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上海交通大学材料科学与工程学院导师教师师资介绍简介-谭占秋

本站小编 Free考研考试/2021-01-02

姓名: 谭占秋
职称: 专职科研人员
博导/硕导: 硕导
所属二级机构: 复合材料研究所
通讯地址: 上海市闵行区东川路800号交通大学材料学院D楼322室
邮编: 200240
E-mail: tanzhanqiu@sjtu.edu.cn
联系电话:

从事专业: 金属基复合材料制备科学与应用技术
学习与工作简历: 学习简历:
  2002.9-2006.6:河北科技大学,材料科学与工程学院,无机非金属材料工程,本科
  2006.9-2009.6:中南大学,粉末冶金研究院,材料学,硕士
  2009.9- 2014.3:上海交通大学,材料科学与工程学院,材料学,博士
工作简历:
  2014.3- 2016.2:上海交通大学,环境科学与工程学院,材料学,博士后
  2016.3-至今,上海交通大学,材料科学与工程学院,助理研究员

研究方向一 纳米碳/铝基复合材料的仿生制备及其轻量化应用技术
研究方向二 热管理用金属基复合材料的设计、制备与导热性能
研究情况 1)在高模量、高强度纳米碳增强铝基复合材料研究方面:
  基于金属仿生复合化的学术思想,提出基于片状粉末冶金技术的元素合金化方法,制备了高模量、高强度兼备高塑性的碳纳米管/铝基复合材料,突破了超细晶金属基复合材料的强塑性倒置关系,在结构轻量化方面具有广阔的应用前景。发表SCI论文近20篇(第一或通讯作者10篇),申请发明专利10项 (授权8项)。主持航天支撑技术基金、航空科学基金、上海市空间飞行器机构重点实验室开放课题等应用基础研究项目3项;作为项目骨干,参与国家重点研发计划项目2项、自然科学基金2项、国防创新项目2项。
2)在热管理用高导热金属基复合材料研究方面:
  基于界面改性设计与传热构型调控,开展金刚石/铝基、铜基复合材料研究,在国际期刊发表SCI论文11篇(第一作者9篇),申请发明专利5项 (授权4项)。主持国家自然科学基金青年项目1项、博士后科学基金面上项目1项;作为项目骨干,参与国家重点研发计划项目1项。

