

| 姓名: | 張斌 | 性別: | 男 |
|---|---|---|---|
| 學(xué)科類別: | 材料學(xué) | 職務(wù): | |
| 學(xué)歷: | 博士 | 職稱: | 研究員 |
| 電話: | 0931-4968191 | 傳真: | |
| 電子郵件: | bzhang@www.hqwhcm.com | ||
| 通訊地址: | 甘肅省蘭州市天水中路18號 | ||
簡 歷:
張斌,研究員,博士生導(dǎo)師,中科院材料磨損與防護重點實驗室秘書;國家級青年人才入選者(2020),中科院青年創(chuàng)新促進會會員(2017)。2005年畢業(yè)于蘭州大學(xué)材料物理專業(yè),獲得學(xué)士學(xué)位;2011年畢業(yè)于中國科學(xué)院蘭州化學(xué)物理研究所材料學(xué)專業(yè),獲博士學(xué)位;2016-2017年在美國勞倫斯伯克利國家實驗室訪問學(xué)習(xí)一年。主要從事PVD技術(shù)研發(fā),薄膜制備及潤滑、耐磨耐蝕和超低摩擦機制方面的研究及產(chǎn)業(yè)應(yīng)用工作。發(fā)表文章90多篇,授權(quán)專利20多件,主持編制汽車行業(yè)團體標(biāo)準(zhǔn)1項。主持國家重點研發(fā)課題、兩機專項課題、國家自然科學(xué)基金、中國科學(xué)院STS區(qū)域重點項目、GF973子課題、中科院西部之光人才項目等10余項。獲得2019年國家科技進步二等獎(第三完成人)、2018年中國機械工業(yè)科學(xué)技術(shù)獎一等獎(第三完成人)、2016年國家技術(shù)發(fā)明二等獎(第五完成人)、2015年甘肅省技術(shù)發(fā)明一等獎(第五完成人);獲得中國科學(xué)院蘭州分院優(yōu)秀青年人才獎(2020)、中國科學(xué)院蘭州化學(xué)物理研究所青年創(chuàng)新獎(2020)、中國科學(xué)院青年創(chuàng)新促進會科技成果轉(zhuǎn)化獎(2019)、中國產(chǎn)學(xué)研合作創(chuàng)新獎(2018)。
教育經(jīng)歷:
09/2006-07/2011:中國科學(xué)院蘭州化學(xué)物理研究所,材料學(xué),博士,導(dǎo)師:張俊彥研究員
09/2001-07/2005:蘭州大學(xué),材料物理,學(xué)士,
工作經(jīng)歷:
07/2019-至今:中國科學(xué)院蘭州化學(xué)物理研究所固體潤滑國家重點實驗室,研究員
12/2016-12/2017:美國勞倫斯伯克利國家實驗室/加州大學(xué)伯克利分校,Visiting Scientist
07/2015-07/2019:中國科學(xué)院蘭州化學(xué)物理研究所固體潤滑國家重點實驗室,副研究員
01/2015-12/2016:重慶大學(xué)機械傳動國家重點實驗室,訪問副研究員
07/2014-06/2015:中國科學(xué)院蘭州化學(xué)物理研究所固體潤滑國家重點實驗室,項目副研究員,
07/2011-06/2014:中國科學(xué)院蘭州化學(xué)物理研究所固體潤滑國家重點實驗室,助理研究員
01/2006-09/2006:中國科學(xué)院蘭州化學(xué)物理研究所固體潤滑國家重點實驗室,研究助理
07/2005-12/2005:西安隆基硅材料股份有限公司,單晶生長工程師
研究方向:
主要從事真空薄膜沉積技術(shù)及薄膜生長機制,固體薄膜超滑機制研究及結(jié)構(gòu)可控制備,固體薄膜耐磨耐蝕性能研究,機械節(jié)能減阻及裝備的產(chǎn)業(yè)化應(yīng)用。
獲獎及榮譽:
2020年,中國科學(xué)院蘭州化學(xué)物理研究所青年創(chuàng)新獎
2020年,中國科學(xué)院蘭州分院優(yōu)秀青年人才獎
2019年,國家科技進步二等獎(排名3)
2019年,中國科學(xué)院青年創(chuàng)新促進會科技成果轉(zhuǎn)化貢獻獎
2018年,中國機械工業(yè)科學(xué)技術(shù)獎一等獎(排名3)
2018年,中國產(chǎn)學(xué)研合作創(chuàng)新獎
2016年,國家技術(shù)發(fā)明二等獎(排名5)
2016年,入選中國科學(xué)院"青年創(chuàng)新促進會"會員
2015年,甘肅省技術(shù)發(fā)明一等獎(排名5)
