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Ceramic materials are widely used as components in a great variety of applications. They are attractive due to their good high temperature strength, high wear resistance, good corrosion restistance and other special physical properties. Their major drawback is their brittleness and the large scatter of their mechanical properties. This book describes failure phenomena in ceramic materials under mechanical loading, methods for determining the material properties, and the principles that one should apply when selecting a material. The fracture-mechanical and statistical principles and their use in describing the scatter of strength and lifetime are also covered. Special chapters are devoted to creep behaviour, multiaxial failure criteria and thermal shock behaviour.
The book gives a description of the failure phenomena of ceramic materials under mechanical loading, the methods to determine their properties, and the principles for material selection. The book presents fracture mechanical and statistical principles and their application to describe the scatter of strength and lifetime, while special chapters are devoted to creep behaviour, multiaxial failure criteria and thermal shock behaviour. XXXXXXX Neuer Text Describing how ceramic materials fracture and fail under mechanical loading, this book provides methods for determining the properties of ceramics, and gives criteria for selecting ceramic materials for particular applications. It also examines the fracture-mechanical and statistical principles and their use in understanding the strength and durability of ceramics. Special chapters are devoted to creep behavior, criteria for multiaxial failure, and behavior under thermal shock. Readers will gain insight into the design of reliable ceramic components.
Keramische Werkstoffe gewinnen zunehmend an Bedeutung im Maschinenbau und in der Verfahrenstechnik aufgrund ihrer guten Hochtemperaturfestigkeit, ihres hohen Verschleisswiderstandes, der guten Korrosionsbestandigkeit und wegen spezieller physikalischer Eigenschaften. Ihr grosser Nachteil ist die Sproedigkeit und die grosse Streuung der mechanischen Eigenschaften. Das Buch beschreibt die Versagensphanomene keramischer Werkstoffe unter mechanischer Belastung, die Methoden zur Ermittlung von Werkstoffkennwerten und die Prinzipien der Werkstoffauswahl sowie der Dimensionierung von Bauteilen. Behandelt werden die bruchmechanischen und statistischen Grundlagen und ihre Anwendung zur Beschreibung der Streuung der Festigkeit und der Lebensdauer. Ausfuhrlich wird auf das Kriechverhalten und auf die experimentellen Methoden zur Ermittlung der Kriechgesetze eingegangen. Spezielle Kapitel sind den Mehrachsigkeitskriterien, dem Thermoschockverhalten, dem UEberlastverfahren und der Fugetechnik gewidmet.
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