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Fractographic and fracture mechanical investigations of refractories under different loading conditions

机译:不同加载条件下耐火材料的分形和断裂力学研究

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Crack initiation and propagation have been investigated under tensile and shear loading in ceramically and carbon bonded refractories.A wedge splitting test procedure and a modified shear test have been applied.Test results have been used for material characterization especially with respect to brittleness.Furthermore a microscopic fractographic test procedure was developed and applied on fractured test specimens.In order to explain brittleness dependence on structure properties correlation of fractographic and fracture mechanical resuits has been evaluated.Frequently brittleness reduction is achieved by a lower amount of transgranular crack propagation associated with a strength decrease while maintaining specific fracture energy unchanged.Deviations form pure linear fracture mechanics increase with decreasing brittleness and contribute to specific fracture energy.Shear specimens may show two generations of cracks,a first one initiated by tensile loads (stable propagation) and a second one by shear loads (unstable propagation).
机译:研究了陶瓷和碳粘结耐火材料在拉伸和剪切载荷下的裂纹萌生和扩展,采用了楔形劈裂测试程序和改进的剪切测试方法,并将测试结果用于材料表征,特别是脆性方面。制定了分形测试程序,并将其应用于断裂的试样上。纯线性断裂力学的偏差随脆性的降低而增加,并有助于比断裂能。剪切试样可能会显示出两代裂纹,第一个是由拉伸载荷(稳定传播)引起的,第二个是裂纹。 d一为剪切载荷(不稳定的传播)。

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