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55篇 您的检索式:作者名="Rogachev A"
    题名 作者 年代 出处 被引量
1聚合物复合薄膜改性橡胶表面结构及其摩擦性能研究显示文摘采用真空电子束分散聚氨酯、聚四氟乙烯及其混合物靶材制备单层、双层和复合薄膜改性丁腈橡胶表面,在MMT型球-盘微摩擦磨损试验机上评价其摩擦性能.结果表明,当混合物靶材中聚氨酯和聚四氟乙烯质量比为1∶1时,复合薄膜的摩擦系数较低,辉光放电等离子体预处理橡胶基体表面对薄膜结构及其摩擦性能影响显著.江晓红 Yarmolenko M A Rogachev A V 杨绪杰 陆路德 2007摩擦学学报2007,27,2:11
2热处理对类金刚石碳薄膜力学和摩擦性能的影响显示文摘利用直流磁分离及脉冲阴极双激发源等离子弧薄膜沉积装置制备了含Ti底层和无Ti底层的类金刚石碳薄膜(DLC);采用纳米硬度计、原子力显微镜和X射线光电子能谱仪分析了薄膜的力学性能和结构;采用УСК-1型球-盘滑动摩擦磨损试验机考察了薄膜的摩擦性能.结果表明,同无Ti底层的DLC薄膜相比,含Ti底层的DLC薄膜的硬度和弹性模量较低;含Ti底层的DLC薄膜经真空400℃退火后表面层中存在TiO2,内部存在TiC;而无Ti底层的DLC薄膜经真空500℃退火处理后硬度、弹性模量和表面形貌几乎保持不变;无Ti底层的DLC薄膜经空气中500℃退火后摩擦系数明显降低,这是由于DLC薄膜在空气中热处理时更易发生石墨化所致.江晓红 金元生 KAZACHENKO V P POPOV A N ROGACHEV A V 2004摩擦学学报2004,24,3:4
3气相法沉积PTFE薄膜及其疏水性显示文摘分别以载玻片、陶瓷片、镀铝聚酯膜、普通白纸和Cu片为基底,聚四氟乙烯(PTFE)粉末为原料,采用电子束蒸发法沉积聚合物薄膜。对于基底载玻片和陶瓷片,采用2%H2SO4溶液刻蚀预处理后在其上沉积厚度为125nm的聚合物薄膜;Cu片用不同浓度草酸刻蚀预处理后在其上沉积厚度为62 nm的聚合物薄膜;而基底镀铝聚酯膜和白纸,直接在其上沉积不同厚度的PTFE薄膜。通过傅里叶变换红外光谱仪(FT-IR)、原子力显微镜(AFM)、接触角测量仪分别对薄膜的成分、表面形貌和疏水性进行表征。结果表明:经刻蚀处理后,基底表面粗糙度皆增大。载玻片由亲水性转变为疏水性,陶瓷片无明显变化,Cu片显示良好的疏水性;沉积薄膜后,载玻片表面接触角增大到138°,而陶瓷片接触角可以达到142°;在粗糙度较大的白纸表面沉积不同厚度的PTFE薄膜,膜厚对接触角具有显著影响,当膜厚为225 nm时,接触角达到151°,滞后角为8°;经0.5%草酸刻蚀的Cu片表面膜的接触角达到153°,滚动角为2°,具有良好的超疏水性。方丹 江晓红 ROGACHEV A A 胡博 徐新 沈瑞琪 陆路德 2014南京工业大学学报(自然科学版)2014,36,2:2
4Structure and properties of novel diamond-containing materials produced by forced SHS denslfication and sintering显示文摘Levashov E A Borobinskaya I P Rogachev A S 1998International Journal of Self Propagating High- Temperature Synthesis1998,7,:1
5Metabolic networking in Brunfelsia calycina petals after flower opening 显示文摘BAR-AKIVA A OVADIA R ROGACHEV I ct al 2010Journal of Experimental Botany2010,61,5:1
6On the mechanism of structure formation during combustion synthesis of Titanium sillides 显示文摘Rogachev A S Shugaev V A Khomenk O I 1995Combustion Science and Technology1995,109,:1
7Structural transitions in the gasless combustion of titanium carbon and titanium boron systems 显示文摘ROGACHEV A S MUKASYAN A S MERZHANOV A G 1987Dokl Phys Chem1987,297,6:1
8Structure and properties of thin-film polyguanidine-based composite coatings deposited from the gas phase 显示文摘YARMOLENKO M A ROGACHEV A A ROGACHEV V E 2012Russian journal of applied chemistry2012,85,4:1
9Combustion synthesis of advanced materials:principles and applications显示文摘Varma A Rogachev A Mukasyan A 1998Advanced Chemical Engineering1998,24,:1
10Molecular structure and optical properties of PTFE-based nanocomposite polymer-metal coatings 显示文摘RAHACHOU A V ROGACHEV A A YARMOLENKO M A 2012Applied surface science2012,258,6:1
11Spectrophotometfic determination of copper eomplexation properties of new amphiphilic dithioearbamates 显示文摘Rogachev I Gusis V Gusis A 1999Reactive & Functional Polymers1999,42,3:1
12Exothermic reaction waves in multilayer nano- films显示文摘Rogachev A S 2008Russian Chemical Reviews2008,,:1
13Electrostriction mechanism of microwave losses in a ferroelectric film and experimental confirmation 显示文摘Vendik 0 G Rogachev A N 1999Technical Physics Letters1999,25,9:1
14显示文摘Merzhanov A G Rogachev A S 1992Pure Appl Chem1992,64,:1
15Combustion synthesis of advanced materials: principles and applications 显示文摘VARMA A ROGACHEV A S ALEXANDER S 1998Adv Chem Eng1998,24,:1
16Gasless combustion of Ti-Al bimetallic multilayer nanofoils显示文摘Rogachev A S Grigoryan A E Illarionova E V 2004Combustion Explosion and Shock Waves2004,40,2:1
17Rheological studies of waterproof polymeric compounds under high pressure and temperature显示文摘Rogachev M K Kondrashev A O 2014Life Science Journal2014,11,6:1
18About the method of thermoreactive electrospark surface strengthening显示文摘LEVASHOV E A KHARLAMOV E I KUDRYASHOV A E ROGACHEV A S OHYANAGI M KOIZUMI M HOSOMI S 1999Journal of Materials Synthesis and Processing1999,7,1:1
19Reconfiguration of the achene and receptacle metabolic networks during strawberry fruit development显示文摘FAIT A HANHINEVA K BELEGGIA R DAI N ROGACHEV I NIKIFOROVA V J FERNIE A R AHARONI A 2008Plant Physiol2008,148,2:1
20Mechanistic and processing studies in combustion synthesis of niobium aluminides显示文摘KACHELMYER C R ROGACHEV A S VARMA A 1995Journal of Materials Research1995,10,9:1
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