low density
heat insulating
electrically insulating
cost efficient
easy automated process
recycable
longtime stable
energy recovery
low strength
mostly based on fossile oil
low heat stability
for recycling need seperation
low stiffness
risks by additives
emission by additive
aqriculture: foils foam
constructiion: isolation ,pipes
medical: implant
aerospace: structural material
entertaiment: CD films
clectronics: chip print
antiaging agent
antioxidant
emulgators
colorant
solvant
hardener
softner
flame retardant
polymers are large molecules composed of repeating structural units called monomers.
plastics are type of polymers, plastics are sythetic polymers
•significantly different from metal(no crystal lattic structure)
•material cohesion by long molecular chains
•these are intertwine
•depending the type of polymer it is pissible to have semi crystalline area
@organic base
@manufacture by synthesis
organic: composed of hydrocarbons(methan,ethan,ethylen,acetylen,polyethylen)
synthetic:
**new substant is made from different reactant
**base polymers is always Ethan
**the structure of molecules is called constitution
metallic bond
ionic bond
covalent bond
intermolecular forces
**crucial for thermal,mechanical behavior and physical and chemical properties
** fille lead to manipulation. of the property profile
mostly thermosetting resins and thermoplastic in use
**thermoplastics are increasingly gaining importance.
**keeping the part in shape
**compensating overloads
**protecting the fibers from **enviromental influence
**keeping the finers stick together
**initiating external forces to the fibers and transmitting from fiber to fiber
material. process
process:
curing behavior
processing time
viscosity
material:
resistance,reaction to fire, fracture,electrical & mechanical properties,temprature limit
connection of the chains produce via c-c bonda
one reaction step triggers next
no formation of eliminate product
same or similar monomers as base material
with double bond
start chain reaction-chain growth-chain termination
same or different monomers
individual reaction steps occur indepently from eachother
linking of monomers connected with elimination of reaction product
chemical
reduction of the volume of material without physical impact=increase density
chemocal change of structure,anisotropic,volume contraction,internal stress,
physical shrimkage
thermal expansion or contraction
volume stay constant
thermoplastics
elastomers
thermosets
{amorphous
semi-crystalline}
[amorphous]. multiphase , single phase
[semi crystalline]. multi phase
chemically not cross-linked
saturated
unsaturated
widely meshed
high pressure
low pressure
closely meshed
**strong covalent bonds between the molecules
**elastomers or widely cross linked
**thermosets are closely cross linked
in thermosets distortion are hardly possible
in elastomer good deformable by net distortion,return to initial position