基本信息
柯培玲 女 硕导 宁波材料技术与工程研究所
电子邮件:kepl@nimte.ac.cn
通信地址:浙江省宁波市镇海区庄市大道519号
邮政编码:315201

研究领域

主要研究领域:新型固体润滑减摩耐磨涂层材料及表面改性技术,目前正进行高功率脉冲磁控溅射技术(HIPIMS)的研究,新型自润滑减摩涂层材料的表/界面结构设计及摩擦学研究

招生信息

   
招生专业
080501-材料物理与化学
080503-材料加工工程
招生方向
表面工程与再制造技术

教育背景

2005-06--2006-06 英国伯明翰大学 访问学生
2001-08--2006-09 中国科学院金属研究所 博士学位
学历
-- 研究生
学位
-- 博士

工作经历

   
工作简历
2009-08--今 中国科学院宁波材料技术与工程研究所 副研究员
2007-12--2009-07 浙江汇锦梯尔镀层科技有限公司 研发部经理
2006-12--2007-12 英国伯明翰大学 博士后

专利与奖励

   
专利成果
[1] 张栋, 汪爱英, 郭鹏, 柯培玲, 孙丽丽. 一种金属掺杂非晶碳薄膜材料、其制备方法与应用. CN: CN111455331B, 2022-03-04.

[2] 李昊, 汪爱英, 张栋, 柯培玲, 刘林林. 一种金属双极板高导电耐蚀防护涂层及其制备方法与应用. CN: CN110684946B, 2022-01-25.

[3] 陈国新, 卢焕明, 沈圣成, 于海涛, 柯培玲. 一种具备环境隔绝转移功能的TEM电学样品杆. CN: CN113097040A, 2021-07-09.

[4] 王丽, 汪爱英, 孙丽丽, 柯培玲, 帅锦涛. 一种表面强韧抗冲蚀防护涂层及其制备方法与应用. CN: CN110760797B, 2021-05-28.

[5] 汪爱英, 王振玉, 柯培玲, 阮海涛, 李忠昌. 一种抗中高温水蒸气腐蚀的防护涂层及其制备方法与应用. CN: CN112695282A, 2021-04-23.

[6] 张栋, 汪爱英, 卢小伟, 柯培玲, 陈仁德, 王应泉. 一种超疏水耐磨涂层及其制备方法与应用. CN: CN112662997A, 2021-04-16.

[7] 左潇, 柯培玲, 汪爱英, 陈仁德, 刘应瑞. 一种硅酸钇涂层及其制备方法与应用. CN: CN112011773A, 2020-12-01.

[8] 张栋, 汪爱英, 柯培玲, 陈仁德, 孙丽丽. 一种铝合金基体表面的耐磨润滑涂层及其制备方法. CN: CN108950517B, 2020-12-01.

[9] 王振玉, 汪爱英, 柯培玲, 刘应瑞, 张栋. MAX相涂层及其制备方法. CN: CN111748782A, 2020-10-09.

[10] 柯培玲, 汪爱英, 张栋, 李文涛, 左潇. 一种事故容错锆包壳管防护涂层及其制备方法与应用. CN: CN110965035A, 2020-04-07.

[11] 汪爱英, 王舒远, 陈仁德, 孙丽丽, 柯培玲, 张栋. 一种亲油疏水材料,其制备方法与应用. CN: CN110184584A, 2019-08-30.

[12] 汪爱英, 王舒远, 孙丽丽, 张栋, 柯培玲, 郭鹏. 一种金属掺杂多孔碳薄膜的制备方法. CN: CN110055506A, 2019-07-26.

[13] 柯培玲, 李文涛, 汪爱英, 张栋, 王振玉. 核燃料包壳及其制备方法、核燃料组件. CN: CN109868475A, 2019-06-11.

[14] 柯培玲, 康皓, 汪爱英, 王振玉, 左潇. 润滑涂层及其制备方法. CN: CN109722637A, 2019-05-07.

[15] 汪爱英, 高羽, 张栋, 柯培玲, 郭鹏. 一种钛基体表面的抗菌耐磨涂层及制备方法. CN: CN109706503A, 2019-05-03.

