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May 8, 2026Proceedings of the Institution of Civil Engineers - Engineering History and Heritage1 citationsOpen Access

Load capacity and failure analysis of alternative repair materials for fibrous plaster wads

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BDBarrie DamsUniversity of BathMCMansi ChavanUniversity of BathMAMartin AnsellUniversity of Bath

Key Points

  • This study aims to analyze the tensile capacities and failure mechanisms of fibrous plaster wads using traditional and modern materials.
  • Tests conducted on laboratory-manufactured 45 mm dia. fibrous plaster wads.
  • Evaluation of traditional (beta plaster, hessian scrim) and modern (alpha plaster, quadaxial glass fabric, RE Aramid Gel™) materials.
  • Assessment of load capacities under various configurations (with and without wire reinforcements).
  • Beta wads reinforced with quadaxial fabric achieved a load capacity of approximately 8 kN (with wire) and 4 kN (without).
  • Beta-hessian-wire wads with Aramid Gel reached a capacity of about 4 kN (2 kN without wire).
  • Alpha plaster displayed higher strength but less ductility, breaking at smaller elongations compared to beta plaster.

Abstract

Fibrous plaster has been used since 1856 for decorative ceilings in historic buildings. Ceilings are often suspended by fibrous plaster wads – gypsum plaster, hessian scrim, and sometimes a steel wire – in roof spaces. The 2013 Apollo Theatre ceiling collapse emphasised the importance of understanding the tensile capacities of fibrous plaster wads. This study analysed the capacities and failure mechanisms of wads by conducting tests on laboratory-manufactured ≈45 mm dia. wads using both traditional (‘beta’ plaster, hessian scrim) and modern (‘alpha’ plaster, quadaxial glass fabric, RE Aramid Gel™) materials. Beta wads reinforced with quadaxial fabric increased the loading capacity (≈8 kN with a wire and ≈4 kN without) in comparison to hessian (≈3 and ≈1.5 kN). Applying Aramid Gel increased the capacity of beta-hessian-wire wads to ≈4 kN (≈2 kN without a wire). Alpha is stronger than beta, but alpha wads were less ductile, typically breaking at smaller elongations. Used with beta, quadaxial fabric possesses a sustained load capacity of ≈2 kN as plaster spalls – a capacity not observed with alpha, as fibres rupture in the stiff plaster. This study has a major impact in quantifying the properties of wads, providing material understanding and knowledge for conserving culturally significant buildings.

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Cite This Study

Dams et al. (2026) studied this question.

synapsesocial.com/papers/69fd7f3abfa21ec5bbf07baahttps://doi.org/10.1680/jenhh.25.00004
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