Zakiah Ahmad – författare
2 351 kr
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3 349 kr
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3 974 kr
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Building Seismic Monitoring and Detection Technology focuses on the research of seismic resistance and monitoring technology. The book gathers cutting-edge research and achievements, and includes contributions on the following subjects:
New concepts and key technologies of structural regulation and disaster prevention Test and monitoring study of thermal insulation in tunnels Protection of steel and concrete structures using arc thermal spray Research progress of mechanical metamaterialsThis book is aiming at scholars and engineers involved or interested in structural engineering and seismic detection technology.
3 974 kr
Läs direkt efter köp
Building Seismic Monitoring and Detection Technology focuses on the research of seismic resistance and monitoring technology. The book gathers cutting-edge research and achievements, and includes contributions on the following subjects:
New concepts and key technologies of structural regulation and disaster prevention Test and monitoring study of thermal insulation in tunnels Protection of steel and concrete structures using arc thermal spray Research progress of mechanical metamaterialsThis book is aiming at scholars and engineers involved or interested in structural engineering and seismic detection technology.
3 436 kr
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1 606 kr
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Scientists and researchers are looking for new smart materials to replace old or conventional materials for better performance and for new applications. The use of polymeric materials and nanomaterials is increasing due to their wide-spectrum tunability and many properties. It is now easier to formulate materials for special purposes using these materials than using conventional materials and methods. Many commercial products made from polymeric materials and nanomaterials are now in use and on the market.
This book presents a diverse selection of cutting-edge research on the development of polymeric materials and nanomaterials for new and different applications. These include electrical applications, biomedical applications, sensing applications, coating applications, and others. A few chapters dedicated to materials for construction applications are also included. Discussions include the properties, behavior, preparation, processing, and characterization of various polymeric materials, nanomaterials, and their composites. Some of the chapter authors present theoretical studies of these systems, which can help readers to develop a better understanding in this area.
1 393 kr
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1 606 kr
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Scientists and researchers are looking for new smart materials to replace old or conventional materials for better performance and for new applications. The use of polymeric materials and nanomaterials is increasing due to their wide-spectrum tunability and many properties. It is now easier to formulate materials for special purposes using these materials than using conventional materials and methods. Many commercial products made from polymeric materials and nanomaterials are now in use and on the market.
This book presents a diverse selection of cutting-edge research on the development of polymeric materials and nanomaterials for new and different applications. These include electrical applications, biomedical applications, sensing applications, coating applications, and others. A few chapters dedicated to materials for construction applications are also included. Discussions include the properties, behavior, preparation, processing, and characterization of various polymeric materials, nanomaterials, and their composites. Some of the chapter authors present theoretical studies of these systems, which can help readers to develop a better understanding in this area.
1 168 kr
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1 605 kr
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2 006 kr
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This volume serves as a cutting edge reference on XLPE based blends, nanocomposites, and their applications. The book provides an introduction to XLPE nanocomposites and discusses the incorporation of natural and inorganic nanoparticles in the XLPE matrix. It also focuses on its characterization as well as the morphological, rheological, mechanical, viscoelastic, thermal, and electrical, properties. It provides an in-depth review of various potential applications, with special emphasis on use in cable insulation. The book focuses on cutting edge research developments, looking at published papers, patents, and production data. This book will be of use to academic and industry researchers, as well as graduate students working in the fields of polymer science and engineering, materials science, and chemical engineering.
1 605 kr
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2 305 kr
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3 090 kr
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2 305 kr
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593 kr
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747 kr
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This book describes the application of mathematical and fundamental theory as stated in the relevant standards, namely EYM and NDS. Timber is one of the important building materials in the field of engineering, other than concrete and steel. However, there is still a lot of unexplored knowledge about timber, including how timber connections are made. One of the main types of timber connection is mortise and tenon. Mortise and tenon are widely seen as one of the most important traditional timber structural joint. In order to understand the load-carrying capacity and performance of the structural mortise and tenon joint, the existing theoretical background of timber joint design is made as a reference. Current equations applicable in estimating the load-carrying capacity of timber joint uses the European Yield Model (EYM). Therefore, the main aim of this book is to share the basic design knowledge, inclusive of safety factor limitations (as engineering main factor) in structural design.
537 kr
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687 kr
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This book highlights the charring rate performance of LVL made from tropical hardwood according to EN 13381-7 and BS 476 standards. Laminated Veneer Lumber (LVL) is produced by bonding layers of wood veneers using adhesives, heat, and pressure, resulting in products that are typically stronger, more dimensionally stable, and more resistant to environmental factors than solid timber. This makes LVL highly versatile for use in structural components of buildings. However, there remains limited knowledge about how LVL, particularly those made from tropical hardwood, performs under fire exposure. Understanding the charring process, where the outer wood layers degrade and form a protective char layer insulating the core helps engineers estimate the load-bearing capacity of LVL during a fire. Experimental studies and predictive models are discussed to provide insights into charring behavior under different conditions. The findings contribute to enhancing fire safety design in timber construction, ensuring compliance with international standards and improving the resilience of timber buildings during fire scenarios.