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Study Details Scc Formwork Pressure Factors, Over-Design

RMC Research & Education Foundation's Evaluation of SCC Formwork Pressure offers contractors and engineers tools and test methods to predict and decrease

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RMC Research & Education Foundation's Evaluation of SCC Formwork Pressure offers contractors and engineers tools and test methods to predict and decrease self-consolidating mixes' effect on formwork. The final study, with 22-page executive summary download [www.rmc-foundation.org/] available from the RMC Research home page, examines the impact material constituents, mix designs, placement factors, formwork geometry, and temperature have on SCC-exerted pressure.

A lack of knowledge surrounding SCC mix mechanics has prompted contractors and engineers to design formwork to withstand full hydrostatic pressure, per ACI 347R-03 guidelines, note University of Sherbrooke/Department of Civil Engineering's Kamal Khayat, Ph.D, and A. Omarn, Ph.D. candidate. That tendency increases construction costs and potentially offsets labor and equipment economy practitioners have realized with SCC mixes, the study authors add.

Sherbrooke, Purdue University, Northwestern University and CTL Group staff developed lab and field SCC mix test methods and performed related research and engineering calculations leading to Evaluation of SCC Formwork Pressure. RMC Research & Education Foundation and the American Concrete Institute Strategic Development Council co-funded the work.

An important aspect was the development of practical guidelines for lowering lateral pressure and creation of a comprehensive report on SCC, said Foundation Chairman Jim Repman. For a research project to be truly successful, he adds, Sometimes a stand-alone report isn't enough. You need helpful tools, specific guidance and practical ways to encourage contractors and engineers to utilize the new information in the field .