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The use of computer-generated geometric models to simulate crack growth in one-dimensional and two-dimensional non-linear anisotropic elastic materials is becoming a common technique for the study of fatigue crack initiation and propagation. The non-linear nature of the material response is typically modeled as a function of crack length (L), which is assumed to be continuous. In this study, a hybrid finite element/fracture mechanics technique is developed to predict the fracture behavior of a material as a function of the crack length. The technique was used to model a simple cantilever beam loaded with an axial force, with the crack being introduced at the free end of the beam. Material properties, including yield strength, fracture toughness, and crack-tip opening displacement (CTOD), were related to the CTOD-L curve to model crack growth behavior in a non-linear anisotropic material. The results were compared with those of a dynamic fracture mechanics model, based on the concept of self-similar fracture growth, showing that the finite element model and the dynamic finite element model predict crack growth behavior in a linear elastic material similarly. In the non-linear anisotropic material, the finite element model predicts crack growth behavior in a highly non-linear anisotropic material.
Rising interest in the use of computed tomography (CT) in the forensic field has lead to an expansion of the number of applications in this area. A widely used application in forensic cases is the calculation of the amount of energy to be transferred to the body to cause death or serious injury. One method to estimate this is to measure the total crack length (TCL) of each gunshot wound. The aim of this study was to determine the accuracy of the TCL method, when applied to gunshot wounds in gelatine, by measuring the TCL on 1-cm thick gelatine slices using three different ammunition types. The study compared the TCLs found using CT, measured along the channel of the gelatine section, to TCLs measured using a ruler on the cut gelatine slices. The TCLs were tested for their accuracy and the statistical significance was determined by using a paired t-test. The results show that the TCLs measured on CT slices are more accurate, reliable and reproducible than those measured on cut slices. When applied to gelatine, the TCL analysis by CT shows promise as a forensic tool.
The Crysis demo will be made available for download on the Xbox Live Marketplace and on PlayStation Network, with the beta still being subject to change. If you have been curious to see how the game looks in 3D, on high-definition displays, there is no excuse not to try it out. Its release date is September 25. 827ec27edc