Linked from
The 21 pages that link to Polymer degradation, each with the reason it gives.
HydrolysisRelated: Hydrolysis can cleave susceptible polymer chains, including some plastics.
PolymerRelated: Degradation affects durability, recycling, and the persistence of discarded materials.
NylonRelated: Nylon resists many forms of decay, complicating its persistence after disposal.
PolypropyleneRelated: Heat, oxygen, and ultraviolet exposure can damage polypropylene during processing or use.
PolyurethaneRelated: Weathering and disposal can alter polyurethane, though many formulations persist in the environment.
Plastic recyclingRelated: Repeated processing and exposure can shorten chains and reduce recycled plastic performance.
PolycarbonateRelated: Heat, ultraviolet light, and moisture can degrade polycarbonate during service or processing.
Molecular weight distributionRelated: Chain scission shifts a sample's distribution toward lower molecular masses.
Polymer chemistryRelated: Degradation is the reverse challenge to making stable, durable polymer materials.
Nylon 6,6Related: Nylon 6,6 persists in the environment and degrades through processes such as heat, light, and oxidation.
CelluloidRelated: Aging celluloid can release acidic products and become brittle or unstable.
Mechanical recyclingRelated: Heat and processing can degrade polymers, limiting repeated mechanical recycling.
KevlarRelated: Ultraviolet exposure, moisture, and heat can degrade Kevlar products over time.
Methyl methacrylateRelated: Degradation affects the long-term appearance and performance of PMMA products.
Polymer engineeringRelated: Heat, oxygen, and shear can damage polymers during manufacture and service.
Basic lead phosphiteRelated: The stabilizer is used to slow the heat-driven degradation of PVC.