZQ, Study on the forming quality optimization in ribbed cylindrical parts during the ultrasonic-assisted spinning process, The International Journal of Advanced Manufacturing Technology.2026 142(1-2), 837-850
[2] Zhengwu Zhu; Yixi Zhao; Xinghan Chen; Zhongqi Yu; Shuangli Li. Analytic model of outer rib height for thin-walled cylindrical rings in spin-extrusion forming processing[J]. The International Journal of Advanced Manufacturing Technology. 2025,136, 2601–2621
[3] Linyuan Kou, Yixi Zhao, Guan Wang, Xuan Cheng, Yawen Ouyang, Zhongqi Yu, In situ study of micro-damage evolution in 2195 aluminum alloy, International Journal of Mechanical Sciences, 2025,306, 110848,
[4] Zhengwu Zhu, Yixi Zhao, Zhongqi Yu, et al. Rib folding defects prediction of spin-extrusion forming processing of thin-walled cylindrical rings with external cross ribs[J]. Journal of Manufacturing science and engineering-transactions of the ASME.2025, 147(8), 081010.
[5] Zhengwu Zhu, Yixi Zhao, Zhongqi Yu, et al. Research on the two-step method in spin extrusion forming for thin-walled cylindrical rings with two-level ribs[J] The International Journal of Advanced Manufacturing Technology. 2025,141(12): 6159-6178
[6] Zhongqi Yu, Fengqi Wang, Hanwei Jia, Linyuan Kou, Yixi Zhao, Effect of stress state on flow stress and grain refinement mechanisms during AA2195 hot deformation, Materials Science and Engineering: A,2025 , 945, 149035
[7] Linyuan Kou, Yixi Zhao ,Guan Wang, Fengqi Wang, Zhongqi Yu, Damage mechanisms of 2195-O aluminum alloy sheet induced by microstructural evolution during tensile deformation at different temperatures, Materials Science and Engineering: A, 2024, 914, 147096 2.
[8] Li SL, Zhu ZW, Zhao YX, Yu ZQ. Effect of ultrasonic attenuation characteristics on forming accuracy of ribbed cylindrical parts in ultrasonic-assisted spinning process[J]. International Journal of Advanced Manufacturing Technology,2024, 134, 887-907
[9] Yehui Meng , Zhongqi Yu, Yixi Zhao. Fold defects mechanism of aluminum alloy thin-walled stiffened cylinders during flow forming. Thin–Walled Structures, 2024 (201) 112018
[10] Li, S.L., Zhu, Z.W., Zhao, Y.X., Yu, Z.Q.,. Numerical simulation of ultrasonic field and its acoustoplastic influence on ribbed cylindrical parts in ultrasonic-assisted flow spinning process, Journal of Manufacturing Processes ,2024,121, 408-426.
[11] Xinghan Chen , Zhongqi Yu, Wei Chen, Fengqi Wang, Yixi Zhao, Zhongqin Lin. Study on generating rolling method for manufacturing cylindrical parts with external cross ribs[J]. Journal of Manufacturing Processes, 2024, 111: 1-20.
[12] Xuan Cheng, Yixi Zhao, Zhongqi Yu, Toolpath strategy study for improving geometric accuracy of large-size open-edge flanged parts in robot-assisted incremental flanging, Journal of Manufacturing Processes ,2024,114, 39-58.
[13] Li SL, Zhao YX, Cui JH. Ultrasonic energy attenuation characteristics in plastic deformation of 2219-O aluminum alloy[J]. International Journal of Advanced Manufacturing Technology, 2023, 125, 267-278.
[14] Zhongqi Yu; Yehui Meng; Yu Zhou; Yixi Zhao; Study on multi?roller flow forming process of aluminum alloy cylinders with cross ribs, The International Journal of Advanced Manufacturing Technology, 2023, 125, 3489–3501
[15] Cheng X, Zhao Y X, Yu Z Q, Chen W. Research on toolpath optimization of robot-assisted incremental flanging [C], IOP Conference Series: Materials Science and Engineering 2023, 1284 012038.
