Machinability of fibre reinforced plastics

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Weitere Verfasser: Davim, J. Paulo 1964- (HerausgeberIn)
Format: Buch
Sprache:English
Veröffentlicht: Berlin [u.a.] De Gruyter 2015
Schriftenreihe:Advanced composites 4
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Datensatz im Suchindex

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adam_text CONTENTS PREFACE V LIST OF CONTRIBUTING AUTHORS XI F. FISCHER, S. KRELING, D. BLASS, R. STAEHR, S. BLUEMEL, P. JAESCHKE, K. DILGER 1 LASER MATERIAL MACHINING OF CFRP - AN OPTION FOR DAMAGE-FREE AND FLEXIBLE CFRP PROCESSING? 1 1.1 INTRODUCTION 1 1.2 STATE OF THE ART OF MACHINING OF CFRP 2 1.2.1 CUTTING CFRP 2 1.2.2 SURFACE PRE-TREATMENT OF CFRP 3 1.2.3 SHAPE CUTTING OF CFRP 5 1.3 LASER MATERIAL INTERACTION 7 1.4 LASER MATERIAL MACHINING OF CFRP 8 1.4.1 LASER CUTTING OF CFRP 8 1.4.2 LASER SURFACE PRE-TREATMENT OF CFRP 18 1.4.3 LASER ABLATION OF CFRP 21 1.5 CONCLUSION 25 W. CONG, F. NING 2 ROTARY ULTRASONIC MACHINING OF CFRP COMPOSITES 31 2.1 INTRODUCTION 31 2.1.1 CFRP COMPOSITES 31 2.1.2 ROTARY ULTRASONIC MACHINING 33 2.1.3 PURPOSE OF THIS CHAPTER 33 2.2 ROTARY ULTRASONIC MACHINING SYSTEM SET-UP 34 2.2.1 ULTRASONIC POWER SUPPLY 34 2.2.2 ULTRASONIC TRANSDUCER 34 2.2.3 ULTRASONIC AMPLITUDE TRANSFORMER (HORN) AND TOOL HOLDER 36 2.2.4 CUTTING TOOL 38 2.3 INPUT VARIABLES AND OUTPUT VARIABLES IN RUM 38 2.3.1 MACHINING VARIABLES 38 2.3.2 CUTTING TOOL VARIABLES AND COOLING VARIABLES 38 2.3.3 WORKPIECE PROPERTIES 39 2.3.4 OUTPUT VARIABLES 40 2.4 EFFECTS OF INPUT VARIABLES ON OUTPUT VARIABLES 40 2.4.1 EFFECTS ON CUTTING FORCE 41 2.4.2 EFFECTS ON TORQUE 50 2.4.3 EFFECTS ON CUTTING TEMPERATURE 52 HTTP://D-NB.INFO/1061099237 VIII CONTENTS 2.4.4 EFFECTS ON EDGE QUALITY 57 2.4.5 EFFECTS ON SURFACE ROUGHNESS 59 2.4.6 EFFECTS ON BURNING OF MACHINED SURFACE 61 2.4.7 EFFECTS ON TOOL WEAR 62 2.4.8 EFFECTS ON MRR 65 2.4.9 EFFECTS ON POWER CONSUMPTION 66 2.4.10 EFFECTS ON FEASIBLE REGIONS 73 2.5 SUMMARY 77 M. SLAMANI, J.-F. CHATELAIN 3 HIGH-SPEED ROBOTIC TRIMMING OF CFRP 83 3.1 INTRODUCTION 83 3.2 MACHINABILITY OF CFRP 85 3.2.1 EVALUATION OF THE CUTTING FORCE 85 3.2.2 ASSESSMENT OF THE MACHINABILITY OF CFRP UNDER HIGH-SPEED ROBOTIC TRIMMING 87 3.2.3 CUTTING FORCES FOR ROBOTIC TRIMMING EXPERIMENTS 90 3.2.4 QUALITY OF ROBOTIC TRIMMED SPECIMENS 93 3.2.5 SURFACE QUALITY 95 3.3 CONCLUSION 99 H. MIGUELEZ, N. FEITO, C. SANTIUSTE, J. DFAZ-ALVAREZ, M. RODRIGUEZ-MILLAN, X. SOLDANI 4 NUMERICAL MODELING OF LFRP MACHINING 103 4.1 INTRODUCTION 103 4.2 ORTHOGONAL CUTTING 105 4.2.1 2D MODELING 105 4.2.2 3D MODELING 110 4.2.3 THERMAL EFFECTS 117 4.3 DRILLING 121 4.3.1 COMPARISON BETWEEN SIMPLIFIED AND COMPLETE DRILLING MODELS 122 4.3.2 THERMAL MODEL OF DRILLING 126 4.4 CONCLUSIONS 134 J. BABU, J. PHILIP, T. ZACHARIA, J. PAULO DAVIM 5 DELAMINATION IN COMPOSITE MATERIALS: MEASUREMENT, ASSESSMENT AND PREDICTION 139 5.1 INTRODUCTION 139 5.2 MECHANISMS OF DELAMINATION 140 5.2.1 PEEL-UP DELAMINATION 140 5.2.2 PUSH-OUT DELAMINATION 140 CONTENTS 5.3 MEASUREMENT OF DELAMINATION 141 5.3.1 VISUAL METHODS 141 5.3.2 IMAGE PROCESSING 141 5.3.3 ACOUSTIC EMISSION 