首页> 美国政府科技报告 >Mathematical and Computer Analysis of the Interaction Between both Stress and Electron Waves and Elastic Stresses Due to the Rotation of Grains to Promote Fracture Resistance and Electrical Conductivity in Ceramic Materials
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Mathematical and Computer Analysis of the Interaction Between both Stress and Electron Waves and Elastic Stresses Due to the Rotation of Grains to Promote Fracture Resistance and Electrical Conductivity in Ceramic Materials

机译:应力与电子波和弹性应力相互作用的数学和计算机分析,以提高陶瓷材料的抗断裂性和导电性

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摘要

The conditions on elastic displacement and stress in a material that will promote reflection and transmission of an incoming wave are calculated. It is found, for example, that to optimize reflection and transmission, scalar potentials of the displacement in the wave and in the material will be related to rotations in planes perpendicular and parallel to the direction of propagation to the wave. When a pulse is constructed and its path analyzed through short distances, it is shown that abrupt transitions in tension and compression in a material will maximize reflection of the pulse. When strain energy is minimized where reflection and refraction are to occur, differences in tension and compression become prominent again. Finally, an approximate volume of material is calculated for an electron to harness the restoring forces in a material to balance the energy lost in inelastic scattering.

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