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成果及论文

一、代表性项目

[1] 陈凯,软/硬一体化响应润滑仿生关节材料制造及生物摩擦学特性研究,国家自然科学基金面上项目,2025.01-2028.12

[2] 张欣悦,润滑-承载双功能一体化仿生软骨材料的设计、可控构筑及长效服役机制,国家自然科学基金青年项目,2025.01-2027.1

[3] 张德坤,人工关节超滑运动界面和生物固定界面设计、制造及行为机理研究,国家自然科学基金重点项目,2024.01-2028.12

[4] 魏徐兵,激光诱导本征DLC薄膜表面的石墨烯原位调控及多环境润滑机理,国家自然科学基金青年基金,2024.01-2026.12

[5] 冯海燕,基于界面聚合湿滑-黏附水凝胶材料的不对称构筑研究,国家自然科学基金青年基金,2024.01-2026.12

[6] 冯存傲,实时监测矿井摩擦提升机耦合动态工况下衬垫与钢丝绳的粘弹性摩擦传动,博士后面上项目,2023.01-2024.12

[7] 李晓伟,钛合金表面强化类金刚石涂层的复合结构调控与生物摩擦机理,科技部高端外国专家引进计划,2023.01-2024.12

[8] 李晓伟,类金刚石薄膜的表面石墨化/钝化结构调控及多环境摩擦润滑机理,国家自然科学基金面上项目,2022.01-2025.12

[9] 冯存傲,摩擦提升机动态传动中衬垫与钢丝绳界面间粘弹性摩擦的智能识别,国家自然科学基金青年基金,2022.01-2024.12

[10] 曹希传(分项),非线性反应波驱动软机器人的小尺度化与活性运动,国家自然科学基金国际合作重大项目,批准号:22120102001分项分主持),2022.01-2026.12

