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1eBook
Contributors: Wang, Wensheng, Guo, Qinglin, Li, Jue
Subject Terms: asphalt mixture, granular lignin fiber, flocculent lignin fiber, basalt fiber, fiber dosage, monotonic tensile tests, strain-controlled direct tensile fatigue tests, SEM, magnesium potassium phosphate cement (MKPC), sulfate attack, dry–wet cycles, strength change, volume stability, digital image correlation, bitumen binder, numerical modeling, polyphosphoric acid, styrene butadiene rubber-modified asphalt, ultraviolet aging, rheological properties, modification mechanism, steel box arch bridge, hydration heat effect, water pipe cooling, sunshine temperature effect, closure temperature, crumb rubber, epoxidized soybean oil, polyester fiber, response surface methodology, storage stability, asphalt–aggregate interface, self-healing level, moisture and aging, healing potential of asphalt mixture, finite element simulation, hydrated lime, thermal aging, fatigue properties, self-healing performance, recycled aggregate, pretreatment method, compressive performance improvement, failure mechanism, goaf treatment, grouting material, foamed lightweight soil, water–solid ratio, tensegrity structures, initial prestress forces, infinitesimal mechanism, parametric resonance, instability region, silty mudstone, unloading path, mechanical properties, shear strength, failure morphology, recycled asphalt, materials design, mechanical performance, regression model, drainage piles, shake table tests, liquefiable soils, excess pore pressure, discharge flow, ultra-high-performance concrete, steel slag powder, grouting steel-pipe, flexural performance, foamed lightweight soils, foam stability, pore structure, literature review, industrial solid waste, tunnel grouting materials, performance, applications, performance evaluation, ultrasonic testing technology, ultrasonic pulse velocity, grey correlation analysis, dynamic modulus, geotextiles, tensile and puncture properties, low temperature, moisture content, fiber content, alkali-activated binder, tensile strength, fracture energy, reinforcement mechanism, tensile–compression ratio, trench backfilling, controlled low-strength materials (CLSM), flowability, compressive strength, Technology, Engineering, Agriculture, Industrial processes, Technology: general issues, Engineering: general
File Description: application/octet-stream
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2
Authors: Matee Ullah (Department of Lithospheric Research, Faculty of Earth Sciences, Geography and Astronomy, University of Vienna), Urs Klötzli (Department of Lithospheric Research, Faculty of Earth Sciences, Geography and Astronomy, University of Vienna), Bilal Wadood (Department of Geology, Faculty of Earth Sciences, Geography and Astronomy, University of Vienna), Muhammad Khubab (Department of Geology, Faculty of Earth Sciences, Geography and Astronomy, University of Vienna), Fakhrul Islam (Department of Geology, Khushal Khan Khattak University, Pakistan), Kamran Shehzad (Department of Geology, Khushal Khan Khattak University, Pakistan), Rafique Ahmad (Department of Geology, Bacha Khan University, Pakistan)
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