[16] 汪爱英, 郭有志, 孙丽丽, 郭鹏, 张栋, 柯培玲. 碳基薄膜及其制备方法. CN: CN108359954A, 2018-08-03.

[17] 柯培玲, 刘京周, 汪爱英, 王丽, 张栋. 一种Cr 2 AlC相纯度可调控的涂层制备方法. 中国: CN108330455A, 2018-07-27.

[18] 王振玉, 李文涛, 柯培玲, 张栋, 汪爱英. MAX相涂层的制备方法. CN: CN108330452A, 2018-07-27.

[19] 汪爱英, 王丽, 张栋, 郭鹏, 柯培玲. 纳米级厚度的非晶碳基薄膜作为红外吸收材料的应用及非晶碳基薄膜的制备方法. CN: CN108251807A, 2018-07-06.

[20] 汪爱英, 刘盼盼, 张栋, 郭婷, 李汉超, 柯培玲. 一种石墨烯的制备方法. 中国: CN108203090A, 2018-06-26.

[21] 陈仁德, 汪爱英, 张栋, 柯培玲, 王丽. 一种阴极电弧源. 中国: CN104928632B, 2018-05-04.

[22] 孙丽丽, 汪爱英, 张栋, 郭鹏, 柯培玲, 左潇. 一种超疏水类金刚石薄膜的制备方法. CN: CN107686982A, 2018-02-13.

[23] 柯培玲, 王振玉, 李晓伟, 汪爱英, 张栋. 一种高纯强致密MAX相涂层的制备方法. CN: CN107620033A, 2018-01-23.

[24] 张栋, 汪爱英, 柯培玲, 陈仁德, 孙丽丽. 一种基体表面的修饰涂层及其制备方法. CN: CN107460448A, 2017-12-12.

[25] 张栋, 汪爱英, 柯培玲, 王丽, 郭鹏. 一种快速、准确比较类金刚石薄膜结构中金刚石相及石墨相含量的方法. CN: CN107389623A, 2017-11-24.

[26] 柯培玲, 汪爱英, 王鑫, 张栋, 王振玉. 一种基体表面硬且韧的减磨防护涂层及其制备方法. CN: CN107354442A, 2017-11-17.

[27] 左潇, 汪爱英, 柯培玲, 陈仁德, 张树参. 不锈钢基材表面的具有高硬耐蚀性的CrB 2 涂层及其制备方法. 中国: CN107313018A, 2017-11-03.

[28] 张栋, 柯培玲, 汪爱英, 李晓伟, 王丽. 一种聚合物表面的处理方法. CN: CN107151780A, 2017-09-12.

[29] 汪爱英, 李蕾, 张栋, 柯培玲, 陈仁德. 一种基体表面具有耐磨蚀性能的涂层及其制备方法. CN: CN106756839A, 2017-05-31.

[30] 汪爱英, 焦圆, 李晓伟, 柯培玲, 张栋. 一种超亲水仿生材料的制备方法. CN: CN106517137A, 2017-03-22.

[31] 孙丽丽, 汪爱英, 郭鹏, 张栋, 李晓伟, 柯培玲. 一种透明聚合物表面的透明疏水耐磨类金刚石薄膜的制备方法. CN: CN105861990A, 2016-08-17.

[32] 柯培玲, 王振玉, 张栋, 李晓伟, 汪爱英. 一种强韧耐磨涂层及其制备方法. CN: CN105803393A, 2016-07-27.

[33] 陈仁德, 汪爱英, 孙丽丽, 张栋, 柯培玲, 郭鹏, 李晓伟. 一种球体真空镀膜装夹装置. CN: CN105671512A, 2016-06-15.

[34] 汪爱英, 焦圆, 柯培玲, 张栋, 郭鹏. 一种类金刚石微管及其制备方法. CN: CN105483614A, 2016-04-13.

