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Wood Machining Processes

Wood Machining Processes
Author: Peter Koch
Publisher:
Total Pages: 558
Release: 1964
Genre: Crafts & Hobbies
ISBN:

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Wood Machining Processes

Wood Machining Processes
Author: Jegatheswaran Ratnasingam
Publisher:
Total Pages: 103
Release: 2002
Genre: Woodwork
ISBN: 9789834104702

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Wood Machining

Wood Machining
Author: J. Paulo Davim
Publisher: John Wiley & Sons
Total Pages: 243
Release: 2013-05-10
Genre: Technology & Engineering
ISBN: 1118602676

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Wood as an engineering material can be technically defined “as a hygroscopic, orthotropic, biological, and permeable material having extreme chemical diversity and physical complexity with structures, that vary extensively in their shape, size, properties and function”. Therefore, using wood to its best advantage and most efficiency in engineering applications, specific characteristics or chemical, physical and mechanical properties must be considered. The products are divided into two classes, solid wood and composite wood products. Solid wood includes shipbuilding, bridges, flooring, mine timbers, etc. Composite wood products include insulation board, plywood, oriented strand board, hardboard and particle board. In recent years, the machining of wood products has acquired great importance due the short supply of wood and increasing environmental awareness among users and manufacturers. The optimization of the machining process centers around the mechanism of chip formation, tool wear, workpiece surface quality, crack initiation and propagation of different types of wood. Other factors are also humidity, temperature, static preloads, and vibrations that can affect the wood during the machining process. The book provides some fundamentals and recent research advances on machining wood and wood products.


Mechanics of Wood Machining

Mechanics of Wood Machining
Author: Etele Csanády
Publisher: Springer Nature
Total Pages: 329
Release: 2020-08-01
Genre: Technology & Engineering
ISBN: 3030514811

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The new edition of this textbook, while largely retaining the proven chapter structure of the previous editions, combines the quantitative, mathematical analysis of the mechanisms of wood processing with practical recommendations and solutions. It presents new theoretical and experimental approaches and offers a clear and systematic overview of the theory of wood cutting, thermal loading in wood-cutting tools, optimum choice of operational parameters, dynamic behavior of tool and workpiece, stability problems in wood machining, energy requirements, the wear process of tools and a unique analysis of surface roughness. In general, diagrams are provided to help quickly estimate various process parameters. As a modern and powerful tool, the process optimization procedure is also included, and amply demonstrated in worked-out examples. In this edition, new and updated material has been added in many sections: roughly a third of the book has been rewritten and a quarter of the figures are new. In addition, many figures have been revised for clarity. The authors are confident that this revised and expanded edition will continue to meet the needs of all those working in the field of wood machining.


An Analysis of the Wood-Cutting Process

An Analysis of the Wood-Cutting Process
Author: Norman Franz
Publisher:
Total Pages: 0
Release: 2016-10-30
Genre:
ISBN: 9780472751426

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In this technical age, wood-machining has largely remained an art for a lack of scientific investigation in this field. An Analysis of the Wood-Cutting Process was prepared to provide a basic understanding of wood-cutting and in particular of parallel-grain wood-cutting. Norman C. Franz is an Associate Professor of Wood Technology in the School of Natural Resources at the University of Michigan. The wood-cutting process is defined in terms of the interactions between wood properties, cutting geometry, and the friction between the chip and the tool. In continuous observations, three basic types of chip were identified--each having generated a related quality of surface. In the analysis of the mechanics of chip formation, the book describes the determination of machining efficiency and surface quality; by demonstrated calculations of optimum cutting angles for given wood properties, an equation is derived for the control of surface quality in wood-cutting.


Mechanics of Wood Machining

Mechanics of Wood Machining
Author: Etele Csanády
Publisher: Springer Science & Business Media
Total Pages: 208
Release: 2012-07-16
Genre: Technology & Engineering
ISBN: 3642299555

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Wood is one of the most valuable materials for mankind, and since our earliest days wood materials have been widely used. Today we have modern woodworking machine and tools; however, the raw wood materials available are continuously declining. Therefore we are forced to use this precious material more economically, reducing waste wherever possible. This new textbook on the “Mechanics of Wood Machining” combines the quantitative, mathematical analysis of the mechanisms of wood processing with practical recommendations and solutions. Bringing together materials from many sources, the book contains new theoretical and experimental approaches and offers a clear and systematic overview of the theory of wood cutting, thermal loading in wood-cutting tools, dynamic behaviour of tool and work piece, optimum choice of operational parameters and energy consumption, the wear process of the tools, and the general regularities of wood surface roughness. Diagrams are provided for the quick estimation of various process parameters. This book will be useful for scientists, graduate and postgraduate students, and practising engineers seeking a deeper understanding of physical phenomena associated with real woodworking processes.


Machining Technology for Composite Materials

Machining Technology for Composite Materials
Author: H Hocheng
Publisher: Elsevier
Total Pages: 488
Release: 2011-11-28
Genre: Technology & Engineering
ISBN: 0857095145

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Machining processes play an important role in the manufacture of a wide variety of components. While the processes required for metal components are well-established, they cannot always be applied to composite materials, which instead require new and innovative techniques. Machining technology for composite materials provides an extensive overview and analysis of both traditional and non-traditional methods of machining for different composite materials. The traditional methods of turning, drilling and grinding are discussed in part one, which also contains chapters analysing cutting forces, tool wear and surface quality. Part two covers non-traditional methods for machining composite materials, including electrical discharge and laser machining, among others. Finally, part three contains chapters that deal with special topics in machining processes for composite materials, such as cryogenic machining and processes for wood-based composites. With its renowned editor and distinguished team of international contributors, Machining technology for composite materials is an essential reference particularly for process designers and tool and production engineers in the field of composite manufacturing, but also for all those involved in the fabrication and assembly of composite structures, including the aerospace, marine, civil and leisure industry sectors. Provides an extensive overview of machining methods for composite materials Chapters analyse cutting forces, tool wear and surface quality Cryogenic machining and processes for wood based composites are discussed


Wood Machining Processes

Wood Machining Processes
Author: Peter Koch
Publisher:
Total Pages: 554
Release: 1964
Genre: Crafts & Hobbies
ISBN:

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Traditional Machining Processes

Traditional Machining Processes
Author: J. Paulo Davim
Publisher: Springer
Total Pages: 242
Release: 2014-10-31
Genre: Technology & Engineering
ISBN: 3662450887

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This book collects several examples of research in machining processes. Chapter 1 provides information on polycrystalline diamond tool material and its emerging applications. Chapter 2 is dedicated to the analysis of orthogonal cutting experiments using diamond-coated tools with force and temperature measurements. Chapter 3 describes the estimation of cutting forces and tool wear using modified mechanistic models in high performance turning. Chapter 4 contains information on cutting under gas shields for industrial applications. Chapter 5 is dedicated to the machinability of magnesium and its alloys. Chapter 6 provides information on grinding science. Finally, chapter 7 is dedicated to flexible integration of shape and functional modelling of machine tool spindles in a design framework.