Durability and Life Prediction Modeling in Polyimide Composites
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Durability and Life Prediction Modeling in Polyimide Composites

Durability and Life Prediction Modeling in Polyimide Composites


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About the Book

Sudden appearance of cracks on a macroscopically smooth surface of brittle materials due to cooling or drying shrinkage is a phenomenon related to many engineering problems. Although conventional strength theories can be used to predict the necessary condition for crack appearance, they are unable to predict crack spacing and depth. On the other hand, fracture mechanics theory can only study the behavior of existing cracks. The theory of crack initiation can be summarized into three conditions, which is a combination of a strength criterion and laws of energy conservation, the average crack spacing and depth can thus be determined. The problem of crack initiation from the surface of an elastic half plane is solved and compares quite well with available experimental evidence. The theory of crack initiation is also applied to concrete pavements. The influence of cracking is modeled by the additional compliance according to Okamura's method. The theoretical prediction by this structural mechanics type of model correlates very well with the field observation. The model may serve as a theoretical foundation for future pavement joint design. The initiation of interactive cracks of quasi-brittle material is studied based on a theory of cohesive crack model. These cracks may grow simultaneously, or some of them may close during certain stages. The concept of crack unloading of cohesive crack model is proposed. The critical behavior (crack bifurcation, maximum loads) of the cohesive crack model are characterized by rate equations. The post-critical behavior of crack initiation is also studied. Binienda, Wieslaw K. Unspecified Center BRITTLE MATERIALS; COMPOSITE MATERIALS; CONCRETE STRUCTURES; CRACK INITIATION; FRACTURE MECHANICS; LIFE (DURABILITY); POLYIMIDES; PREDICTION ANALYSIS TECHNIQUES; SURFACE CRACKS; COHESION; DEPTH MEASUREMENT; DYNAMIC LOADS; ENERGY CONSERVATION; MATHEMATICAL MODELS; SHRINKAGE; UNLOADING...


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Product Details
  • ISBN-13: 9781723036002
  • Publisher: Createspace Independent Publishing Platform
  • Publisher Imprint: Createspace Independent Publishing Platform
  • Height: 279 mm
  • No of Pages: 154
  • Spine Width: 8 mm
  • Width: 216 mm
  • ISBN-10: 1723036005
  • Publisher Date: 17 Jul 2018
  • Binding: Paperback
  • Language: English
  • Returnable: N
  • Weight: 372 gr


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