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مکانیک نانو لوله‌های کربنی: اصول، مدل‌سازی و ایمنی

Mechanics of Carbon Nanotubes: Fundamentals, Modelling and Safety

معرفی کتاب «مکانیک نانو لوله‌های کربنی: اصول، مدل‌سازی و ایمنی» (با عنوان لاتین Mechanics of Carbon Nanotubes: Fundamentals, Modelling and Safety) نوشتهٔ Vasyl Michael Harik، منتشرشده توسط نشر Academic Press [Imprint] Elsevier Science & Technology در سال 2018. این کتاب در فرمت pdf، زبان انگلیسی ارائه شده است.

Mechanics of Carbon Nanotubes: Fundamentals, Modelling and Safety draws on the latest industry practice and academic research to provide the ideal guide to the mechanical properties of carbon nanotubes. The fundamentals of nanomechanics and mechanical behavior of carbon nanotubes are presented, along with explanations of more advanced themes, including the classification of carbon nanotubes into twenty classes, nanomechanics of graphene sheets, basic models for deformation of carbon nanotubes, analysis of size effects, sliding in multi-wall carbon nanotubes, generation of phonons, multiphysics modeling, nanocomposites, interfaces, and the safety of carbon nanotubes. This is essential reading for anyone involved in research or engineering involving carbon nanotubes. Provides a system for the classification of carbon nanotubes, aiding correct selection for various applications Includes the Matrix Registry Analysis for nanoscale interfaces that is essential for design involving friction or sliding Includes parametric maps to help readers pick the right model for a particular CNT geometry (beam vs. shell vs. thin or thick shells, etc.) Presents a thorough examination of the safety issues related to CNTs, including toxicity at high aspect ratio Mechanics of Carbon Nanotubes: Fundamentals, Modeling and Safety draws on the latest academic research and nanotechnology applications to provide a comprehensive guide on the most recent developments in the science of carbon nanotubes. The fundamentals of nanomechanics and mechanical behavior of carbon nanotubes are presented in initial chapters, followed by more advanced topics such as the classification of carbon nanotubes, carbon nanotubes in nanocomposites, multiwall carbon nanotubes, and recent trends.This book provides a system for the classification of carbon nanotubes into 20 classes, aiding correct selection for various applications, and includes the Atomic Registry Matrix Analysis for nanoscale interfaces, essential for design involving friction or sliding. Parametric maps are included to help readers pick the correct model for a particular CNT geometry, in addition to a thorough examination of the effective thickness paradox and safety issues related to CNTs, such as toxicity at high aspect ratio.Mechanics of Carbon Nanotubes is essential reading for anyone involved in research or engineering that includes carbon nanotubes, be they students or seasoned professionals in the field. It is particularly useful to those working with applications in the areas of microelectronics, robotics, aerospace, composites, or prosthetics. Provides a system for the classification of carbon nanotubes, aiding correct selection for various applications Includes the Matrix Registry Analysis for nanoscale interfaces that is essential for design involving friction or sliding Features parametric maps to help readers pick the right model for a particular CNT geometry (beam vs. shell vs. thin or thick shells, etc.) Presents a thorough examination of the safety issues related to CNTs, including toxicity at high aspect ratio Mechanics of Carbon Nanotubes: Fundamentals, Modeling and Safety draws on the latest academic research and nanotechnology applications to provide a comprehensive guide on the most recent developments in the science of carbon nanotubes. The fundamentals of nanomechanics and mechanical behavior of carbon nanotubes are presented in initial chapters, followed by more advanced topics such as the classification of carbon nanotubes, carbon nanotubes in nanocomposites, multiwall carbon nanotubes, and recent trends. This book provides a system for the classification of carbon nanotubes into 20 classes, aiding correct selection for various applications, and includes the Atomic Registry Matrix Analysis for nanoscale interfaces, essential for design involving friction or sliding. Parametric maps are included to help readers pick the correct model for a particular CNT geometry, in addition to a thorough examination of the effective thickness paradox and safety issues related to CNTs, such as toxicity at high aspect ratio. Mechanics of Carbon Nanotubes is essential reading for anyone involved in research or engineering that includes carbon nanotubes, be they students or seasoned professionals in the field. It is particularly useful to those working with applications in the areas of microelectronics, robotics, aerospace, composites, or prosthetics Front-matter_2018_Mechanics-of-Carbon-Nanotubes Copyright_2018_Mechanics-of-Carbon-Nanotubes Dedication_2018_Mechanics-of-Carbon-Nanotubes Foreword_2018_Mechanics-of-Carbon-Nanotubes Preface_2018_Mechanics-of-Carbon-Nanotubes Chapter-1---Nanotechnology-of-Carbon-Nanotubes--Senso_2018_Mechanics-of-Carb Chapter-2---Nanoscale-Laws-of-Motion-and-Governing-Equ_2018_Mechanics-of-Car Chapter-3---Nanomechanics-of-Graphene-Sheets-and-Ato_2018_Mechanics-of-Carbo Chapter-4---Classification-of-Carbon-Nanotubes--20-C_2018_Mechanics-of-Carbo Chapter-5---Mechanics-of-the-High-Aspect-Ratio-Carbon-Nan_2018_Mechanics-of- Chapter-6---Mechanics-of-Carbon-Nanotubes--Shell-Models_2018_Mechanics-of-Ca Chapter-7---Mechanics-of-Multiwall-Carbon-Nanotubes--Uni_2018_Mechanics-of-C Chapter-8---Carbon-Nanotubes-in-Nanocomposi_2018_Mechanics-of-Carbon-Nanotub Chapter-9---Nanoscale-Interfaces-in-Nanocomposites_2018_Mechanics-of-Carbon- Chapter-10---Constitutive-Modeling-of-Multifunctional-Nano_2018_Mechanics-of Chapter-11---Carbon-Nanotube-Length-and-Criteria-f_2018_Mechanics-of-Carbon- Chapter-12---Trends-in-Recent-Publications-on-Mecha_2018_Mechanics-of-Carbon Index_2018_Mechanics-of-Carbon-Nanotubes Annotation Mechanics of Carbon Nanotubes: Fundamentals, Modelling and Safety draws on the latest industry practice and academic research to provide the ideal guide to the mechanical properties of carbon nanotubes. The fundamentals of nanomechanics and mechanical behavior of carbon nanotubes are presented, along with explanations of more advanced themes, including the classification of carbon nanotubes into twenty classes, nanomechanics of graphene sheets, basic models for deformation of carbon nanotubes, analysis of size effects, sliding in multi-wall carbon nanotubes, generation of phonons, multiphysics modeling, nanocomposites, interfaces, and the safety of carbon nanotubes. This is essential reading for anyone involved in research or engineering involving carbon nanotubes
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