Materials Engineering - ANSWER the understanding and modification of the structure and properties of materials to improve the performance and processing of the material
Materials Science - ANSWER research and explore
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Materials Engineering - ANSWER the understanding and modification of the structure and properties of materials to improve the performance and processing of the material
Materials Science - ANSWER research and explore new materials and their properties
American Society for Testing and Materials (ASTM) - ANSWER Develops material testing standards, over 30,000 members worldwide
Professional Materials Engineering Organizations - ANSWER -Materials Information Society
-Materials Research Society
-NACE International
-Other organizations for ceramics, plastics, and metals
Material Types - ANSWER Metals, Ceramics, Polymers, and Composites
Metals - ANSWER -Most common element
-Have crystalline atomic structure
-High material strength
-Good conductors of heat and electricity
-Malleable (bends without breaking)
-Inorganic
-Most pure metals are natural
Ore - ANSWER A mixture that requires processing to purify the metal / remove unwanted minerals
Alloy - ANSWER -Metal mixed with one of more elements
-Example: Brass = Copper + Zinc
-Materials Engineers change the properties of alloys by changing the amount of individual elements that are used
Ceramics - ANSWER -Nonmetallic solids made from inorganic materials
-Made using a process of mixing, shaping, heating and cooling
-Most have crystalline structure
-Strong in compression: keep their shape and strength and are unlikely to break
-High melting temperature: can retain heat well, can withstand high temperatures and remain strong
-Brittle, but resistant to wear
-Good insulators (do not conduct electricity)
Polymers - ANSWER -Made up of a long chain of small molecules that form a much larger molecule: often include carbon and hydrogen
-Organic materials
-Noncrystalline
-Ductile (can be stretched)
-Can be natural or synthetic; natural: rubber, synthetic: plastic
Plastics - ANSWER The most common type of polymers
-Made from byproducts of refining petroleum
-Lightweight but strong
-Easy and fairly inexpensive to process
-Have some negative environmental impacts
Thermoplastics - ANSWER -Can be heated, reshaped and cooled several times
-Examples: PVC pipe, plastic bags, foam cups, legos
Thermosets - ANSWER -Have strong chemical bonds
-Cannot be reshaped when heated; char or burn instead
-Often used for higher heat or permanent applications
-Example: Epoxy, Silicon
Composites - ANSWER -Combine two or more materials
-Utilize advantages of several materials
-Each material can be identified: Ex; concrete is broken into cement, gravel, water
-Can be natural or synthetic; Natural: Wood, Synthetic: Fiberglass
Matrix - ANSWER Main material in composites
Fiber - ANSWER Strengthening material in composites; Example: Fiberglass, matrix = plastic, fiber = strands of glass
Fluids - ANSWER Air and water, many products rely on their use
Semiconductor Materials - ANSWER Can act as insulators or conductors, used to create electronic components
Biomaterials - ANSWER Can interact safely with human body; used in medical applications such as organ transplants, tissue repair, drug delivery
Nanomaterials - ANSWER Other type of material
Material Properties - ANSWER -Physical
-Mechanical
-Electrical
-Magnetic
-Chemical
-Thermal
-Optical
-Acoustical
Physical Properties - ANSWER -Can often be obtained using senses
-Include size, shape, look, feel, taste, and smell
-Some cannot be determined by senses
Density - ANSWER The most commonly used physical property
-Mass per unit of volume
-The higher the density; the more tightly packed the material
-Often used to compare materials
Mechanical Properties - ANSWER How material behaves when force or load is applied
Ductile - ANSWER A material that can be twisted, bent or pressed without breaking; metals, plastics
Brittle - ANSWER Inflexible, easily broken or shattered. Will not deform without breaking; glass
Elasticity - ANSWER Quality of being flexible, can be bent or stretched and returned to its original shape; rubber bands, springs
Plasticity - ANSWER Stay deformed even after the force is removed. Can be bent, but stay bent.
Toughness - ANSWER the capacity to absorb energy without breaking
-Sometimes known as impact strength
-Example: leather
Hardness - ANSWER the ability to resist being scratched or dented: important quality for products that undergo daily wear and tear
Strength - ANSWER the ability to keep its own shape after a force is applied to it
Stress - ANSWER Amount of force or load that is applied to a material: can be applied through axis material - axial load
Shear stress - ANSWER caused by bending or twisting force
Torsion - ANSWER bending or twisting force that causes shear stress
Compression Stress - ANSWER a load that squeezes or compresses the material
Tension Stress - ANSWER a force that pulls on a piece of material
Tensile Strength - ANSWER a material that resists the force of tension stress
Strain - ANSWER amount of deformation that occurs due to stress; Amount of deformation / Original length
Yield Point - ANSWER stress / strain; Any force beyond that will cause permanent deformation
Fracture Point - ANSWER when the material finally breaks
Electrical Properties - ANSWER How a material behaves when electrically charged
Conductors - ANSWER allow electricity to move through the material; Most metals (Copper, aluminum, gold) make excellent conductors
Insulators - ANSWER do not provide good movement of electricity; Glass, ceramics
Semiconductors - ANSWER show properties of both conductors and insulators; silicon devices like diodes, transitions
Resistivity - ANSWER the measure of how well a material resists electricity flow; higher resistance = less electricity flow
Magnetic Properties - ANSWER -How a material behaves when within a magnetic field
Magnetic permeability in Magnet Properties - ANSWER -Impacted by temperature and distance from magnetic field; if it is high, material will allow magnetic flow
-Examples: iron, nickel
Chemical Properties - ANSWER Material properties that are changed by a chemical reaction
Flammability - ANSWER the ease at which a material will ignite
Corrosion - ANSWER the reaction between a material and the environment
-leads to deterioration of material
-common in metals (ie; rusting)
-Often need to be controlled because they can be damaging to material
Thermal Properties - ANSWER How the material responds to heat
Thermal conductivitiy - ANSWER how well heat is transferred through the material
Thermal resistance - ANSWER the insulation value of a material
Thermal expansion - ANSWER describes how a material expands or contracts with heat
-Change in shape / (original shape * temperature change)
Melting Point - ANSWER the point at which a material changes from a solid to a liquid
Optical Properties - ANSWER -How light waves interact with material
-How well material absorbs light
-How well material reflects light
-How well material transmits light
-Reflected light gives material color
-Transmission occurs when light is absorbed and reflected by transparent materials but still passes through materials
Acoustical Properties - ANSWER -How sound waves interact with material
-How well material absorbs sound
-How well material reflects sound
-How well material transmits vibration
-Porous materials usually absorb sound
-Smooth materials reflect sound in one direction
-Rough materials reflect sound in many dir
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