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ADHESION STRENGTH OF COATING SUBSTRATE AND SURFACE MORPHOLOGY OF PRETREATMENT 被引量:1
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作者 ZhouLanying ZhouHuanjiang YangJian 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2003年第2期217-220,224,共5页
Premature failure of coated tool often results from a poor adhesion of coating-substrate and shortens the lifetime of the tool. The results of increasing the adhesion strength of thin film coatings on cutting tool ins... Premature failure of coated tool often results from a poor adhesion of coating-substrate and shortens the lifetime of the tool. The results of increasing the adhesion strength of thin film coatings on cutting tool inserts by pretreating the inserts with sandblasting technique to obtain a desirable surface morphology of the inserts are presented. A geometric model representing the ideal surface morphology is established to enhance the nucleation density and adhesion strength of coating-substrate. Thin film coating experiment is conducted on the substrates of four different sample groups. Indentation and wear tests are performed on coated inserts to evaluate the effect of sandblasting on the adhesion strength of the coatings. A theoretical analysis is provided on the formation and growth of atom clusters in terms of the contact angle and the thermodynamic barrier of a substrate to predict thin film nucleation. 展开更多
关键词 Thin film coating adhesion strength surface morphology
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Platelet adhesion to the surface of a sudden tubular expansion tube under swirling flow condition
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作者 Fan ZHAN,Xiaoyan DENG,Yubo FAN(School of Biological Science&Medical Engineering,Beihang University,Beijing,100191,China) 《医用生物力学》 EI CAS CSCD 2009年第S1期22-22,共1页
The size mismatch in an end-to-end vascular anastomosis between the host vessel and the graft may cause flow disturbance and predispose to thrombosis [1].Although a number of techniques have been employed to reduce th... The size mismatch in an end-to-end vascular anastomosis between the host vessel and the graft may cause flow disturbance and predispose to thrombosis [1].Although a number of techniques have been employed to reduce the risk of anastomotic thrombosis due to the size mismatch。 展开更多
关键词 flow Platelet adhesion to the surface of a sudden tubular expansion tube under swirling flow condition
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Controlling Protein adsorption and cell adhesion with micro-patterned surfaces
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《Chinese Journal of Biomedical Engineering(English Edition)》 2001年第4期181-183,共3页
关键词 CELL Controlling Protein adsorption and cell adhesion with micro-patterned surfaces PDMS
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Femtosecond laser-mediated anchoring of polymer layers on the surface of a biodegradable metal 被引量:2
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作者 Jaeho Park Bo-In Park +7 位作者 Young Ju Son Sun Hee Lee Seung-Hoon Um Yu-Chan Kim Myoung-Ryul Ok Jeong-Yun Sun Hyung-Seop Han Hojeong Jeon 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2021年第4期1380-1388,共9页
Mg has received much attention as a next-generation implantable material owing to its biocompatibility,bone-like mechanical properties,and biodegradability in physiological environments.The application of various poly... Mg has received much attention as a next-generation implantable material owing to its biocompatibility,bone-like mechanical properties,and biodegradability in physiological environments.The application of various polymer coatings has been conducted in the past to reduce the rapid formation of hydrogen gas and the local change in pH during the initial phase of the chemical reaction with the body fluids.Here,we propose femtosecond(fs)laser-mediated Mg surface patterning for significant enhancement of the binding strength of the coating material,which eventually reduces the corrosion rate.Analyses of the structural,physical,crystallographic,and chemical properties of the Mg surface have been conducted in order to understand the mechanism by which the surface adhesion increases between Mg and the polymer coating layer.Depending on the fs laser conditions,the surface structure becomes rough owing to the presence of several microscaled pits and grooves of nanoporous MgO,resulting in a tightly bonded poly(lactic-co-glycolic acid)(PLGA)layer.The corrosion rate of the PLGA-coated,fs laser-treated Mg is considerably slow compared with the non-treated Mg;the treated Mg is also more biocompatible compared with the non-treated Mg.The fs laser-based surface modification technique offers a simple and quick method for introducing a rough coating on Mg;further,it does not require any chemical treatment,thereby overcoming a potential obstacle for its clinical use. 展开更多
