Advanced analysis of nontraditional machining / / Hong Hocheng, Hung-Yin Tsai, editors |
Edizione | [1st ed. 2013.] |
Pubbl/distr/stampa | New York, : Springer, 2013 |
Descrizione fisica | 1 online resource (505 p.) |
Disciplina |
671.3/5
671.35 |
Altri autori (Persone) |
HochengHong
TsaiHung-Yin |
Soggetto topico | Machining |
ISBN |
1-283-93357-8
1-4614-4054-8 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | Laser Machining and Its Associated Effects -- Electrical Discharge Machining -- Electrochemical Machining -- Chemical Mechanical Polishing -- Ultrasonic Machining -- Water Jet Machining -- Micromachining by Photonic Beams -- Material Shaping by Ion and Electron Nanobeams. |
Record Nr. | UNINA-9910437889603321 |
New York, : Springer, 2013 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Advanced Machining and Manufacturing Processes / / by Kaushik Kumar, Divya Zindani, J. Paulo Davim |
Autore | Kumar Kaushik |
Edizione | [1st ed. 2018.] |
Pubbl/distr/stampa | Cham : , : Springer International Publishing : , : Imprint : Springer, , 2018 |
Descrizione fisica | 1 online resource (213 pages) : illustrations |
Disciplina | 671.35 |
Collana | Materials Forming, Machining and Tribology |
Soggetto topico |
Manufactures
Machinery Electrochemistry Manufacturing, Machines, Tools, Processes Machinery and Machine Elements |
ISBN | 3-319-76075-0 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | Automated Conventional Machining Techniques -- Non Conventional Machining Techniques -- Virtual Manufacturing. |
Record Nr. | UNINA-9910299946703321 |
Kumar Kaushik | ||
Cham : , : Springer International Publishing : , : Imprint : Springer, , 2018 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Advanced machining processes of metallic materials : theory, modelling, and applications / / Wit Grzesik, Professor of Mechanical Engineering, Faculty of Mechanical Engineering, Opole University of Technology, Poland |
Autore | Grzesik Wit |
Edizione | [Second edition.] |
Pubbl/distr/stampa | Amsterdam : , : Elsevier, , [2017] |
Descrizione fisica | 1 online resource (610 pages) : illustrations |
Disciplina | 671.35 |
Soggetto topico |
Metal-cutting
Metal-cutting tools Metal-cutting - Data processing |
ISBN | 0-444-63720-6 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNINA-9910583352203321 |
Grzesik Wit | ||
Amsterdam : , : Elsevier, , [2017] | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Advanced machining processes of metallic materials [[electronic resource] ] : theory, modelling and applications / / Wit Grzesik |
Autore | Grzesik Wit |
Edizione | [1st ed.] |
Pubbl/distr/stampa | Amsterdam ; ; Boston, : Elsevier, 2008 |
Descrizione fisica | 1 online resource (489 p.) |
Disciplina | 671.35 |
Soggetto topico |
Metal-cutting
Metal-cutting tools Metal-cutting - Data processing |
Soggetto genere / forma | Electronic books. |
ISBN |
1-281-17209-X
9786611172091 0-08-055749-X |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Front Cover; Advanced Machining Processes of Metallic Materials; Copyright Page; Table of Contents; Preface; Nomenclature; Chapter 1. Introduction; References; Chapter 2. Metal Cutting Operations and Terminology; 2.1 Classification of Machining Processes; 2.2 Kinematics of Cutting Process and Cutting Parameters; 2.3 Geometry of Cutting Tools; References; Chapter 3. Trends in Metal Cutting Theory and Practice; 3.1 Evolution of Manufacturing Methods and Systems; 3.2 Driven Factors in Modern Machining Technology; 3.3 The Future of Manufacturing; References; Chapter 4. Cutting Tool Materials
