pyrolytic polyacrylonitrile - Definition. Was ist pyrolytic polyacrylonitrile
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Was (wer) ist pyrolytic polyacrylonitrile - definition

POLYMER
PolyAcryloNitrile; Polyacrylonitrile resins; Polyacrilonitrile; Polyvinyl cyanide

Highly oriented pyrolytic graphite         
HOPG; Highly Ordered Pyrolytic Graphite; Highly Oriented Pyrolytic Graphite; HOP graphite
Highly oriented pyrolytic graphite (HOPG) is a highly pure and ordered form of synthetic graphite. It is characterised by a low mosaic spread angle, meaning that the individual graphite crystallites are well aligned with each other.
Pyrolysis oil         
PETROLEUM SUBSTITUTE
Bio-oil; Pyrolytic oil; BioOil; Biooil; Biocrude; Bio oil
Pyrolysis oil, sometimes also known as bio-crude or bio-oil, is a synthetic fuel under investigation as substitute for petroleum. It is obtained by heating dried biomass without oxygen in a reactor at a temperature of about with subsequent cooling.
Pyrolytic coating         
Pyrolitic coating
Pyrolytic coating is a thin film coating applied at high temperatures and sprayed onto the glass surface during the float glass process.

Wikipedia

Polyacrylonitrile

Polyacrylonitrile (PAN), also known as polyvinyl cyanide and Creslan 61, is a synthetic, semicrystalline organic polymer resin, with the linear formula (C3H3N)n. Though it is thermoplastic, it does not melt under normal conditions. It degrades before melting. It melts above 300 °C if the heating rates are 50 degrees per minute or above. Almost all PAN resins are copolymers made from mixtures of monomers with acrylonitrile as the main monomer. It is a versatile polymer used to produce large variety of products including ultra filtration membranes, hollow fibers for reverse osmosis, fibers for textiles, and oxidized PAN fibers. PAN fibers are the chemical precursor of very high-quality carbon fiber. PAN is first thermally oxidized in air at 230 °C to form an oxidized PAN fiber and then carbonized above 1000 °C in inert atmosphere to make carbon fibers found in a variety of both high-tech and common daily applications such as civil and military aircraft primary and secondary structures, missiles, solid propellant rocket motors, pressure vessels, fishing rods, tennis rackets and bicycle frames. It is a component repeat unit in several important copolymers, such as styrene-acrylonitrile (SAN) and acrylonitrile butadiene styrene (ABS) plastic.