[35] 汪爱英, 郭鹏, 柯培玲, 张栋, 陈仁德, 郑贺. 一种金属掺杂非晶碳薄膜温度传感元件及其制备方法. CN: CN105241569A, 2016-01-13.

[36] 陈仁德, 汪爱英, 张栋, 柯培玲, 王丽. 一种阴极电弧源. CN: CN104928632A, 2015-09-23.

[37] 张栋, 汪爱英, 陈仁德, 许辉, 柯培玲. 真空镀膜腔体中的三轴转基架装置. CN: CN104818468A, 2015-08-05.

[38] 汪爱英, 焦圆, 张栋, 柯培玲, 孙丽丽, 陈仁德. 一种在低功耗低气压条件制备疏水性碳膜的方法. CN: CN104498907A, 2015-04-08.

[39] 郑贺, 汪爱英, 柯培玲, 张栋, 李晓伟, 陈仁德. 一种镀膜夹具. CN: CN204248721U, 2015-04-08.

[40] 张栋, 张海峰, 汪爱英, 柯培玲, 陈仁德. 一种基体表面高导电性的碳基涂层及其制备方法. CN: CN104388902A, 2015-03-04.

[41] 李晓伟, 汪爱英, 张栋, 柯培玲, 许辉. 高硬度、低应力的多元复合类金刚石涂层及其制备方法. CN: CN104294230A, 2015-01-21.

[42] 汪爱英, 郭鹏, 李润伟, 张栋, 檀洪伟, 柯培玲. 金属掺杂非晶碳压阻传感元件、其制备方法与调控方法. CN: CN104195516A, 2014-12-10.

[43] 王振玉, 汪爱英, 李汉超, 李晓伟, 柯培玲. 石墨烯薄膜及其制备方法. CN: CN104129780A, 2014-11-05.

[44] 汪爱英, 郭鹏, 李润伟, 张栋, 杨华礼, 柯培玲. 一种压阻传感元件及其制备方法. CN: CN104089570A, 2014-10-08.

[45] 汪爱英, 冯宗建, 柯培玲, 张栋, 王振玉. 一种基体表面的耐辐照防护涂层及其制备方法. CN: CN103924203A, 2014-07-16.

[46] 张栋, 汪爱英, 柯培玲, 孙丽丽. 一种工件表面的PVD双色拉丝处理方法. CN: CN103882395A, 2014-06-25.

[47] 张栋, 汪爱英, 孙丽丽, 柯培玲. 一种完全褪除工件表面类金刚石碳膜的方法. CN: CN103603026A, 2014-02-26.

[48] 汪爱英, 周凯, 张栋, 邹友生, 郭鹏, 柯培玲. 一种硼掺杂类金刚石薄膜电极的制备方法. CN: CN103572237A, 2014-02-12.

[49] 柯培玲, 王振玉, 张栋, 汪爱英, 谢仕芳. 一种制备润湿性可控的高光滑高硬TiN薄膜的方法. CN: CN103469168A, 2013-12-25.

[50] 汪爱英, 王振玉, 张栋, 柯培玲. 一种基体表面纳米复合Me-Si-N超硬涂层的制备方法. CN: CN103382548A, 2013-11-06.

[51] 汪爱英, 孙丽丽, 张栋, 陈仁德, 柯培玲. 一种提高基材表面氮化物硬质涂层光亮度及硬度的方法. CN: CN103233199A, 2013-08-07.

[52] 柯培玲, 秦晓鹏, 汪爱英, 王振玉, 张栋. 一种基体表面高硬度低磨损的 MoS 2 复合薄膜的制备方法. 中国: CN103060765A, 2013-04-24.

[53] 柯培玲, 汪爱英, 张学谦. 一种具有石墨烯结构的非晶碳膜及其制备方法. CN: CN102774065A, 2012-11-14.

[54] 汪爱英, 杨巍, 柯培玲, 孙丽丽. 镁合金表面兼具耐蚀润滑特性的复合涂层及其制备方法. CN: CN102758201A, 2012-10-31.

[55] 汪爱英, 蔡建, 孙丽丽, 柯培玲, 杨巍. 一种基体表面颜色可控的彩色防腐装饰膜及其制备方法. CN: CN102744926A, 2012-10-24.