4.1 Classification and Properties of Cutting Tool Materials4.2 High Speed Steels and Cast-Cobalt Alloys; 4.3 Sintered Tungsten Carbides; 4.4 Ceramics; 4.5 Superhard Materials; 4.6 Cutting Tool Coatings; 4.7 Rules for Applications of Cutting Tool Coatings; References; Chapter 5. Modelling and Simulation of Machining Processes and Operations; 5.1 The Role of Modelling in Modern Production Systems; 5.2 Classification of Models for Machining Processes; 5.3 Modelling Techniques for Machining Processes; 5.4 Data Needed for Modelling of Machining Processes; References Chapter 6. Orthogonal and Oblique Cutting Mechanics6.1 Geometrical and Kinematical Characterization; 6.2 Forces in the Cutting Zone; 6.3 Cutting Energy; 6.4 Stresses on the Shear Plane; 6.5 Plastic Deformation in the Cutting Zone; References; Chapter 7. Chip Formation and Control; 7.1 Chip Classification; 7.2 Chip Formation Mechanisms; 7.3 Modelling of Chip Formation; 7.4 Chip Flow; 7.5 Chip Breaking; References; Chapter 8. Cutting Vibrations; 8.1 Classification of Cutting Vibrations and their Sources; 8.2 Forced Vibrations in Milling Operations 8.3 Mechanisms of Self-excitation in Metal Cutting8.4 Stability of Chatter; 8.5 Methods for Improving Machine Tool Stability; References; Chapter 9. Heat in Metal Cutting; 9.1 Heat Sources in Metal Cutting and Cutting Temperature; 9.2 Heat Flow and Distribution in the Cutting Zone; 9.3 Prediction and Modelling of Temperatures in the Cutting Zone; 9.3.1 Calculation of temperature rise due to plastic deformation in the PDZ; 9.3.2 Calculation of average and maximum interface temperatures; 9.3.3 FEM and FDA prediction of cutting temperature; 9.4 Measurements of Temperatures in the Cutting Zone ReferencesChapter 10. Cutting Fluids; 10.1 Basic Categories of Cutting Fluids; 10.2 Functions and Action of Cutting Fluids; 10.3 Application of Cutting Fluids and Other Cooling/Lubrication Media; 10.4 Maintenance and Disposal of Cutting Fluids; References; Chapter 11. Tribology of Metal Cutting; 11.1 Tribological Characterization of the Cutting Zone; 11.2 Distribution of Stresses in the Tool/Chip Interface; 11.3 Characterization of Friction at the Tool/Chip Interface; 11.4 Measurements and Predictions of Contact Stresses and Friction; References; Chapter 12. Tool Wear and Damage 12.1 Types of Tool Wear |
Record Nr. | UNINA-9910458131403321 |
Grzesik Wit | ||
Amsterdam ; ; Boston, : Elsevier, 2008 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Advanced machining processes of metallic materials [[electronic resource] ] : theory, modelling and applications / / Wit Grzesik |
Autore | Grzesik Wit |
Edizione | [1st ed.] |
Pubbl/distr/stampa | Amsterdam ; ; Boston, : Elsevier, 2008 |
Descrizione fisica | 1 online resource (489 p.) |
Disciplina | 671.35 |
Soggetto topico |
Metal-cutting
Metal-cutting tools Metal-cutting - Data processing |
ISBN |
1-281-17209-X
9786611172091 0-08-055749-X |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Front Cover; Advanced Machining Processes of Metallic Materials; Copyright Page; Table of Contents; Preface; Nomenclature; Chapter 1. Introduction; References; Chapter 2. Metal Cutting Operations and Terminology; 2.1 Classification of Machining Processes; 2.2 Kinematics of Cutting Process and Cutting Parameters; 2.3 Geometry of Cutting Tools; References; Chapter 3. Trends in Metal Cutting Theory and Practice; 3.1 Evolution of Manufacturing Methods and Systems; 3.2 Driven Factors in Modern Machining Technology; 3.3 The Future of Manufacturing; References; Chapter 4. Cutting Tool Materials
