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Degradation, the chemical/physical response of building and con­ struction materials exposed to in-service environments, must be predicted prior to their installation in structures if materials are to be effectively selected, used and maintained. These assessments of materials degradation require that methods be available to aid prediction of service life. The objectives of building materials science are a) to charac­ terize and categorize materials, b) to predict, preferably in a mathematical sense, material or component response including expected service life, and c) to make improvements in material response through improvements in design, formulation, processing or specification. For building and construction materials, continued progress has been made towards objective (a), but little progress has been made towards objectives (b) and (c). Of these, the mathematical prediction of service life appears to be of greater importance, because, if general approaches or models having application to a wide range of building and construction materials can be identi­ fied, then the categorization, selection, use and improvement of materials can proceed in a systematic manner. Researchers in advanced technologies, such as aerospace, nuclear, electronics and medicine, have apparently been more successful than researchers in building and construction technology in responding to the need for reliable predictions of service life.








Content:
Front Matter....Pages I-XIII
Front Matter....Pages 1-1
Overview of Methodologies for Prediction of Service Life....Pages 3-20
Barriers to the Prediction of Service Life of Polymeric Materials....Pages 21-40
Barriers to the Prediction of Service Life of Inorganic Materials....Pages 41-58
Barriers to the Prediction of Service Life of Metallic Materials....Pages 59-74
Front Matter....Pages 75-75
Approaches to Service Life Prediction of Metals in the Nuclear Industry....Pages 77-92
A Damage Tolerance Approach for Structural Integrity of Aerospace Vehicles....Pages 93-109
Front Matter....Pages 111-111
Essential Data for Service Life Prediction....Pages 113-138
Report of Discussion Group on Inorganic Materials....Pages 139-143
Report of Discussion Group on Polymeric Materials....Pages 145-151
Report of Discussion Group on Metallic Materials....Pages 153-158
Front Matter....Pages 159-159
Some Mathematical Models Useful in Reliability Analysis For Advanced Technologies....Pages 161-188
Front Matter....Pages 189-189
Service Life Prediction from Accelerated Aging Test Results Using Reliability Theory and Life Testing Analysis....Pages 191-211
Mathematical Modelling of Microstructure and Properties of Hydrated Cement....Pages 213-228
Mathematical Modelling of Atmospheric Corrosion and Environmental Factors....Pages 229-252
Stochastic Modeling of Building Materials Performance in Durability....Pages 253-263
Front Matter....Pages 265-265
Report of Discussion Group on Inorganic Materials....Pages 267-269
Report of Discussion Group on Polymeric Materials....Pages 271-274
Report of Discussion Group on Metallic Materials....Pages 275-277
Concluding Remarks....Pages 279-284
Back Matter....Pages 285-289



Content:
Front Matter....Pages I-XIII
Front Matter....Pages 1-1
Overview of Methodologies for Prediction of Service Life....Pages 3-20
Barriers to the Prediction of Service Life of Polymeric Materials....Pages 21-40
Barriers to the Prediction of Service Life of Inorganic Materials....Pages 41-58
Barriers to the Prediction of Service Life of Metallic Materials....Pages 59-74
Front Matter....Pages 75-75
Approaches to Service Life Prediction of Metals in the Nuclear Industry....Pages 77-92
A Damage Tolerance Approach for Structural Integrity of Aerospace Vehicles....Pages 93-109
Front Matter....Pages 111-111
Essential Data for Service Life Prediction....Pages 113-138
Report of Discussion Group on Inorganic Materials....Pages 139-143
Report of Discussion Group on Polymeric Materials....Pages 145-151
Report of Discussion Group on Metallic Materials....Pages 153-158
Front Matter....Pages 159-159
Some Mathematical Models Useful in Reliability Analysis For Advanced Technologies....Pages 161-188
Front Matter....Pages 189-189
Service Life Prediction from Accelerated Aging Test Results Using Reliability Theory and Life Testing Analysis....Pages 191-211
Mathematical Modelling of Microstructure and Properties of Hydrated Cement....Pages 213-228
Mathematical Modelling of Atmospheric Corrosion and Environmental Factors....Pages 229-252
Stochastic Modeling of Building Materials Performance in Durability....Pages 253-263
Front Matter....Pages 265-265
Report of Discussion Group on Inorganic Materials....Pages 267-269
Report of Discussion Group on Polymeric Materials....Pages 271-274
Report of Discussion Group on Metallic Materials....Pages 275-277
Concluding Remarks....Pages 279-284
Back Matter....Pages 285-289
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