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Micro-fracture development in visco-elastic material through fluid fracturing

机译:通过液体压裂粘弹性材料的微骨折开发

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Hydraulic fracturing of rocks is a frequently practiced technique in upstream hydrocarbon industry. However, the phenomena relates to brittle fracture. Fracture formation in visco-elastic materials is a relatively poorly understood process. Inspired by hydraulic fracturing of rocks, fluid fracturing of viscoelastic materials is the proposed technique for the development of micro fractures or pores in a viscoelastic material which is not only simple but effective too. In this method fluid is injected inside the material and at sufficient pressure fractures are observed. In our research, we have found that this method can be used to develop micro fractures of controlled morphology, size and orientation, and thus can have vital applications. Micro fracture development can find a wide range of application including micro filtration, microfluidics, micro reactors, adsorption etc. This paper discusses the basic methodology and the results of experiments conducted on cross-linked polydimethylsiloxane (PDMS), mainly focussing upon the morphology and size variation of fracture depending upon the degree of cross linking and fluid injection pressure.
机译:岩石的水力压裂是上游碳氢化合物行业的经常实践技术。然而,该现象涉及脆性骨折。粘弹性材料中的骨折形成是一个相对较差的方法。灵感来自岩石液压压裂,粘弹性材料的流体压裂是粘弹性材料中的微骨折或孔的提出的技术,这不仅简单而是有效的。在该方法中,流体注入材料内并观察到足够的压力裂缝。在我们的研究中,我们发现这种方法可用于开发受控形态,大小和方向的微骨折,因此可以具有重要的应用。微骨折发育可以找到各种应用,包括微过滤,微流体,微反应器,吸附等。本文讨论了在交联聚二甲基硅氧烷(PDMS)上进行的基本方法和实验结果,主要关注形态和大小根据交叉连接和流体喷射压力的程度变形。

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