Machining and Machinability of Fiber Reinforced Polymer Composites

Machining and Machinability of Fiber Reinforced Polymer Composites

Majid, Mohd Shukry Abd; Saba, Naheed; Jamir, Mohd Ridzuan Mohd; Hameed Sultan, Mohamed Thariq; Azmi, Azwan Iskandar

Springer Verlag, Singapore

12/2021

335

Mole

Inglês

9789813341555

15 a 20 dias

539

Descrição não disponível.
Chapter 1: Critical thrust force analyses and their effects on drilling FRP composites.- Chapter 2: Effect of drill geometry design on reduction of delamination damage in drilling FRP composites.- Chapter 3: Chapter 4: Innovative method for quantifying delamination damage in drilling FRP composites.- Chapter 5: Numerical and analytical approaches in drilling or machining of FRP composites.- Chapter 6: Cryogenics and thermal effects of drilling FRP composites on delamination damage and surface integrity.- Chapter 7: Study on tool wear and its effect on FRP composites machining.- Chapter 8: Tribological aspect in machining synthetic and natural fibre composites.- Chapter 9: Feed control method as a new method to reduce delamination during drilling of FRP.- Chapter 10: Chapter: Impact of induced damage due to drilling and machining on mechanical properties of FRP composites (including tensile and flexural strength).- Chapter 11: Recent advances in drilling and machining natural fibre or cellulose fibre composite.- Chapter 12: Chapter: Experimental and analytical studies of abrasive water-jet machining of FRP composites.- Chapter 13: Chapter: Novel method for laser processing of FRP composites.- Chapter 14: Vibration assisted drilling and milling for reduction of damage on FRP composites.- Chapter 15: Energy demand in machining FRP composites.- Chapter 16: Safety and environmental issues or concern in machining FRP composites.
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Delamination damage;Fibre Reinforced Polymer (FRP) composites;Milling FRP composites;Trimming FRP composites;Machining FRP composites;FRP composites thrust forces;FRP composites machining;Natural fibre composites;Feed control method;Cellulose fibre composite;Abrasive water-jet machining;Vibration assisted drilling