2014年,中組部中國科學(xué)院"西部之光"人才項目
2008年,中國真空學(xué)會年會"優(yōu)秀論文獎"
承擔(dān)科研項目:
1. xxx注滲表面梯度涂層制備及使役行為研究,科工委-兩機專項課題, 2021.01-2024.12,負(fù)責(zé)人
2. 超低剪切強度界面的創(chuàng)成及機理研究,國家重點研發(fā)計劃課題,2021.01-2024.12,負(fù)責(zé)人
3. 中俄等離子技術(shù)的合作研究與學(xué)術(shù)交流,甘肅省科技支撐-國際合作交流項目,2021.01-2022.12,負(fù)責(zé)人
4. 激光/等離子束改性對丁腈橡膠表面沉積類富勒烯碳薄膜結(jié)構(gòu)和摩擦學(xué)的影響,國家自然科學(xué)基金國際合作交流項目(中俄),2019.01-2020.12,負(fù)責(zé)人
5. 柴油機共軌系統(tǒng)關(guān)鍵部件批量化生產(chǎn)及集成,中國科學(xué)院STS重點項目,2018.01-2019.12,負(fù)責(zé)人
6. 超低摩擦碳薄膜制備、摩擦機制及工程化工藝裝備及技術(shù),中國科學(xué)院“青年創(chuàng)新促進會”人才項目,2017.01-2020.12,負(fù)責(zé)人
7. 高壓共軌關(guān)鍵零部件超低摩擦碳薄膜技術(shù)及系統(tǒng)集成,工信部“工業(yè)強基工程”項目, 2018.09-2021.12,負(fù)責(zé)人
8. XXX超滑理論基礎(chǔ)與應(yīng)用研究, 國家安全重大基礎(chǔ)研究計劃課題2, xxx-02,2015.01-2018.12,負(fù)責(zé)人
9. 石墨烯薄膜的表面粘著特性調(diào)控與磨損機制,2017.01-2020.12,骨干(排名2)
10. XXX……的研究,2018.01-2022.12,骨干(排名2)
11. 面向航天煤油及氣體環(huán)境應(yīng)用的密封件磨損失效機制及表面薄膜改性技術(shù)研究,2018.01-2022.12,骨干(排名2)
12. 超滑薄膜制備及機理,中國科學(xué)院青年創(chuàng)新促進會,2017.01-2020.12,負(fù)責(zé)人
13. 薄膜宏觀到微觀超滑:架構(gòu)宏觀和納米摩擦的橋梁,國家自然科學(xué)基金委員會國際合作,2016.01-2019.12,骨干(排序2)
14. 類金剛石/碳化物多層復(fù)合薄膜的力學(xué)性能、摩擦學(xué)性能及耐腐蝕性能的研究,國家自然科學(xué)基金委員會,2016.01-2019.12,骨干
15. 超滑xxxxxx的應(yīng)用,國防重大基礎(chǔ)研究計劃,國防科工委,2015.01-2019.12,骨干/子課題負(fù)責(zé)人(108萬)
16. 高壓共軌系統(tǒng)噴油器偶件低摩擦碳基薄膜技術(shù),中國科學(xué)院“西部之光”人才項目,2015.01-2017.12,負(fù)責(zé)人
17. 機械傳動偶件低摩擦環(huán)境自適應(yīng)碳基薄膜研究,重慶大學(xué)機械傳動國家重點實驗室基金,2015.01-2016.12,負(fù)責(zé)人
18. 高性能合成潤滑材料設(shè)計制備與使役的基礎(chǔ)研究,科技部973,2013.01-2017.12,項目骨干
19. 大氣環(huán)境下碳薄膜納米結(jié)構(gòu)與表面化學(xué)協(xié)同效應(yīng)與超潤滑相關(guān)性研究,國家自然科學(xué)基金委員會,2013.01-2015.12,負(fù)責(zé)人
20. 低摩擦固體潤滑技術(shù)降低發(fā)動機磨損研究,重慶長安汽車股份有限公司,2012.01-2012.12月,負(fù)責(zé)人
21. 基于汽車節(jié)能減排的摩擦學(xué)技術(shù)開發(fā)和應(yīng)用研究,中國一汽,2010.01-2015.12,共同負(fù)責(zé)人
22. 類富勒烯納米結(jié)構(gòu)含氫碳膜制備及其摩擦學(xué)性能研究,中國科學(xué)院特種無機涂層重點實驗室開放基金,2013.01-2014.12,負(fù)責(zé)人
23. MV3小斑點紅外迷彩涂層偽裝性能分析,中國一汽,2013.10-2014.11,負(fù)責(zé)人
代表論著:
