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Xiamen Xiangxi New Material Co.,Ltd.

Xiangxi silicone masterbatch used in engineering plastic as plastic additive

Engineering plastics are widely used in various industries due to their excellent mechanical, thermal, and chemical properties. However, to meet the ever-increasing demands of modern applications, these materials need to be modified to enhance their performance and durability. This is where modified engineering plastic additives come into play. In the process of engineering plastics production, we often add some silicone masterbatch to help improve the product performance, so that the final product is not easy to precipitate, more wear and scratch resistance characteristics.

Product Details

Polysiloxane Silicone

Silicone masterbatch is a kind of special thermoplastic resin, which can be used as the base material of engineering plastics to make impact-resistant, wear-resistant, high temperature-resistant, corrosion-resistant and high electrical insulation plastic products. Silicone masterbatch is widely used in engineering plastics because of its excellent processing performance, product quality reliability and insulation performance, such as tool housings, pipe fittings, lamps and other plastic parts for electrical, electronic and mechanical engineering. In addition, it can be used for manufacturing bearings, bushings, nuts, nuts and fasteners.

Silicone masterbatch is a composite material composed of two materials, silicone ester and polyurethane. They can be used as plasticizers for thermoplastic plastics, improving the mechanical properties, optical properties, and thermal stability of plastics, and are widely used in the production of plastic products.
Silicone masterbatches are composed of two materials, silicates and polyurethane. The shape of silicates is small particles, while the shape of polyurethane is small balls. Their combination is more effective than the use of silicates alone.

As a plasticizer, silicone masterbatch can improve the mechanical properties of plastics, such as tensile strength, tensile strength, elongation at break, and flexural strength. It can effectively improve the plasticity and strength of plastics. In addition, silicone masterbatches can also improve the optical properties of plastics, such as transmittance, reflectivity, high and low temperature properties, and can effectively improve the heat and corrosion resistance of plastics.

In addition, silicone masterbatches can also improve the thermal stability of plastics, significantly improving the thermal stability of plastics, enabling them to withstand higher temperature environments, and effectively preventing thermal deformation of plastics.

Due to the above advantages of silicone masterbatches, they are widely used in the production of plastic products, such as electronic products, automotive parts, household appliances, packaging, and so on.
In summary, silicone masterbatches are an important plasticizer that can improve the properties of plastics. They can improve the mechanical properties, optical properties, and thermal stability of plastics, and are widely used in the production of plastic products.

silicone masterbatch

Performance characteristics of silicone masterbatch

Processing performance
Aids in dispersion of mineral and inorganic fillers
Increase production
Improve fluidity and improve mold filling ability
Reduce torque and pressure
Reduce energy consumption
Reduce melt fracture, die deposit
Improved release
Solid particles, easy to disperse, no migration

surface properties
Reduce surface friction coefficient
Improve wear resistance
Improve scratch resistance
Gives a unique smooth feel
No precipitation on the surface

Application fields:

Suitable for PP, PE, EVA, EPDM, ABS, PA, PC, PBT, PPO, PPS, POM and other thermoplastics. It is used in the fields of modified plastics, halogen-free flame-retardant cable materials, shoe soles, plastic heat insulation sealing strips, thin-walled special-shaped complex plastic parts, and plastic pipes.

silicone masterbatch

Product Advantages:

1. Improved mechanical properties: Additives such as fillers and reinforcements can enhance the strength, stiffness, and toughness of engineering plastics, making them more suitable for demanding applications.

2. Enhanced thermal properties: Additives such as stabilizers can improve the heat resistance of engineering plastics, allowing them to withstand high temperatures without degrading.

Product Packaging:

Non-slip bag packaging, each bag 25kg.

Suggested addition amount:

When the addition amount is 0.5%-2.0%, it improves the processability, fluidity and demoulding of the products; when the addition amount is 1.0%-5.0%, it improves the surface performance of the products (smoothness, smoothness, scratch resistance, abrasion resistance, etc.). When added 2-5% for wear resistance, the abrasion can be reduced by 30-80%.

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