Crack Control

- Using Fracture Theory to Create Tough New Materials

  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Crack Control: Using Fracture Theory to Create Tough New Materials goes beyond just trying to understand the origin of cracks and fracture in materials by also providing readers with the knowledge and techniques required to stop cracks at the nano- and micro-levels, covering the fundamentals of crack propagation, prevention, and healing. The book starts by providing a concise foundational overview of cracks and fracture mechanics, then looks at real-life ways that new tougher materials have been developed via crack inhibition. Topics such as crack equilibrium, stress criterion, and stress equations are then outlined, as are methods for inventing new crack-resistant materials. The importance of crack healing is emphasized and cracks that grow under tension, bending, compression, crazing, and adhesion are discussed at length as well

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Størrelse og vægt
  • Vægt560 g
  • coffee cup img
    10 cm
    book img
    15,1 cm
    22,9 cm

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    Cement Bending Fracture mechanics Defects Calcium phosphate Calcium aluminate Fatigue cracks Electrical stimulation Composites Conservation of Energy F/m Fracture testing Flaws adhesion of nanoparticles AdelanGlas Air bubbles adhesive joint thickness effect bend testing atomically smooth surfaces stick best better processing of sintered ceramics all materials can be toughened bad ASTM standard atomic interfaces cement guitar cavitation cracks chemical reaction at crack-tip Bending tests Comet disaster chemical contamination reduces fracture energy brittle material Climbing Robots cosmic particle assembly cracking literature crack-like pores crack speed dependence crazing theory cement is a brittle material Constance Tipper cracks propagate at different stress but same energy crack theory of gel formation creep failure DCB Test brittle interface controlled interface lamination process crack deflexion crack-drag increases toughness crack force independent of crack length crack reversibility crack drag is activated bond breaking crack equations crack equilibrium cracks move at high stress and low stress diamond scratching CSH gel dynamic equilibrium of crack double torsion geometry bullet-proof glass dynamic equilibrium at crack tip compact tension test compact tension test theory defects in glass contacts energy theory verification controlling force equilibrium toughness is low direct energy measurement for fracture surface energy cracking is chemical process double cantilever bend tests chemical environment effect of viscoelastic droop on crack slowing effect of water fatigue lifetime designing laminate interfaces energy criterion of cracking effect of stress fitting Griffith curve elastic crack stopping fingering of tumors fracture energy measurement effect of interface dislocations compact tensile test fiber preform compression crack stopping compression size effect fatigue is repeated crack stopping crack equilibrium equations crack-hysteresis raises toughness crack slowing crack-stopping Crazing create new materials flaw statistics not necessary extrusion of cement crack deflexion diverts damage fracture and healing of bone deflect cracks at interfaces double cantilever beam test elastic modulus effect energy balance theory energy equilibrium

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