纳米压痕指南

C. Sondergeld, C. Rai
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引用次数: 1

摘要

纳米压痕技术是一项正在逐渐被油气界接受的新技术。为了加速它的采用,我们回顾了它的功能和应用程序。该技术的发展是为了研究薄膜和半导体特性。当人们的注意力转向非常规页岩气时,它对油气行业产生了吸引力。由于页岩的易碎性和不稳定性,在许多情况下,提取岩心塞进行标准测量是不可能的。纳米压痕非常适合于测量细粒度材料和材料碎片的性能。我们记录了纳米压痕如何用于测量杨氏模量、硬度、剪切模量、各向异性、蠕变和断裂韧性,并检查页岩中这些特性的流体敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Guide to Nanoindentation
Nanoindentation is a new technology slowly gaining acceptance in the oil and gas community. In an effort to accelerate its adoption, we review its capabilities and applications. The technology was developed to study thin film and semiconductor properties. It became attractive to the oil and gas industry when focus switched to unconventional shales. Because of the friability and instability of shales, retrieving core plugs for standard measurements became impossible in many cases. Nanoindentation is perfectly adapted to measuring the properties of fine-grained materials and material fragments. We document how nanoindentation can be used to measure Young’s modulus, hardness, shear modulus, anisotropy, creep, and fracture toughness and to examine the fluid sensitivity of these properties in shale.
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