[56] 汪爱英, 李晓伟, 孙丽丽, 柯培玲. 无损、快速、准确表征四面体非晶碳薄膜键态结构的方法. CN: CN102680410A, 2012-09-19.

[57] 杨巍, 汪爱英, 柯培玲, 张栋, 代伟. 一种镁合金生物植入材料表面的复合涂层及其制备方法. CN: CN102286767A, 2011-12-21.

[58] 汪爱英, 李洪波, 柯培玲. 阴极真空电弧源薄膜沉积装置. CN: CN201660693U, 2010-12-01.

[59] 汪爱英, 李洪波, 柯培玲. 阴极真空电弧源薄膜沉积装置及沉积薄膜的方法. CN: CN101792895A, 2010-08-04.

出版信息

   
发表论文
[1] Xiaohui Zhou, Yingpeng Zhang, Peng Guo, Li Cui, Aiying Wang, Peiling Ke. Tribological behavior of Cr/a-C multilayered coating against PEEK under dry sliding condition. WEAR. 2023, 518-519: http://dx.doi.org/10.1016/j.wear.2023.204625.
[2] Jiang, Xianchun, Guo, Peng, Cui, Li, Zhang, Yadong, Chen, Rende, Ye, Yumin, Wang, Aiying, Ke, Peiling. Tribological behavior of silicon and oxygen co-doped hydrogenated amorphous carbon coatings on polyether ether ketone. DIAMOND AND RELATED MATERIALS[J]. 2023, 132: http://dx.doi.org/10.1016/j.diamond.2022.109650.
[3] Cui, Junfeng, Sun, Yang, Chen, Huixin, Yang, Yingying, Chen, Guoxin, Ke, Peiling, Nishimura, Kazuhito, Yang, Yong, Tang, Chun, Jiang, Nan. Atomic Insights of Self-Healing in Silicon Nanowires. ADVANCED FUNCTIONAL MATERIALS[J]. 2023, 33(6): http://dx.doi.org/10.1002/adfm.202210053.
[4] Yingrui liu, Linlin Liu, Shuyu Li, Rujia Wang, Peng Guo, Aiying Wang, Peiling Ke. Acceleerated deterioration mechanism of 316L stainless steel in NaCl solution under the intermittent tribocorrosion process. J. Mater. Sci. Technol.[J]. 2022, 121: 67-79, [5] 李昊, 郑贺, 李淑钰, 郭鹏, 孙丽丽, 柯培玲, 汪爱英. 氮表面改性非晶碳基涂层的摩擦及腐蚀行为. 表面技术[J]. 2022, 51(5): 61-69, http://lib.cqvip.com/Qikan/Article/Detail?id=7107213047.
[6] Wei, Jing, Guo, Peng, Li, Hao, Ke, Peiling, Wang, Aiying. Insights on high temperature friction mechanism of multilayer ta-C films. JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY[J]. 2022, 97(2): 29-37, http://dx.doi.org/10.1016/j.jmst.2021.04.028.
[7] Liu, Yingrui, Li, Shuyu, Li, Hao, Ma, Guanshui, Sun, Lili, Guo, Peng, Ke, Peiling, Lee, KwangRyeol, Wang, Aiying. Controllable defect engineering to enhance the corrosion resistance of Cr/GLC multilayered coating for deep-sea applications. CORROSION SCIENCE[J]. 2022, 199: http://dx.doi.org/10.1016/j.corsci.2022.110175.
[8] 李淑钰, 刘应瑞, 郭鹏, 孙丽丽, 柯培玲, 汪爱英. 海洋环境下物理气相沉积氮/碳基抗磨蚀涂层的研究进展. 表面技术[J]. 2021, 50(7): 44-56, http://lib.cqvip.com/Qikan/Article/Detail?id=7105199705.
[9] Shuai, Jintao, Zuo, Xiao, Wang, Zhenyu, Sun, Lili, Chen, Rende, Wang, Li, Wang, Aiying, Ke, Peiling. Erosion behavior and failure mechanism of Ti/TiAlN multilayer coatings eroded by silica sand and glass beads. JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY[J]. 2021, 80(21): 179-190, http://dx.doi.org/10.1016/j.jmst.2021.01.001.
