Zhang / Ltd Precision Machining of Advanced Materials
Erscheinungsjahr 2001
ISBN: 978-3-0357-0389-4
Verlag: Trans Tech Publications
Format: PDF
Kopierschutz: 0 - No protection
E-Book, Englisch, 220 Seiten
ISBN: 978-3-0357-0389-4
Verlag: Trans Tech Publications
Format: PDF
Kopierschutz: 0 - No protection
Precision machining is an essential manufacturing process to achieve high dimensional accuracy and high surface integrity of functional components for various technological applications, such as those in aeronautical, biomedical, mechanical, metrological, mechatronic, nano-technological and microscopy industries. To achieve a satisfactory operation of precision machining, however, one must have a deep understanding of the setting and control of machining conditions, mechanisms of material removal and effectiveness of the cutting tools. As a result, a quality precision machining requires a comprehensive integration of the development of machine tools, the improvement of machining methods and the wise application of materials science and engineering and mechanics of solids.
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Preface
Essential Aspects of Chemical Mechanical Planarization for Oxide Semiconductor
A Novel Chemical-Mechanical Planarization Technology Using Pre-Thin-Surface Grinding in ULSI Manufacturing Process
Some Essentials of Simulating Nano-Surfacing Processes Using the Molecular Dynamics Method
Assessment of the Exit Defects in Carbon Fibre-Reinforced Plastic Plates Caused by Drilling
Grinding of Ceramics: Strength, Surface Features and Grinding Conditions
Grinding Burn Mechanism of Directionally Solidified Superalloy
Wear Mechanism of Diamond Cutting Tool in Machining of Steel
A Friction Model for Free-Machining Steels and Its Applicability to Machinability Analysis
Improvement of Friction and Wear Properties of CVD-SiC Films with New Surface Finishing Method 'ELID-Grinding'
A New Device of Abrasive Jet Machining and Application to Abrasive Jet Printer
On-Machine Monitoring of the Wheel-Working Surface Condition with the Relative Frequency Distribution of its Profile
On-Machine Monitoring of the Wheel Working Surface Condition with the Fractal Dimension Analysis of Its Profile
Fabrication of Metal-Bonded Grinding/Polishing Tools by Greentape Laser Sintering Method
Abrasive Capacity of Thin Film Diamond Structures
Micro Hole Machining of Borosilicate Glass through Electrochemical Discharge Machining (ECDM)
Micro-Spherical Lens Mold Fabrication by Cup-Type Metal-Bond Grinding Wheels Applying ELID (Electrolytic In-Process Dressing)
Threading of Inclusion Modified Steels with Coated Carbide Tools
CVD Diamond Coating Technologies and Application in Cutting Abrasive Materials