关键词 Femtosecond laser Biodegradable metal Polymer coating surface modification surface adhesion
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Nanoscale viscoelastic properties and adhesion of polydimethylsiloxane for tissue engineering 被引量:1
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作者 J.Chen K.E.Wright M.A.Birch 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2014年第1期2-6,共5页
It has shown that altering crosslink density of biopolymers will regulate the morphology of Mesenchymal Stem Cells (MSCs) and the subsequent MSCs differentia- tion. These observations have been found in a wide range... It has shown that altering crosslink density of biopolymers will regulate the morphology of Mesenchymal Stem Cells (MSCs) and the subsequent MSCs differentia- tion. These observations have been found in a wide range of biopolymers. However, a recent work published in Nature Materials has revealed that MSCs morphology and differen- tiation was unaffected by crosslink density of polydimethyl- siloxane (PDMS), which remains elusive. To understand such unusual behaviour, we use nanoindentation tests and modelling to characterize viscoelastic properties and sur- face adhesion of PDMS with different base:crosslink ratio varied from 50:1 (50D) to 10:1 (10D). It has shown that lower crosslink density leads to lower elastic moduli. De- spite lower nanoindentation elastic moduli, PDMS with lowest crosslink density has higher local surface adhesion which would affect cell-biomaterials interactions. This work suggests that surface adhesion is likely another important physical cue to regulate cell-biomaterials interactions. 展开更多
关键词 Bioploymer- Nanoindentation- Viscoelasticity surface adhesion
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Multiscale Analysis on Two-dimensional Nanoscale Adhesive Contacts 被引量:1
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作者 TONG Ruiting LIU Geng LIU Lan 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第3期446-455,共10页
Nanoscale adhesive contacts play a key role in micro/nano-electro-mechanical systems as the dimension of the components come to nanometer.Experimental studies on nanoscale adhesive contacts are limited by some uncerta... Nanoscale adhesive contacts play a key role in micro/nano-electro-mechanical systems as the dimension of the components come to nanometer.Experimental studies on nanoscale adhesive contacts are limited by some uncertain factors and the cost of experiments is too high.Besides,nanoscale textured surfaces are difficult to process and nanoscale adhesive contacts of textured surfaces are still lack of investigation.By using multiscale method,which couples molecular dynamics simulation and finite element method,two-dimensional nanoscale adhesive contacts between a rigid cylindrical tip and an elastic substrate are investigated.For the contacts between the rigid cylindrical tip and smooth surface,Von Mises stress distributions,the maximum Von Mises stresses,and contact forces are compared for different radii to show the size effects and adhesive effects.The phenomena of hysteresis are observed and more obvious as the radii of the tip increase.The influences of indentation depth and indentation speed are also discussed.Then two series of textured surfaces are employed,and the influences of the texture asperity shape,asperity height,and asperity spacing on contact forces are studied.The contact forces comparisons show that textured surfaces can reduce contact forces effectively in the range of the two series.Contact forces of textured surfaces increase as the asperity heights increase,and textured surfaces with smaller asperity spacing will get higher contact forces.Contact forces may be controlled through textured surfaces in the future.The obtained results will help to improve contact condition and provide theory basis for texture design. 展开更多
关键词 nanoscale adhesive contact multiscale method surface texture
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Gecko-Like Dry Adhesive Surfaces and Their Applications: A Review
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作者 Wei Wang Yang Liu Zongwu Xie 《Journal of Bionic Engineering》 SCIE EI CSCD 2021年第5期1011-1044,共34页
