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Reinforced concrete. --- Bracing --- Frames --- Bracing --- Frames
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Loads forces --- Bridge decks --- Girder bridges --- Torsional strength --- Bracing --- Tables data --- Structural design --- Loads forces --- Bridge decks --- Girder bridges --- Torsional strength --- Bracing --- Tables data --- Structural design
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Prepared by the Structural Applications of Steel Cables for Buildings Standard Committee of the Codes and Standards Activities Division of the Structural Engineering Institute of ASCE Structural Applications of Steel Cables for Buildings, Standard ASCE/SEI 19-16, provides requirements for the structural design, fabrication, and installation of cables for use as static structural elements to support and brace buildings and other cable-supported structures. Covering both carbon-steel and stainless-steel cables, this standard addresses roofs, floors, curtain walls, masts, and nets, but it is not applicable for structures subjected primarily to vehicle loads or for guyed electrical transmission towers. Topics include contract documents and shop drawings; design considerations; cable materials; protective coatings; fabrication, shipping, and receiving; erection; and postconstruction considerations and inspection. In addition, appendixes review cables and fittings, saddles, clamps, cable fatigue, and the design of earthquake-load-resistant sway bracing for nonstructural components of buildings. Intended for use by structural engineers, architects, cable manufacturers and fabricators, and building officials, Standard ASCE/SEI 19-16 is a thorough revision of previous editions of ASCE 19. It includes a new appendix to address small-diameter cables used for seismic bracing of nonstructural building elements, as well as updated nomenclature to ensure consistency with other industry standards.
Cable structures --- Cables --- Cables --- Steel structures --- Building design --- Building codes --- Standards and codes --- Fabrication --- Load and resistance factor design --- Bracing --- Standards --- Standards --- Cables --- Steel structures --- Building design --- Building codes --- Standards and codes --- Fabrication --- Load and resistance factor design --- Bracing
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Analyse mathématique --- Mathematical analysis. --- Trusses. --- Stability. --- Rigid frame bridges --- Cranes hoists --- Structural steels --- Loads forces --- Lift trucks --- Rigging --- Bracing --- Braking --- Traveling cranes --- Rigid frame bridges --- Cranes hoists --- Structural steels --- Loads forces --- Lift trucks --- Rigging --- Bracing --- Braking --- Traveling cranes
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Prepared by the Committee on Earth Retaining Structures of the Geo-Institute of ASCE. This Geotechnical Special Publication provides guidelines for the use of braces and tiebacks during excavations, focusing particularly on safety issues. When an excavation is made in soil or rock, materials adjacent to the cut face lose their natural lateral support. It them becomes necessary to support the excavation with braces and tiebacks, which provide the lateral restraint needed for safety. In addition to assisting engineers make essential safety decisions, this report provides information and conceptual orientation for owners, funding agencies, contractors, and engineering and architectural staff.
Excavation. --- Retaining walls. --- Shoring and underpinning. --- Excavation --- Bracing --- Engineering profession --- Tieback (geotechnical) --- Safety --- Retaining structures --- Architectural engineering --- Construction management --- Excavation --- Bracing --- Engineering profession --- Tieback (geotechnical) --- Safety --- Retaining structures --- Architectural engineering --- Construction management
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buildings --- steel structures --- plastic design --- stability --- continuous beams --- frames --- plastic analysis --- floors --- columns supports --- bracing --- weight mass --- displacement --- joists --- buildings --- steel structures --- plastic design --- stability --- continuous beams --- frames --- plastic analysis --- floors --- columns supports --- bracing --- weight mass --- displacement --- joists
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framed structures --- reinforced concrete --- limit design method --- dimensions --- snow --- wind pressure --- loading --- floors --- concrete slabs --- beams supports --- bracing --- webs supports --- framed structures --- reinforced concrete --- limit design method --- dimensions --- snow --- wind pressure --- loading --- floors --- concrete slabs --- beams supports --- bracing --- webs supports
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Prepared by the Committee on Cold-Formed Steel and the Committee on Metal of the Structural Engineering Institute of ASCE. This report documents the current practices related to bracing cold-formed steel structure elements and systems. Heavy on applications and examples, this book contains design examples illustrating bracing design for various types of cold-formed steel structures, as well as an extensive list of primary reference sources. Topics include: introduction to bracing design; cold-formed framing; cold-formed steel in metal building systems; and miscellaneous cold-formed steel elements and systems. This report is presented as a design guide and will assist the practicing engineer in designing cold-formed steel structures with greater levels of reliability, safety, and economy.
Building, Iron and steel. --- Steel, Structural. --- Steel --- Cold-formed steel --- Steel structures --- Bracing --- Building design --- Building systems --- Steel columns --- Metals (material) --- Structural design --- Cold working.
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Analyse mathématique --- Mathematical analysis --- buildings --- loads forces --- plastic design --- elastic analysis --- comparison --- steel structures --- concrete slabs --- columns supports --- bracing --- stability --- beams supports --- structural members --- buildings --- loads forces --- plastic design --- elastic analysis --- comparison --- steel structures --- concrete slabs --- columns supports --- bracing --- stability --- beams supports --- structural members
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Analyse mathématique --- Mathematical analysis. --- Roofs. --- Buildings, prefabricated --- Dwellings --- Construction --- Stress analysis --- Building codes --- Bracing --- Floors --- Stairways --- Mechanical properties --- Thermal insulation --- Acoustic insulation --- Fire resistance --- Buildings, prefabricated --- Dwellings --- Construction --- Stress analysis --- Building codes --- Bracing --- Floors --- Stairways --- Mechanical properties --- Thermal insulation --- Acoustic insulation --- Fire resistance
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