Advances in Abrasive Based Machining and Finishing Processes


Book Description

This book presents the advances in abrasive based machining and finishing in broad sense. Specifically, the book covers the novel machining and finishing strategies implemented in various advanced machining processes for improving machining accuracy and overall quality of the product. This book presents the capability of advanced machining processes using abrasive grain. It also covers ways for enhancing the production rate as well as quality. It fulfills the gap between the production of any complicated components and successful machining with abrasive particles.




Tribology of Abrasive Machining Processes


Book Description

This book draws upon the science of tribology to understand, predict and improve abrasive machining processes. Pulling together information on how abrasives work, the authors, who are renowned experts in abrasive technology, demonstrate how tribology can be applied as a tool to improve abrasive machining processes. Each of the main elements of the abrasive machining system are looked at, and the tribological factors that control the efficiency and quality of the processes are described. Since grinding is by far the most commonly employed abrasive machining process, it is dealt with in particular detail. Solutions are posed to many of the most commonly experienced industrial problems, such as poor accuracy, poor surface quality, rapid wheel wear, vibrations, work-piece burn and high process costs. This practical approach makes this book an essential tool for practicing engineers. Uses the science of tribology to improve understanding and of abrasive machining processes in order to increase performance, productivity and surface quality of final products A comprehensive reference on how abrasives work, covering kinematics, heat transfer, thermal stresses, molecular dynamics, fluids and the tribology of lubricants Authoritative and ground-breaking in its first edition, the 2nd edition includes 30% new and updated material, including new topics such as CMP (Chemical Mechanical Polishing) and precision machining for micro-and nano-scale applications




Advances in Abrasive Processes


Book Description

Volume is indexed by Thomson Reuters CPCI-S (WoS). Extensive research during the past 30 years has provided a relatively complete understanding of the many diverse aspects of abrasive processes which are suitable for the final machining of components that require smooth surfaces and precise tolerances. Although widely used in industry, abrasive treatments remain perhaps the least understood of all machining processes. Advances in the field of abrasive processes are therefore of great fundamental and practical interest.




Machining with Abrasives


Book Description

Abrasive machining is one of the most important processes used in manufacturing engineering to remove unwanted material and to obtain the desired geometry and surface quality. Abrasive machining processes are processes where material is removed from a work piece using a multitude of hard angular abrasive particles or grains which may or may not be bonded to form a tool. Abrasive Machining discusses the fundamentals and advances in the abrasive machining processes, and provides a complete overview of the newly developing areas in the field including but not limited to, high efficiency deep grinding and micro and nanogrinding.




Advances in Grinding and Abrasive Processes


Book Description

The present volume contains selected papers from the 12th Grinding and Machining Conference, held in China (GMC 2003). Volume is indexed by Thomson Reuters CPCI-S (WoS). This collection presents a selection of over 250 papers, submitted to the conference by many universities and industrial concerns. All of the papers were subjected to peer-review by at least two expert referees. Moreover, fifteen papers on high-speed machining were specially selected by Dr. Ning He, a full professor at Nanjing University of Aeronautics and Astronautics (NUAA), from papers submitted to the International Conference on High Speed Machining, which is organized by the NUAA and will be held in Nanjing from March 31st to April 2nd, 2004. These papers have been selected for the present volume because of their quality and the fact that they cover the main topics of the conference.




Advances in Abrasive Processes


Book Description

Extensive research during the past 30 years has provided a relatively complete understanding of the many diverse aspects of abrasive processes which are suitable for the final machining of components that require smooth surfaces and precise tolerances. Although widely used in industry, abrasive treatments remain perhaps the least understood of all machining processes. Advances in the field of abrasive processes are therefore of great fundamental and practical interest.




