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Prestressed Concrete

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Prestressed concrete is a structural material in which internal compressive stress is deliberately introduced during manufacture, so that the concrete is already pre-compressed before it ever carries service loads. Because plain concrete is strong in compression but weak in tension, this built-in compression must be overcome by tensile service loads before any net tension develops in the material, dramatically increasing the effective tensile capacity of a concrete member and allowing longer spans, thinner sections and reduced material use compared with conventional reinforced concrete. The compression is induced by tensioning steel tendons either before the concrete is cast, in pre-tensioning, or after it has cured, in post-tensioning, a method that permits curved or profiled tendon paths tailored to counteract expected loads. The technique was patented by the French engineer Eugene Freyssinet in 1928 and has since become fundamental to modern long-span construction, from bridges to towers to iconic shell and shell-like roof structures such as the Sydney Opera House.

Facts
Element Kind
Structural Material 1
First Used Era
Patented 1928, France; widespread structural use from the mid-twentieth century 1
Cross-Tradition Connections

Associated With

Prestressed concrete is a further refinement of reinforced concrete, using deliberately induced compression rather than passive steel reinforcement alone to resist tension.

Sources
1. Wikipedia
Wikimedia FoundationPrestressed concrete, lead/definition
Quote, Prestressed concrete, lead/definition
substantially prestressed (compressed) during production, in a manner that strengthens it against tensile forces which will exist when in service
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1. Wikipedia
Wikimedia FoundationPrestressed concrete, History section
Quote, Prestressed concrete, History section
was patented by Eugene Freyssinet in 1928
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1. Wikipedia
Wikimedia FoundationPrestressed concrete, Mechanics/principle section, behaviour
Quote, Prestressed concrete, Mechanics/principle section, behaviour
the resulting material has the characteristics of high-strength concrete when subject to any subsequent compression forces and of ductile high-strength steel when subject to tension forces
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1. Wikipedia
Wikimedia FoundationPrestressed concrete, Pre-tensioning section
Quote, Prestressed concrete, Pre-tensioning section
The concrete bonds to the tendons as it cures, following which the end-anchoring of the tendons is released, and the tendon tension forces are transferred to the concrete as compression.
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