Mieczkowski Grzegorz, Szymczak Tadeusz, Szpica Dariusz, Borawski Andrzej
Faculty of Mechanical Engineering, Bialystok University of Technology, 45C Wiejska Str., 15-351 Bialystok, Poland.
Department of Vehicle Type-Approval & Testing, Motor Transport Institute, 80 Jagiellonska Str., 03-301 Warsaw, Poland.
Materials (Basel). 2023 Apr 7;16(8):2962. doi: 10.3390/ma16082962.
The results presented in the paper are related to the prediction of the effective fracture toughness of particulate composites (). was determined using a probabilistic model supported by a cumulative probability function qualitatively following the Weibull distribution. Using this approach, it was possible to model two-phase composites with an arbitrarily defined volume fraction of each phase. The predicted value of the effective fracture toughness of the composite was determined based on the mechanical parameter of the reinforcement (fracture toughness), matrix (fracture toughness, Young's modulus, yield stress), and composite (Young's modulus, yield stress). The proposed method was validated: the determined fracture toughness of the selected composites was in accordance with the experimental data (the authors' tests and literature data). In addition, the obtained results were compared with data captured by means of the rule of mixtures (ROM). It was found that the prediction of using the ROM was subject to a significant error. Moreover, a study of the effect of averaging the elastic-plastic parameters of the composite, on , was performed. The results showed that if the yield stress of the composite increased, a decrease in its fracture toughness was noticed, which is in line with the literature reports. Furthermore, it was noted that an increase in the Young's modulus of the composite affected in the same way as a change in its yield stress.
论文中呈现的结果与颗粒复合材料有效断裂韧性的预测有关。有效断裂韧性是使用一个概率模型确定的,该模型由一个定性遵循威布尔分布的累积概率函数支持。采用这种方法,可以对各相体积分数任意定义的两相复合材料进行建模。复合材料有效断裂韧性的预测值是根据增强体(断裂韧性)、基体(断裂韧性、杨氏模量、屈服应力)和复合材料(杨氏模量、屈服应力)的力学参数确定的。所提出的方法得到了验证:所选复合材料测定的断裂韧性与实验数据(作者的测试和文献数据)一致。此外,将所得结果与通过混合法则(ROM)获取的数据进行了比较。发现使用ROM对有效断裂韧性的预测存在显著误差。此外,还进行了关于复合材料弹塑性参数平均对有效断裂韧性影响的研究。结果表明,如果复合材料的屈服应力增加,其断裂韧性会降低,这与文献报道一致。此外,还注意到复合材料杨氏模量的增加对有效断裂韧性的影响与屈服应力变化的影响相同。