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Material properties for fracture mechanics based strength assessment of cast iron water mains

机译:基于铸铁水主电源的强度评估的裂缝力学材料特性

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摘要

Municipal water distribution systems in Canada and other countries include a large number of cast iron pipes that were installed almost 50 years ago. For structural integrity assessment of these pipes, the fracture mechanics approach is found to be more effective than the conventional continuum mechanics-based approach. This paper presents the mechanical properties for fracture mechanics-based strength assessment of water mains determined through testing of cast iron pipes exhumed from two cities in Canada. Microstructure analysis is conducted to understand the materials' inherent properties. Uniaxial tensile tests are conducted to determine the stress-strain relations. The influence of the rate of loading on stress-strain behaviour and loading-unloading responses are investigated. A simplified single-edge notch beam test is used to obtain the fracture toughness. Probabilistic distributions of the parameters are provided to account for the uncertainty and variabilities observed in the test results.
机译:加拿大和其他国家的市政配水系统包括近50年前安装的大量铸铁管道。对于这些管道的结构完整性评估,断裂力学方法比传统的基于连续介质力学的方法更有效。本文通过对从加拿大两个城市挖掘出来的铸铁管道的测试,介绍了基于断裂力学的水管强度评估的力学性能。微观结构分析是为了了解材料的固有性能。进行单轴拉伸试验以确定应力-应变关系。研究了加载速率对应力应变行为和加卸载响应的影响。采用简化的单边缺口梁试验来获得断裂韧性。提供了参数的概率分布,以说明试验结果中观察到的不确定性和变异性。

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