{"title":"Alberto Carpinteri","description":null,"products":[{"product_id":"mechanical-damage-and-crack-growth-in-concrete-book-alberto-carpinteri-9789024732333","title":"Mechanical damage and crack growth in concrete","description":"Following Volumes III and IV that dealt with the fracture mechanics of concrete emphasizing both material testing and structural application in general, it was felt that specimen size and loading rate effects for concrete require further attention. The only criterion that has thus far successfully linearized the highly nonlinear crack growth data of concrete is the strain energy density theory. In particular, the crack growth resistance curves plotting the strain energy density factor versus crack growth known as the SR·curves are straight lines as specimen size and loading steps or rates are altered. This allows the extrapolation of data and provides a useful design methodology. This book is unique in that it is devoted specifically to the application of the strain energy density theory to civil engineering structural members made of concrete. Analyzed in detail is the strain softening behavior of concrete for a variety of different components including the influence of steel reinforcement. Permanent damage of the material is accounted for each increment of loading by invoking the mechanism of elastic unloading. This assumption is justified in concrete structures where the effective stiffness depends primarily on the crack growth rate and load history. Crack growth data are presented in terms of SR-curves with emphases placed on scaling specimen size which alone can change the mode of failure from plastic collapse to brittle fracture. Loading rate effects can also be scaled to control failure by yielding and fracture.","brand":"WoB","offers":[{"title":"US \/ NEW \/ INGRAM","offer_id":51066050281745,"sku":"NIN9789024732333","price":0.0,"currency_code":"GBP","in_stock":false},{"title":"GB \/ NEW \/ INGRAM","offer_id":52341381005585,"sku":"NLS9789024732333","price":0.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0784\/4072\/6801\/files\/9024732336.jpg?v=1751066346"},{"product_id":"applications-of-fracture-mechanics-to-reinforced-concrete-book-alberto-carpinteri-9780367864613","title":"Applications of Fracture Mechanics to Reinforced Concrete","description":"This volume emphazises the most recent advances in fracture mechanics as specifically applied to steel bar reinforced concrete. Fracture mechanics has been applied to plain and fibre reinforced concrete with increasing success over recent years. This workshop extended these concepts to steel bar reinforced and pre-stressed concrete design. Particularly for high strength concrete, which is a very brittle material, and in the case of large structural members, the application of fracture mechanics appears to be very useful for improving the present design rules. The pre-eminent participants at the Turin workshop contributed extensive expert opinions in four selected areas for which a rational approach, using fracture mechanics, could introduce variations into the concrete design codes: size effects; anchorage and bond; minimum reinforcement for elements in flexure; and shear resistance. The 23 chapters logically address these themes and demonstrate the unique ability of fracture mechanics to capture all the experimentally observed characteristics. The book is primarily directed to the researchers in universities and institutions and will be of value to consultants and engineering companies.","brand":"WoB","offers":[{"title":"- \/ - \/ -","offer_id":51166134010129,"sku":"","price":0.0,"currency_code":"GBP","in_stock":true},{"title":"US \/ NEW \/ INGRAM","offer_id":51166135386385,"sku":"NIN9780367864613","price":0.0,"currency_code":"GBP","in_stock":true},{"title":"GB \/ NEW \/ INGRAM","offer_id":52521405776145,"sku":"NLS9780367864613","price":0.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0784\/4072\/6801\/files\/0367864614.jpg?v=1751228555"},{"product_id":"advanced-structural-mechanics-book-alberto-carpinteri-9780367864736","title":"Advanced Structural Mechanics","description":"Building on the author’s Structural Mechanics Fundamentals, this text presents a complete and uniform treatment of the more advanced topics in structural mechanics, ranging from beam frames to shell structures, from dynamics to buckling analysis, from plasticity to fracture mechanics, from long-span to high-rise civil structures.   Plane frames  Statically indeterminate beam systems: Method of displacements  Plates and shells  Finite element method  Dynamics of discrete systems  Dynamics of continuous elastic systems  Buckling instability  Long-span structures  High-rise structures  Theory of plasticity  Plane stress and plane strain conditions  Mechanics of fracture  This book serves as a text for graduate students in structural engineering, as well as a reference for practising engineers and researchers.","brand":"WoB","offers":[{"title":"- \/ - \/ -","offer_id":51189048475921,"sku":"","price":0.0,"currency_code":"GBP","in_stock":true},{"title":"US \/ NEW \/ INGRAM","offer_id":51189050278161,"sku":"NIN9780367864736","price":0.0,"currency_code":"GBP","in_stock":false},{"title":"GB \/ NEW \/ INGRAM","offer_id":52425119826193,"sku":"NLS9780367864736","price":0.