[10] 蒙德强, 王铁钢, 柯培玲, 刘艳梅, 曹斌. “反向设计”法研制ZrB_(2)-Ni涂层及其性能研究. 工具技术[J]. 2021, 55(2): 19-22, http://lib.cqvip.com/Qikan/Article/Detail?id=7104035678.
[11] Liu, Yingrui, Du, Hong, Zuo, Xiao, Guo, Peng, Liu, Li, Lee, KwangRyeol, Wang, Aiying, Ke, Peiling. Cr/GLC multilayered coating in simulated deep-sea environment: Corrosion behavior and growth defect evolution. CORROSION SCIENCE[J]. 2021, 188: http://dx.doi.org/10.1016/j.corsci.2021.109528.
[12] 蒙德强, 王铁钢, 彭勇, 柯培玲, 朱强, 许人仁, 刘迁. 真空退火温度对AlCrSiN/Mo自润滑涂层结构与性能的影响. 材料工程[J]. 2021, 49(1): 126-132, http://lib.cqvip.com/Qikan/Article/Detail?id=7103710224.
[13] Wang, Cuicui, Xu, Beibei, Wang, Zhenyu, Li, Hao, Wang, Li, Chen, Rende, Wang, Aiying, Ke, Peiling. Tribological mechanism of (Cr, V)N coating in the temperature range of 500?900?C. TRIBOLOGY INTERNATIONAL[J]. 2021, 159: http://dx.doi.org/10.1016/j.triboint.2021.106952.
[14] 许蓓蓓, 王振玉, 郭鹏, 帅锦涛, 叶羽敏, 汪爱英, 柯培玲. 氮化钒(VN)涂层在不同载荷下的摩擦磨损行为. 摩擦学学报[J]. 2020, 40(5): 656-663, http://lib.cqvip.com/Qikan/Article/Detail?id=7103358003.
[15] 周佳, 孙丽丽, 郭鹏, 左潇, 柯培玲, 程晓英, 汪爱英. 铝合金表面沉积类金刚石薄膜的研究进展. 表面技术[J]. 2020, 49(1): 113-121, http://lib.cqvip.com/Qikan/Article/Detail?id=7100851726.
[16] Ke Peiling. High-performance Cr2AlC MAX phase coatings: Oxidation mechanisms in the 900-1200 ℃ temperature range. Corrosion Science[J]. 2020, [17] Wang, Zhenyu, Sun, Jie, Xu, Beibei, Liu, Yingrui, Ke, Peiling, Wang, Aiying. Reducing the self-healing temperature of Ti2AlC MAX phase coating by substituting Al with Sn. JOURNAL OF THE EUROPEAN CERAMIC SOCIETY[J]. 2020, 40(1): 197-201, http://dx.doi.org/10.1016/j.jeurceramsoc.2019.09.009.
[18] Wei, Jing, Guo, Peng, Liu, Linlin, Li, Hanchao, Li, Hao, Wang, Shuyuan, Ke, Peiling, Wang, Aiying. Tailored electrochemical behavior of ta-C film by glancing angle deposition. APPLIED SURFACE SCIENCE[J]. 2020, 516: http://dx.doi.org/10.1016/j.apsusc.2020.146115.
[19] Li, Hao, Guo, Peng, Zhang, Dong, Chen, Rende, Zuo, Xiao, Ke, Peiling, Saito, Hidetoshi, Wang, Aiying. Influence of deposition temperature on the structure, optical and electrical properties of a-C films by DCMS. APPLIED SURFACE SCIENCE[J]. 2020, 503: http://dx.doi.org/10.1016/j.apsusc.2019.144310.
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发表著作
(1) 热障涂层,Thermal barrier coatings,woodhead publishing,2011-01,第1作者

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秦晓鹏  硕士研究生  430105-材料工程