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Determination of the Dynamic Fracture Initiation Toughness of Metal-Ceramic Composites

机译:金属陶瓷复合材料的动态断裂起始韧性的测定

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摘要

The dynamic fracture of metals and metal-ceramic composites is investigated using three-point bend specimens subjected to dynamic loading. The specific material investigated is a metal-ceramic composite consisting of A359 aluminum reinforced by SiC particles. Three distinct approaches - a laser-based interferometric strain/displacement gage (ISDG), a resistance strain gage, and an experimental-numerical hybrid method - have been implemented to determine the dynamic stress intensity factor within a small pre-cracked three-point bend specimen. The specimen is impulsively loaded within a Kolsky bar type configuration, using an input bar and an output tube. The dynamic initiation fracture toughness of the material is obtained indirectly from these methods. The estimates of dynamic fracture initiation toughness determined from these three approaches are compared with each other and with quasistatic data.
机译:使用三点弯曲试样在动态载荷下研究金属和金属陶瓷复合材料的动态断裂。研究的特定材料是由SiC颗粒增强的A359铝组成的金属陶瓷复合材料。已经实施了三种不同的方法-基于激光的干涉应变/位移计(ISDG),电阻应变计和实验-数值混合方法-确定了小的预裂纹三点弯曲内的动态应力强度因子样品。使用输入棒和输出管将样本脉冲加载到Kolsky棒型配置中。通过这些方法间接获得材料的动态起始断裂韧性。将这三种方法确定的动态断裂起始韧性估算值相互比较,并与准静态数据进行比较。

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