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Ceramic Engineering Fundamentals: Materials, Processing, Properties, Testing, and Design for Students and Practicing Engineers - Tapa blanda

Vector, Ph.D., Dr. Danie

 
9798191952727: Ceramic Engineering Fundamentals: Materials, Processing, Properties, Testing, and Design for Students and Practicing Engineers

Sinopsis

Ceramic Engineering Fundamentals is a comprehensive, practical guide to the science, processing, testing, and engineering design of ceramic materials. Written for students, technicians, laboratory professionals, process engineers, quality engineers, product designers, and practicing engineers, this book connects fundamental materials science with the real manufacturing decisions that determine ceramic performance.

Rather than treating ceramic chemistry, processing, microstructure, testing, and design as separate subjects, the book develops them as one connected engineering system. Readers learn how raw-material selection influences powder behavior, how forming and drying affect defects and dimensional control, how sintering develops microstructure, and how microstructure ultimately determines strength, thermal performance, reliability, and service life.

The book begins with the foundations of ceramic engineering, including atomic bonding, crystal structure, ceramic chemistry, phase equilibria, and phase diagrams. It then moves into raw materials, powder preparation, particle characterization, packing, forming methods, drying, binder removal, and green-body defect prevention.

Detailed coverage of sintering, densification, grain growth, and microstructure helps readers understand how a fragile porous body becomes a functional engineering material. Later chapters explore mechanical behavior, fracture toughness, flaw sensitivity, Weibull reliability, thermal stress, thermal shock, creep, oxidation, corrosion, and high-temperature performance.

The text also introduces important functional ceramics and applications, including electrical, dielectric, piezoelectric, magnetic, ionic-conducting, and optical ceramics, while also addressing glass, glass-ceramics, cementitious ceramics, refractories, and other important ceramic families.

Readers will also gain practical understanding of:

  • Atomic bonding, crystal structure, defects, and ceramic chemistry

  • Phase equilibria, binary phase diagrams, eutectics, and the lever rule

  • Raw-material selection, purity, contamination, mixing, milling, and granulation

  • Particle-size distribution, surface area, powder flow, packing, and dispersion

  • Uniaxial pressing, isostatic pressing, slip casting, extrusion, tape casting, injection molding, and additive manufacturing

  • Drying behavior, binder burnout, gas escape, shrinkage, cracking, and defect prevention

  • Solid-state, liquid-phase, viscous, reaction, and pressure-assisted sintering

  • Grain growth, pore evolution, density development, and dimensional control

  • Strength, hardness, fracture mechanics, reliability, slow crack growth, and proof testing

  • Thermal conductivity, expansion, thermal stress, thermal shock, creep, and refractory performance

  • Electrical, dielectric, magnetic, optical, and other functional ceramic properties

  • Density, porosity, microscopy, X-ray diffraction, mechanical testing, thermal testing, and quality control

  • Ceramic component design, manufacturing systems, tolerances, machining, joining, coatings, yield, and cost

  • Failure analysis, fractography, root-cause investigation, and corrective engineering decisions

A practical engineering reference for understanding how materials, processing, microstructure, properties, testing, and design work together to create reliable ceramic components.

"Sinopsis" puede pertenecer a otra edición de este libro.