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高靜應力和頻繁動力擾動共同作用下矽卡巖動力學特性

Dynamic characteristics of skarn under the combined action of high static stress and frequent dynamic disturbance

  • 摘要: 為進一步揭示深部巖體受到開挖爆破等動力作用時的破壞機理,利用基于SHPB裝置的動靜組合加載試驗系統,首次對中高應變率下矽卡巖在高靜應力和頻繁動力擾動共同作用時的變形特性、能量規律、破壞模式等進行了研究.隨著沖擊次數的增加,巖石的彈性模量先增大后減小,而每次沖擊時的最大應變整體表現出先減小后增大的趨勢,最后一次沖擊時彈性模量驟降,最大應變突增,巖石試樣發生破壞.單位體積巖石能耗為負值,說明在沖擊動載的作用下巖石試樣表現出釋放能量的特性,這是由于高靜應力作用產生的彈性應變能受動力沖擊作用誘導而釋放;隨著沖擊次數的增加,單位體積巖石釋放的能量先增大后減小.結構致密、強度較高的矽卡巖試樣隨沖擊次數的增加表現出劈裂破壞模式.

     

    Abstract: In order to further study the failure mechanism of deep rock mass under the dynamic effect of excavation and blasting,the deformation characteristics,energy laws and failure model of skarn were investigated for the first time under the medium to high strain rate and the combined action of high static stress and frequent dynamic disturbance with an experimental system of coupled static and dynamic loads based on the SHPB device. The results show that the elastic modulus of rock increases with the increase of impacts and then it decreases,at the same time,the maximum strain exhibits an overall trend of decreasing first and then increasing. The elastic modulus drops sharply and the maximum strain shoots up when the last impact comes. The energy consumption per volume of rock is negative,which indicates that the rock samples exhibit a characteristic of energy release under impact dynamic action because a great much elastic strain energy stored in rock samples under high static stress action is released by the disturbance of impact dynamic action. The energy release per volume of rock increases first and then decreases with the increase of impacts. The skarn samples which have compact structure and high strength show a failure mode of splitting.

     

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