讲授主要课程 金属基复合材料

教学研究
代表性论文、论著   [1].Zhanqiu Tan, Zhiqiang Li*, Genlian Fan, Wenhuan Li, Qinglei Liu, Wang Zhang, Di Zhang*. Two-dimensional distribution of carbon nanotubes in copper flake powders. Nanotechnology. 22 (2011) 225603 (6pp).
  [2].Zhanqiu Tan, Zhiqiang Li*, Genlian Fan, Xizhou Kai, Gang Ji, Lanting Zhang, Di Zhang*. Fabrication of diamond/aluminum composites by vacuum hot pressing: process optimization and thermal properties. Composites Part B: Engineering. 47 (2013) 173-180.
  [3].Zhanqiu Tan, Zhiqiang Li*, Genlian Fan, Xizhou Kai, Gang Ji, Lanting Zhang, Di Zhang*. Enhanced thermal conductivity in diamond/aluminum composites with a tungsten interface nanolayer. Materials and Design. 47 (2013) 160-166.
  [4].Zhanqiu Tan, Zhiqiang Li*, Ding-Bang Xiong, Genlian Fan, Gang Ji, Di Zhang*. A predictive model for interfacial thermal conductance in surface metallized diamond aluminum matrix composites. Materials and Design. 55 (2014) 257-262.
  [5].Zhanqiu Tan, Zhizhong Chen, Genlian Fan, Gang Ji, Jie Zhang, Run Xu, Aidang Shan, Zhiqiang Li*, Di Zhang*. Effect of particle size on the thermal and mechanical properties of aluminum composites reinforced with SiC and diamond. Materials and Design. 90 (2016) 845-851.
  [6].Zhanqiu Tan, Gang Ji*, Ahmed Addad, Zhiqiang Li*, Jean-Fran?ois Silvain, Di Zhang. Tailoring interfacial bonding states of highly thermal performance diamond/Al composites: Spark plasma sintering vs. vacuum hot pressing. Composites: Part A. 91 (2016) 9-19.
  [7].Zhanqiu Tan, Ding-Bang Xiong, Genlian Fan*, Zhizhong Chen, Qiang Guo, Cuiping Guo, Gang Ji, Zhiqiang Li*, Di Zhang. Enhanced thermal conductivity of diamond/aluminum composites through tuning diamond particle dispersion. Journal of Materials Science. 53 (2018) 6602-6612.
  [8].Zhizhong Chen, Zhanqiu Tan*, Gang Ji, Genlian Fan, Dominique Schryvers, Qiubao Ouyang, Zhiqiang Li*. Effect of Interface Evolution on Thermal Conductivity of Vacuum Hot Pressed SiC/Al Composites. Advanced Engineering Materials. 17 (2015) 1077-1085.
  [9].Mengying Yuan, Zhanqiu Tan*, Genlian Fan, Ding-Bang Xiong, Qiang Guo, Cuiping Guo, Zhiqiang Li*, Di Zhang. Theoretical modelling for interface design and thermal conductivity prediction in diamond/Cu composites. Diamond & Related Materials. 81 (2018) 38-44.
  [10].Ziyun Yu, Zhanqiu Tan*, Genlian Fan, Ding-Bang Xiong, Qiang Guo, Renbang Lin, Li Hu, Zhiqiang Li*, Di Zhang. Effect of interfacial reaction on Young‘s modulus in CNT/Al nanocomposite: A quantitative analysis. Materials Characterization. 137 (2018) 84-90.
  [11].Laipeng Yan, Zhanqiu Tan*, Gang Ji, Zhiqiang Li*, Genlian Fan, D. Schryvers, Aidang Shan, Di Zhang. A quantitative method to characterize the Al4C3-formed interfacial reaction: The case study of MWCNT/Al composites. Materials Characterization. 112 (2016) 213-218.
  [12].Run Xu, Zhanqiu Tan*, Dingbang Xiong, Genlian Fan, Qiang Guo, Jie Zhang, Yishi Su, Zhiqiang Li*, Di Zhang. Balanced strength and ductility in CNT/Al composites achieved by flake powder metallurgy via shift-speed ball milling. Composites: Part A. 96 (2017) 57-66.
  [13].Run Xu, Zhanqiu Tan*, Genlian Fan, Gang Ji, Ding-Bang Xiong, Qiang Guo, Yishi Su, Zhiqiang Li?, Di Zhang. High-strength CNT/Al-Zn-Mg-Cu composites with improved ductility achieved by flake powder metallurgy via elemental alloying. Composites Part A, 111 (2018) 1-11.
  [14].Run Xu, Genlian Fan, Zhanqiu Tan*, Gang Ji, Cai Chen, Beno?t Beausir, Ding-Bang Xiong, Qiang Guo, Cuiping Guo, Zhiqiang Li*, Di Zhang. Back stress in strain hardening of carbon nanotube/aluminum composites. Materials Research Letters, 6 (2018) 113-120.
  [15].Yuanyuan Jiang, Zhanqiu Tan*, Run Xu, Genlian Fan, Ding-Bang Xiong, Qiang Guo, Yishi Su, Zhiqiang Li*, Di Zhang. Tailoring the structure and mechanical properties of graphene nanosheet/aluminum composites by flake powder metallurgy via shift-speed ball milling. Composites Part A, 111 (2018) 73-82.
  [16].Genlian Fan, Yue Jiang, Zhanqiu Tan*, Qiang Guo, Ding-bang Xiong, Yishi Su, Renbang Lin, Li Hu, Zhiqiang Li*, Di Zhang. Enhanced interfacial bonding and mechanical properties in CNT/Al composites fabricated by flake powder metallurgy. Carbon. 130 (2018) 333-339.
  [17].Genlian Fan, Haiyue Huang, Zhanqiu Tan*, Dingbang Xiong, Qiang Guo, Makio Naito, Zhiqiang Li*, Di Zhang. Grain refinement and superplastic behavior of carbon nanotube reinforced aluminum alloy composite processed by cold rolling. Materials Science & Engineering A. 708 (2017) 537-543.
  [18].Gang Ji*, Zhanqiu Tan, Yinggang Lu, Dominique Schryvers, Zhiqiang Li*, Di Zhang. Heterogeneous interfacial chemical nature and bonds in a W-coated diamond/Al composite. Materials Characterization. 112 (2016) 129-133
  [19].Gang Ji*, Zhanqiu Tan, Rajashekhara Shabadi, Zhiqiang Li*, Wolfgang Grünewald, Ahmed Addad, Dominique Schryvers, Di Zhang. Triple ion beam cutting of diamond/Al composites for interface characterization. Materials Characterization. 89 (2014) 132-137.
  [20].李志强*, 谭占秋, 范根莲, 张荻. 高效热管理用金属基复合材料研究进展. 中国材料进展. 32 (2013) 431-441
  [21]. 鄢来朋,谭占秋,熊定邦,范根莲,李志强*,张荻. 碳纳米管/铝复合界面调控研究进展. 中国材料进展, 35 (2016) 943-949.

毕业博士生数
毕业硕士生数 3
参加学术团体、任何职务
申请专利   申请中国发明专利15项,已授权12项
  [1].一种高导热电子封装材料的粉末冶金制备方法. ZL6.4
  [2].一种高导热金刚石/铝复合材料的制备方法. ZL 1.1
  [3].具有分级结构的高导热金属基复合材料及其制备方法. ZL 2.7
  [4].一种微纳米叠片制备超细晶合金的粉末冶金方法. ZL 8.3
  [5].一种碳纳米管增强铝合金复合材料的粉末冶金制备方法. ZL 4.0
  [6].一种碳纳米管增强铝合金复合材料的粉末冶金制备方法. ZL 5.9
  [7].石墨烯改性的高导热铝基复合材料及其粉末冶金制备方法. ZL 8.2
  [8].一种铝-碳复合材料界面反应程度的定量检测装置及方法. ZL 9.5
  [9].一种碳纳米管金属基复合材料的界面设计和制备方法. ZL 7.5
  [10].一种铝-碳复合材料界面反应程度的定量检测方法. ZL 3.X

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