1. Fullerene-Like Structure Hydrogenated Carbon Film: One Way to the Industrial Scale Supelubricity, Qian Jia, Kaixiong Gao, Yupeng An, Bin Zhang*, Changning Bai, Zhaolong wang, Junyan Zhang*, In: Robert B Heimann, editor. Prime Archives in Material Science. Hyderabad, India: Vide Leaf. 2020(著作)
2. Super-Lubricious, Fullerene-like, Hydrogenated Carbon Films,Bin Zhang*, Kaixiong Gao, Kaixiong Gao, Yuanlie Yu, Junyan Zhang, In book: Fullerenes and Relative Materials - Properties and Applications, 2018, IntechOpen(著作)
3. Comparison study of gold coatings prepared by traditional and modified galvanic replacement deposition for corrosion prevention of copper, Xingkai Zhang Qingyi Qian, Li Qiang, Bin Zhang*, Junyan Zhang, Microelectronics Reliability, 2020, 110:113695(通訊作者)
4. Bilayer a-C:H/MoS2 film to realize superlubricity in open atmosphere, Kaixiong Gao,Zhenguo Lai, Qian Jia, Bin Zhang*, Xiaoli Wei, Junyan Zhang*, Diamond and Related Materials, 2020, 108, 107973 (通訊作者)
5. The Utilization of Carbon Dioxide to Prepare TiCxOy Films with Low Friction and High Anti-Corrosion Properties, Kaixiong Gao, Zhaolong Wang, Qian Jia, Bin Zhang*, Zhixing Mou, Junyan Zhang*, Coatings, 2020, 10(6), 533 (通訊作者)
6. Revealing the corrosion resistance of amorphous carbon films under heat shock via annealing, Qiuping Zhao, Zhixing Mou, Bin Zhang*, Xingkai Zhang, Zhaolong Wang, Kai Wang, Kaixiong Gao*, Qian Jia, Diamond and Related Materials, 2020,102,107692 (通訊作者)
7. 含氫類富勒烯碳薄膜不同載荷下的磨損壽命研究.龍美彪,王兆龍,賴振國,張斌,黃民備,高凱雄,涂選舉,張俊彥.真空與低溫:1-12.
8. 石墨烯基薄膜作為固體潤滑材料的研究現(xiàn)狀及展望,賴振國,賈倩,高凱雄,強力,張斌. 真空與低溫:1-10.(通訊作者)
9. 孫磊,賈倩,張斌,賴振國,張俊彥.碳相關(guān)材料超滑行為研究進展[J].真空與低溫,2020,26(05):392-401.(通訊作者)
10. 空氣等離子預(yù)處理改善橡膠表面碳膜結(jié)合強度和耐磨性研究,白常寧; 強力; 唐宏亮; 張斌; 張俊彥,真空與低溫,2019,(5),324-330 (通訊作者)
11. 質(zhì)子交換膜燃料電池雙極板材料研究進展,趙秋萍,牟志星,張斌,郭軍紅,楊柳,化工新型材料,2019,(11),10762(通訊作者)
12. 高功率微脈沖磁控濺射制備氮化鈦薄膜及其腐蝕性能研究. 孟樹文,張斌. 中國金屬通報,2020(05):168-169.
13. 液氮激冷對含氫非晶碳膜性能的影響.王兆龍,薛勇,張斌,高凱雄,強力,牟志星,王凱.摩擦學(xué)學(xué)報,2020,40(01):82-88.