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0784\/4072\/6801\/files\/0367864738.jpg?v=1750813509"},{"product_id":"structural-mechanics-book-alberto-carpinteri-9780367448349","title":"Structural Mechanics","description":"This book presents a complete and unified treatment of the fundamental themes of structural mechanics, ranging from the traditional to the most advanced topics, covering mechanics of linear elastic solids, theory of beam systems, and phenomena of structural failure. The book considers explicitly all the static and kenetic operators of structural mechanics with their dual character. Topics relating to structural symmetry are covered in a single chapter while dynamics is dealt with at various points. The logical presentation allows the clear introduction of topics such as finite element methods, automatic calculation of framed beam systems, plate and shell theory, theory of plasticity, and fracture mechanics. Numerous worked examples, exercises with complete solutions and illustrations make it accessible both as a text for students and as a reference for research workers and practicing engineers.","brand":"WoB","offers":[{"title":"- \/ - \/ -","offer_id":51227618443537,"sku":"","price":0.0,"currency_code":"GBP","in_stock":true},{"title":"US \/ NEW \/ INGRAM","offer_id":51227622834449,"sku":"NIN9780367448349","price":0.0,"currency_code":"GBP","in_stock":false},{"title":"GB \/ NEW \/ INGRAM","offer_id":52425313714449,"sku":"NLS9780367448349","price":0.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0784\/4072\/6801\/files\/0367448343.jpg?v=1750942145"},{"product_id":"fracture-mechanics-of-concrete-material-characterization-and-testing-book-alberto-carpinteri-9789024729593","title":"Fracture mechanics of concrete: Material characterization and testing","description":"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.","brand":"WoB","offers":[{"title":"GB \/ NEW \/ INGRAM","offer_id":52125436969233,"sku":"NLS9789024729593","price":0.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0784\/4072\/6801\/files\/9789024729593.jpg?v=1757465170"},{"product_id":"fracture-mechanics-of-concrete-material-characterization-and-testing-book-alberto-carpinteri-9789400961517","title":"Fracture mechanics of concrete: Material characterization and testing","description":"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. 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In particular, the crack growth resistance curves plotting the strain energy density factor versus crack growth known as the SR-curves are straight lines as specimen size and loading steps or rates are altered. This allows the extrapolation of data and provides a useful design methodology. This book is unique in that it is devoted specifically to the application of the strain energy density theory to civil engineering structural members made of concrete. Analyzed in detail is the strain softening behavior of concrete for a variety of different components including the influence of steel reinforcement. Permanent damage of the material is accounted for each increment of loading by invoking the mechanism of elastic unloading. This assumption is justified in concrete structures where the effective stiffness depends primarily on the crack growth rate and load history. 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This book is extensively based on the introductory chapters to the author’s Structural Mechanics: A Unified Approach.  Coverage includes:    The basic topics of geometry of areas and of kinematics and statics of rigid body systems The mechanics of linear elastic solids—beams, plates, and three-dimensional solids—examined using a matrix approach The analysis of strain and stress around a material point The linear elastic constitutive law, with related Clapeyron’s and Betti’s theorems Kinematic, static, and constitutive equations The implication of the principle of virtual work The Saint Venant problem The theory of beam systems—statically determinate or indeterminate Methods of forces and energy for the examination of indeterminate beam systems  The book draws on the author’s many years of teaching experience and features a wealth of illustrations and worked examples to help explain the topics clearly yet rigorously. 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Such local effects, as, for example,  plastic deformation, yielding, strain-hardening, strain-softening,  mechanical damage, matrix microcracking, aggregate debonding, fibre  bridging, fibre slippage, crazing, and so on, are properly described  through different simplified models, representing the peculiarities of  the phenomena involved. The models are introduced and described  separately and then compared in the last part of the book.    