4.1 Classification and Properties of Cutting Tool Materials4.2 High Speed Steels and Cast-Cobalt Alloys; 4.3 Sintered Tungsten Carbides; 4.4 Ceramics; 4.5 Superhard Materials; 4.6 Cutting Tool Coatings; 4.7 Rules for Applications of Cutting Tool Coatings; References; Chapter 5. Modelling and Simulation of Machining Processes and Operations; 5.1 The Role of Modelling in Modern Production Systems; 5.2 Classification of Models for Machining Processes; 5.3 Modelling Techniques for Machining Processes; 5.4 Data Needed for Modelling of Machining Processes; References Chapter 6. Orthogonal and Oblique Cutting Mechanics6.1 Geometrical and Kinematical Characterization; 6.2 Forces in the Cutting Zone; 6.3 Cutting Energy; 6.4 Stresses on the Shear Plane; 6.5 Plastic Deformation in the Cutting Zone; References; Chapter 7. Chip Formation and Control; 7.1 Chip Classification; 7.2 Chip Formation Mechanisms; 7.3 Modelling of Chip Formation; 7.4 Chip Flow; 7.5 Chip Breaking; References; Chapter 8. Cutting Vibrations; 8.1 Classification of Cutting Vibrations and their Sources; 8.2 Forced Vibrations in Milling Operations 8.3 Mechanisms of Self-excitation in Metal Cutting8.4 Stability of Chatter; 8.5 Methods for Improving Machine Tool Stability; References; Chapter 9. Heat in Metal Cutting; 9.1 Heat Sources in Metal Cutting and Cutting Temperature; 9.2 Heat Flow and Distribution in the Cutting Zone; 9.3 Prediction and Modelling of Temperatures in the Cutting Zone; 9.3.1 Calculation of temperature rise due to plastic deformation in the PDZ; 9.3.2 Calculation of average and maximum interface temperatures; 9.3.3 FEM and FDA prediction of cutting temperature; 9.4 Measurements of Temperatures in the Cutting Zone ReferencesChapter 10. Cutting Fluids; 10.1 Basic Categories of Cutting Fluids; 10.2 Functions and Action of Cutting Fluids; 10.3 Application of Cutting Fluids and Other Cooling/Lubrication Media; 10.4 Maintenance and Disposal of Cutting Fluids; References; Chapter 11. Tribology of Metal Cutting; 11.1 Tribological Characterization of the Cutting Zone; 11.2 Distribution of Stresses in the Tool/Chip Interface; 11.3 Characterization of Friction at the Tool/Chip Interface; 11.4 Measurements and Predictions of Contact Stresses and Friction; References; Chapter 12. Tool Wear and Damage 12.1 Types of Tool Wear |
Record Nr. | UNINA-9910784884003321 |
Grzesik Wit | ||
Amsterdam ; ; Boston, : Elsevier, 2008 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Advanced machining processes of metallic materials : theory, modelling and applications / / Wit Grzesik |
Autore | Grzesik Wit |
Edizione | [1st ed.] |
Pubbl/distr/stampa | Amsterdam ; ; Boston, : Elsevier, 2008 |
Descrizione fisica | 1 online resource (489 p.) |
Disciplina | 671.35 |
Soggetto topico |
Metal-cutting
Metal-cutting tools Metal-cutting - Data processing |
ISBN |
1-281-17209-X
9786611172091 0-08-055749-X |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Front Cover; Advanced Machining Processes of Metallic Materials; Copyright Page; Table of Contents; Preface; Nomenclature; Chapter 1. Introduction; References; Chapter 2. Metal Cutting Operations and Terminology; 2.1 Classification of Machining Processes; 2.2 Kinematics of Cutting Process and Cutting Parameters; 2.3 Geometry of Cutting Tools; References; Chapter 3. Trends in Metal Cutting Theory and Practice; 3.1 Evolution of Manufacturing Methods and Systems; 3.2 Driven Factors in Modern Machining Technology; 3.3 The Future of Manufacturing; References; Chapter 4. Cutting Tool Materials