14. Key Role of Transfer Layer in Load Dependence of Friction on Hydrogenated Diamond-Like Carbon Films in Humid Air and Vacuum, Yunhai Liu, Lei Chen*, Bin Zhang*, Zhongyue Cao, Pengfei Shi, Yong Peng, Ningning Zhou, Junyan Zhang, Linmao Qian, Materials, 2019, 12(9), 1550 (通訊作者)
15. Interlayer friction properties of oxygen-doped hexagonal boron nitride bilayers, Jing Zhang, Lulu An, Bin Zhang*, Junyan Zhang, Yuanlie Yu, Chun-Ming Wang*, EPL, 2019, 127, 16003 (通訊作者)
16. Hydrogenated amorphous carbon films with different nanostructure: A comparative study,Kaixiong Gaoa, Yongfu Wang, Xiaoli Wei, Li Qiang, Bin Zhang* and Junyan Zhang*, Chemical Physics Letters, 2019, 715, 330-334(通訊作者)
17. Heating induced nanostructure and superlubricity evolution of fullerene-like hydrogenated carbon films, Zhaolong Wang, Zhenbin Gong, Bin Zhang*, Yongfu Wang, Kaixiong Gao, Junyan Zhang, Guangqiao Liu, Solid State Sciences, 2019, 90, 29-33 (IF: 1.861)(通訊作者)
18. Verification study of nanostructure evolution with heating treatment between thin and thick fullerene-like hydrogen carbon films, Zhaolong Wang, Kaixiong Gao, Bin Zhang *, Zhenbin Gong, Xiaoli Wei, Junyan Zhang, Coatings, 2019, 9, 82(通訊作者)
19. Perspectives of the friction mechanism of hydrogenated diamond-Like carbon film in air by varying sliding velocity, Yunhai Liu, Bin Zhang, Lei Chen*, Zhongyue Cao, Pengfei Shi, Jinwei Liu, Junyan Zhang and Linmao Qian, Coatings, 2018, 8(10), 331
20. Fabrication of novel hydrophobic SiC/SiO2 bead-string like core-shell nanochains via a facile catalyst/template-free thermal chemical vapor deposition process,Bo Zhong, Lingqi Kong, Bin Zhang, Yuanlie Yu, Long Xia, Materials Chemistry and Physics, 2018, 217, 111-116
21. Onion-like carbon films endow macro-scale superlubricity, Zhenbin Gong, Changning Bai, Li Qiang, Kaixiong Gao, Bin Zhang *, Junyan Zhang, Diamond and Related Materials, 2018, 87, 72-76(通訊作者)
22. Probing superlubricity stability of hydrogenated diamond-like carbon film by varying sliding velocity,Yunhai Liu, Bingjun Yu, Zhongyue Cao, Pengfei Shi, Ningning Zhou, Bin Zhang, Junyan Zhang, Linmao Qian, Applied Surface Science, 2018, 439, 976-982
23. Pencil sketch graphene films as solid lubricant on steel surface: Observation of transition to grapehene/amorphous carbon, Bin Zhang, Yong Xue, Kaixong Gao, Li Qiang, Yuanlie Yu, Zhenbin Gong, Aimin Liang, Junyan Zhang, Baoping Yang, Solid State Sciences, 2018, 75, 71-76(第一作者)
24. 低摩擦長壽命類富勒烯碳基薄膜的制備及其摩擦學(xué)特性,吳坤堯,孟志新,李兆,丁旭,張斌,張俊彥,材料導(dǎo)報,2018, 4, 559-562
25. 含氫類富勒烯碳薄膜制備及超滑性能研究進展,丁雪興,王兆龍,張斌,高凱雄,張俊彥,潤滑與密封,2018,12,97-103
26. MoS-Al復(fù)合薄膜高溫摩擦學(xué)性能研究,楊保平,高斌基,張斌,強力,高凱雄,張俊彥,表面技術(shù), 2018,4,140-147
27. 不同應(yīng)用環(huán)境下MoS基薄膜摩擦學(xué)性能研究進展,高斌基,楊保平,張曉曉,高凱雄,張斌,張俊彥,潤滑與密封, 2018,05,115-119
28. Assembling of carbon nanotubes film responding to significant reduction wear and friction on steel surface, Bin Zhang, Yong Xue, Li Qiang, Kaixong Gao, Qiao Liu, Baoping Yang, Aiming Liang, Junyan Zhang*, Applied Nanoscience, 2017, 7(8), 835-842(第一作者)
29. Hierarchical structure graphitic-like/MoS2 film as superlubricity material, Zhenbin Gong, Xiaolong Jia, Wei Ma, Bin Zhang, Junyan Zhang, Applied Surface Science, 2017, 431, 381-386
