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Scratch hardness
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Scratch hardness refers to the of a material in terms of resistance to scratches and abrasion by a harder material forcefully drawn over its surface. Scratch hardness test or scratch test refers to any of a number of methods of measuring scratch hardness. Resistance to abrasion is less affected by surface variations than indentation methods. Scratch hardness is measured with a .

(1999). 9781615032365, ASM International. .

Attempting to scratch a surface to test a material is a very old technique. The first scientific attempt to quantify materials by scratch tests was by mineralogist in 1812 (see ).

(2026). 9783662409107, Springer. .
"Mohs hardness" in Encyclopædia Britannica Online The Mohs scale is based on relative scratch hardness of different materials; with assigned a value of 1 and assigned a value of 10.
(2026). 9780198507765, OUP Oxford. .
Mohs's scale had two limitations: it was not linear, and most modern abrasives fall between 9 and 10.; so, later scientists attempted to increase resolution at the harder end of the scale.

Raymond R. Ridgway, a research engineer at the , modified the Mohs scale by giving a hardness of 10 and diamond a hardness of 15. Charles E. Wooddell, working at the Carborundum Company, extended the scale further by using resistance to abrasion, and extrapolating the scale based on 7 for and 9 for , resulting in a value of 42.4 for South American brown diamond .

There is a linear relationship between cohesive energy density (lattice energy per volume) and Wooddell wear resistance, occurring between corundum (H=9) and diamond (H=42.5).


See also
  • Scratch test (disambiguation)

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