教育背景
2016.01~2016.07,獲國(guó)家留學(xué)基金委青年骨干教師出國(guó)研修項(xiàng)目資助在美國(guó)科羅拉多礦業(yè)大學(xué)(Colorado
School of Mines)訪學(xué);
2013.01~2015.01,北京科技大學(xué)機(jī)械工程,師資博士后;
2008.09~2013.01,北京科技大學(xué)材料加工工程專業(yè),工學(xué)博士學(xué)位;
2004.09~2008.06,北京科技大學(xué)材料成型及控制工程專業(yè),學(xué)士學(xué)位。
研究領(lǐng)域
主要研究方向?yàn)椴牧辖M織性能控制,高品質(zhì)特殊鋼成分組織設(shè)計(jì)、質(zhì)量控制及應(yīng)用,汽車、工業(yè)機(jī)器人等關(guān)鍵零部件制造技術(shù)等。
獲得主要榮譽(yù)及社會(huì)兼職
江蘇省張家港市第11批科技鎮(zhèn)長(zhǎng)團(tuán)副團(tuán)長(zhǎng),獲評(píng)首屆“鎮(zhèn)長(zhǎng)團(tuán)杯”蘇州市創(chuàng)新挑戰(zhàn)賽金牌技術(shù)經(jīng)紀(jì)人;北京金屬學(xué)會(huì)壓力加工分會(huì)秘書,中國(guó)鍛壓學(xué)會(huì)特聘講師。北京科技大學(xué)優(yōu)秀共產(chǎn)黨員、第十八屆“我愛我?guī)?我心目中最優(yōu)秀的老師”、第十屆青年教師教學(xué)基本功比賽二等獎(jiǎng)、優(yōu)秀本科生班導(dǎo)師、優(yōu)秀工會(huì)積極分子,首都高校“優(yōu)秀基層團(tuán)干部”。《鋼鐵研究學(xué)報(bào)》(中、英文版)、《材料導(dǎo)報(bào)》年度優(yōu)秀審稿專家。
主要科研項(xiàng)目
1. 青海省重點(diǎn)研發(fā)與轉(zhuǎn)化計(jì)劃項(xiàng)目:工業(yè)機(jī)器人高精度長(zhǎng)壽命減速器柔輪用特殊鋼研發(fā);青海省科技計(jì)劃項(xiàng)目:變形鎂合金裂解加工應(yīng)用基礎(chǔ)研究。2. 中共北京市委軍民融合發(fā)展委員會(huì)辦公室項(xiàng)目:軍民融合產(chǎn)品、軍民融合企業(yè)標(biāo)準(zhǔn)體系研究。3. 國(guó)家高技術(shù)研究發(fā)展計(jì)劃(863計(jì)劃)項(xiàng)目:重大裝備用軸承鋼關(guān)鍵技術(shù)開發(fā)——任務(wù)4:盾構(gòu)機(jī)軸承鋼生產(chǎn)技術(shù)開發(fā)。4. 西寧特殊鋼集團(tuán)公司項(xiàng)目:高品質(zhì)滲碳齒輪鋼開發(fā)及質(zhì)量控制技術(shù)系統(tǒng)研究、高品質(zhì)非調(diào)質(zhì)脹斷連桿鋼生產(chǎn)工藝與質(zhì)量控制技術(shù)系統(tǒng)研究、高品質(zhì)非調(diào)質(zhì)曲軸用鋼生產(chǎn)工藝與質(zhì)量控制技術(shù)系統(tǒng)研究、高品質(zhì)鍛材質(zhì)量控制技術(shù)研究、高品質(zhì)釬具鋼質(zhì)量控制關(guān)鍵技術(shù)系統(tǒng)研究。5. 中信金屬公司項(xiàng)目、中國(guó)博士后科學(xué)基金項(xiàng)目:鈮微合金在中高碳特殊鋼中的作用機(jī)理及應(yīng)用基礎(chǔ)研究。6. 中央高;究蒲袠I(yè)務(wù)費(fèi)項(xiàng)目:混雜超級(jí)鋼的應(yīng)用基礎(chǔ)研究等3項(xiàng)。教學(xué)教研
曾主講和當(dāng)前主講課程:本科生專業(yè)必修課《固態(tài)成形理論基礎(chǔ)》、《軋鋼生產(chǎn)工藝》,公選課《鋼鐵生產(chǎn)概論》、《材料發(fā)展史概論》,實(shí)踐課程《認(rèn)識(shí)實(shí)習(xí)》、《生產(chǎn)實(shí)習(xí)》、《專業(yè)課程設(shè)計(jì)》;研究生專業(yè)課《力學(xué)冶金》、《材料現(xiàn)代研究方法(材料加工)》。負(fù)責(zé)北京科技大學(xué)研究型教學(xué)示范課程建設(shè)項(xiàng)目、素質(zhì)教育核心課程建設(shè)、教育教學(xué)改革與研究教研項(xiàng)目。曾受邀赴鞍鋼、河鋼集團(tuán)承鋼和宣鋼、西寧特鋼、河北邢鋼、廣東韶鋼、湖北新冶鋼、福建三鋼、承德建龍?zhí)劁、酒鋼宏興、新興鑄管、新疆金特鋼鐵、新疆眾合等企業(yè)的技術(shù)人員提供在職研究生、專升本授課,以及專題講座。
主要論文著作
[1] 張成成,馬瀟磊,張朝磊*,等. 汽車前軸用42CrMoH鋼表面脫碳演變規(guī)律及控制[J].材料導(dǎo)報(bào),2020, 26(5):875~881.[2] 馬瀟磊, 張成成, 張朝磊*, 等. 基于“混雜冶設(shè)計(jì)的索氏體新型不銹鋼的組織和性能[J].材料導(dǎo)報(bào), 2020, 34(2): 4103-4107.[3] W. Zhang, W. Fang, C.L. Zhang*, et al. Improvement of microstructure and properties of air-cooled 46MnVS5 forging steel rod for fracture splitting connecting by thermomechanical control process (TMCP) and by niobium micro alloying [J].Materials Science & Engineering Technology, 2020, 51(2), 238-246.