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Atomna mikroskopija s pomičnom sondom×Vickersova tvrdoća×
PodručjeZnanost o materijalimaZnanost o materijalima
ObiteljProcess / pipelineProcess / pipeline
Godina nastanka19861922
TvoracGerd BinnigSmith and Sandland
VrstaImaging techniqueHardness test
Temeljni izvorBinnig, G., Quate, C. F., & Gerber, C. (1986). Atomic force microscope. Physical Review Letters, 56(9), 930-933. DOI ↗Smith, E., & Sandland, G. E. (1922). An accurate method of determining the hardness of metals with particular reference to high-hardness alloys. The Institution of Steel Engineers, 8, 623-641. link ↗
Drugi naziviAFM, scanning probe microscopy, nanoindentation microscopyVickers hardness test, Vickers microhardness, HV
Srodne33
SažetakAtomic Force Microscopy (AFM) is a scanning probe technique that measures nanoscale surface topography and mechanical properties by monitoring interactions between a sharp cantilever tip and a sample surface. Invented by Gerd Binnig in 1986 as an extension of scanning tunneling microscopy, AFM requires neither electrical conductivity nor vacuum operation, making it applicable to virtually any material. It provides three-dimensional topographic maps with sub-nanometer vertical resolution and lateral resolution approaching nanometers, along with simultaneous measurements of mechanical, electrical, and chemical properties.Vickers Hardness testing is a mechanical characterization technique for determining material hardness by pressing a diamond pyramid indenter into a material surface under controlled load and measuring the resulting indent dimensions. Invented by Smith and Sandland in 1922, Vickers hardness is applicable across an enormous hardness range (1-2000 HV) using the same indenter geometry at different loads. It is the most versatile hardness test, widely used in materials science, metallurgy, and quality control for assessing material strength and comparing alloy performance.
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ScholarGateUsporedite metode: Atomic Force Microscopy · Vickers Hardness. Preuzeto 2026-06-19 s https://scholargate.app/hr/compare