This volume will be of interest to students, professionals and  researchers in the field of nonlinear fracture mechanics.","brand":"WoB","offers":[{"title":"- \/ - \/ INTERNAL","offer_id":52410375602449,"sku":null,"price":0.0,"currency_code":"GBP","in_stock":true},{"title":"GB \/ NEW \/ INGRAM","offer_id":52410376388881,"sku":"NLS9789401059770","price":0.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0784\/4072\/6801\/files\/9789401059770.jpg?v=1758777701"},{"product_id":"nonlinear-crack-models-for-nonmetallic-materials-book-alberto-carpinteri-9780792357506","title":"Nonlinear Crack Models for Nonmetallic Materials","description":"In this volume a survey of the most relevant nonlinear crack  models is provided, with the purpose of analyzing the nonlinear  mechanical effects occurring at the tip of macrocracks in  quasi-brittle materials - such as concrete, rocks, ceramics,  polymers, high-strength metallic alloys - and in brittle-matrix  fibre-reinforced composites. Such local effects, as, for example,  plastic deformation, yielding, strain-hardening, strain-softening,  mechanical damage, matrix microcracking, aggregate debonding, fibre  bridging, fibre slippage, crazing, and so on, are properly described  through different simplified models, representing the peculiarities of  the phenomena involved. The models are introduced and described  separately and then compared in the last part of the book.    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In addition, an accessible and self-consistent treatment of the mathematical technique of fractional calculus is provided, avoiding useless complications.","brand":"WoB","offers":[{"title":"- \/ - \/ INTERNAL","offer_id":52453254136081,"sku":null,"price":0.0,"currency_code":"GBP","in_stock":true},{"title":"GB \/ NEW \/ INGRAM","offer_id":52453254889745,"sku":"NLS9783211829134","price":0.0,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0784\/4072\/6801\/files\/9783211829134.jpg?v=1759367307"},{"product_id":"advances-in-fracture-research-book-alberto-carpinteri-9781402046261","title":"Advances in Fracture Research","description":"Biological materials are bottom-up designed systems formed from billions of years of natural evolution. 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At the same time, such studies may also provide guidance on the dev- opment of novel nanostructured hierarchical materials via a bottom-up approach, i. e. by tailor-designing materials from atomic scale and up. Currently we barely have any theoretical basis on how to design a hierarchical material to achieve a part- ular set of macroscopic properties. 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In particular, it looks at emissions from nano-scale mechanical instabilities such as fracture, turbulence, buckling and cavitation, focussing on vibrations at the TeraHertz frequency and Piezonuclear reactions. Future applications for this work could include earthquake precursors, climate change, energy production and cellular biology.  A series of fracture experiments on natural rocks demonstrates that the TeraHertz vibrations are able to induce fission reactions on medium weight elements accompanied by neutron emissions. The same phenomenon appears to have occurred in several different situations, particularly in the chemical evolution of the Earth and Solar System, through seismicity (rocky planets) and storms (gaseous planets). As the authors explore, these phenomena can also explain puzzles related to the history of our planet, like the ocean formation or the primordial carbon pollution, as well as scientific mysteries, like the so-called “cold nuclear fusion” or the correct radio-carbon dating of organic materials, such as the Turin Shroud. In biology, Piezonuclear reactions could explain the mechanism that governs the so-called \"sodium-potassium pump\" and more in general, the metabolic processes.  Scientists engaged in seismology, geophysics, geochemistry, climatology, planetology, condensed matter physics and b  iology, as well as those involved in theoretical and applied mechanics, will all appreciate the innovative work presented here in a holistic way.","brand":"WoB","offers":[{"title":"- \/ - \/ INTERNAL","offer_id":52500689453329,"sku":null,"price":0.0,"currency_code":"GBP","in_stock":true},{"title":"GB \/ NEW \/ GARDNERS","offer_id":52500690206993,"sku":"NGR9783319792323","price":0.0,"currency_code":"GBP","in_stock":false}]},{"product_id":"fracture-and-complexity-book-alberto-carpinteri-9789402420289","title":"Fracture and Complexity","description":"The book explores the two opposite natural trends of composite systems: (i) order and structure emerging from heterogeneity and randomness, and (ii) instability and chaos arising from simple nonlinear rules. 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