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Titlebook: Crazing in Polymers Vol. 2; H. -H. Kausch Conference proceedings 1990 Springer-Verlag Berlin Heidelberg 1990 fatigue.material.mechanics.mi

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Optical interferometry: Running crack-tip morphologies and craze material properties,cture. There now exist several powerful experimental techniques such as small angle X-ray scattering or electron microscopy to measure the properties of crazes in polymers, either in the case of isolated crazes or in that of crazes at a moving crack-tip. The previous chapter in this book gave an ove
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Crazing and toughness of block copolymers and blends,ied homopolymers such crazing is initiated almost exclusively from surface imperfections which require a relatively high stress to initiate crazes. Under these high stresses, craze matter fracture, initiated from particulate impurities, is rapid and results in generally brittle behavior. To toughen
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Lagersysteme und Lagerverwaltung,tion conditions, i.e., under discontinuous crack growth, where multiple load cycles must occur before the crack can propagate. The shear-craze competition at the crack tip can lead to a variety of unique crack growth behavior and fatigue lifetime inversions. This behavior can be displayed in fatigue fracture diagrams.
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