30. Tribological properties of hydrogenated amorphous carbon films in different atmospheres, Jing Shi, Zhenbin Gong, Chengbing Wang, Bin Zhang*, Junyan Zhang*, Diamond and Related Materials, 2017, 77, 84-91(通訊作者)
31. An improved galvanic replacement deposition method for synthesis of compact palladium coatings on copper substrates, Xingkai Zhang, Yan Zhou, Bin Zhang, Junyan Zhang, Materials Letters, 2017, 197, 75-78
32. Graphene nano scrolls responding to superlow friction of amorphous carbon, Zhenbin Gong, Jing Shi, Bin Zhang, Junyan Zhang, Carbon,2017, 116, 310-317
33. Hydrogenated amorphous carbon films on steel balls and Si substrates: nanostructural evolutions and their trigging tribological behaviors,Yongfu Wang, Yan Wang, Xingkai Zhang, Jing Shi, Kaixiong Gao, Bin Zhang*,Junyan Zhang*,Applied Surface Science,2017, 420, 586-593(通訊作者)
34. Nanocrystalline graphite formed at fullerene-Like carbon film frictional interface, Jing Shi, Yongfu Wang, Zhenbin Gong, Bin Zhang, Chengbing Wang, Junyan Zhang,Advanced Materials Interfaces,2017, 4, 1601113
35. 類富勒烯薄膜的載荷依賴摩擦滯后行為研究,楊保平,薛勇,張斌*,王永富,王兆龍,張俊彥,表面技術(shù),2017, 09, 017(通訊作者)
36. MoS2薄膜摩擦磨損性能及摩擦微觀機制研究,楊保平,薛勇,張斌*,強力,梁愛民,材料科學(xué),2017, 7, 403-412(通訊作者)
37. 納米碳材料摩擦學(xué)應(yīng)用的最新進展和未來展望,薛勇,楊保平,張斌*,張俊彥,材料導(dǎo)報,2017, 31(5), 1-8(通訊作者)
38. An improved galvanic replacement deposition method for synthesis of compact palladium coatings on copper substrates. Xingkai Zhang, Yan Zhou, Bin Zhang, Junyan Zhang, Materials Letters. Available online. 03/2017
39. Nanocrystalline Graphite Formed at Fullerene-Like Carbon Film Frictional Interface. Jing Shi, Yongfu Wang, Zhenbin Gong, Bin Zhang, Chengbing Wang, Junyan Zhang, Advanced Materials Interfaces. Available online. 03/2017.
40. Graphene Nano Scrolls Responding to Superlow Friction of Amorphous Carbon. Zhenbin Gong, Jing Shi, Bin Zhang, Junyan Zhang, Carbon, 01/2017; (116):310-317.
41. Engineering-scale superlubricity of the fingerprint-like carbon films based on high power pulsed plasma enhanced chemical vapor deposition. Zhenbin Gong, Jing Shi, Wei Ma, Bin Zhang, Junyan Zhang. RSC Advances, 12/2016; 6(116):115092-115100.
42. Facile fabrication and corrosion behavior of iron and iron-reduced graphene oxide composite coatings by electroless plating from baths containing no reducing agent. Xingkai Zhang, Yan Zhou, Aimin Liang, Bin Zhang, Junyan Zhang. Surface and Coatings Technology, 07/2016; 304: 519–524.
43. Increasing fluorine concentration to control the microstructure from fullerene-like to amorphous in carbon films. Lifang Zhang, Jia Wang, Junyan Zhang, Bin Zhang?. RSC Advances, 02/2016; 6(26):21719-21724.
44. Monitoring nanostructure of hydrogenated fullerene-like film by pulse bias duty cycle. Guangqiao liu, Yan Zhou, Bin Zhang, Kaixiong Gao, Li Qiang, Junyan Zhang: RSC Advances, 01/2016; 6(64): 59039-59044.
45. Further improving the mechanical and tribological properties of low content Ti-doped DLC film by W incorporating. Li Qiang, Kaixiong Gao, Lifang Zhang, Jian Wang, Bin Zhang, Junyan Zhang. Applied Surface Science, 10/2015; 353:522-529.
46. The tribological performance of fullerene-like hydrogenated carbon films under ionic liquid lubrication. Kunyao Wu, Li Qiang, Zhenbin Gong, Gengrui Zhao, Kaixiong Gao, Bin Zhang, Junyan Zhang. Surface and Interface Analysis 09/2015; 47(9):903-910.