[11] 李晓伟(骨干),能源电化学科学与技术,江苏省双创团队项目,2023.01-2025.12

[12] 李晓伟,金属表面功能改性碳基薄膜,江苏省特聘教授,2021.10-2024.10

[13] 张德坤,3D打印骨/软骨一体化仿生异构支架的研发与临床应用,江苏省重点研发计划项目,2022.09-2025.08

[14] 张欣悦,天然关节软骨的摩擦学机制研究,中国矿业大学青年科技基金,2023.11-2025.11

[15] 魏徐兵,本征DLC 薄膜表面石墨烯的原位生长及磨蚀行为,中国矿业大学材料学科引导课题,2023.10-2026.09

[16] 魏徐兵,本征类金刚石碳基薄膜表面设计及其摩擦性能调控,中国矿业大学中央高校基本科研业务费,2023.01-2024.12

[17] 冯海燕,二元协同润滑/黏附水凝胶共聚物膜的设计,中国矿业大学中央高校基本科研业务费,2023.01-2024.12

[18] 李晓伟,钛合金表面强化类金刚石涂层的复合结构调控与生物摩擦机理,中国矿业大学越崎引智计划,2023.01-2025.12

[19] 冯海燕,仿生牢固聚合物刷润滑涂层的构筑,中科院兰州化物所固体润滑国家重点实验室开放课题,2023.01-2025.12

[20] 乔江浩,气体关键技术开发,横向,2023.12-2025.06

[21] 亓建伟,光伏边框用玻纤/聚氨酯复合材料配方研究,企业横向,2023.06-2024.12

[22] 滕淑华,发光材料组成与结构测试分析,企业横向,2023.04-2025.03

[23] 陈凯,人工关节软骨材料仿生设计及润滑机制研究,兰州化学物理研究所固体润滑国家重点实验室开放基金项目,2022.01-2023.12

[24] 陈凯,软/硬一体化仿生软骨材料构建及润滑机理研究,清华大学摩擦学国家重点实验室开放基金项目,2022.01-2023.12

[25] 乔江浩,混合气体标准物质研制和分析检测,企业横向,2022.04-2024.06

二、代表性科研教学奖励

[1] 少磨损、低危害、长寿命的人工髋关节仿生设计及关键基础问题研究, 江苏省机械工程学会科学技术二等奖, 2023

[2] 基于磁场定向构建仿软骨材料及其生物摩擦学行为研究, 2023年江苏省优秀学术学位硕士学位论文, 2023

[3] 江苏省机械工程学会青年科技人才托举工程,2023

[4] 摩擦学与可靠性工程研究所,院科学研究先进集体, 2023

[5] 李晓伟, 2023中国矿业大学科研育人先进个人, 2023

[6] 高硬度、低应力的多元复合类金刚石涂层及其制备方法, 第二届宁波市高价值专利发明金奖, 2022

[7] 大型矿山智能化带式输送机用高端减速器关键技术研发, 中国机械工业科学技术奖科技进步二等奖, 2022

[8] 王庆良,形变诱导硬化型中锰耐磨钢关键技术及应用,天津市技术发明奖二等奖,2021

[9] 摩擦学与可靠性工程研究所,煤矿井下运输系统安全保障关键技术与装备,国家技术发明奖二等奖,2011

[10] 摩擦学与可靠性工程研究所,特厚煤层安全开采关键装备及自动化技术,国家科学技术进步二等奖,2010

[11] 矿井大型带式输送机安全保障关键技术,教育部科技进步奖二等奖,2009

[12] 摩擦学与可靠性工程研究所,摩擦学的分形理论,江苏省科技进步奖,2005

[13] 摩擦学与可靠性工程研究所,教育部科技进步奖三等奖,2006

[14] 摩擦学与可靠性工程研究所,矿井提升机的补偿制动技术及相关安全装备,国家技术发明奖二等奖,2001

[15] 摩擦学与可靠性工程研究所,矿井提升安全保障关键技术及装备,江苏省科技进步奖一等奖,2001

三、代表性论文

2024

[1] 杜乃洲,付志民,冯存傲,等.类金刚石薄膜的残余应力调控研究进展[J].中国表面工程.2024:1-15.

[2] Wei X B, Du N Z, Guo P, et al. Friction dependence on processing priority for graphitization/passivation coupled amorphous carbon films[J]. Carbon. 2024, 230:119631.(JCR Q1; TOP期刊)

[3] Wang D G, Wang B, Ge S R, et al. Effects of Fatigue Load Characteristics on Bending Tribo-Corrosion-Fatigue Damage of Steel Wire Ropes in Seawater and Pure Water[J]. Tribology International. 2024,  12: 1512–1531.(JCR Q1;TOP期刊)

[4] Wang B , Wang D G, Ye J H, et al. Effect of fatigue load on the bending tribo-corrosion-fatigue behaviors between the main cable wires[J]. Friction. 2024, 201: 110201.(JCR Q1;TOP期刊)

[5] Zhou L P, Tang J, Kuai S W,et al. Facile Fabrication of Robust Superhydrophobic Ice SheddingCoating with Superior Corrosion Resistance and TemperatureDurability[J].  ACS Applied Polymer Materials. 2024, 6: 308−320.(JCR Q1

[6] Jia M D, Chen Q, Chen K, et al. Muscle-Inspired MXene-Based Conductive Hydrogel by Magnetic Induced for Flexible Multifunctional Sensors[J]. European Polymer Journal. 2024, 214: 113145.(JCR Q1

[7] Kuai S W, Tang J, Zhou L P, et al. Durable anti-icing coating with stability based on self-regulating oil storage layer[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects. 2024, 685: 133028.(JCR Q2

2023

[1] Yang H L, Zhang Z, Hou H L, et al. Engineering the S-Scheme Heterojunction Between NiO Microrods and MgAl-LDH Nanoplates for Efficient and Selective Photoreduction of CO2 to CH4[J]. Chemical Engineering Journal. 2023, 474: 145813.(JCR Q1;TOP期刊)

[2] Yu T T, Shen R L, Wu Z S, et al. Monolayer NbSe2 Favors Ultralow Friction and Super Wear Resistance[J]. Nano Letters. 2023, 23(5): 1865-1871.(JCR Q1;TOP期刊)

[3] Du N Z, Li X W, Wei X B, et al. Atomistic Insights into Interfacial Optimization Mechanism for Achieving Ultralow-Friction Amorphous Carbon Films Under Solid–Liquid Composite Conditions[J]. ACS Applied Materials & Interfaces. 2023, 15(45): 53122-53135.(JCR Q1;TOP期刊)