Advances in Abrasive Technology XVI


Book Description

Volume is indexed by Thomson Reuters CPCI-S (WoS).Abrasive machining is one kind of old technology, but it has a far-reaching impact on a broad spectrum of industries. In particular modern manufacturing, there is an ever increasing demand of advanced abrasive technology and other precision abrasive technology. The collection brings together both academic researchers and practitioners from around the world for interchange of the latest developments.The 123 papers are grouped as follows: 1: Abrasive Jet Machining; 2: Abrasive Machining; 3: Advanced Cutting Technology; 4: Brittle Material Machining; 5: CMP and Silicon Wafer Processing; 6: Coolants and Cooling; 7: Design, Fabrication and Analysis of Devices for the Applications of Abrasive Technologies; 8: EDM, Ultrasonic Machining, and Laser Machining; 9: Finishing, Lapping and Polishing; 10: Glass Molding and Related Topics; 11: Grinding Wheel and Abrasive Grain Technologies; 12: In-Process Measurement and Monitoring, Metrology; 13: Machine Tools and Systems, Tooling Processing; 14: Micro/Nano-Machining; 15: Surface Integrity and Materials Characterization; 16: Tribology in Manufacturing; 17: Truing, Dressing and ELID.




Tribology and Fundamentals of Abrasive Machining Processes


Book Description

This new edition draws upon the fundamentals of abrasive machining processes and the science of tribology to understand, predict, and improve abrasive machining processes. Each of the main elements of the abrasive machining system is looked at alongside the tribological factors that control the efficiency and quality of the processes described. The new edition has been updated to include a variety of industrial applications. Grinding and conditioning of grinding tools are dealt with in particular detail, and solutions are proposed for many of the most commonly experienced industrial problems, such as poor accuracy, poor surface quality, rapid tool wear, vibrations, workpiece burn, and high process costs. The entire book has been rewritten and restructured, with ten completely new chapters. Other new features include: Extensive explanations of the main abrasive machining processes such as grinding (including reciprocating and creep-feed grinding, high-speed high-efficiency deep grinding, external and internal cylindrical grinding, and centerless grinding), honing, superfinishing, lapping, polishing, and finishing Discussions of the new classes of abrasives, abrasive tools, and bonding materials New case studies and troubleshooting on the most common grinding practices New coverage on grinding tool conditioning, mechanical dressing, and nonmechanical dressing processes Detailed explanations of the effects of process input parameters (such as cutting parameters, workpiece material and geometry, and abrasive tools) on process characteristics, workpiece quality, tool wear, and process parameters (such as cutting forces and temperature as well as achievable material removal rate) Updated topics regarding process fluids for abrasive machining and fluid delivery




Machines Advances and Trends in Non-conventional, Abrasive and Precision Machining


Book Description

The work included in this book pertains to advanced abrasive and nonconventional machining processes. These processes are at the forefront of modern technology, with significant practical significance. Their importance is also made clear by the case studies that are included in the research that is presented in the book, pertaining to important materials and high-end applications. However, the particularities of these manufacturing processes need to be further investigated and the processes themselves need to be optimized. This is conducted in the presented works with significant experimental and modeling work, incorporating modern tools of analysis and measurements.




Advances in Abrasive Technology XIII


Book Description

Volume is indexed by Thomson Reuters CPCI-S (WoS).Abrasive machining is one of the oldest technologies, and continues to have a far-reaching impact on a broad spectrum of industries. In particular, there is an ever-increasing demand by modern manufacturing for advanced abrasive techniques and other precision machining technologies. As well as abrasive-related technologies, electrical discharge machining (EDM), glass molding, machine tool systems, green manufacturing, laser-beam machining, tribology, advanced cutting methods, etc. are addressed here. The more than 167 presentations contributed by workers from all over the world will make this volume essential reading. The annual conferences allow academic researchers and industrial practitioners to trade insights and questions regarding abrasive machining and its applications. Nearly 200 selected and peer-reviewed papers from the latest sitting consider such areas as abrasive jet machining, advanced cutting technology, brittle material machining, chemical mechanical polishing and silicon wafer processing, coolants and cooling, ultrasonic machining and laser machining, eco-machining, glass molding, grinding wheel and abrasive grain technologies, high-speed and high-efficiency machining, in-process measurement and monitoring, metrology, machine tools and systems, tooling processing, micro-machining and nano-machining, surface integrity and materials characterization, tribology in manufacturing, and other topics. Most of the papers include high quality monochrome illustrations.