The Brinell scale characterises the indentation hardness of materials through the scale of penetration of an indenter, loaded on a material test-piece. It is one of several definitions of hardness in materials science.
Brinelling refers to surface fatigue caused by repeated impact or overloading. It is a common cause of roller bearing failures, and loss of preload in bolted joints when a hardened washer is not used. Engineers will use the Brinell hardness of materials in their calculations to avoid this mode of failure. Fretting corrosion can cause a similar-looking kind of damage and is called false brinelling even though the mechanism is different.
Proposed by a Swedish engineer Johan August Brinell (1849 - 1925) in 1900, it was the first widely used and standardised hardness test in engineering and metallurgy. The large size of indentation and possible damage to test-piece limits its usefulness.
The typical test uses a 10 mm diameter steel ball as an indenter with a 3,000 kgf (29 kN) force. For softer materials, a smaller force is used; for harder materials, a tungsten carbide ball is substituted for the steel ball. The indentation is measured and hardness calculated as:
- where:
| P | = applied force (kgf) |
| D | = diameter of indenter (mm) |
| d | = diameter of indentation (mm) |
| Material | Hardness |
|---|---|
| Softwood (e.g., pine) | 1.6 HBS 10/100 |
| Hardwood | 2.6 to 7.0 HBS 1.6 10/100 |
| Aluminium | 15 HB |
| Copper | 35 HB |
| Mild steel | 120 HB |
| 18-8 (304) stainless steel | 250 HB |
| Glass | 550 HB |
| Hardened tool steel | 650 - 700 HB |
Dimensionless numbers | Materials science
Härte#H.C3.A4rtepr.C3.BCfung_nach_Brinell | Brinellhardheid | Метод Бринелля | Trdota po Brinellu | การวัดความแข็งบริเนล
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It uses material from the
"Brinell scale".
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