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Annotation. This guide shows facility managers how to conduct a roofing system assessment and choose the optimal roofing system at the minimum cost. Reid, a facility engineer, covers weather effects on roofing systems, roofing construction materials, insulation and weatherproofing membranes, energy system calculations, fasteners and flashings, penetrations through the system membrane, project management, unconventional roofing structure, warranty and maintenance, and safety and liability.
Written by well-known specialists, this key, well-illustrated text addresses the topic of lightweight claddings in buildings and is a useful guide and reference. This new edition incorporates the latest environmental issues and use of new materials.
First Published in 1998. Routledge is an imprint of Taylor & Francis, an informa company.
Capitalizing on the rapid growth and reduced costs of laser systems, laser cladding is gaining momentum, and in some instances replacing conventional techniques of depositing thin films because it can accommodate a great variety of materials, achieve uniform thickness and precise widths of layers, and provide improved resistance to wear and corrosion in the final product. Laser cladding technology also offers a revolutionary layered manufacturing and prototyping technique that can fabricate complex components without intermediate steps. Laser Cladding reviews the parameters, techniques and equipment, process modeling and control, and the physical metallurgy of alloying and solidification during laser cladding. The authors clarify the interconnections laser cladding has with CAD/CAM design; automation and robotics; sensors, feedback, and control; physics, material science, heat transfer, fluid dynamics, and powder metallurgy to promote further development and improved process quality of this growing technology. As the first book entirely dedicated to the topic, it also offers a history of its development and a guide to applications and market opportunities. While a considerable part of Laser Cladding is dedicated to industrial applications, this volume brings together valuable information illustrated with real case studies based on the authors' vast experience, and research and analysis in the field to provide a timely source for both academia and industry.
Stone cladding preconstruction evaluation. Stone weathering and durability. Design of stone cladding systems. Investigation and restoration of existing stone cladding systems.
This report provides practical advice and guidance on the durability, performance and problems associated with the use of organically coated metal cladding and composite panels. It also provides extensive comment and analysis on aspects of design and detailing of cladding, lifespan, maintenance, repair methods and risk of premature failure, and workable solutions for potential problems.
Based on investigations across Europe and North America, this report addresses the key areas of interest to architects, engineers, manufacturers, installers and building owners.Recommendations are given on the specification of appropriate materials (including insurance and guarantee arrangements), design guidance, installation and maintenance and on the need for training of installers. Areas requiring further research and standardisation are also identified.
1-Weather Effects on Roofing Systems2-Understanding Your Roofing and Cladding Systems3-Building Envelope & Roofing Structure4-Roofing Construction Materials5-Insulation & Waterproofing Membranes6-Energy System Calculations7-Fasteners & Flashings: Holding the Roof on the Roof8-Penetrations Through the Roofing System9-Roofing Project Management10-Convention and Unconventional Roofing Structures11-Warranty and Maintenance of Roofing Systems12-Roofing People13-Roofing Safety & Liability14-Industry Trade AssociationsGlossary of Roofing TerminologyBibliographyIndex
Laser cladding is an additive manufacturing technology capable of producing coatings due to the surface fusion of metals. The selected powder is fed into a focused laser beam to be melted and deposited as coating. This allows to apply material in a selected way onto those required sections of complex components. The process main properties are the production of a perfect metallurgically bonded and fully dense coatings; the minimal heat affected zone and low dilution between the substrate and filler material resulting in functional coatings that perform at reduced thickness, so fewer layers are applied; fine, homogeneous microstructure resulting from the rapid solidification rate that promotes wear resistance of carbide coatings; near net-shape weld build-up requires little finishing effort; extended weldability of sensitive materials like carbon-rich steels or nickel-based superalloys that are difficult or even impossible to weld using conventional welding processes; post-weld heat treatment is often eliminated as the small heat affected zone minimizes component stress; excellent process stability and reproducibility because it is numerical controlled welding process. The typical applications are the dimensional restoration; the wear and corrosion protection; additive manufacturing. The wide range of materials that can be deposited and its suitability for treating small areas make laser cladding particularly appropriate to tailor surface properties to local service requirements and it opens up a new perspective for surface engineered materials. The main key aspect to be scientifically and technologically explored are the type of laser; the powders properties; the processing parameters; the consequent microstructural and mechanical properties of the processed material; the capability of fabrication of prototypes to rapid tooling and rapid manufacturing. Distills critical concepts, methods, and applications from leading full-length chapters, along with the authors’s own deep understanding of the material taught, into a concise yet rigorous graduate and advanced undergraduate text; Reinforces concepts covered with detailed solutions to illuminating and challenging industrial applications; Discusses current and future applications of laser cladding in additive manufacturing.