Handbook of material science


Handbook of material science

MODUL 1 STRUCTURE OF METALS

BONDING
Atomic Bonding
Order in Microstructures
COMMON LATTICE TYPES
Common Crystal Structures
GRAIN STRUCTURE AND BOUNDARY
Grain Structure and Boundary
POLYMORPHISM
Polymorphism Phases
ALLOYS
Alloys
Common Characteristics of Alloys
Type 304 Stainless Steel
Composition of Common Engineering Materials
IMPERFECTIONS IN METALS
Microscopic Imperfections
Macroscopic Defects

MODUL 2 PROPERTY OF METALS

STRESS
Definition of Stress
Types of Stress
Types of Applied Stress
STRAIN
Definition of Strain
Types of Strain
Deformation of Cubic Structures
YOUNG’S MODULUS
Hooke’s Law
Young’s Modulus (Elastic Modulus)
STRESS-STRAIN RELATIONSHIP
Elastic Moduli
Tensile (Load) Tests and Stress-Strain Curves
PHYSICAL PROPERTIES
Strength
Ultimate Tensile Strength
Yield Strength
Ductility
Malleability
Toughness
Hardness
How Alloys Affect Physical Properties
WORKING OF METALS
Heat Treatment
Cold and Hot Working
CORROSION
Corrosion
General Corrosion
Galvanic Corrosion
Localized Corrosion
HYDROGEN EMBRITTLEMENT
Concern
Sources of Hydrogen
Hydrogen Embrittlement of Stainless Steel
Hydrogen Embrittlement of Zirconium Alloys

MODUL 3 THERMAL SHOCK

THERMAL STRESS
Thermal Shock
PRESSURIZED THERMAL SHOCK
Definition
Evaluating Effects of PTS
Locations of Primary Concern

MODUL 4 BRITTLE FRACTURE

BRITTLE FRACTURE MECHANISM
Brittle Fracture Mechanism
Stress-Temperature Curves
Crack Initiation and Propagation
Fracture Toughness
MINIMUM PRESSURIZATION-TEMPERATURE CURVES
MPT Definition and Basis
HEATUP AND COOLDOWN RATE LIMITS
Basis
Exceeding Heatup and Cooldown Rates
Soak Times

MODUL 5 PLANT MATERIALS

PROPERTIES CONSIDERED WHEN SELECTING MATERIALS
Overview
Material Properties
FUEL MATERIALS
Overview of Material Types
Plutonium
Uranium
Thorium
Nuclear Fuel Selection
CLADDING AND REFLECTORS
Cladding
Reflector Materials
CONTROL MATERIALS
Overview of Poisons
Hafnium
Silver-Indium-Cadmium Alloys
Boron-Containing Materials
SHIELDING MATERIALS
Overview
Neutron Radiation
Gamma Radiation
Alpha and Beta Radiation
NUCLEAR REACTOR CORE PROBLEMS
Fuel Pellet-Cladding Interaction
Fuel Densification
Fuel Cladding Embrittlement
Effects on Fuel Due to Swelling and Core Burnup
PLANT MATERIAL PROBLEMS
Fatigue Failure
Work (Strain) Hardening
Creep
ATOMIC DISPLACEMENT DUE TO IRRADIATION
Overview
Atomic Displacements
THERMAL AND DISPLACEMENT SPIKES
DUE TO IRRADIATION
Thermal Spikes
Displacement Spikes
EFFECT DUE TO NEUTRON CAPTURE
Effect Due to Neutron Capture
Physical Effects of Radiation
RADIATION EFFECTS IN ORGANIC COMPOUNDS Radiation Effects
REACTOR USE OF ALUMINUM
Applications

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91 thoughts on “Handbook of material science

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