首页> 外文会议>Conference on engineering systems design and analysis;Biennial conference on engineering systems design and analysis;ESDA 2008 >DEFORMATION AND FRACTURE OF A SILICATE MELT AROUND Tg: IMPLICATIONS TO DYNAMICS OF VOLCANIC ERUPTIONS
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DEFORMATION AND FRACTURE OF A SILICATE MELT AROUND Tg: IMPLICATIONS TO DYNAMICS OF VOLCANIC ERUPTIONS

机译:Tg周围硅质熔体的形变和断裂:对火山喷发动力学的影响

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The mechanical properties of magma around the glass transition temperature have not been characterized yet, though this subject is considered to be important in dynamics of volcanic eruptions. In this paper, we present an experimental investigation of stress-strain relation of synthetic magma at various temperatures and strain rates. The material behaves as an elastic solid at low temperature and/or high strain rate, and as a viscous fluid at high temperature and/or low strain rate. In the transition, it reveals work-hardening response. Although the work-hardening nature has not been reported for non-crystalline magma, it is important in constructing a mathematical model to represent the flow-to-fracture transition of magma, namely the transition of eruptions from effusive to explosive styles.
机译:尽管在火山喷发的动力学中这个问题被认为是重要的,但尚未确定玻璃化转变温度附近的岩浆的机械性能。在本文中,我们提出了在不同温度和应变速率下合成岩浆应力-应变关系的实验研究。该材料在低温和/或高应变率下表现为弹性固体,在高温和/或低应变率下表现为粘性流体。在过渡过程中,它揭示了强化工作的响应。尽管尚未报道非晶态岩浆的工作硬化性质,但在构建一个数学模型以表示岩浆的流变断裂过渡(即喷发从喷出型到爆炸型过渡)方面,这一点很重要。

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