[4] Zhao B, Zheng X, Gao X R, et al. Rationally incorporated SnO2/SnS2 nanoparticles on sulfur-doped graphene aerogels for high-performance lithium/sodium-ion batteries[J].  Journal of Energy Storage.  2023, 65: 107344.(JCR Q1;TOP期刊)

[5] Zhang L F, Liu H T, Chen T C, et al. Initial damage analysis in bone cement-stem debonding procession of cemented hip arthropsty[J]. Material & Design. 2023,225: 111486.(JCR Q1;TOP期刊)

[6] Tan N, Qiao J H, Wang Q L. Tribocorrosion performance of medium-manganese austenitic wear-resistant steel in simulated mine water[J]. Corrosion Science. 2023, 219: 111225.(JCR Q1;TOP期刊)

[7] Chen Q, Chen K, Wu M, et al. Tough and fatigue-resistant anisotropic hydrogels via fiber reinforcement and magnetic field induction[J]. Science China Materials.  2023, 66: 4841-4852.(JCR Q1;TOP期刊)

[8] Du N Z, Wei X B, Li X W, et al. Friction reactions induced by selective hydrogenation of textured surface under lubricant conditions[J]. 

Friction. 2024, 12(1): 174-184.(JCR Q1;TOP期刊)

[9] Zhang X Y, Zhang T, Chen K, et al. Wear mechanism and debris analysis of PEEK as an alternative to CoCrMo in the femoral component of total knee replacement[J]. Friction. 2023, 11(10): 1845-1861.(JCR Q1;TOP期刊)

[10] Chen Q, Zhang X Y,  Liu S Y, et al. Cartilage-bone inspired the construction of soft-hard composite material with excellent interfacial binding performance and low friction for artificial joints[J]. Friction. 2023, 11 (7): 1177-1193.(JCR Q1;TOP期刊)

2022

[1] Chen Q, Zhang X, Chen K, et al. Anisotropic hydrogels with enhanced mechanical and tribological performance by magnetically oriented nanohybrids[J]. CHEMICAL ENGINEERING JOURNAL. 2022, 430.(JCR Q1;TOP期刊)

[2] 冯存傲,张德坤,陈凯,等. 钛珠涂层和羟基磷灰石涂层与皮质骨界面的切向微动损伤研究[J]. 摩擦学学报. 2022: 1-18.

[3] Yang H L, Zhang D D, Luo Y, et al. Highly Efficient and Selective Visible-light Driven Photoreduction of CO2 to CO by MOFs-derived Ni-Co-O Porous Microrods[J]. Small. 2022.(JCR Q1;TOP期刊)

[4] Zhou L P, Liu A W, Zhou L Z. Facilely Fabricated Self-lubricated Photothermal Coating with Long-term Durability and External-replenishing Property for Anti-icing/deicing[J]. ACS Applied Materials & Interfaces. 2022, 14 (6).(JCR Q1;TOP期刊)

[5] Yang C, Luo Y, Xia Y F, et al. Improved thermoelectric performance of p-type argyrodite Cu8GeSe6 via the simultaneous engineering of the electronic and phonon transports[J]. ACS Applied Materials & Interfaces. 2022, 14 (14).  (JCR Q1;TOP期刊)

[6] Wu X F, Chen K, Chai Q, et al. Freestanding vascular scaffolds engineered by direct 3D printing with Gt-Alg-MMT bioinks[J]. Mater. Sci. Eng. C-Mater. Biol. Appl. 2022, 133.(JCR Q1;TOP期刊)

[7] Zhou L P, Liu H T, Liu A W, et al.  Easily fabricated icephobic surface with external and self-replenishing properties[J]. Applied Surface Science. 2022, 579 (3).(JCR Q1;TOP期刊)

[8] Sun X L,  Luo Y, Wang J Y, et al. The structure, tribological properties and the growth mechanism of in-situ generated TiC in titanium cermet. Friction, 2022, 10 (5): 706-716.  (JCR Q1;TOP期刊)

