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High-pressure High-temperature Deformation Experiment Using the New Generation Griggs-type Apparatus

机译:使用新一代Griggs型仪器进行高压高温变形实验

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摘要

In order to address geological processes at great depths, rock deformation should ideally be tested at high pressure (> 0.5 GPa) and high temperature (> 300 °C). However, because of the low stress resolution of current solid-pressure-medium apparatuses, high-resolution measurements are today restricted to low-pressure deformation experiments in the gas-pressure-medium apparatus. A new generation of solid-medium piston-cylinder ("Griggs-type") apparatus is here described. Able to perform high-pressure deformation experiments up to 5 GPa and designed to adapt an internal load cell, such a new apparatus offers the potential to establish a technological basis for high-pressure rheology. This paper provides video-based detailed documentation of the procedure (using the "conventional" solid-salt assembly) to perform high-pressure, high-temperature experiments with the newly designed Griggs-type apparatus. A representative result of a Carrara marble sample deformed at 700 °C, 1.5 GPa and 10-5 s-1 with the new press is also given. The related stress-time curve illustrates all steps of a Griggs-type experiment, from increasing pressure and temperature to sample quenching when deformation is stopped. Together with future developments, the critical steps and limitations of the Griggs apparatus are then discussed.
机译:为了解决大深度的地质过程,理想情况下,应在高压(> 0.5 GPa)和高温(> 300°C)下测试岩石变形。然而,由于当前的固体压力介质设备的应力分辨率低,因此高分辨率的测量如今仅限于气体压力介质设备中的低压变形实验。这里描述了新一代的固体介质活塞缸(“格里格斯型”)设备。这种新设备能够执行高达5 GPa的高压变形实验,并设计为适应内部称重传感器,因此有可能为高压流变学奠定技术基础。本文提供了基于视频的详细文档记录了该过程(使用“常规”固体盐组件),以使用新设计的Griggs型设备进行高压高温实验。还给出了使用新压机在700°C,1.5 GPa和10 -5 s -1 下变形的卡拉拉大理石样品的代表性结果。相关的应力时间曲线说明了Griggs型实验的所有步骤,从增加压力和温度到停止变形时的样品淬火。然后与未来的发展一起,讨论了Griggs仪器的关键步骤和局限性。

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