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Mercury intrusion porosimetry , concrete

In Part Four, Chapter 11 offers the effectiveness of calcium carbonate nanoparticles on the improvements of compressive strength and durabUity of high-volume fly ash concrete. These resulting properties are further correlated with relevant microstructure and crystalline phases by means of X-ray diffraction, mercury intrusion porosimetry, differential thermal analysis, and thermal gravimetric analysis. Chapter 12 reviews current research and relevant techniques for the manufacture and application of amorphous carbon and its nanocomposites. Various applications for the textile, plastic, and healthcare industries, as well as in the fields of gas and water filtering, electrical apphcations, and food packaging, are also discussed based on the superior and unique propoties of... [Pg.585]

Galle, C. (2001). Effect of drying on cement-based materials pore structure as identified by mercury intrusion porosimetry - A comparative study between oven-, vacuum- and freeze-drying . Cement and Concrete Research 31(10) 1467-1477. [Pg.33]

Hearn N. and R. Hooton (1992). Sample mass and dimension effects on mercury intrusion porosimetry results . Cement and Concrete Research 22 970-980. [Pg.443]


See other pages where Mercury intrusion porosimetry , concrete is mentioned: [Pg.244]    [Pg.369]    [Pg.216]    [Pg.276]   
See also in sourсe #XX -- [ Pg.312 ]




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