[9] Yang C, Luo Y, Xia Y F, et al. Improved thermoelectric performance of p-type argyrodite Cu8GeSe6 via the simultaneous engineering of the electronic and phonon transports. ACS Applied Materials & Interfaces, 2022, 14 (14): 16330-16337. (JCR Q1;TOP期刊)

[10] Chen K, Zhao Y J, Zhang Y R, et al. Fretting stimulation enhances bone growth at the interface between hydroxyapatite coating and bone[J]. Colloid Surf. B-Biointerfaces. 2022, 217.(JCR Q1

2021及之前

[1] Wu X, Liu S, Chen K, et al. 3D printed chitosan-gelatine hydrogel coating on titanium alloy surface as biological fixation interface of artificial joint prosthesis[J]. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES. 2021, 182: 669-679.(JCR Q1;TOP期刊)

[2] Li X, Xu X, Qi J, et al. Insights into Superlow Friction and Instability of Hydrogenated Amorphous Carbon/Fluid Nanocomposite Interface[J]. ACS APPLIED MATERIALS & INTERFACES. 2021, 13(29): 35173-35186.(JCR Q1;TOP期刊)

[3] Yang H, Tang J, Luo Y, et al. MOFs-Derived Fusiform In2O3 Mesoporous Nanorods Anchored with Ultrafine CdZnS Nanoparticles for Boosting Visible-Light Photocatalytic Hydrogen Evolution[J]. SMALL. 2021, 17(36).(JCR Q1;TOP期刊)

[4] Yang C, Luo Y, Xia Y, et al. Synergistic Optimization of the Electronic and Phonon Transports of N-Type Argyrodite Ag8Sn1-xGaxSe6 (x = 0-0.6) through Entropy Engineering.[J]. ACS applied materials & interfaces. 2021, 13(47): 56329-56336.(JCR Q1;TOP期刊)

[5] He S, Luo Y, Xu L, et al. Remarkable Improvement of Thermoelectric Performance in Ga and Te Cointroduced Cu3SnS4[J]. INORGANIC CHEMISTRY. 2021, 60(15): 11120-11128.(JCR Q1;TOP期刊)

[6] Zhang X, Lou Z, Yang X, et al. Fabrication and Characterization of a Multilayer Hydrogel as a Candidate for Artificial Cartilage[J]. ACS APPLIED POLYMER MATERIALS. 2021, 3(10): 5039-5050.(JCR Q1;TOP期刊)

[7] Feng C, Zhang D, Chen K. Microscopic dynamic observation of adhesion hysteresis friction and exploration of the influence of different pressures on friction transmission[J]. FRICTION. 2021, 9(4): 758-773.(JCR Q1;TOP期刊)

[8] Qi J, Xu F, Bao K, et al. Influence of a hard transition layer on the microstructure and properties of diamond-like carbon/hydroxyapatite composite coating prepared by magnetron sputtering[J]. JOURNAL OF THE EUROPEAN CERAMIC SOCIETY. 2021, 41(6): 3731-3742.(JCR Q1;TOP期刊)

[9] Zhang H, Liu H, Chen T, et al. Fabrication of a fast curing super-hydrophobic FEVE/MMA coating and its property research[J]. MATERIALS SCIENCE AND ENGINEERING B-ADVANCED FUNCTIONAL SOLID-STATE MATERIALS. 2021, 263.(JCR Q1;TOP期刊)

[10] Sun X, Luo Y, Wang J, et al. Structure, tribological properties, and the growth mechanism of in-situ generated TiC in titanium cermet[J]. FRICTION. 2021.(JCR Q1;TOP期刊)

[11] Chen K, Wang F, Liu S, et al. In situ reduction of silver nanoparticles by sodium alginate to obtain silver-loaded composite wound dressing with enhanced mechanical and antimicrobial property[J]. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES. 2020, 148: 501-509.(JCR Q1;TOP期刊)

[12] Li X, Zhang D, Xu X, et al. Tailoring the Nanostructure of Graphene as an Oil-Based Additive: toward Synergistic Lubrication with an Amorphous Carbon Film[J]. ACS APPLIED MATERIALS & INTERFACES. 2020, 12(38): 43320-43330.(JCR Q1;TOP期刊)

