top

  Info

  • Utilizzare la checkbox di selezione a fianco di ciascun documento per attivare le funzionalità di stampa, invio email, download nei formati disponibili del (i) record.

  Info

  • Utilizzare questo link per rimuovere la selezione effettuata.
Advanced analysis of nontraditional machining / / Hong Hocheng, Hung-Yin Tsai, editors
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
Opac: Controlla la disponibilità qui
Advanced Machining and Manufacturing Processes / / by Kaushik Kumar, Divya Zindani, J. Paulo Davim
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
Opac: Controlla la disponibilità qui
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
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
Opac: Controlla la disponibilità qui
Advanced machining processes of metallic materials [[electronic resource] ] : theory, modelling and applications / / Wit Grzesik
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
Opac: Controlla la disponibilità qui
Advanced machining processes of metallic materials [[electronic resource] ] : theory, modelling and applications / / Wit Grzesik
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
Opac: Controlla la disponibilità qui
Advanced machining processes of metallic materials : theory, modelling and applications / / Wit Grzesik
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
Opac: Controlla la disponibilità qui
Advanced methods of machining / Joseph A. McGeough
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
Opac: Controlla la disponibilità qui
Advanced methods of machining / J. A. McGeough
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
Opac: Controlla la disponibilità qui
Advances in Abrasive Based Machining and Finishing Processes / / edited by S. Das, G. Kibria, B. Doloi, B. Bhattacharyya
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
Opac: Controlla la disponibilità qui
Advances in micro and nano manufacturing and surface engineering : proceedings of AIMTDR 2021 / / Bijoy Bhattacharyya [and three others] editors
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
Opac: Controlla la disponibilità qui