Gecko has the ability to climb flexibly on various natural surfaces because of its fine layered adhesion system of foot,which has motivated researchers to carry out a lot of researches on it.Significant progresses hav... Gecko has the ability to climb flexibly on various natural surfaces because of its fine layered adhesion system of foot,which has motivated researchers to carry out a lot of researches on it.Significant progresses have been made in the gecko-like dry adhesive surfaces in the past 2 decades,such as the mechanical measurement of adhesive characteristics,the theoretical modeling of adhesive mechanism and the production of synthetic dry adhesive surfaces.Relevant application researches have been carried out as well.This paper focuses on the investigations made in recent years on the gecko-like dry adhesive surfaces,so as to lay the foundation for further research breakthroughs.First,the adhesion system of gecko’s foot and its excellent adhesive characteristics are reviewed,and the adhesive models describing the gecko adhesion are summarily reviewed according to the diff erent contact modes.Then,some gecko-like dry adhesive surfaces with outstanding adhesive characteristics are presented.Next,some application researches based on the gecko-like dry adhesive surfaces are introduced.Finally,the full text is summarized and the problems to be solved on the gecko-like dry adhesive surfaces are prospected. 展开更多
关键词 Gecko adhesion Gecko-like dry adhesive surfaces Climbing robot Robot gripper Medical adhesive tape
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Fabrication of a biomimetic controllable adhesive surface by ultraprecision multistep and layered scribing and casting molding
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作者 WANG Wei XIE ZongWu 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2021年第8期1814-1826,共13页
Wedge-shaped microstructures have the ability to reproduce the excellent adhesive properties of geckos’feet because of their unique anisotropic structure.In particular,the controllability of the wedge-shaped microstr... Wedge-shaped microstructures have the ability to reproduce the excellent adhesive properties of geckos’feet because of their unique anisotropic structure.In particular,the controllability of the wedge-shaped microstructures on adhesion is beneficial to the undisturbed grasp or the capture of space targets.However,the problem currently remains of how to process it efficiently and with high quality.Here a strategy called ultraprecision multistep and layered scribing is proposed for the manufacture of the biomimetic controllable adhesive surface.The results show that the metal master mold prepared based on the manufacturing strategy has not only good surface topography but also high reliability and durability.Furthermore,the controllable adhesive surface of 1.96 cm2,fabricated by the proposed manufacturing strategy,has a normal adhesion of 1.012 N,and the corresponding shear friction and adhesion coefficient are 3.105 N and 4.82,respectively.Additionally,the controllable adhesive surface has been shown to be approximately superhydrophobic and also to possess the properties of controllable adhesion and dynamic adhesion.Also,after 250 adhesion-detachment cycles,the normal adhesion and shear friction only decrease by 5%and 3%,respectively.The research realizes an environmentally friendly and efficient method by which to manufacture a durable metal mold for fabricating a biomimetic controllable adhesive surface,laying a foundation for its effective application in the adherence of space-floating targets. 展开更多
关键词 continuous and tilted wedge-shaped microstructures biomimetic controllable adhesive surface ultraprecision multistep and layered scribing controllable adhesion dynamic adhesion
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半导体薄膜表面粘附的非对称性偏压调控
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作者 李保文 轩啸宇 +4 位作者 殷艳 周建新 张助华 易敏 郭万林 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2023年第3期1-6,共6页
电调控表面粘附对微机电系统是至关重要的,同时相对于外加电压极性常具有对称性.本文以二硫化钼为研究对象,以石墨烯、氮化硼和n型硅为参照组展示半导体薄膜表面的非对称粘附行为.研究主要通过导电原子力显微镜和理论模拟来揭示金探针... 电调控表面粘附对微机电系统是至关重要的,同时相对于外加电压极性常具有对称性.本文以二硫化钼为研究对象,以石墨烯、氮化硼和n型硅为参照组展示半导体薄膜表面的非对称粘附行为.研究主要通过导电原子力显微镜和理论模拟来揭示金探针与金基底上二硫化钼之间的偏压调控粘附力的行为.结果反映二硫化钼表面偏压对粘附的调控能力远大于参照组材料,这种非对称行为主要来源于半导体薄膜与背电极之间形成的肖特基结中的内建电场. 展开更多
关键词 surface adhesion Molybdenum disulfide Conductive atomic force microscope Schottky junction
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