副研究员
张东卿,博士,副研究员,硕士生导师。于2008年在中科院山西煤化所炭材料重点实验室获得材料学博士学位。多年来一直从事煤基高性能炭基复合材料、煤基特种纤维等材料的研发工作。主持研发的新一代高铁受电弓煤基炭滑板材料基本性能指标已达到国际先进水平,目前正在进行制备工艺的中试放大技术研究。主持研发的煤基特种炭/金属高性能高铁制动摩擦材料具有突出的耐磨性和高温稳定性,能满足高速列车高速、高温、高能载的制动要求,并掌握工程放大过程的关键工艺和技术,正在推进产业化方面工作。同时,在实验室制备出了高性能煤基沥青中间相材料和中间相沥青炭纤维。期间,发表研究论文近20篇,申请国家专利20余项。
学术活动:
贝克兰2018暨第六届热固性聚合物国际研讨会 (Baekeland 2018 Symposium) 大会报告:Review and Research Progress of Phenolic Fibers
2018第五届全国复合材料科技大会 大会报告:高性能高铁制动摩擦材料
专利成果:
(1)一种制备中空酚醛纤维的固化方法,2009,专利号: ZL 2005 1 0012803.X
(2)一种制备“皮芯”结构中空酚醛纤维的方法, 2011,专利号: 200710139554.X
(3)一种异形喷丝板熔融纺丝制备中空酚醛纤维的方法, 2011,专利号: 200710139553.5
(4) 一种超细酚醛纤维的制备方法, 2011,专利号: 201110319111.5
(5)一种用于纺制酚醛纤维的原液及其制备方法,2011,专利号: 201110319102.6
(6)一种可控温水浴反应釜, 2016,专利号: 201620775354.8
(7)镀铜膨胀石墨增强金属基复合材料的制备方法, 2017,专利号: 201711062990.1
(8)一种HF和BF3的废气吸收装置, 2016,专利号: 201620319993.3
(9)一种高速列车制动用铜铁基粉末冶金摩擦材料及制备方法, 2017,专利号: 201711101720.7
(10)一种热固性酚醛树脂原丝的凝固方法, 2017,专利号: 201711101885.4
(11)一种高速列车受电弓用纯炭滑板及其制备方法, 2019,专利号: 201910817347.8
(12)高速列车制动闸片的浮动式调整器, 2017,专利号: 201721443932.9
(13)一种制备膨胀石墨电镀铜的设备和方法, 2017,专利号: 201711063366.3
(14)一种高速列车摩擦块, 2017,专利号: 201721444056.1
(15)一种高速列车受电弓用浸铜炭滑板材料及其制备方法, 2019,专利号: 201910817342.5
(16)一种高速列车制动闸片背板, 2019,专利号: 201920952632.6
(17)一种连续长丝束酚醛纤维的制备方法,2019,专利号: 201910817341.0
(18)一种高速列车的制动闸片及其安装方法实,2019,专利号: 201910548332.6
(19)一种石墨烯增强高速列车制动闸片材料及其制备方法,2019,专利号: 201910333711.3
(20)一种包边结构高速列车制动闸片背板和摩擦体,2020,专利号: 201921767274.8
(21)一种高速列车摩擦块的衬托结构, 2020,专利号: 201920952633.0
(22)一种溶解法制备含锆沥青的方法, 2006,专利号: 200310109697.8
(23)一种纺丝沥青原料预处理方法, 2017,专利号: 201510201626.3
飞禽走兽老虎机:
(1) The microstructure and properties of graphite flakes/copper composite with high graphite flakes volume fraction, New Carbon Materials, 2020
(2) Phase change materials coated with modified graphene oxide as fillers for silicone rubber used in thermal interface applications, New Carbon Materials, 2019
(3) Excluding molten fluoride salt from nuclear graphite by SiC/glassy carbon composite coating, Nuclear Engineering and Technology, 2019
(4) Microstructure and properties of fine-grained isotropic graphite based on mixed fillers for application in molten salt breeder reactor., Journal of Nuclear Materials, 2018
(5) Effect of graphite flakes particle sizes on the microstructure and properties of graphite flakes/copper composites., Journal of Alloys and Compounds, 2018
(6) Preparation and one-step activation of microporous carbon nanofibers for use as supercapacitor electrodes, Carbon, 2013
(7) Phenolic-based carbon nanofiber webs prepared by electrospinning for supercapacitors, materials letters, 2012
(8) 中空度对中空酚醛纤维性能的影响, 材料工程, 2012
(9) Studies on hollownesss regulation and properties of crosslinked hollow phenolic fibers., Fibers and Polymers, 2012
(10) 炭化过程中中空酚醛纤维结构性能的变化, 材料工程, 2011
(11) Preparation and properties of the phenolic foams with controllable nanometer pore structure, Journal of Applied Polymer Science , 2010
(12) Preparation mechanism and characterization of a novel, regulable hollow phenolic fiber, Journal of Applied Polymer Science, 2007
(13)熔纺中喷丝孔结构对中空酚醛纤维截面形貌的影响,宇航材料工艺,2008
(14)腰果壳油改性酚醛纤维的制备及性能研究,合成纤维,2008
(15)提高酚醛基纤维耐热性的表面处理方法,材料工程,2007
(16)中空酚醛纤维的熔纺研究及性能表征,材料工程,2007
(16)含锆沥青制备工艺条件和性能的研究,新型炭材料,2003
(17)共炭化剂对沥青浸渍性能的影响,新型炭材料,2001