[16] Cheng X, Zhao Y X, Abd El-Aty A, Xunzhong Guo & Shuman You. Deformation behavior of convolute thin-walled AA6061-T6 rectangular tubes manufactured by the free bending forming technology [J]. The International Journal of Advanced Manufacturing Technology, 2022, 118(9): 2933-2948.
[17] Song Wu, Leitao Gao, Yusuke Matsuoka, Sherif Rashed, Yixi Zhao & Ninshu Ma, Multi-step toolpath approach of improving the dimensional accuracy of a non-axisymmetric part in incremental sheet forming and its mechanism analysis[J]. Journal of Mechanical Science and Technology, 2022(36),1975–1985
[18] Junhui Cui,Yixi Zhao, Xiaokai Li , Zhongqi Yu, Shuangli Li , Research on the influence of ultrasonic on the inner rib’s surface morphology of ribbed cylindrical parts in flow spinning process[J]. Journal of Manufacturing Processes, 2021, 67: 376-387.
[19] Leitao Gao, Jinlong Song, Yixi Zhao,Zhongqi Yu, Parametric roller path design in multi-pass conventional spinning of curvilinear generatrix parts ,The International Journal of Advanced Manufacturing Technology, 2021,113(5), 1637-1648
[20] Gan T, Yu Z Q, Zhao Y X, Fan X G, Lai X M. A continuous dynamic recrystallization constitutive model combined with grain fragmentation and subgrain rotation for aluminum alloy 2219 under hot deformation. Modelling and Simulation in Materials Science and Engineering, 2021, 29: 025002
[21] Cheng X, Zhao Y X, You S M. Numerical simulation and experimental study of robot-assisted flanging process [C]. AWMFT/APSTP2021 (2021).
[22] Leitao Gao,Yixi Zhao, Zhongqi Yu ,Hui Yan ,Formability analysis of electrically assisted double-side multi-point incremental sheet forming,The International Journal of Advanced Manufacturing Technology ,2020(108), 3405–3417
[23] Zhongqi Yu, Yixi Zhao, Chenyang Du, Ruofan Liu, S. A. Evsyukov,Study on flange-constrained spinning process for hemispherical aluminum alloy part,Journal of Materials Processing Technology,2020(278) 116515
[24] Song Wu , Yunwu Ma, Leitao Gao, Yixi Zhao, Sherif Rashed, Ninshu Ma.?A?novel?multi-step?strategy?of?single?point?incremental?forming?for?high?wall?angle?shape[J].?Journal?of?Manufacturing?Processes,?2020,?56:?697-706.
[25] Yixi Zhao, Xumin Wan, Leitao Gao , Qingshuai Kong, Zhongqi Yu,Theoretical prediction of sheet metal wrinkling based on the potential function analysis,Journal of Manufacturing Science and Engineering ,2018,(140 )– 101012(1-12)
[26] Yixi Zhao, Linfa Peng, Xinmin Lai, Influence of the electric pulse on springback during stretch U-bending of Ti6Al4V titanium alloy sheets,Journal of Materials Processing Tech,2018(261),12-23
[27] Yixi Zhao,Linfa Peng,Formability and flow channel design for thin metallic bipolar plates in PEM fuel cells: Modeling,International Journal of Energy Research, S PECI A L I SSUE PAPER,2018;1–13.
[28] Yixi Zhao, Yansong Zhang , Xinmin Lai ,Effect of epoxy adhesive on nugget formation in resistance welding of SAE1004/DP600/DP780 steel sheets, Materials 2018, 11, 1828;
[29] Yixi Zhao, Yansong Zhang , Xinmin Lai ,Analysis of Fracture Modes of Resistance Spot Welded Hot-Stamped Boron Steel, Metals 2018, 8, 764;
[30] Li Shuhui ; He Ji ; Gu Bin; Danielle Zengc; Z. Cedric Xiac; Zhao Yixi, Anisotropic fracture of advanced high strength steel sheets:Experiment and theory, International Journal of Plasticity, 2018(103): 95-118
[31] Yixi Zhao, Sheng Huang, Wenjiao Dan,Weigang Zhang, Shuhui Li,In-situ bending under tension shear fracture analysis and microstructure “earthquake” of DP780 dual phase steels,Materials Science and Engineering: A,2017 May(695):80–91
[32] Kong Q, Yu Z, Zhao Y, et al. Theoretical prediction of flange wrinkling in first-pass conventional spinning of hemispherical part[J]. Journal of Materials Processing Technology, 2017 August(246):56–68
[33] Sheng Huang, ChunFeng He, and YiXi Zhao*,Microstructure-Based RVE Approach for Stretch-Bending of Dual-Phase Steels,Journal of Materials Engineering and Performance (2016) 25:966–976
[34] Shanshuai Wang, Shuhui Li, Ji He, Yixi Zhao ,Asymmetric Postbuckling Behavior of Hemispherical Shell Structure Under Axial Compression, Journal of Engineering Materials and Technology, 2016, 138 / 011005-1
[35] Sheng Huang, Yi-xi Zhao, and Chun-feng He. Shear Fracture of Advanced High Strength Steels. Journal of Iron and Steel Research, International, 2014, 21(10): 938-944.
