Ex-stock

Concrete Test Hammer with Calibration Anvil

Rebound hammer for in-situ surface hardness assessment, with the steel anvil required to establish the calibration factor.

Typical applications

  • In-situ surface hardness of concrete
  • Uniformity assessment across a pour

Conforms to

IS 516 (Part 5/Sec 4) : 2020IS 13311 (Part 2) : 1992superseded → IS 516 (Part 5/Sec 4) : 2020ASTM C805
  • IS 516 (Part 5/Sec 4) : 2020Non-Destructive Testing of Concrete: Rebound Hammer
  • IS 13311 (Part 2) : 1992Non-destructive testing of concrete — Rebound hammer(superseded; use IS 516 (Part 5/Sec 4) : 2020)
  • ASTM C805Rebound Number of Hardened Concrete

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Worth knowing before you order

The rebound number is not a compressive strength. It correlates to strength only against a curve established for that concrete, and the anvil check must be done before each survey.

Specification

Technical specification for Concrete Test Hammer with Calibration Anvil
Impact energy2.207 N·m (Type N)
Rebound scale10–100, direct reading
Calibration anvilSteel, defined reference rebound number

Support available

  • Calibration
  • Spares & consumables

Calibration is arranged through NABL-accredited laboratories under the relevant scope. We state the scope and the certificate number on the quotation — see what accreditation actually covers.

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