[13] Li M, Xia Y, Luo Y, et al. Cation vacancy related crystal structure and bandgap and their effects on the thermoelectric performance of Cu-ternary systems Cu3+delta In5Te9 (delta=0-0.175)[J]. PHYSICAL CHEMISTRY CHEMICAL PHYSICS. 2020, 22(13): 7004-7011.(JCR Q1;TOP期刊)

[14] Feng C, Zhang D, Grecov D, et al. Effect of rheological properties of friction-enhancing greases on the friction between friction lining and wire rope[J]. TRIBOLOGY INTERNATIONAL. 2020, 144.(JCR Q1;TOP期刊)

[15] Chen M, Hu J, Wang L, et al. Targeted and redox-responsive drug delivery systems based on carbonic anhydrase IX-decorated mesoporous silica nanoparticles for cancer therapy[J]. SCIENTIFIC REPORTS. 2020, 10(1).(JCR Q1;TOP期刊)

[16] Zhong Y, Luo Y, Li X, et al. Silver vacancy concentration engineering leading to the ultralow lattice thermal conductivity and improved thermoelectric performance of Ag1-xInTe2[J]. SCIENTIFIC REPORTS. 2019, 9.(JCR Q1;TOP期刊)

[17] Xu H, Zhang D, Chen K, et al. Taper fretting behavior of PEEK artificial hip joint[J]. TRIBOLOGY INTERNATIONAL. 2019, 137: 30-38.(JCR Q1;TOP期刊)

[18] Kong W, Zhang D, Tao Q, et al. Wear properties of the deep gradient wear-resistant layer applied to 20CrMnTi gear steel[J]. WEAR. 2019, 424: 216-222.(JCR Q1;TOP期刊)

[19] Qi J, Yang Y, Zhou M, et al. Effect of transition layer on the performance of hydroxyapatite/titanium nitride coating developed on Ti-6Al-4V alloy by magnetron sputtering[J]. CERAMICS INTERNATIONAL. 2019, 45(4): 4863-4869.(JCR Q1;TOP期刊)

[20] Chen C, Wang B, Liu H, et al. Synthesis of 3D dahlia-like Co3O4 and its application in superhydrophobic and oil-water separation[J]. APPLIED SURFACE SCIENCE. 2019, 471: 289-299.(JCR Q1;TOP期刊)

四、代表性专利

[1] 曹希传,陈敏敏,乔磊。一种介孔硅负载SARS-CoV-2 S 蛋白B 细胞抗原的纳米颗粒的制备方法及其应用,发明专利,中国,申请号:2023073100167360,申请日期:2023.7.31 

[2] 乔江浩,刘燕才,张露露。一种ZnO/CuO 多孔涂层及其制备方法和应用,发明专利,中国,申请号:2023100793036,申请日期:2023.2.8 

[3] 刘洪涛,刘进平,陈于,魏红亮,王雪松,郝文清,王宝,张宇,刘泽平,刘娟娟,张慧伶,高欣,裴长龙。一种高耐磨无火花铜基合金复合材料及其制备方法,发明专利,中国,专利号:ZL202211056965.3,授权日期:2023.7.18

[4] 刘洪涛,刘进平,陈于,魏红亮,王雪松,郝文清,王宝,张宇,刘泽平,刘娟娟,张慧伶,高欣,裴长龙。一种高耐磨无火花复合材料、采煤机截齿及其制备方法,发明专利,中国,专利号: ZL202211058526.6,授权日期:2023.6.6

 [5] 李晓伟,乔江浩,冯存傲,蔡子明,吉祥。一种超低摩擦固液复合润滑涂层及其制备方法,发明专利,中国,专利号:ZL202111521225.8,授权日期:2023.5.26

[6] 李晓伟,乔江浩,冯存傲,陈凯,亓健伟,杜乃洲,张德坤。一种固体自润滑涂层及其制备方法,发明专利,中国,专利号:ZL202210014526.X,授权日期:2022.12.27

[7] 李晓伟,乔江浩,冯存傲,陈凯,亓健伟,杜乃洲,张德坤。一种固体自润滑涂层及其制备方法,发明专利,中国,申请号:202210014526.X,申请日期:2022.01.06

