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Effect of microwave irradiation on dynamic mode-I fracture parameters of Barre granite

机译:微波辐射对啤酒花岗岩动态模式 - I断裂参数的影响

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摘要

Microwave irradiation has been considered as one of the most promising approaches to assisting mechanical rock breakage in rock engineering. Understanding the influence of microwave-induced damage on rock dynamic fracture properties is thus desirable. Using the notched semicircular bend (NSCB) method, dynamic fracture tests were carried out on rock specimens irradiated by microwaves with different durations. Prior to the dynamic tests, X-ray micro-CT scanning and P-wave velocity measurement were employed to quantify the microwave-induced damage. Both the CT value and the P-wave velocity decrease with the increase of the irradiation duration. During the dynamic tests with loads exerted by a split Hopkinson pressure bar (SHPB) system, a laser gap gauge (LGG) technique was used to monitor the crack surface opening distance (CSOD). The results show that the dynamic initiation fracture toughness increases linearly with the loading rate, and the microwave irradiation has a significant weakening effect. Moreover, the propagation fracture toughness and fracture energy are also sensitive to the irradiation duration and the loading rate, which both increasing with the loading rate while decreasing with the increase of the irradiation duration. In addition, the dynamic fracture velocity increases with the loading rate, whereas the limiting fracture velocity and the fracture arrest toughness are significantly reduced by the microwave irradiation.
机译:微波辐射被认为是最有希望的岩石工程中机械破坏的方法之一。因此,理解微波诱导损伤对岩石动态断裂性能的影响是理想的。使用凹陷的半圆形弯曲(NSCB)方法,在用不同持续时间的微波照射的岩石试样上进行动态断裂试验。在动态测试之前,采用X射线微CT扫描和P波速度测量来量化微波诱导的损伤。 CT值和P波速度都随着照射持续时间的增加而降低。在用拆分霍普金森压力杆(SHPB)系统施加的负载的动态测试期间,使用激光差距表(LGG)技术来监测裂缝表面打开距离(CSOD)。结果表明,动态引发断裂韧性随装载速率线性增加,微波辐射具有显着的弱化效果。此外,传播断裂韧性和断裂能对照射持续时间和装载速率也敏感,这两者都随装载速率而增加,同时随着照射持续时间的增加而降低。此外,动态断裂速度随装载速率而增加,而微波辐射显着降低了限制性断裂速度和断裂滞留韧性。

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