[4] 方文, 王海賓, 張朝磊*, 等. 預(yù)應(yīng)力鋼絞線用大規(guī)格82B盤條冬季時(shí)效期的系統(tǒng)控制[J].材料導(dǎo)報(bào), 2019, 33(7): 2408-2412.[5] C.L. Zhang*, W. Fang, B.R. Cai, et al. Austenite grain growth and its effect on splitting fracture property of a V-N microalloyed medium carbon steel connecting rod [J].Journal of Iron and Steel Research International, 2019, 26(8): 875-881.[6] 張朝磊*,魏旸,方文,等.諧波減速器特殊鋼材質(zhì)柔輪的組織和力學(xué)性能分析[J].材料導(dǎo)報(bào),2018,32(8):2842-2846.[7] 張朝磊*,魏旸,方文,等.非調(diào)質(zhì)鋼36MnVS4汽車發(fā)動(dòng)機(jī)連桿脹斷缺陷分析[J].材料導(dǎo)報(bào),2018,32(14):133-136.[8] G.N. He, N.B. Zhou, C.L. Zhang*, et al. Effect of niobium on the dry sliding friction and wear properties of 100Cr6 bearing steel [J].Journal of Tribology, 2018, 140: 1-7.[9] Y. Wei, W. Fang, C.L. Zhang*, et al. Effect of different microstructures on the performance of air-cooled forging steel 46MnVS5 fracture splitting connecting rod [C].Materials Science Forum. 2018, 941: 358-363.[10] 張朝磊,巴鑫宇,樊世亮,等.非調(diào)質(zhì)鋼46MnVS5汽車發(fā)動(dòng)機(jī)連桿脹斷缺陷分析[C].第十一屆中國(guó)鋼鐵年會(huì)論文集.2017.[11] 張朝磊, 張?jiān)谠? 基于工程教育認(rèn)證標(biāo)準(zhǔn)培養(yǎng)解決復(fù)雜工程問(wèn)題能力[J].中國(guó)冶金教育, 2017, (4): 14-17.[12] 張朝磊, 劉雅政. 汽車脹斷連桿用非調(diào)質(zhì)鋼的應(yīng)用現(xiàn)狀與發(fā)展[J].材料導(dǎo)報(bào), 2017, 31(5): 58-64.[13] C.L. Zhang, L.Y. Xie, G.L. Liu, et al. Surface decarburization behavior and its adverse effects of air-cooled forging steel C70S6 for fracture splitting connecting rod [J].Metals and Materials International, 2016, 22(5): 836-841.[14] J.R. Li, C.L. Zhang, B. Jiang, et al. Effect of large-size M23C6-type carbides on the low-temperature toughness of martensitic heat-resistant steels [J].Journal of Alloys and Compounds, 2016, 685: 248-257.[15] C. Huang, C.L. Zhang, L. Jiang, et al. Isothermal heat treatment of a bearing steel for improved mechanical properties [J].Journal of Alloys and Compounds, 2016, 660: 131-135.[16] J.R. Li, C.L. Zhang, Y.Z. Liu Y. Influence of carbides on the high-temperature tempered martensite embrittlement of martensitic heat-resistant steels [J].Materials Science and Engineering: A, 2016, 670: 256-263.[17] 張朝磊, 楊忠, 孫景宏, 等. 合金元素對(duì)曲軸用非調(diào)質(zhì)鋼奧氏體長(zhǎng)大和組織細(xì)化的影響[J].工程科學(xué)學(xué)報(bào), 2015, 37(2): 175-179.[18] 張朝磊, 趙帆, 文新理, 等. 加熱溫度和Nb對(duì)彈簧鋼60Si2CrVAT完全脫碳層深度和形貌的影響[J].材料熱處理學(xué)報(bào), 2015, 36(9): 167-172.[19] 張朝磊, 余偉銘, 王嗣雯, 等. 球化退火中Nb對(duì)GCr15鋼碳化物析出和球化的影響[J].材料熱處理學(xué)報(bào), 2015 (2): 97-101.[20] 張朝磊, 梅珍, 趙帆, 等. 高品質(zhì)硬線軋后冷卻路徑優(yōu)化[J].材料熱處理學(xué)報(bào), 2015, 36(s1): 152-155.