Nanostructured Materials for Advanced Technological Applications

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Our results showed that ultrahigh strength up to MPa can be achieved for Al-based nano-composites by controlling the distribution of the micro- and nano-particles in the matrix. And corrosion behavior of the material can be controlled by tuning the matrix grain size from to nm depending on the processing parameters. The nanostructured materials also demonstrated excellent high strain rate ductility while maintaining its high strength.

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Examples of oil field applications of the nanostructured materials will be presented. Introduction In the past decades, technology innovations played a critical role in making shale gas a commercial success. Since , shale gas production grew rapidly from virtually nothing to more than 10 billion cubic feet per day in Shale gas supply is expected to account for over 50 percent of total US natural gas production by the s [1].

In the strategy extracting natural gas economically from such low permeability shale plays, the wellbore has to be drilled with horizontal drilling technique and completed with multistage hydraulic fracturing technique to extend the production zone.

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The concept of one-trip installation represents a clever design of the multistage fracture system by using setting ball and ball seat technology to activate one sleeve at a time in the horizontal wellbores. Thus, the entire lateral can be fractured stage by stage without cementing. But the balls and ball seats must be removed from the well after fracturing in order to clear the pathway for production.

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This usually requires the dispatch of a workover rig or coiled tubing unit to mill out the obstruction. Flowback may be a solution for disposal of setting balls made of light weight materials such as phenolic. However, these light weight material is associated with low strength and prone to sever plastic deformations.

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If the formation pressure is very low, it can be difficult to get the frac balls off seat or to flow back to surface. Although materials that individually own high strength, light weight or high disintegration rate have been well documented, integrating the three functionalities in one material still represents a technical challenge.

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This paper presents a novel solution, which is designated as controlled electrolytic metallics CEM [2] for interventionless multistage fracturing applications. Dispatched from the UK in 2 business days When will my order arrive? Nina Orlovskaya. Johann Peter Reithmaier.

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Yves Lemoigne. Walter Craig. Majid Ebrahim-Zadeh. Joseph Puglisi. Janez Bonca. Baldassare Di Bartolo.

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Synthesis and characterization of silver/silica nanostructures — The University of Brighton

Popular Features. New Releases. Description Nanoscience and Nanotechnology are experiencing a rapid development in many aspects, like real-space atomic-scale imaging, atomic and molecular manipulation, nano-fabrication, etc.