4.1 Classification and Properties of Cutting Tool Materials4.2 High Speed Steels and Cast-Cobalt Alloys; 4.3 Sintered Tungsten Carbides; 4.4 Ceramics; 4.5 Superhard Materials; 4.6 Cutting Tool Coatings; 4.7 Rules for Applications of Cutting Tool Coatings; References; Chapter 5. Modelling and Simulation of Machining Processes and Operations; 5.1 The Role of Modelling in Modern Production Systems; 5.2 Classification of Models for Machining Processes; 5.3 Modelling Techniques for Machining Processes; 5.4 Data Needed for Modelling of Machining Processes; References Chapter 6. Orthogonal and Oblique Cutting Mechanics6.1 Geometrical and Kinematical Characterization; 6.2 Forces in the Cutting Zone; 6.3 Cutting Energy; 6.4 Stresses on the Shear Plane; 6.5 Plastic Deformation in the Cutting Zone; References; Chapter 7. Chip Formation and Control; 7.1 Chip Classification; 7.2 Chip Formation Mechanisms; 7.3 Modelling of Chip Formation; 7.4 Chip Flow; 7.5 Chip Breaking; References; Chapter 8. Cutting Vibrations; 8.1 Classification of Cutting Vibrations and their Sources; 8.2 Forced Vibrations in Milling Operations 8.3 Mechanisms of Self-excitation in Metal Cutting8.4 Stability of Chatter; 8.5 Methods for Improving Machine Tool Stability; References; Chapter 9. Heat in Metal Cutting; 9.1 Heat Sources in Metal Cutting and Cutting Temperature; 9.2 Heat Flow and Distribution in the Cutting Zone; 9.3 Prediction and Modelling of Temperatures in the Cutting Zone; 9.3.1 Calculation of temperature rise due to plastic deformation in the PDZ; 9.3.2 Calculation of average and maximum interface temperatures; 9.3.3 FEM and FDA prediction of cutting temperature; 9.4 Measurements of Temperatures in the Cutting Zone ReferencesChapter 10. Cutting Fluids; 10.1 Basic Categories of Cutting Fluids; 10.2 Functions and Action of Cutting Fluids; 10.3 Application of Cutting Fluids and Other Cooling/Lubrication Media; 10.4 Maintenance and Disposal of Cutting Fluids; References; Chapter 11. Tribology of Metal Cutting; 11.1 Tribological Characterization of the Cutting Zone; 11.2 Distribution of Stresses in the Tool/Chip Interface; 11.3 Characterization of Friction at the Tool/Chip Interface; 11.4 Measurements and Predictions of Contact Stresses and Friction; References; Chapter 12. Tool Wear and Damage 12.1 Types of Tool Wear |
Record Nr. | UNINA-9910820972703321 |
Grzesik Wit | ||
Amsterdam ; ; Boston, : Elsevier, 2008 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Advanced methods of machining / Joseph A. McGeough |
Autore | MCGEOUGH, Joseph A. |
Pubbl/distr/stampa | London : Chapman & Hall, copyr. 1988 |
Disciplina | 671.35 |
Soggetto non controllato | Tecnologia meccanica |
ISBN | 0-4123-1970-5 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNISA-990000137800203316 |
MCGEOUGH, Joseph A. | ||
London : Chapman & Hall, copyr. 1988 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. di Salerno | ||
|
Advanced methods of machining / J. A. McGeough |
Autore | McGeough, Joseph A. |
Pubbl/distr/stampa | London ; New York, : Chapman and Hall, c1988 |
Descrizione fisica | XVII, 247 p. : ill. ; 23 cm. |
Disciplina | 671.35 |
Soggetto topico | Metalli - Lavorazione |
ISBN | 0412319705 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNICAS-MIL0525750 |
McGeough, Joseph A. | ||
London ; New York, : Chapman and Hall, c1988 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. di Cassino e del Lazio Meridionale | ||
|
Advances in Abrasive Based Machining and Finishing Processes / / edited by S. Das, G. Kibria, B. Doloi, B. Bhattacharyya |
Edizione | [1st ed. 2020.] |
Pubbl/distr/stampa | Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020 |
