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Fracture mechanics of concrete: Material characterization and testing - Material Characterization and Testing (Hardcover, 1984... Fracture mechanics of concrete: Material characterization and testing - Material Characterization and Testing (Hardcover, 1984 ed.)
Alberto Carpinteri, Anthony R. Ingraffea
R1,583 Discovery Miles 15 830 Ships in 12 - 17 working days

In this volume on the mechanics of fracture of Portland cement concrete, the general theme is the connection between microstructural phenomena and macroscopic models. The issues addressed include techniques for observation over a wide range of scales, the influence of .microcracking on common measures of strength and de formability , and ultimately, the relationship between microstructural changes in concrete under load and its resistance to cracking. It is now commonly accepted that, in past attempts to force-fit the behavior of concrete into the rules of linear elastic fracture mechanics, proper attention has not been paid to scale effects. Clearly, the relationships among specimen size, crack length and opening, and characteristic material fabric dimensions have been, in comparison to their counterparts in metals, ceramics, and rocks, abused in concrete. Without a fundamental understanding of these relationships, additional testing in search of the elusive, single measure of fracture toughness has spawned additional confusion and frustration. No one is in a better position to document this observation than Professor Mindess.

Fracture mechanics of concrete: Material characterization and testing - Material Characterization and Testing (Paperback,... Fracture mechanics of concrete: Material characterization and testing - Material Characterization and Testing (Paperback, Softcover reprint of the original 1st ed. 1984)
Alberto Carpinteri, Anthony R. Ingraffea
R1,447 Discovery Miles 14 470 Ships in 10 - 15 working days

In this volume on the mechanics of fracture of Portland cement concrete, the general theme is the connection between microstructural phenomena and macroscopic models. The issues addressed include techniques for observation over a wide range of scales, the influence of .microcracking on common measures of strength and de formability , and ultimately, the relationship between microstructural changes in concrete under load and its resistance to cracking. It is now commonly accepted that, in past attempts to force-fit the behavior of concrete into the rules of linear elastic fracture mechanics, proper attention has not been paid to scale effects. Clearly, the relationships among specimen size, crack length and opening, and characteristic material fabric dimensions have been, in comparison to their counterparts in metals, ceramics, and rocks, abused in concrete. Without a fundamental understanding of these relationships, additional testing in search of the elusive, single measure of fracture toughness has spawned additional confusion and frustration. No one is in a better position to document this observation than Professor Mindess.

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