0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R5,000 - R10,000 (2)
  • -
Status
Brand

Showing 1 - 2 of 2 matches in All Departments

Micromechanisms of Fracture and Fatigue - In a Multi-scale Context (Paperback, 2010 ed.): Jaroslav Pokluda, Pavel Sandera Micromechanisms of Fracture and Fatigue - In a Multi-scale Context (Paperback, 2010 ed.)
Jaroslav Pokluda, Pavel Sandera
R5,855 Discovery Miles 58 550 Ships in 10 - 15 working days

Micromechanisms of Fracture and Fatigue forms the culmination of 20 years of research in the field of fatigue and fracture. It discusses a range of topics and comments on the state of the art for each. The first part is devoted to models of deformation and fracture of perfect crystals. Using various atomistic methods, the theoretical strength of solids under simple and complex loading is calculated for a wide range of elements and compounds, and compared with experimental data. The connection between the onset of local plasticity in nanoindentation tests and the ideal shear strength is analysed using a multi-scale approach. Moreover, the nature of intrinsic brittleness or ductility of perfect crystal lattices is demonstrated by the coupling of atomistic and mesoscopic approaches, and compared with brittle/ductile behaviour of engineering materials. The second part addresses extrinsic sources of fracture toughness of engineering materials, related to their microstructure and microstructurally-induced crack tortuosity. Micromechanisms of ductile fracture are also described, in relation to the fracture strain of materials. Results of multilevel modelling, including statistical aspects of microstructure, are used to explain remarkable phenomena discovered in experiments. In the third part of the book, basic micromechanisms of fatigue cracks propagation under uniaxial and multiaxial loading are discussed on the basis of the unified mesoscopic model of crack tip shielding and closure, taking both microstructure and statistical effects into account. Applications to failure analysis are also outlined, and an attempt is made to distinguish intrinsic and extrinsic sources of materials resistance to fracture. Micromechanisms of Fracture and Fatigue provides scientists, researchers and postgraduate students with not only a deep insight into basic micromechanisms of fracture behaviour of materials, but also a number of engineering applications.

Micromechanisms of Fracture and Fatigue - In a Multi-scale Context (Hardcover, 2010 Ed.): Jaroslav Pokluda, Pavel Sandera Micromechanisms of Fracture and Fatigue - In a Multi-scale Context (Hardcover, 2010 Ed.)
Jaroslav Pokluda, Pavel Sandera
R5,888 Discovery Miles 58 880 Ships in 10 - 15 working days

Micromechanisms of Fracture and Fatigue forms the culmination of 20 years of research in the field of fatigue and fracture. It discusses a range of topics and comments on the state of the art for each. The first part is devoted to models of deformation and fracture of perfect crystals. Using various atomistic methods, the theoretical strength of solids under simple and complex loading is calculated for a wide range of elements and compounds, and compared with experimental data. The connection between the onset of local plasticity in nanoindentation tests and the ideal shear strength is analysed using a multi-scale approach. Moreover, the nature of intrinsic brittleness or ductility of perfect crystal lattices is demonstrated by the coupling of atomistic and mesoscopic approaches, and compared with brittle/ductile behaviour of engineering materials. The second part addresses extrinsic sources of fracture toughness of engineering materials, related to their microstructure and microstructurally-induced crack tortuosity. Micromechanisms of ductile fracture are also described, in relation to the fracture strain of materials. Results of multilevel modelling, including statistical aspects of microstructure, are used to explain remarkable phenomena discovered in experiments. In the third part of the book, basic micromechanisms of fatigue cracks propagation under uniaxial and multiaxial loading are discussed on the basis of the unified mesoscopic model of crack tip shielding and closure, taking both microstructure and statistical effects into account. Applications to failure analysis are also outlined, and an attempt is made to distinguish intrinsic and extrinsic sources of materials resistance to fracture. Micromechanisms of Fracture and Fatigue provides scientists, researchers and postgraduate students with not only a deep insight into basic micromechanisms of fracture behaviour of materials, but also a number of engineering applications.

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Casio LW-200-7AV Watch with 10-Year…
R999 R884 Discovery Miles 8 840
Penguin Multi Purpose Wood Glue (125ml)
R28 Discovery Miles 280
Bostik Clear Gel in Box (25ml)
R29 Discovery Miles 290
Maped Smiling Planet Scissor Vivo - on…
R26 Discovery Miles 260
Mellerware Non-Stick Vapour ll Steam…
R348 Discovery Miles 3 480
Philips TAUE101 Wired In-Ear Headphones…
R124 Discovery Miles 1 240
Butterfly A4 80gsm Paper Pad - Designer…
R70 Discovery Miles 700
Dog's Life Ballistic Nylon Waterproof…
R999 R514 Discovery Miles 5 140
Joy! Kids Bible
Ewald Van Rensburg Paperback R95 R75 Discovery Miles 750
Dungeons & Dragons - Honour Among…
Chris Pine Blu-ray disc R240 R188 Discovery Miles 1 880

 

Partners