[21] C.L. Zhang, L.Y. Zhou, X. Liu, et al. Reverse Transformation from ferrite/pearlite to austenite and its influence on structure inheritance in spring steel 60Si2MnA.Steel Research International, 2014, 85(10): 1453-1458.[22] C.L. Zhang, X. Liu, L.Y. Zhou, et al. Influence of pearlite interlamellar spacing on strain hardening behaviour in spring steel 60Si2MnA.11th International Conference on Technology of Plasticity, 19-24 Oct. 2014, Nagoya, Japan.[23] 張朝磊, 劉翔, 張丹, 等. GCr15球化珠光體組織在熱處理過(guò)程中碳化物的遺傳性[J].材料熱處理學(xué)報(bào), 2014, 35(s1): 45-48.[24] 張朝磊, 蔣波, 趙帆, 等. 27SiMn 鋼相變規(guī)律與強(qiáng)韌化熱處理[J].材料熱處理學(xué)報(bào), 2014, 35(s2): 101-111.[25] C.L. Zhang, L.Y. Zhou, Y.Z. Liu. Surface decarburization characteristics and relation of decarburized types to heating temperature in spring steel 60Si2MnA.International Journal of Minerals, Metallurgy and Materials, 2013, 20(8): 720-724.[26] C.L. Zhang, L.Y. Zhou, Y.Z. Liu. Heredity in the microstructure and mechanical properties of hot-rolled spring steel wire 60Si2MnA during heat treatment process.Journal of Materials Science & Technology, 2013, 29(1): 82-88.[27] C.L. Zhang, Y.Z. Liu, L.Y. Zhou. Influence of pearlite interlamellar spacing on the deformation behavior and fracture characteristics in spring steel 60Si2MnA.2013 International Conference on Mechanical and Material Engineering, Nov.23-24, 2013, Shiyan, Hubei, China.[28] C.L. Zhang, Y.Z. Liu, L.Y. Zhou, et al. Secondary hardening, austenite grain coarsening and surface decarburization phenomenon in Nb-bearing spring steel.Journal of Iron and Steel Research International, 2012, 19(3): 47-51.[29] C.L. Zhang, Y.Z. Liu, L.Y. Zhou, et al. Forming condition and control strategy of ferrite decarburization in 60Si2MnA spring steel wires for automobile suspensions.International Journal of Minerals, Metallurgy and Materials, 2012, 19(2): 116-121.[30] C.L. Zhang, Y.Z. Liu, L.Y. Zhou. Transformation conditions - microstructures - mechanical properties relationship in 0.60%C hypoeutectoid steel. Steel Research International, 2011, 82(10): 1207-1212.[31] C.L. Zhang, Y.Z. Liu, C. Jiang, et al. Effects of niobium and vanadium on hydrogen-induced delayed fracture in high strength spring steel.Journal of Iron and Steel Research International, 2011, 18(6): 49-53.[32] C.L. Zhang, Y.Z. Liu, L.Y. Zhou, et al. Effects of TMCP parameters on the microstructure and mechanical properties of Nb-bearing spring steel.The 6th International Conference on High Strength Low Alloy Steels, May 31-Ju.2, 2011, Beijing, China.
