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41篇 您的检索式:作者名="Lyashenko"
    题名 作者 年代 出处 被引量
1PVD-TiN不连续结构涂层的摩擦行为和切削性能(英文)显示文摘在工具钢表面采用电弧蒸发物理气相沉积TiN涂层中,将不锈钢编织网置于基底和蒸发源之间,以得到不连续的TiN涂层。检验了无涂层、连续涂层和不连续涂层3种表面状态的性能,其中在室温和200°C下做了无润滑和润滑条件下的盘-块和球-盘滑动摩擦试验。结果表明,在滑动条件下,不连续的TiN涂层可同时减小工具钢的磨损量和磨损速度。3种表面状态下的高速切削中,与无涂层和连续涂层比较,不连续TiN涂层由于寿命增加具有优势。Soroka E Lyashenko B 乔生儒 张程煜 2011稀有金属材料与工程2011,40,4:11
2高速钢上TiN涂层残余应力的曲率测试和有限元分析显示文摘采用多弧离子镀在W6Mo5Cr4V2高速钢上沉积五种不同厚度TiN涂层,用曲率法和有限元法研究TiN涂层残余应力和构成。结果表明涂层厚度对其残余应力有很大影响,特别是对本征应力。当涂层厚度从3μm变化到11μm时,TiN涂层总残余应力分布在-3.12~-2.29GPa之间;热应力分布在-1.96~-1.92GPa之间;本征应力分布在-1.17~-0.37GPa之间。其中热应力所占的比例较大,约占62%~68%。当膜基比ξ<0.017时,总残余应力随ξ的增加呈非线性增加;当ξ=0.017时,该值达到最大值-3.12GPa;当ξ>0.017时,该值随ξ的增加而下降。造成这种变化的主要原因是涂层本征应力受涂层结构影响较大,随着涂层厚度的增加,涂层中孔洞、过冷液滴以及界面微裂纹等缺陷也随之增加,导致涂层中本征应力得到有效释放。弓满锋 乔生儒 卢国锋 姬浩 LYASHENKO B A 2010机械工程学报2010,46,6:7
3Experience in the Prevention of Frost Heave of Pile Foundations of Transmission Towers under Northern Conditions显示文摘A. L. Lyazgin V. S. Lyashenko S. V. Ostroborodov V. G. Ol’shanskii R. M. Bayasan K. P. Shevtsov G. P. Pustovoit 2004Power Technology and Engineering2004,,2:1
4Strength and deformation properties of compositions with plasma-sprayed coatings显示文摘 Veremchuk V S Dolgov N A 1996Strength of Mate-rials1996,28,6:1
5Limit theorems for sums of independent, compact, random subsets of euclidean space显示文摘N. N. Lyashenko 1982Journal of Soviet Mathematics1982,,3:1
6The Low-Temperature Reduction of Pd-Doped Transition Metal Oxide Surface with Hydrogen显示文摘Belousov V M Vasylyev M A Lyashenko L V 2003Chemical Engineering Journal2003,91,23:1
7The investigation of low temperature vacuum drying processes of agricultural materials显示文摘Leonid A. Bazyma Vladimir P. Guskov Andrew V. Basteev Alexander M. Lyashenko Valeriy Lyakhno Vladimir A. Kutovoy 2005Journal of Food Engineering2005,,3:1
8Determining Elasticity Characteristics for Protective Coatings 显示文摘Dolgov N A Lyashenko B A Veremchuk V S 1995Strength of Materials1995,27,7:1
9Effects of Elasticity Differences between Substrate and Coating on the State of Stress and Strain in a Composite: Coating tensile stress distribution 显示文摘Dolgov N A Lyashenko B A Rushchitskii Y Y 1996Strength of Materials1996,28,5:1
10The low-temperature reduction of Pd-doped transition metal oxide surface with hydrogen显示文摘BELOUSOV V M VASYLYEV M A LYASHENKO L V 2003Chemical Engineering Journal2003,91,23:1
11Strength and Deformation Properties of Compositions with Plasma-sprayed Coatings 显示文摘Lyashenko B A Yeremehuk S Dolgov N A 1996Strength of Materials1996,28,6:1
12On the Reduction of Residual Stresses in Plasma Vacuum Deposited Coatings 显示文摘LYASHENKO B A RUTHOVSKII A V SOROKA E B 2001Strength of Materials2001,33,4:1
13On the reduction of residual stresses in plasma vacuum deposited coatings显示文摘LYASHENKO B A RUTHOVSKII A V SOROKA E B 2001Strength of Materials2001,33,4:1
14On the reduction of residual stresses in plasma vacuum deposited coatings显示文摘LYASHENKO B A RUTHOVSKII A V SOROKA E B 2001Strength of materials2001,33,4:1
15Temperature De- pendence of Adhesion Strength and Elastieity of Some Heat-re- sistant Coatings显示文摘Rishin V V Lyashenko B A Akinin K G 1973Strength of Materials1973,5,1:1
16On the reduction of residual stresses in plasma-vacuum-deposited coatings 显示文摘Lyashenko B A Rutkovskii A V Soroka E B 2001Strength of Materials2001,3,4:1
17Experience in the prevention of frost heave of pipe foundations of transmission towers under northern conditions显示文摘LYAZG1N A L LYASHENKO V S OSTROBORODOV S V 2004Power Technology and Engineering2004,38,2:1
18The Low-Temperature Reduction of Pd-Doped Transition Metal Oxide Surface with Hydrogen显示文摘Belousov V M Vasylyev M A Lyashenko L V 2003Chemical Engineering Journal2003,91,23:1
19The Low- Temperature Reduction of Pd-Doped Transition Metal Oxide Surface with Hydrogen显示文摘Belousov VM Vasylyev MA Lyashenko LV 2003Chemical Engineering Journal2003,91,23:1
20The low-temperature reduction of Pd-doped transition metal oxide surface with hydrogen显示文摘Belousov V M Vasylyev M A Lyashenko L V 2003Chemical Engineering Journal2003,91,23:1
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