Investigation on Performance of Prestressed Hollow Core Slabs Subjected to Elevated Temperatures
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Abstract
Natural calamities and unexpected disasters cause the structural members to
newlineundergo failure and become unfit. One such critical condition that will reduce the
newlinestrength and stiffness of structural members is exposure to elevated temperatures.
newlineMembers are exposed to elevated temperatures during the fire, and materials are
newlinedegraded at elevated temperatures. Precast members have been utilized in various
newlineapplications in construction industries in recent days because of their structural
newlineefficiency and quality control. Determining the effect of unexpected fire conditions on
newlinethe performance of precast members is required to identify the member s behaviour and
newlinefailure mode. Research is needed to provide the necessary safety measures for precast
newlinemembers to prevent collapse during fire.
newlineBeing the widely utilized precast slab of prestressed concrete typically used
newlinein the construction of flooring systems, the present study focused on precast prestressed
newlinehollow core slabs. Interactions between thermal expansion, stress level, and behaviour
newlineat elevated temperatures, and the resulting consequences for prestressed hollow core
newlineslab are not well known. Hence, the present study is specifically focused on
newlineinvestigating the structural performance of prestressed hollow core slab exposed to
newlineelevated temperatures.
newlineFrom this investigation, it is expected to identify failure mechanisms that
newlinecontrol the behaviour of hollow core slab at elevated temperatures. Also, the significant
newlineparameters affecting the thermal response of the slab will be identified. The present
newlinework is further extended by investigating the consequences of exposure to elevated
newlinetemperatures in realistic precast hollow core slabs during the post-heating periods
newline