[8] 李晓伟,乔江浩,冯存傲,蔡子明,吉祥。一种超低摩擦固液复合润滑涂层及其制备方法,发明专利,中国,申请号:202111521225.8,申请日期:2021.12.13

[8] 冯存傲,张德坤,曹洋,陈凯,李晓伟,王大刚,王庆良,刘洪涛。一种矿用摩擦式提升机自驱动智能监测一体化摩擦衬垫,发明专利,中国,申请号:202111462804.X,申请日期:2021.12.01

[9] 刘洪涛,刘泽平,陈于。一种金属材料撞击火花测试装置。实用新型专利,中国,专利号:ZL202123306940.8,授权日期:2022.06.07

[10] 刘洪涛,刘泽平,陈于。一种安全的金属材料摩擦火花测试装置,实用新型专利,中国,专利号:ZL202123394966.2,授权日期:2022.06.07

[11] 刘洪涛,刘䶮泽。病毒过滤系统及医用防护面罩,发明专利,中国,专利号:ZL202011500513.0,授权日期:2022.05.06

[12] 冯存傲,张德坤,陈凯,王大刚,曹洋,王庆良,刘洪涛,李晓伟。一种矿井摩擦式提升机增摩油脂的摩擦粘附性能检测装置及方法,发明专利,中国,专利号:ZL202110817989.5,授权日期:2022.03.29

[13] 罗勇,孙孝礌。一种具有预警功能的人工关节假体及其制备方法,发明专利,中国,专利号:ZL202011410433.6,授权日期:2021.11.23

[14] 滕淑华,周华建,周艺博。载药聚己内酯-壳聚糖-二氧化硅杂化纤维的制备方法,发明专利,中国,专利号:ZL202010704060.7,授权日期:2021.10.15

[15] 陈凯,王丰艳,吴晓芳,刘思雨,许林敏,张德坤。一种基于绿色原位还原的3D打印抗菌水凝胶伤口敷料,发明专利,中国,专利号:ZL201911104667.5,授权日期:2021.08.17

[16] 张德坤,张欣悦,郭永波,吴明锦,张俊,王大刚。一种落锤式钢丝绳冲击破坏试验装置及方法,发明专利,中国,专利号: ZL 201910824307.6,授权日期:2021.02.26

[17] 张德坤,张春雷,郭永波,吴明锦,张欣悦,王大刚。一种横置钢丝绳径向冲击下张力振动检测分析方法及装置,发明专利,中国,专利号  ZL201910652584.3,授权日期:2021.02.26

[18] 张德坤,徐寒冬,陈凯,张羽,牛家墨,张月茹。人工关节生物固定界面微动刺激骨生长的实验装置及方法,发明专利,中国,专利号: ZL201811541781.X,授权日期:2020.06.23

[19] 张德坤,郭永波,张春雷,吴明锦,张欣悦,张俊,王大刚。一种横置钢丝绳弯曲弹射冲击振动检测分析方法及装置,发明专利,中国,专利号: ZL201910652605.1,授权日期:2020.05.08

[20] 陈凯,张德坤,杨雪晖,许林敏,凌意瀚,王庆良,葛世荣。多层异构仿生关节软骨材料的制备工艺,发明专利,中国,专利号:ZL201710302611.5,授权日期:2019.06.18

[21] 陈凯,张德坤,杨雪晖,魏生,许林敏,葛世荣。抗菌型人工关节固定界面的制备方法,发明专利,中国,专利号:ZL201710303525.6,授权日期:2019.06.11

[22] 陈凯,张德坤,杨雪晖,许林敏,王庆良,葛世荣。软软接触式仿生关节制备工艺,发明专利,中国,专利号: ZL201710302585.6,授权日期:2019.05.07

[23] 亓健伟,陈章波,贺丹枫,杨意鸣,王庆良。一种可屏蔽有害离子释放的多孔羟基磷灰石/氮化钛生物活性涂层及用途,发明专利,中国,专利号:ZL201710328710.0,授权日期:2019.02.22

[24] 张德坤,徐寒冬,陈凯,张欣悦,葛世荣。一种模拟人工关节多运动轨迹摩擦的试验方法及装置,发明专利,中国,专利号:ZL201710006327.3,授权日期:2019.02.19