Engineering materials and their applicationsThis edition of the classic text/reference book has been updated and revised to provide balanced coverage of metals, ceramics, polymers and composites. The first five chapters assess the different structures of metals, ceramics and polymers and how stress and temperature affect them. Demonstrates how to optimize a material's structure by using equilibrium data (phase diagrams) and nonequilibrium conditions, especially precipitation hardening. Discusses the structures, characteristics and applications of the important materials in each field. Considers topics common to all materials—corrosion and oxidation, failure analysis, processing of electrical and magnetic materials, materials selection and specification. Contains special chapters on advanced and large volume engineering materials plus abundant examples and problems. |
From inside the book
Results 1-3 of 76
Page 31
2.3 Coordinates of atoms in the face-centered positions in a unit cell. The atom A
shown in the next unit cell would have coordinates 1,0, 1. Note: 1 is equivalent to
-1. or crystal is built of unit cells of dimensions a0, t 60, c0 angstroms*, ...
2.3 Coordinates of atoms in the face-centered positions in a unit cell. The atom A
shown in the next unit cell would have coordinates 1,0, 1. Note: 1 is equivalent to
-1. or crystal is built of unit cells of dimensions a0, t 60, c0 angstroms*, ...
Page 37
The volume of a unit cell is merely the lattice dimension cubed. Before we can
complete the calculation, however, we must determine the number of atoms per
unit cell. Figure 2.8 shows how to determine the number of atoms in a single cell.
The volume of a unit cell is merely the lattice dimension cubed. Before we can
complete the calculation, however, we must determine the number of atoms per
unit cell. Figure 2.8 shows how to determine the number of atoms in a single cell.
Page 52
Next we considered the arrangement of atoms in the unit cell and methods for
describing their location. We also discussed directions and planes in the unit cell.
We found that we can calculate density by dividing the mass of the atoms in the ...
Next we considered the arrangement of atoms in the unit cell and methods for
describing their location. We also discussed directions and planes in the unit cell.
We found that we can calculate density by dividing the mass of the atoms in the ...
What people are saying - Write a review
LibraryThing Review
User Review - jenn88 - LibraryThingTeenager Estella Goodwinn is now in WITSEC after witnessing a violent crime and agreeing to testify against the man who killed her mother's drug dealer. She's taken from her friends and family, and ... Read full review
LibraryThing Review
User Review - DarkFaerieTales - LibraryThingReview courtesy of Dark Faerie Tales Quick & Dirty: A gripping thriller infused in romance! Though the main character began bratty and ungrateful, her development was worth watching. Opening Sentence ... Read full review
Contents
The Problem of Materials Selection and Development | 3 |
Metallic Structures The Unit Cell | 19 |
Effects of Stress and Temperature on Simple Metal | 59 |
Copyright | |
34 other sections not shown
Common terms and phrases
alloys aluminum annealed anode atoms austenite bainite band bond Calculate carbide carbon cast iron cathode cement ceramics Chapter chromium cold-worked component composition compressive concrete conductivity cooling copper corrosion crack crystal curve deformation density diameter diffusion discussed ductility effect elastic electrical electron hole electrons elements elongation energy eutectoid example fatigue Fe2+ ferrite fiber field fracture toughness glass grain graphite hardening hardness heat hydrogen important ionic ions layer liquid load magnesium magnetic martensite material matrix melting metal microstructure modulus mold molecules nickel obtain oxide oxygen pearlite percent percentage phase diagram photons plane plastic polymer polymerization precipitate produce properties quench reaction resistance Sections semiconductor shown in Fig shows silica silicon sodium solid solution specimen stainless steel strain stress structure surface Table tensile strength thermal thermoplastic thermosetting transformation unit cell valence volume wavelength yield strength zinc