47. Recent advances in the mechanical and tribological properties of fluorine-containing DLC films, Lifang Zhang, Fuguo Wang, Li Qiang, Kaixiong Gao, Bin Zhang*, Junyan Zhang, RSC Advances, 2015, 5(13), 9635-9649 (IF : 3.289) (通訊作者)
48. Understanding the ultra-low friction behavior of hydrogenated fullerene-like carbon films grown with different flow rates of hydrogen gas. Yongfu Wang, Junmeng Guo, Kaixiong Gao, Bin Zhang, Aimin Liang, Junyan Zhang. Carbon, 10/2014; 77:518-524.
49. Direct Synthesis of Nitrogen-Doped Carbon Nanosheets with High Surface Area and Excellent Oxygen Reduction Performance. Qiao Liu, Youxin Duan, Qiuping Zhao, Fuping Pan, Bin Zhang?, Junyan Zhang. Langmuir 06/2014; 30(27).(通訊作者)
50. Spontaneous symmetry breaking discovers the formation of aeroplane-like ZnO nanocrystals. Yan Zhou, Junyan Zhang, Bin Zhang, Li Qiang, Yuqing Da, Gang Su, Jiangong Li. Applied Physics Letters 03/2014; 104(12):121901-121901-3.
51. Preparation of Crystalline Chromium Coating on Cu Substrate Directly by DC Electrodepositing from Wholly Environmentally Acceptable Cr(III) Electrolyte. Aimin Liang, Qiao Liu, Bin Zhang?, Liwei Ni, Junyan Zhang. Materials Letters 03/2014; 119:131–134. (通訊作者)
52. Recent advances in the mechanical and tribological properties of fluorine-containing DLC films. Lifang Zhang, Fuguo Wang, Li Qiang, Kaixiong Gao, Bin Zhang?, Junyan Zhang. RSC Advances 01/2014; 5(13):9635-9649.
53. Spontaneous symmetry breaking discovers the formation of aeroplane-like ZnO nanocrystals, Yan Zhou, Junyan Zhang, Bin Zhang, Li Qiang, Yuqing Da, Gang Su, Jiangong Li, Applied Physics Letters, 2014, 104(12), 121901 (IF: 3.515)
54. 以環(huán)戊二烯為碳源制備類富勒烯結(jié)構(gòu)碳基薄膜的結(jié)構(gòu)及力學(xué)性能, 張慶堂,吳坤堯,龔珍彬,張斌,張俊彥, 中國表面工程, 2013, 27(4), 89-94
55. Hydrophobic, mechanical, and tribological properties of fluorine incorporated hydrogenated fullerene-like carbon films. Li Qiang, Bin Zhang, Kaixiong Gao, Zhenbin Gong, Junyan Zhang. Friction,12/2013; 1(4):350-358.
56. Advanced Solid Lubricant Technology Improve Engine Performance. Yupeng An, Kejin Zhang, Dan Wang, Junyan Zhang, Bin Zhang. Lecture Notes in Electrical Engineering 11/2013; 195:839-849.,
57. The effect of a static magnetic field on the hydrogen bonding in water using frictional experiments. Yongfu Wang, Bin Zhang, Zhenbin Gong, Kaixiong Gao, Yujing Ou, Junyan Zhang. Journal of Molecular Structure 11/2013; 1052:102-104.
58. Lower friction and higher wear resistance of fluorine-incorporated amorphous carbon films. Jinfeng Cui, Li Qiang, Bin Zhang, Tao Yang, Junyan Zhang. Surface and Interface Analysis 09/2013; 45(9).
59. Ultra-low friction of fluorine-doped hydrogenated carbon film with curved graphitic structure. Li Wei, Bin Zhang, Yan Zhou, Li Qiang, Junyan Zhang Surface and Interface Analysis 08/2013; 45(8).
60. Improving the internal stress and wear resistance of DLC film by low content Ti doping. Li Qiang, Bin Zhang, Yan Zhou, Junyan Zhang Solid State Sciences 06/2013; 20:17–22.
61. PECVD 制備六方金剛石結(jié)構(gòu)碳?xì)浔∧? 曹忠躍,張斌,魏利,張俊彥, 中國表面工程, 2013, 4, 55-59
62. 類金剛石薄膜挺柱的制備與性能, 武彬,李駿,張俊彥,張斌, 吉林大學(xué)學(xué)報: 工學(xué)版, 2013, 43(1), 51-55
63. 發(fā)動機氣門應(yīng)用固體潤滑薄膜研究, 黃平,張營營,張斌,范梅梅,李興杰,強力, 新技術(shù)新工藝, 2013, 8, 19-21
64. 發(fā)動機挺柱沉積類金剛石薄膜的工藝及性能, 黃平,張營營,張斌,范梅梅,李興杰,強力, 電鍍與涂飾, 2013, 32 (6), 19-21
65. 氟含量對類金剛石薄膜結(jié)構(gòu)及摩擦學(xué)性能的影響, 魏利,張斌,曹忠躍,張俊彥, 中國表面工程, 2013, 26(2), 66-71
66. The high‐temperature tribological properties of Si‐DLC films. Baoping Yang, Yu Zheng, Bin Zhang, Li Wei, Junyan Zhang. Surface and Interface Analysis, 12/2012; 44(13): 1601-1605.
