PROEXPORT / TECHNICAL KNOWLEDGE

How to Specify Roller Covering Hardness: Shore A, Shore D, Vickers HV

Durometer hardness is a contact elasticity index, not a complete structural specification. Review measurement standards ISO 7619-1, ISO 868, ISO 6507-1, and wall-thickness influence on readings.

KNOWLEDGE & PRACTICE

Hardness Measurement Scales for Industrial Rollers

Hardness Scale / StandardIndenter GeometryTypical Material RangeCritical Measurement Constraints
Shore A (ISO 7619-1 / DIN 53505)Truncated cone (Ø 0.79 mm, 35° angle)Soft elastomers, rubber, polyurethane (20–95 ShA)Layer thickness must be >= 6 mm; thin layers reflect core stiffness
Shore D (ISO 7619-1 / ISO 868)Sharp point cone (R 0.1 mm, 30° angle)Rigid polyurethane, ebonite, technical plastics (40–85 ShD)Used when Shore A exceeds 95; tests rigid plastic coatings
Vickers HV (ISO 6507-1)Diamond pyramid (136° face angle)Hard chrome plating, plasma ceramics (800–1800 HV)Load typically 0.1–1.0 kgf (HV0.1–HV1); prevents punching thin chrome
Rockwell HRC (ISO 6508-1)Diamond cone (120° angle, 150 kgf)Hardened steel roller base shafts (45–62 HRC)NEVER use directly on chrome coatings < 100 µm (cracks the layer)

KNOWLEDGE & PRACTICE

The Thin-Layer Effect: Why 2 mm Coverings Mislead Shore Durometers

ISO 7619-1 specifies that reliable Shore hardness measurements require a minimum specimen thickness of 6.0 mm. In industrial practice, roller coverings often measure between 2.0 mm and 4.0 mm in radial wall thickness.

When a durometer indenter presses into a thin 2 mm rubber sleeve, the rigid steel core immediately absorbs the penetration force. A true 60 Shore A compound will register as 72–75 Shore A on the durometer dial. At PROEXPORT, we employ micro-hardness testers (IRHD Micro according to ISO 48-2) or measure calibrated 6 mm test pucks produced from the identical vulcanization batch.

KNOWLEDGE & PRACTICE

Why Hardness Alone Fails to Predict Contact Behavior in Nips

  • Two coverings with the exact same 70 Shore A reading can exhibit completely different compression moduli (Young’s modulus E), generating vastly different nip contact widths under the same linear force.
  • Rubber hardness drops by 3 to 8 Shore points as temperature rises from 20°C to 80°C. Machine calibration must account for hot-running equilibrium.
  • Hardness does not measure traction: a 60 ShA polyurethane roller has a different coefficient of friction compared to a 60 ShA silicone roller.

PROEXPORT / INDUSTRIAL ROLLERS

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