Fundamentals of Metal Machining and Machine Tools, Third EditionIn the more than 15 years since the second edition of Fundamentals of Machining and Machine Tools was published, the industry has seen many changes. Students must keep up with developments in analytical modeling of machining processes, modern cutting tool materials, and how these changes affect the economics of machining. With coverage reflecting state-of-the-art industry practice, Fundamentals of Machining and Machine Tools, Third Edition emphasizes underlying concepts, analytical methods, and economic considerations, requiring only basic mathematics and physics. This book thoroughly illustrates the causes of various phenomena and their effects on machining practice. The authors include several descriptions of modern analytical methods, outlining the strengths and weaknesses of the various modeling approaches. What's New in the Third Edition? Supplying abundant examples, illustrations, and homework problems, Fundamentals of Machining and Machine Tools, Third Edition is an ideal textbook for senior undergraduate and graduate students studying metal cutting, machining, machine tool technology, machining applications, and manufacturing processes. |
Contents
Conventions Used in This Book xxvii | 6 |
Problems | 64 |
Mechanics of Metal Cutting | 69 |
Problems | 114 |
Temperatures in Metal Cutting | 121 |
References | 139 |
Tool Life and Tool Materials | 141 |
Problems | 172 |
Problems | 265 |
References | 282 |
Problems | 316 |
References | 356 |
Manufacturing Systems and Automation | 359 |
References | 400 |
References | 437 |
Problems | 501 |
Common terms and phrases
abrasive abrasive wheels alloys application axis back engagement basic carbon steel chip breaking chip formation chip-tool CIRP component constant cutter cutting conditions cutting edge cutting fluids cutting force cutting process cutting speed cutting tool cylindrical deformation zone depth of cut Design determined diameter drilling effect Equation F₁ feed motion feed speed flank friction ft/min geometry grinding wheel heat high-speed steel holes horizontal increase insert lathe lubricant machine tool machined surface machining operations machining processes manufacturing maximum metal cutting metal removal rate milling milling cutters milling machines minimum production normal rake orthogonal cutting parameters primary motion process plan radius rake angle ratio result shape shear angle shear strength shear stress shown in Figure single-point specific cutting energy spindle stress surface finish surface roughness Table temperature tool face tool materials tool path tool wear undeformed chip thickness values vibration workpiece