67. The effect of thermal annealing on the microstructure and mechanical properties of magnetron sputtered hydrogenated amorphous carbon films. Bin Zhang, Yan Zhou, Junyan Zhang, Zhou Wang, Surface and Interface Analysis, 02/2012; 44 (2):162-165.
68. Mechanical and tribological properties of Ti-DLC films with different Ti content by magnetron sputtering technique. Jinfeng Cui, Li Qiang, Bin Zhang, Xiao Ling, Tao Yang, Junyan Zhang. Applied Surface Science, 04/2012; 258(12):5025-5030.
69. Ultra-elastic recovery and low friction of amorphous carbon films produced by a dispersion of multilayer graphene. Junyan Zhang, Bin Zhang?, Qunji Xue, Zhou Wang. Diamond and Related Materials, 03/2012; 23:5-9.
70. The effect of thermal annealing on the microstructure and mechanical properties of magnetron sputtered hydrogenated amorphous carbon films, Bin Zhang, Yan Zhou, Junyan Zhang, Zhou Wang, Surface and Interface Analysis, 2012, 44 (2), 162-165(第一作者)
71. 基底溫度對摻氟類金剛石碳膜摩擦學(xué)性能的影響, 崔錦峰,楊濤,張斌,強力,鄭愉,張俊彥, 中國表面工程, 2012, 3, 33-36
72. 偏壓對硅摻雜類金剛石碳膜力學(xué)及摩擦學(xué)性能的影響, 楊保平,鄭愉, 張斌, 張俊彥, 摩擦學(xué)學(xué)報, 2012, 6, 017
73. Effects of negative bias on the structural, topological and tribological properties of amorphous carbon films prepared by magnetron sputtering. Zhou Wang, Chengbing Wang, Bin Zhang, Qi Wang, Junyan Zhang. Surface and Interface Analysis, 09/2011; 43(9): 1218-1223.
74. Spontaneous Symmetry Breaking during Formation of ZnO Nanocrystals Yan Zhou, Junyan Zhang, Jiangong Li, Bin Zhang. Journal of Crystal Growth, 12/2011; 324(1):225-228.
75. Structure evolution from nanocolumns to nanoporous of nitrogen doped amorphous carbon films deposited by magnetron sputtering. Bin Zhang, Yuanlie Yu, Zhou Wang, Junyan Zhang. Applied Surface Science, 09/2010; 256(22-256): 6506-6511.
76. Structural, mechanical and tribological behavior of fullerene-like carbon film. Peng Wang, Xia Wang, Bin Zhang, Weimin Liu. Thin Solid Films, 08/2010; 518(21):5938-5943.
77. Designed fabrication of hard CrCr2O3Cr7C3 nanocomposite coatings for anti-wear application. Zhixiang Zeng, Yan Zhou, Bin Zhang, Yanlin Sun, Junyan Zhang. Acta Materialia, 10/2009; 57(18-57):5342-5347.
78. Magnetron sputtering deposition of carbon nitride nanocolumns at low temperature. Bin Zhang, Yuanlie Yu, Junyan Zhang. Journal of Physics D Applied Physics, 09/2009; 42(18):185304.
79. Formation of hydrogenated amorphous carbon films containing fullerene-like structures. Peng Wang, Xia Wang, Bin Zhang, Weimin Liu. Journal of Non-Crystalline Solids 09/2009; 355(34):1742-1746.
80. The Tribological Properties of Fullerene-Like Hydrogenated Carbon (FL-C:H) Film under Different Humidity Conditions. Xia Wang, Peng Wang, Bin Zhang, Shengrong Yang, Junyan Zhang. Tribology Transactions, 05/2009; 52(3-3):354-359.
81. Fabrication of highly conductive Ru/a-CNx:H composite films by anode deposit. Yuanlie Yu, Bin Zhang, Junyan Zhang. Electrochemistry Communications, 04/2009; 11(4):772-775.