[36] HU Xing, ZHAO Yi-xi, LI Shu-hui, LIN Zhong-qin. Numerical simulation of ductile fracture behavior for aluminum alloy sheet under cyclic plastic deformation[J]. Trans Nonferrous Met Soc China, 2011, 21: 1595-1601.
[37] Shuhui Li, Xing Hu, Yixi Zhao, Zhongqin Lin, Nanqiao Xu. Cyclic hardening behavior of roller hemming in the case of aluminum alloy sheets[J]. Materials & Design, 2011, 32(4): 2308-2316.
[38] Xing Hu, Yixi Zhao, Shuhui Li, Cheng Liu,Numerical simulation of dimensional variations for roller hemming,Advanced Materials Research,160-162(2011),1601-1605
[39] Xing Hu,Yixi Zhao , Sheng Huang,Shuhui Li &Zhongqin Lin Numerical analysis of the roller hemming process,Int J Adv Manuf Technol (2012) 62:543–550
[40] 李曉凱,歐陽(yáng)亞文,趙亦希, 胡藍(lán),大徑厚比橢球環(huán)件收口成形性及參數(shù)影響分析[J].塑性工程學(xué)報(bào),2025,32(12):94-103.
[41] 歐陽(yáng)亞文,趙亦希,李曉凱,胡藍(lán).大徑厚比橢球收口環(huán)件回彈分析與模具優(yōu)化研究[J/OL].中國(guó)機(jī)械工程,1-12[2026-02-25]. https://link.cnki.net/urlid/42.1294.TH.20251020.1634.010.
[42] 林道涵,趙亦希,呂淑曼,等.電磁感應(yīng)矯平工藝對(duì)焊后表面縱向殘余應(yīng)力再分布的影響[J/OL].上海交通大學(xué)學(xué)報(bào),1-21[2026-02-25]. https://doi.org/10.16183/j.cnki.jsjtu.2024.496.
[43] 呂淑曼,林道涵,趙亦希,等.薄板火工矯平實(shí)驗(yàn)與調(diào)控方案評(píng)估[J].機(jī)械設(shè)計(jì)與研究,2025,41(06):119-124.DOI:10.13952/j.cnki.jofmdr.2025.0140.
[44] 朱正午,趙亦希,于忠奇,等.筒形件中不同結(jié)構(gòu)筋條整體成形方法綜述,.塑性工程學(xué)報(bào),2024,31(01):83-98.
[45] 陳星翰,于忠奇,趙亦希.外筋筒形件旋擠成形數(shù)值仿真研究.塑性工程學(xué)報(bào),2024,31(11):39-45.
[46] 李雙利, 趙亦希, 于忠奇. 聲塑性機(jī)制及其在塑性加工中的應(yīng)用[J]. 塑性工程學(xué)報(bào), 2023,8: 8-34.
[47] 程旋, 趙亦希, 尤舒曼. 機(jī)器人柔性翻邊成形軌跡優(yōu)化[J]. 航空學(xué)報(bào), 2023, 44(04): 279-292.
[48] 王康培,趙亦希,陳星翰,于忠奇,外筋筒殼旋擠成形方法及擴(kuò)徑現(xiàn)象[J].塑性工程學(xué)報(bào),2023,8:83-91.
