Quantification of the meniscus effect in adhesion force measurements
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- Type
- article
- Published
- 2006-02-28
- Cited by
- 58
- References
- 18
- OpenAlex
- https://openalex.org/W1976263755
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:93640609
Keywords
Capillary condensation, Meniscus, Capillary action, Adhesion, Surface force
References
- Contact Mechanics: Frontmatter
- Nanotribology Critical Assessment And Research Needs
- Adhesion and stiction: Mechanisms, measurement techniques, and methods for reduction
- Molecular layering of water at surfaces and origin of repulsive hydration forces
- Experimental determination of scanning probe microscope cantilever spring constants utilizing a nanoindentation apparatus
- An experimental study on the adhesion at a nano-contact
- Scratching the Surface: Fundamental Investigations of Tribology with Atomic Force Microscopy.
- Critical Phenomena of Water Bridges in Nanoasperity Contacts
- Forces in atomic force microscopy in air and water
- Investigation of Humidity-Dependent Capillary Force
- Atomic force microscopy for the study of tribology and adhesion
- Effect of capillary-condensed water on the dynamic friction force at nanoasperity contacts
- Capillary forces between surfaces with nanoscale roughness.
- Adhesion Forces between Surface-Modified AFM Tips and a Mica Surface
- Force detection using a fiber-optic cantilever
- Growth, electronic, magnetic and spectroscopic properties of transition metals on graphite
- The Colloidal Probe Technique and Its Application to Adhesion Force Measurements
- Springer Handbook of Nanotechnology
- Nanoparticles from theory to application
- Nanotribology
Cited by
- SUCTION MEASUREMENTS AND WATER RETENTION IN UNSATURATED SOILS
- Adhesion and friction in single asperity contact
- Accurate flexural spring constant calibration of colloid probe cantilevers using scanning laser Doppler vibrometry
- Calibration of effective spring constants of colloidal probes using reference cantilever method
- Characterization of Mechanical Properties of Suspended Carbon Nanotubes in Liquid
- Spontaneous self-coating of a water drop by flaky copper powders: critical role of the particle shape.
- The effect of intrinsic instability of cantilever on static mode atomic force spectroscopy
- Direct observation of self-assembled chain-like water structures in a nanoscopic water meniscus.
- Optical and morphological properties of infrared emitting functionalized silica nanoparticles
- Relating friction and adhesion for single smooth contact by means of models and experiments
- Normal capillary forces.
- Atomic and subnanometer resolution in ambient conditions by atomic force microscopy
- A Model Developed for the Adhesion Forces Formed between an Atomic Force Microscopy Tip and a Rough Surface under Different Humidity Levels
- Tuning the instability in static mode atomic force spectroscopy as obtained in an AFM by applying an electric field between the tip and the substrate.
- ADHESION AND FRICTION FORCE MEASUREMENTS IN AMBIENT AND HIGH VACUUM CONDITIONS
- A method to determine collection efficiency of particles by swipe sampling
- Colloid probes with increased tip height for higher sensitivity in friction force microscopy and less cantilever damping in dynamic force microscopy.
- Adhesion models: from single to multiple asperity contacts.
- A Deterministic Approach to Studying Liquid-Mediated Adhesion Between Rough Surfaces
- Estimation of contact area of nanoparticles in chains using continuum elastic contact mechanics
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- Capillary Condensation Adhesion Phenomena and Analysis of the Micromechanical Gyroscope
- Meniscus Formation in a Vertical Capillary Tube.
- Three-dimensional model for capillary nanobridges and capillary forces
- Effect of contact angle on capillary rise in annular meniscus
- Concerning the paper: “the effect of capillary liquid on the force of adhesion between spherical solid particles” by T. Gillespie and W. J. Settineri (vol. 24, no. 2, 1967)
- Normal capillary forces.
- Capillary adhesion and friction -An approach with the AFM Circular Mode