授權(quán)專利:
1. 強力,張俊彥,張斌,高凱雄,白常寧,低摩擦碳基固體潤滑涂層及其制備方法和應(yīng)用,ZL201910011395.8
2. 強力,張俊彥,張斌,高凱雄,白常寧,一種橡膠基復(fù)合材料及其制備方法,授權(quán)號,ZL201910011291.7
3. 一種高壓干氣密封裝置用分形織構(gòu)化碳膜的制備方法
4. 一種摩擦界面原位形成石墨烯和洋蔥實現(xiàn)超滑的方法
5. 高凱雄,高斌基,張俊彥,張斌,王永富,強力,類富勒烯碳/類石墨烯氮化硼多層超滑薄膜的制備方法, ZL201711382569.9
6. 張俊彥,曹忠躍,強力,張斌,大氣環(huán)境下超滑納米晶-非晶碳薄膜的制備方法,ZL201610371967.X
7. 張斌,張俊彥,高凱雄,強力,王健,柵極輔助柱狀電弧離子鍍膜裝置,ZL201520837539.2(實用新型)
8. 張斌,張俊彥,高凱雄,強力,王健,陽極場輔磁控濺射鍍膜裝置,ZL201520836093.1
9. 張斌,張俊彥,高凱雄,強力,一種類金剛石薄膜的磁靴增強磁控濺射鍍膜裝置,ZL201520837488.z(實用新型)
10. 張斌,張俊彥,強力,高凱雄,王健,箍縮磁場輔助磁控濺射鍍膜裝置, ZL201510705329.2
11. 張斌,張俊彥,高凱雄,強力,王健,具高功率脈沖離子源的磁控濺射裝置,ZL201510708221.9
12. 張斌,張俊彥,高凱雄,強力,王健,一種磁控濺射制備超硬超光滑四面體碳薄膜的裝置與方法,ZL201510705271.1
13. 張斌,張松林,一種真空鍍膜機工件盤中心定位裝置,ZL201520565780.4 (實用新型)
14. 張斌,張松林,一種真空鍍膜機工件盤與箱體整體絕緣聯(lián)接裝置,ZL201520564360.4(實用新型)
15. 張斌,張俊彥,高凱雄,強力,龔珍彬,低溫氣相沉積洋蔥結(jié)構(gòu)碳基超潤滑薄膜的方法,ZL201410819178.9
16. 張松林,張斌,一種電真空專用設(shè)備用多氣體快速混合裝置,ZL201620235180.6(實用新型)
17. 高凱雄,張俊彥,張斌,強力,王健,一種多層復(fù)合類富勒烯薄膜在汽車發(fā)動機上產(chǎn)業(yè)化的方法,ZL 201510705272.6
18. 高凱雄,張俊彥,張斌,強力,合金工具鋼柱塞表面批量化沉積類富勒烯碳薄膜的方法,ZL 201410429173.5
19. 張俊彥,張斌,柱塞表面類金剛石薄膜批量化沉積方法,ZL 201210550894.2
20. 張俊彥,卜銀忠,王琳,張斌,在鈦合金表面制備生物活性復(fù)合薄膜的方法,ZL 201110428111.9
21. 張俊彥,張斌,強力,模具鋼表面多層梯度納米復(fù)合類金剛石薄膜的制備方法,ZL 201110428052.5
22. 張俊彥,張斌,強力,楊濤,鄭愉,在金屬內(nèi)表面制備類金剛石碳膜的方法, ZL 201110427990.3
23. 張俊彥,張斌,一種含氫納米結(jié)構(gòu)CNx梯度薄膜的制備方法,ZL200810189943.8
24. 張俊彥,王舟,宋仕永,張斌,在不銹鋼上制備薄膜的方法,ZL200810142996.4
社會任職:
1. 美國American Journal of Mechanical and Materials Engineering雜志編委
2. SCIREA Journal of Materials雜志編委
3. 中國機械工程學(xué)會摩擦學(xué)分會青委會委員
4. 中國機械工程學(xué)會表面工程分會青委會委員
5. 中國機械工程學(xué)會摩擦學(xué)分會磨損與表面技術(shù)專委會
6. 中國科學(xué)院青年創(chuàng)新促進會會員
7. 中國真空學(xué)會薄膜專委會委員
8. 深圳市真空技術(shù)行業(yè)協(xié)會專家委員會技術(shù)組委員
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