Experimental testing on plastic hinge formation for steel beams : distribution of stress and spread of plastic hinge
In Structural Steel Design, members are commonly designed to withstand load up to the yield stress of the material. However with the incorporation of safety factors, it is not common for structural steel members to achieve the yield stress throughout their service lifetime. The safety factors are pr...
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sg-ntu-dr.10356-491652023-03-03T17:26:11Z Experimental testing on plastic hinge formation for steel beams : distribution of stress and spread of plastic hinge Tay, Bernard Shing Ann. Lee Chi King School of Civil and Environmental Engineering DRNTU::Engineering::Civil engineering::Structures and design In Structural Steel Design, members are commonly designed to withstand load up to the yield stress of the material. However with the incorporation of safety factors, it is not common for structural steel members to achieve the yield stress throughout their service lifetime. The safety factors are present in the specified design strength of the material that is obtained with the mill certificate from the manufacturer, the application of material partial factor of safety coefficients in the design codes as well as material factor of safety present in the design formulas. It is therefore uncommon for the steel material to be subjected to stresses that are large enough to cause the development of plastic hinges. However, it is of importance to study and understand the behavior of plastic hinge formation in steel members in light of unexpected external loadings such as earthquake loads and blast loads. Bachelor of Engineering (Civil) 2012-05-15T06:38:13Z 2012-05-15T06:38:13Z 2012 2012 Final Year Project (FYP) http://hdl.handle.net/10356/49165 en Nanyang Technological University 69 p. application/pdf |
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DRNTU::Engineering::Civil engineering::Structures and design Tay, Bernard Shing Ann. Experimental testing on plastic hinge formation for steel beams : distribution of stress and spread of plastic hinge |
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In Structural Steel Design, members are commonly designed to withstand load up to the yield stress of the material. However with the incorporation of safety factors, it is not common for structural steel members to achieve the yield stress throughout their service lifetime. The safety factors are present in the specified design strength of the material that is obtained with the mill certificate from the manufacturer, the application of material partial factor of safety coefficients in the design codes as well as material factor of safety present in the design formulas. It is therefore uncommon for the steel material to be subjected to stresses that are large enough to cause the development of plastic hinges. However, it is of importance to study and understand the behavior of plastic hinge formation in steel members in light of unexpected external loadings such as earthquake loads and blast loads. |
author2 |
Lee Chi King |
author_facet |
Lee Chi King Tay, Bernard Shing Ann. |
format |
Final Year Project |
author |
Tay, Bernard Shing Ann. |
author_sort |
Tay, Bernard Shing Ann. |
title |
Experimental testing on plastic hinge formation for steel beams : distribution of stress and spread of plastic hinge |
title_short |
Experimental testing on plastic hinge formation for steel beams : distribution of stress and spread of plastic hinge |
title_full |
Experimental testing on plastic hinge formation for steel beams : distribution of stress and spread of plastic hinge |
title_fullStr |
Experimental testing on plastic hinge formation for steel beams : distribution of stress and spread of plastic hinge |
title_full_unstemmed |
Experimental testing on plastic hinge formation for steel beams : distribution of stress and spread of plastic hinge |
title_sort |
experimental testing on plastic hinge formation for steel beams : distribution of stress and spread of plastic hinge |
publishDate |
2012 |
url |
http://hdl.handle.net/10356/49165 |
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1759854371803234304 |