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Structural Failure, Edited by Tomasz Wierzbicki and Norman Jones The decline of our urban infrastructure is, perhaps more than ever, a cause of national concern. And this in-depth look describes the confluence of factors that make structural failure inevitable-as well as avoidable. The failure process is viewed as a three-tiered phenomenon: micro, or material, level failure; through-thickness failure; and global structural failure. Leading experts examine the interactive processes that underlie structural failure, covering such specifics as fracturing, fragmentation, tearing of thin metal sheets, impact loading, failure of brittle material, collapse of thin-walled structures, bending and denting failure, as well as a variety of additional loading conditions, both static and dynamic. Critical to safety-enhanced product development in mechanical design, aerospace structures, building structures, and product packaging, this important reference catalogs for design engineers the measures and means for predicting, resisting, and controlling structural failure.
Prepared by the Research Council on Performance of Structures of ASCE. This report contains guidelines for conducting an investigation into the causes of a structural failure or collapse.Ø Topics include: members of the investigative team and their responsibilities, recommended procedure for site visits, accumulation and recording of data, reporting procedures, and checklists of preparation and materials needed for each step. Common structural types are described, together with the most common causes of distress and failure for each material and construction method. Causes of failure are discussed according to type of project, type of structure, or type of material, connection or foundation.
Building defects still continue to plague the construction industry. The lessons learned over the last forty years have not been fully applied. Many new or refurbished buildings still leak or crack. Lack of awareness by designers and installers as to the main mechanisms that trigger such failures remains a problem for the industry. Investigating and rectifying building failures form a major part of building surveyors’ bread and butter work. This book provides guidance on this work for typical residential, commercial and industrial buildings – with advice on how to diagnose a wide range of defects with an emphasis on evidence based practice throughout. It considers both modern and older construction methods, together with new and traditional materials. The particular problems of alteration and renovation work are also discussed. The first four chapters provide information and guidance on the methodology for investigating failures – how to prepare for and conduct an investigation into a building defect and subsequently diagnose its cause in a logical manner. This fourth edition has been updated and expanded to cover the latest diagnostic procedures and research. It also includes Appendices and a new Bibliography, and provides an extensive list of books on building pathology and related topics in the UK and North America. It is essential reading for all students and practitioners interested in building surveying and building conservation.
The Structural Defects Reference Manual for Low-Rise Buildings has been written to assist professionals and students involved in building construction to identify causes of structural failure. Each chapter carefully addresses design, materials and workmanship factors which contribute to structural defects. The main structural elements - roofs, wall
About the reasons for structural collapse, including earthquakes, metal fatigue, and terrorism.
An examination of creative systems in structural and construction engineering taken from conference proceedings. Topics covered range from construction methods, safety and quality to seismic response of structural elements and soils and pavement analysis.
Explains, using examples of structural collapses from around the world, the science behind structural engineering and the reasons behind engineering failures.
Timo Warns has developed tractable fault models that, while being non-probabilistic, are accurate for dependent and propagating faults. Using seminal problems such as consensus and constructing coteries, he demonstrates how the new models can be used to design and evaluate effective and efficient means of fault tolerance.
This book deals with structural failure (induced by mechanical, aerodynamic, acoustic and aero-thermal, loads, etc.) of modern aerospace vehicles, in particular high-speed aircraft, solid propellant rocket systems and hypersonic flight vehicles, where structural integrity, failure prediction and service life assessment are particularly challenging, due to the increasingly more demanding mission requirements and the use of non-traditional materials, such as non-metallic composites, in their construction. Prediction of the complex loading environment seen in high-speed operation and constitutive / fracture models which can adequately describe the non-linear behaviour exhibited by advanced alloys and composite materials are critical in analyzing the non-linear structural response of modern aerospace vehicles and structures. The state-of-the-art of the different structural integrity assessment and prediction methodologies (including non-destructive structural health monitoring techniques) used for the structural design, service life assessment and failure analysis of the different types of aerospace vehicles are presented. The chapters are written by experts from aerospace / defence research organizations and academia in the fields of solid mechanics, and structural mechanics and dynamics of aircraft, rocket and hypersonic systems. The book will serve as a useful reference document containing specialist knowledge on appropriate prediction methodologies for a given circumstance and experimental data acquired from multi-national collaborative programs.