Renewable Wire and Cable Applications
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Renewable Wire and Cable Applications
Antioxidant and stabilizers are essential for improving the durability and longevity of materials used in renewable energy solutions. Renewable energy technologies, such as wind turbines, solar panels, and electric vehicles, rely on wires and cables exposed to harsh environmental conditions, including UV radiation, heat, and moisture. These conditions can cause degradation, cracking, and other damage to the wires and cables, leading to performance issues and safety concerns.
Some common types of antioxidant additives used in wire and cable manufacturing for renewable energy transmission include:
Amine Antioxidants
Amine antioxidant that imparts both processing and long term heat stability in carbon black filled polymers.
Amine antioxidant that imparts both processing and long term heat stability in carbon black filled polymers. Higher purity version of NAUGARD® Q.
An excellent-performance amine antioxidant with significant synergy with phenolics, particularly effective in extreme heat and oxygen environments.
Phosphite Antioxidants
ALKANOX™ 240 is the work horse of secondary antioxidants used in synergy with hindered phenolic antioxidants to ehnance their performance and provide additional protection against thermal degradation. By reacting with hydroperoxides formed during thermal processing by yielding non-radicals. This phosphite antioxidant is particularly cost effective due to its superior color control and effectivness at high temperatures for polyolefins used in wire and cable applications.
Phenolic Antioxidants
Hindered phenolic antioxidants are highly effective in protecting wire and cable insulation materials from oxidative degradation caused by exposure to heat and light.
Hindered phenolic antioxidant that is offered in both various forms with excellent extraction from polymers and scorch protection against extreme temperatures.
This high-moleculare weight, hindered phenolic antioxidant offers excellent charge dissapation for protection and long-term stability in optic cable insulation and jacketing.
Low volatility phenolic antioxidant that offers outstanding extraction resistance, non-discoloring, and thermal stability.
Metal Deactivators
Metal deactivators prevent wire and cable insulation materials from degrading due to metal-catalyzed oxidation. NAUGARD™ XL-1 is a dual function antioxidant and metal deactivator, designed for use in polyolefins and polystyrenics that have residual metallic ions as a result of mineral fillers, inorganic pigments, or catalysts.
Coupling Agents
Coupling agent additives provide strength and adhesion for inorganic and organic materials designed to enhance polymer properties while providing increased hardness and improved mechanical properties.
POLYBOND™ 3000 is a high-efficiency coupling agent that provides improved strength and physical properties when used in various polypropylene systems.
The workhouse of coupling agents, POLYBOND™ 3200 for filled polypropylene systems utilizing glass, mineral or cellulosics as a filler material.
A high-efficacy coupling agent for reinforced polypropylene by reducing water uptake, excellent adhesion, and higher flexural strength.
Solar Energy
Cross-linked polyethylene (XLPE) insulation is widely used in solar energy applications, particularly in photovoltaic (PV) systems. XLPE cables offer halogen-free and longer service life benefits for solar power cables and interconnection wiring. SI Group provides antioxidant and UV stabilizer additives for manufacturers utilizing XLPE.
Insulation for PV cables
PV module backsheets
Junction box insulation
Encapsulation and sealing
XLPE Wire and Cable
Adhesives are commonly used for various purposes in wind turbines, including bonding components, sealing joints, and protecting against environmental factors. Antioxidants and UV stabilizers are often incorporated into adhesives for wind turbines to enhance their durability and resistance to degradation.
Wind turbine blades are manufactured using a mix of glass, carbon fiber, and plastic. These blades must be aerodynamic, lightweight, and durable for effective energy transmission.
Polymer Modifiers
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