Architectural glass under climatic actions and fire: review of state of the art, open problems and future perspectives

HIGHLIGHTS

SUMMARY

    The thermal expansion/contraction of the hotter/colder regions, gions, enhanced by the high thermal expansion coefficient of glass, give rise to differential enhanced by the high thermal expansion coefficient of glass,ofgive to differential thermal thermal strains that cannot be accommodated by clearance therise supports. Even more Even attention is required the analysis of and glass design of glass panes under exposure to fire, which is governed by a combination of mulpanes under exposure to fire, which is governed by a combination of multiple thermo-physical tiple and mechanical temperature-dependent A critical . . .

     

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