Kinematic Geometry of Surface Machining

The principle of Occam's razor loosely translates tothe simplest solution is often the best. The author of Kinematic Geometry of Surface Machining utilizes this reductionist philosophy to provide a solution to the highly inefficient process of machining sculptured parts on multi-axis NC machines. He has developed a method to quickly calcu

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Kinematic Geometry of Surface Machining

The principle of Occam's razor loosely translates tothe simplest solution is often the best. The author of Kinematic Geometry of Surface Machining utilizes this reductionist philosophy to provide a solution to the highly inefficient process of machining sculptured parts on multi-axis NC machines. He has developed a method to quickly calcu

50.49 In Stock
Kinematic Geometry of Surface Machining

Kinematic Geometry of Surface Machining

by Stephen P. Radzevich
Kinematic Geometry of Surface Machining

Kinematic Geometry of Surface Machining

by Stephen P. Radzevich

eBook

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Overview

The principle of Occam's razor loosely translates tothe simplest solution is often the best. The author of Kinematic Geometry of Surface Machining utilizes this reductionist philosophy to provide a solution to the highly inefficient process of machining sculptured parts on multi-axis NC machines. He has developed a method to quickly calcu


Product Details

ISBN-13: 9781420063417
Publisher: CRC Press
Publication date: 12/14/2007
Sold by: Barnes & Noble
Format: eBook
Pages: 536
File size: 24 MB
Note: This product may take a few minutes to download.

About the Author

Stephen P. Radzevich

Table of Contents

Examples of Implementation of the Dg/K-Based Method. Of Surface Generation. Synthesis of Optimal Surface Machining Operations. Conditions of Proper Part Surface Generation.
Geometry of Active Part of a Cutting Tool. Profiling Of the Form Cutting Tools of the Optimal Design. The Geometry of Contact of Two Smooth Regular Surfaces. Applied Coordinate Systems and Linear Transformations. Kinematics of Surface Generation.
Part Surfaces: Geometry.

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