Compressive Testing and Analysis of Plastered Straw Bales

Author:

Vardy Stephen1,MacDougall Colin1

Affiliation:

1. Department of Civil Engineering, Queen's University.

Abstract

The structural performance of plastered straw bales under compressive loading is extremely important when considering the suitability of plastered straw bales as a construction material. Most currently available results do not investigate how different construction methods and practices can affect the strength of a plastered bale. The experiments discussed in this paper illustrate how the strength of the plaster, the thickness of the plaster and the orientation of the bale itself can affect the strength of the plastered bale. It was found that the bales plastered flat were 36% stronger than those plastered on edge. In addition it was found that although the plaster strength does affect the strength of the plastered bale, it does not have as significant an impact as the plaster thickness. It was also found that nearly all plastered bales tested had higher strengths than would be required in typical residential construction. The strengths were found to be in the same range as the values reported in the existing literature. The plastered bale modulus was found to be highly variable and un-predictable.

Publisher

College Publishing

Subject

General Environmental Science,Geography, Planning and Development,Civil and Structural Engineering,Building and Construction,Architecture,Environmental Engineering,Management, Monitoring, Policy and Law,Nature and Landscape Conservation,Public Health, Environmental and Occupational Health

Reference13 articles.

1. Bou-Ali, G. (1993). "Straw Bales and Straw Bale Wall Aystems." M.Sc. Thesis,University of Arizona, Tucson, Arizona, 1993.

2. The Building Officials Guide to Straw-bale Construction: Version 2.1

3. Compression Resistance of a Stuccoed Straw Bale Wall

4. International Straw Bale Building Conference, Wagga Wagga

5. Developing and Proof-Testing the `Prestressed Nebraska' Method for Improved Production of Baled Fibre Housing

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