Hostname: page-component-78c5997874-4rdpn Total loading time: 0 Render date: 2024-11-06T07:02:37.995Z Has data issue: false hasContentIssue false

Testing of SFRC by the Schmidt Rebound Hammer

Published online by Cambridge University Press:  16 February 2011

Jakob Šušteršič
Affiliation:
Institute for Testing and Research in Materials and Structures, Ljubljana, Dimičeva 12, 61000 Ljubljana, Yugoslavia
Milenko Rebić
Affiliation:
Institute for Testing and Research in Materials and Structures, Ljubljana, Dimičeva 12, 61000 Ljubljana, Yugoslavia
Stanislav Urbančič
Affiliation:
Institute for Testing and Research in Materials and Structures, Ljubljana, Dimičeva 12, 61000 Ljubljana, Yugoslavia
Get access

Abstract

The rebound number, its relationship to fundamental frequency and correlations with compressive strength and erosion - abrasion resistance are discussed. Nine mix proportions were used. The w/c ratios were varied from 0.30 to 0.65. The volumetric percentage of hooked steel fibres was varied from 0.25 to 2.0 vol.% at the w/c of 0.30; at the others the quantity of fibres was constant. In addition, mixes without fibres were made at each w/c.

The rebound number and the fundamental frequency are decreased by an increase of steel fibre content. The rebound number correlates with erosion - abrasion resistance. It does not correlate with compressive strength of concretes with constant w/c and different contents of fibres.

Type
Research Article
Copyright
Copyright © Materials Research Society 1991

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

1. Sadegzadeh, M. and Kettle, R., Mag.Conc.Res. 38 (137), 183190 (1986)CrossRefGoogle Scholar
2. Kettle, R. and Sadegzadeh, M., Mat.Struct. 20, 96102, (1986)CrossRefGoogle Scholar
3. Choplin, G., Proc.Int.Conf. on Concrete Slabs: Materials, Design, Construction and Finishing, Dundee, 3–5 April 1979, 533543 Google Scholar
4. CIGB INCOLD, Bulletin 40, (1982), 45 Google Scholar
5. Šušteršič, J., Mali, E., Urbančič, S., Erosion - Abrasion Resistance of SFRC, paper will be published in Proc.Sec. CANMET/ACI Int.Conf.on Durability of Concr., Montreal, August 4–9, 1991 Google Scholar
6. Kolek, J., Non-destructive Testing of Concrete and Timber, Institution of Civil Engineers, London, 1970, 1920 Google Scholar
7. Alkholaf, M.N. and Page, C.L., Cem.Concr.Res. 9, 1979, 197208 CrossRefGoogle Scholar
8. Page, C.L., Composites, Composites, April 1982, 140–144CrossRefGoogle Scholar
9. Bentur, A., Diamond, S. and Mindess, S., J.Mat.Sci., 20, (1985), 36103620 CrossRefGoogle Scholar