142 5.3.4 SCANNING ACOUSTIC MICROSCOPY (SAM) 143 5.3.5 ULTRASONIC C-SCAN 143 5.3.6 RADIOGRAPHY 144 5.3.7 X-RAY COMPUTERIZED TOMOGRAPHY 145 5.3.8 SHADOW MOIR6 INTERFEROMETRY 145 5.4 ASSESSMENT OF DELAMINATION 147 5.4.1 DELAMINATION FACTOR/CONVENTIONAL DELAMINATION FACTOR-*147 5.4.2 DELAMINATION SIZE 149 5.4.3 TWO-DIMENSIONAL DELAMINATION FACTOR {F D ) 149 5.4.4 DAMAGE RATIO 150 5.4.5 DELAMINATION FACTOR 151 5.4.6 ADJUSTED DELAMINATION FACTOR 151 5.4.7 EQUIVALENT DELAMINATION FACTOR 152 5.4.8 REFINED DELAMINATION FACTOR (F DR ) 154 5.4.9 SHAPE CIRCULARITY (F) 154 5.4.10 MINIMUM DELAMINATION FACTOR 155 5.5 DELAMINATION IN MILLING 156 5.6 NUMERICAL PREDICTION OF DELAMINATION 157 5.6.1 REGRESSION ANALYSIS 157 5.6.2 ARTIFICIAL NEURAL NETWORK (ANN) 158 5.6.3 FE SIMULATION METHODS 159 5.7 SUMMARY 160 K. PALANIKUMAR, T. SRINIVASAN, K. RAJAGOPAL, J. PAULO DAVIM 6 DRILLING OF HIGH IMPACT POLYSTYRENE COMPOSITES MATERIALS 163 6.1 INTRODUCTION 163 6.2 MATERIALS AND MANUFACTURING 165 6.3 EXPERIMENTAL WORK 167 6.4 RESPONSE SURFACE METHODOLOGY-BASED MODELING OF PROCESS PARAMETERS 169 6.5 RESULTS AND DISCUSSION 171 6.6 CONCLUSIONS 176 R. PRAMOD, S. BASAVARAJAPPA, J. PAULO DAVIM 7 A REVIEW ON INVESTIGATIONS IN DRILLING OF FIBER REINFORCED PLASTICS 7.1 INTRODUCTION 179 7.1.1 DELAMINATION AND DELAMINATION MECHANISM 180 7.1.2 FABRICATION OF POLYMER MATRIX COMPOSITES 181 X * CONTENTS 7.2 DRILLING PROCESS 181 7.2.1 DELAMINATION ASSESSMENT 184 7.2.2 EFFECT OF VARIOUS MACHINING PARAMETERS ON DELAMINATION 186 7.3 ROLE OF DIGITAL IMAGE PROCESSING IN DELAMINATION ASSESSMENT 190 7.4 SUMMARY 191 INDEX 195
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physical XIII, 196 S. Ill., graph. Darst.
publishDate 2015
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publishDateSort 2015
publisher De Gruyter
record_format marc
series Advanced composites
series2 Advanced composites
spellingShingle Machinability of fibre reinforced plastics
Advanced composites
Kunststoffverarbeitung (DE-588)4114335-8 gnd
Verarbeitungseigenschaft (DE-588)4372382-2 gnd
Spanbarkeit (DE-588)4275776-9 gnd
Faserverstärkter Kunststoff (DE-588)4128805-1 gnd
subject_GND (DE-588)4114335-8
(DE-588)4372382-2
(DE-588)4275776-9
(DE-588)4128805-1
(DE-588)4143413-4
title Machinability of fibre reinforced plastics
title_alt Machinability of fibre-reinforced plastics
title_auth Machinability of fibre reinforced plastics
title_exact_search Machinability of fibre reinforced plastics
title_full Machinability of fibre reinforced plastics ed. by J. Paulo Davim
title_fullStr Machinability of fibre reinforced plastics ed. by J. Paulo Davim
title_full_unstemmed Machinability of fibre reinforced plastics ed. by J. Paulo Davim
title_short Machinability of fibre reinforced plastics
title_sort machinability of fibre reinforced plastics
topic Kunststoffverarbeitung (DE-588)4114335-8 gnd
Verarbeitungseigenschaft (DE-588)4372382-2 gnd
Spanbarkeit (DE-588)4275776-9 gnd
Faserverstärkter Kunststoff (DE-588)4128805-1 gnd
topic_facet Kunststoffverarbeitung
Verarbeitungseigenschaft
Spanbarkeit
Faserverstärkter Kunststoff
Aufsatzsammlung
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