Descrizione fisica | 1 online resource (XVI, 271 p. 180 illus., 109 illus. in color.) |
Disciplina | 671.35 |
Collana | Materials Forming, Machining and Tribology |
Soggetto topico |
Manufactures
Materials—Surfaces Thin films Electrochemistry Manufacturing, Machines, Tools, Processes Surfaces and Interfaces, Thin Films |
ISBN | 3-030-43312-9 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto | Introduction to Abrasive Based Machining and Finishing Processes -- An overview of abrasive jet cutting and drilling processes -- Technologies and advancement in abrasive water jet machining -- Advancement in Ultrasonic machining for 3D profile cutting Rotary ultrasonic machining - new strategy of cutting and finishing -- Abrasive assisted electrical discharge machining - Principle and advancement -- Abrasive assisted electrochemical machining with ultrasonic vibration -- Magnetic field assisted Finishing Processes -- Overview of Abrasive Flow Finishing to finish complex profiles CMP polishing - New strategy of finishing and its advances. |
Record Nr. | UNINA-9910403768003321 |
Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020 | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|
Advances in micro and nano manufacturing and surface engineering : proceedings of AIMTDR 2021 / / Bijoy Bhattacharyya [and three others] editors |
Pubbl/distr/stampa | Singapore : , : Springer, , [2022] |
Descrizione fisica | 1 online resource (361 pages) |
Disciplina | 671.35 |
Collana | Lecture notes in mechanical engineering |
Soggetto topico |
Micromachining
Nanostructured materials industry |
ISBN | 981-19-4571-3 |
Formato | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Nota di contenuto |
Intro -- AIMTDR 2021 Conference Core Organizing Committee -- Foreword -- Contents -- About the Editors -- Prediction of Machining Quality and Tool Wear in Micro-Turning Machine Using Machine Learning Models -- 1 Introduction -- 2 Experimental Study -- 2.1 Speed Control -- 2.2 Cutting Tool -- 2.3 Vibration Measurement -- 2.4 Surface Roughness Measurement -- 2.5 Tool Flank Wear Measurement -- 3 Machine Learning Models -- 3.1 Multilayer Perceptron -- 3.2 Random Forest (RF) -- 3.3 Regression Trees -- 3.4 Radial-Based Functions (RBF) -- 4 Results and Discussion -- 5 Conclusions -- References -- Plasma Characterization in Ultrasonic Vibration-Assisted Micro-Electrical Discharge Machining (µ-EDM) -- 1 Introduction -- 2 Ultrasonic Vibration-Assisted EDM -- 3 Experiment Performed -- 4 Plasma Temperature and Density -- 4.1 Analysis of the Spectrum -- 4.2 Calculation of Plasma Temperature -- 4.3 Electron Density Calculation -- 5 Results and Discussions -- 5.1 Plasma Temperature -- 5.2 Electron Density -- 5.3 Effect of Ultrasonic Vibration -- 6 Conclusions -- References -- Effect of Process Parameters on Accuracy of Holes Drilled on Quartz by Micro-USM -- 1 Introduction -- 2 Experimental Setup Details and Planning -- 3 Measurement of Responses -- 3.1 Measurement of Overcut -- 3.2 Measurement of Taper Angle -- 4 Results and Discussion -- 4.1 Variation of Overcut with Process Parameters -- 4.2 Variation of Taper Angle with Process Parameters -- 5 Conclusions -- References -- Influence of Vibration in the Nozzle Frame on the Ribbon Characterization in Planar Flow Melt Spinning Process -- 1 Introduction -- 2 Experimental -- 3 Results and Discussion -- 4 Conclusion -- References -- Experimental Investigation into Wire Electrochemical Micro-Machining for Reduction of MicroSparks and Overcut -- 1 Introduction -- 2 Experimental Setup -- 3 Experimental Planning.