[49] 蔡昌儒,趙亦希,鄧琳,鞠理?xiàng)睿瑥堁铀桑瑒⑿礻?yáng),電磁感應(yīng)矯平工藝試驗(yàn)研究,船舶工程,2023.5, 181,123-129,
[50] 劉徐陽(yáng), 蔡昌儒, 趙亦希, 鞠理?xiàng)?/span>,電磁感應(yīng)矯平工藝的多物理場(chǎng)耦合仿真研究, 上海交通大學(xué)學(xué)報(bào),2023, 3: 253 -263
[51] 李雙利, 趙亦希, 于忠奇. 2219-O鋁合金聲軟化效應(yīng)建模與預(yù)測(cè)[J]. 航空學(xué)報(bào), 2023, 44, 626884.
[52] 王鳳琪;于忠奇;孟燁暉;甘甜;趙亦希,復(fù)雜內(nèi)筋鋁筒段旋壓變形規(guī)律和再結(jié)晶組織演變數(shù)值仿真.航空學(xué)報(bào),2023,44(09):92-102.
[53] 鄭高媛,趙亦希,崔峻輝.車(chē)身用鋁飾條拉彎成形面畸變?nèi)毕菪纬梢?guī)律[J].上海交通大學(xué)學(xué)報(bào),2022,56(01):53-61
[54] 馬遵農(nóng),張延松,趙亦希.多層箔片超聲焊接的摩擦能量耗散機(jī)理及影響因素研究上海交通大學(xué)學(xué)報(bào),2022,56(06):772-783.
[55] 尤舒曼,李杰,趙亦希,胡逸輝.柔性翻邊成形工藝參數(shù)研究[J].上海交通大學(xué)學(xué)報(bào),2021,55(10):1246-1254
[56] 李曉凱,趙亦希,于忠奇,等.鋁合金帶筋構(gòu)件超聲輔助旋壓仿真研究[J].上海交通大學(xué)學(xué)報(bào),2021,55(04):394-402.
[57] 朱寶行;趙亦希;于忠奇. 薄壁筒形件流動(dòng)旋壓內(nèi)筋高度計(jì)算方法[J]. 塑性工程學(xué)報(bào),2020,27(2):68-78.
[58] 胡逸輝; 李杰; 趙亦希; 尤舒曼; 鄭高媛,機(jī)器人柔性翻邊新工藝,機(jī)械設(shè)計(jì)與研究,2020,36(3),100-104
[59] 詹楊,趙亦希,朱寶行.鋁合金車(chē)身窗框亮條翻邊圓角不均勻缺陷解決方案.上海交通大學(xué)學(xué)報(bào),2019,53(04):488-496.
[60] 李東瑋,王磊,張聰,趙亦希,.預(yù)折刀工作終止位置對(duì)包邊邊界縮進(jìn)的影響[J].上海交通大學(xué)學(xué)報(bào),2019,53(01):100-104.
[61] 楊珂,趙亦希,馮昌文,余志華,鋁合金模壓包邊工藝尺寸設(shè)計(jì)方法,上海交通大學(xué)學(xué)報(bào),2018,52(2):182-187
[62] 曹克,趙亦希,鋁合金單點(diǎn)增量成形軸向成形力實(shí)驗(yàn)與仿真,機(jī)械設(shè)計(jì)與研究,2018.3(34):119-123
[63] 杜引,趙亦希,于忠奇,李喜林,2060-T8鋁鋰合金電致塑性本構(gòu)方程,塑性工程學(xué)報(bào),2017,24 ( 1) : 133- 139
[64] 閆慧, 趙亦希, 于忠奇, 等. 2060-T8鋁鋰合金槽形件電輔助增量成形實(shí)驗(yàn)研究. 上海交通大學(xué)學(xué)報(bào),2017,51(5),513-519.
[65] 宋楊灣,徐祥和,趙亦希,楊柯,包邊寬度的計(jì)算方法,塑性工程學(xué)報(bào),2017,5(24):125-131
[66] 宋金龍,趙亦希,于忠奇,孔慶帥,鋁合金封頭旋壓成形變厚度毛坯設(shè)計(jì)方法研究,上海交通大學(xué)學(xué)報(bào),2017,51(11):1304-1311
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