4 Results and Discussion -- 4.1 Influence of Feed Rate on MicroSpark and Overcut -- 4.2 Influence of Machining Voltage on MicroSpark and Overcut -- 4.3 Influence of Voltage Pulse Frequency on MicroSpark and Overcut -- 4.4 Influence of PZT Tool Vibration Frequency on a Micro Spark -- 4.5 Influence of PZT Vibration Amplitude on Micro-Sparks -- 5 Controlled Parametric Micro-Slit Fabrication -- 6 Conclusions -- References -- Influence of Voltage Pulse on Machining Accuracy in Electrochemical Micromachining -- 1 Introduction -- 2 Influence of Voltage Pulse on Machining Accuracy -- 2.1 Control of Micro-Tool Feed Rate -- 3 Experimental EMM SetUp -- 4 Experimental Planning -- 5 Experimental Result Analysis -- 6 Conclusions -- References -- A Study on the Influence of Cutting Tool Geometry on the Temperature of the Workpiece in Nanometric Cutting of Silicon -- 1 Introduction -- 2 MD Simulation -- 3 Modeling -- 4 Results and Discussion -- 4.1 Analysis of Temperature During Machining -- 4.2 Analysis of Temperature During Machining -- 5 Conclusions -- References -- Experimental and Dimensional Analysis of Planar Flow Melt Spinning Process -- 1 Introduction -- 2 Experimental -- 3 Results and Discussion -- 3.1 Effect of Process Parameters on the Quality of the Ribbons -- 3.2 X-Ray Diffraction Analysis -- 4 Conclusions -- Appendix A -- References -- Encapsulation of CNT Films on Silicon Wafer by DLC Synthesized by PECVD for Application as a Thermal Interface Material -- 1 Introduction -- 2 Experimental Details -- 2.1 Synthesis of CNTs -- 2.2 Deposition of DLC Thin Films -- 2.3 Characterization -- 3 Results and Discussion -- 3.1 Electron Microscopy -- 3.2 Raman Spectroscopy -- 3.3 Simulation of Heat Transfer -- 4 Conclusions -- References -- Design and Analysis of High Sensitivity MEMS Microphone -- 1 Introduction -- 2 Design -- 3 Methodology -- 4 Analysis. 5 Results and Discussion -- 6 Conclusion -- References -- Dependency of Machining Forces on Process Parameters During Sustainable MQL-Based Micro-milling of D2 Steel -- 1 Introduction -- 2 Experimental Details -- 3 Results and Discussion -- 3.1 Dependency of Cutting Forces on the Spindle Speed -- 3.2 Dependency of Cutting Forces on the Feed Per Flute -- 4 Conclusions -- References -- Two-Dimensional Finite Element Simulation of Micro-Electric Discharge Machining of Ti-6Al-4 V -- 1 Introduction -- 2 Electro-thermal Modelling of a Single Discharge Pulse -- 2.1 Assumptions -- 2.2 Computational Domain -- 2.3 Governing Equation -- 2.4 Initial Condition -- 2.5 Boundary Conditions -- 2.6 Formulation of Heat Flux -- 2.7 Consideration of Latent Heat of Fusion -- 3 Finite Element Analysis -- 3.1 Pre-processing -- 3.2 Solution -- 3.3 Post Processing -- 4 Results -- 5 Conclusion -- References -- Corrosion Studies on AA7075-T7352 Alloys Under Adverse Environments -- 1 Introduction -- 2 Experimental Details -- 2.1 Material and Its Microconstituents -- 2.2 Potentiodynamic Polarization Test -- 2.3 Slow Strain Rate Test (SSRT) -- 3 Results and Discussion -- 3.1 Microstructure -- 3.2 Polarization Test Results -- 3.3 Slow Strain Rate Test (SSRT) Results -- 4 Conclusions -- References -- Surface Modification of Al-7075 Alloy by Electro-Discharge Coating Process Using SiC/Cu Green Compact Electrode -- 1 Introduction -- 2 Experimental Methodology -- 2.1 Tool Electrode Preparation -- 2.2 Machining Procedure -- 3 Result and Discussion -- 3.1 ANOVA of Response Parameters -- 3.2 Surface Characterization -- 4 Conclusion -- References -- Effect of Heat Input on Corrosion Resistance of 316 Austenitic Stainless Steel Cladding on Low-Carbon Steel Plate -- 1 Introduction -- 2 Experimental Setup -- 2.1 Base Plate for GMAW Cladding -- 2.2 Filler Wire for GMAW Cladding. 2.3 Experimental Set Up for Cladding Operation -- 2.4 Experimental Setup for Macro Hardness Testing -- 3 Experimental Procedure -- 3.1 Trial Runs -- 3.2 Cladding Operation -- 3.3 Corrosion Test Setup -- 4 Results and Discussion -- 4.1 Results Obtained from Macro Hardness Test -- 4.2 Results Obtained from Corrosion Test -- 4.3 Results of Number of Pits Count from Pitting Corrosion Test Samples of Both Replications by GMAW Cladding -- 5 Conclusion -- References -- Surface Characterization of Miniature Structures for Electronic Device Manufacturing -- 1 Introduction -- 2 Experimental Methods and Materials -- 3 Fabrication of the Device -- 3.1 Mask Preparation -- 3.2 Wafer Cleaning Steps -- 3.3 Oxidation -- 3.4 Metallization -- 4 Results and Discussion -- 5 Conclusion -- References -- An Empirical-Statistical and Experimental Analysis of Direct Laser Metal Deposition of WC-12Co Mixed Powder on SS 304 Substrate -- 1 Introduction -- 2 Experimental Detail -- 2.1 Experimental Setup -- 2.2 Material -- 3 Results and Discussion -- 3.1 Empirical Analysis -- 3.2 Clad Track Characterization -- 4 Conclusions -- References -- Experimental Investigation on AFF of FDM Printed Pattern for Extrusion Die Insert -- 1 Introduction -- 2 Materials and Methods -- 2.1 Design and Fabrication of an Extrusion "Die Insert" Pattern -- 2.2 CAD Modeling and Manufacturing of AFM Tooling -- 3 Experimentation on the Rheology of AFM Media -- 3.1 Development of AFM Media -- 3.2 Experimentation for Media Rheology -- 3.3 Effect of Abrasive Particles Concentration -- 3.4 Effect of Liquid Synthesizer -- 4 Experimental Design for Finishing -- 4.1 Variance Analysis for Percentage Improvement in Ra -- 5 Conclusions and Scope of Work -- References -- Experimental Study on Cylindrical Grinding of Bearing Bush to Improve Surface Finish -- 1 Introduction -- 2 Experimental Plan. 2.1 Input Parameters for OD and ID Grinding -- 2.2 Design of Experiments -- 2.3 Experimentation -- 3 Results and Discussions -- 3.1 Experimental Results -- 3.2 Response Table and Main Effect Plots for OD and ID Grinding -- 3.3 Interaction Plots -- 4 Confirmation Test Results -- 5 Conclusions -- References -- Study of Correlation Between Areal Surface Parameters and CoF of Ti6Al4V -- 1 Introduction -- 2 Experimental Methodology -- 2.1 Materials -- 2.2 Development of Random Textured Surface -- 2.3 Tribo-Test -- 3 Results and Discussion -- 4 Conclusions -- References -- Wear and Hardness Behavior of Duplex-Treated AISI 1045 and AISI 4142 Steels -- 1 Introduction -- 2 Materials and Methods -- 3 Results and Discussion -- 4 Conclusions -- References -- Prediction of Mechanical Behaviour of AA 3003-O with Varying Volume Fractions of White Fly Ash and SiC -- 1 Introduction -- 2 Experimental Details -- 2.1 Composite Preparation -- 2.2 Experimental Design -- 2.3 Tensile Test -- 3 Results and Discussion -- 3.1 Single Response Parameter Optimization -- 3.2 Confirmation Test -- 3.3 Mathematical Model -- 4 Conclusions -- References -- Development of Novel Low-Cost Sintered Magnetic Abrasive for Surface Finishing -- 1 Introduction -- 2 Materials and Method -- 2.1 Abrasive and EIP Particles -- 2.2 Experiment Detail -- 3 Results and Discussion -- 3.1 SMA Morphology -- 3.2 SMA Magnetic Properties -- 4 Conclusions -- References -- Characterization and Optimization of Pistachio Shell Filler-Based Epoxy Composites Using TOPSIS -- 1 Introduction -- 2 Materials and Methods -- 2.1 Matrix and Reinforcement -- 2.2 Composite Fabrication -- 2.3 Characterization of Developed Composites -- 2.4 Multi Criterion Decision Analysis -- 3 Results and Discussion -- 3.1 Physical Properties -- 3.2 Water Absorption -- 3.3 Mechanical Behavior -- 3.4 Wear Behavior -- 3.5 MCDM Analysis. 4 Conclusions. |
Record Nr. | UNINA-9910627248303321 |
Singapore : , : Springer, , [2022] | ||
Materiale a stampa | ||
Lo trovi qui: Univ. Federico II | ||
|