5. Silicone masterbatch is blended with certain organic metal salts, it can improve the flame retardant effect of the material and reduce the generation of smoke.
실리콘 마스터 배치, as a polymer material additive, can significantly enhance the flame retardancy of materials when mixed with certain specific organic metal salts.
The enhancement of this flame retardant effect is mainly due to the synergistic effect between silicone masterbatch and organic metal salts, which can form a stable barrier layer at high temperatures, effectively preventing the spread of flames and the penetration of oxygen, thereby slowing down or preventing the combustion process of the material.
Meanwhile, this blend system can significantly reduce the amount of smoke generated during combustion. Usually, when materials burn, they release a large amount of smoke, which not only exacerbates the chaos at the fire scene, but may also contain toxic and harmful gases, posing a serious threat to human health.
The combination of silicone masterbatch and organic metal salts optimizes the chemical reaction pathway during combustion, reduces the precursor of smoke generation, and thus lowers the concentration and toxicity of smoke.
In summary, the blending of silicone masterbatch with certain organic metal salts can not only effectively improve the flame retardant level of materials and increase their safety during use.
But also significantly reduce the generation of smoke during combustion, creating more favorable conditions for personnel evacuation and rescue work at fire scenes. It is a flame retardant technology with broad application prospects.
6. Silicone masterbatch meets EU environmental standards and is a safe and environmentally friendly additive.
As a safe and environmentally friendly additive, silicone masterbatch’s environmental characteristics are mainly reflected in its compliance with EU environmental standards.
This standard has a high level of authority and recognition worldwide, strictly stipulating the limits of harmful substances in products to ensure that they do not pose a threat to the environment and human health during use and disposal.
Non toxic and harmless: Silicone masterbatch does not contain toxic and harmful substances such as heavy metals, halogens, etc., which may cause environmental pollution when materials are discarded or burned.
The low toxicity, odorless and tasteless characteristics of silicone masterbatch make it harmless to human health during production and use.
Degradability: Although the polymer structure of silicone masterbatch itself makes its degradation rate relatively slow in natural environments, silicone masterbatch that meets EU environmental standards often uses recyclable or bio based materials as raw materials to reduce dependence on natural resources and alleviate environmental burdens.
In addition, with the development of technology, some new types of biodegradable silicone masterbatch are also being developed to further meet environmental protection needs.
Energy conservation and emission reduction: In the process of producing silicone additives, enterprises will take a series of energy-saving and emission reduction measures, such as optimizing production processes, improving energy utilization efficiency, reducing waste emissions, etc., to reduce the impact on the environment.
These measures not only help reduce production costs, but also enhance the company’s sense of social responsibility and brand image.
Environmental contributions in various application fields:
Silicone masterbatch is widely used in modified plastics, halogen-free flame-retardant cable materials, high-end shoe soles, plastic insulation sealing strips and other fields. In these fields, the environmental characteristics of silicone masterbatch make products using it also have better environmental performance. For example, using silicone masterbatch in flame-retardant cable materials can reduce the generation of toxic smoke during combustion and lower the harm of fires to the environment and human health.
The use of silicone masterbatch in high-end shoe soles can improve their wear resistance and slip resistance, while reducing the environmental pollution caused by discarded shoe soles.
7. Silicone masterbatch is suitable for various thermoplastic materials such as PP, PE, EVA, ABS, etc., and is widely used in modified plastics, halogen-free flame-retardant cable materials, high-end shoe soles, plastic insulation sealing strips, and other fields.
Silicone masterbatch, as a multifunctional additive for polymer materials, is characterized by its wide range of applications. It is suitable for various thermoplastic materials, including but not limited to PP (polypropylene), PE (polyethylene), EVA (ethylene vinyl acetate copolymer), ABS (acrylonitrile butadiene styrene copolymer), etc.
These plastics have a wide range of applications in daily life and industrial production.
In the field of modified plastics, the addition of silicone masterbatch can significantly improve the processing performance of plastics, enhance the mechanical strength and heat resistance of products, and also endow plastics with better surface gloss and smoothness, making modified plastics more widely used in various industries such as packaging, construction, and automotive.In the field of halogen-free flame-retardant cable materials, the flame-retardant effect of silicone masterbatch has been fully utilized.
Compared with traditional halogenated flame retardants, silicone masterbatch not only has better flame retardant properties, but also reduces the generation of toxic smoke during combustion, making it more environmentally and human health friendly.
Therefore, it has been widely used in the wire and cable industry, especially in occasions with high environmental requirements.
In addition, silicone masterbatch is widely used in high-end shoe sole materials.
Due to its excellent wear resistance, tear resistance, and resilience, silicone additives can significantly enhance the durability and comfort of shoe soles, making high-end footwear products more in line with consumer needs.Silicone masterbatch also plays an important role in the field of plastic insulation sealing strips.
It can improve the heat resistance, cold resistance and aging resistance of the sealing strip, so that the sealing strip can maintain stable performance in various harsh environments, effectively prevent the transfer of heat and moisture, and improve the energy efficiency and comfort of buildings.
In summary, the widespread application of silicone masterbatch benefits from its unique properties and multifunctionality.
It is not only suitable for various thermoplastic materials, but also plays an important role in various fields such as modified plastics, halogen-free flame-retardant cable materials, high-end shoe soles, plastic insulation sealing strips, etc., providing strong support for the development of these industries.
8. Silicone masterbatch can improve the smoothness, glossiness, and tactile sensation of plastic products, giving them a better appearance and feel.
The addition of silicone masterbatch can significantly reduce the friction coefficient on the surface of plastic products, thereby reducing surface roughness and improving overall smoothness.
This smoothness not only makes the product visually more beautiful, but also brings a more comfortable tactile experience.
Especially in applications that require high smoothness surfaces, such as automotive interior parts, home appliance casings, etc., the addition of silicone additives can significantly enhance the quality of the product.
Glossiness is one of the important indicators for measuring the surface quality of plastic products.
Silicone masterbatch, through its unique molecular structure and surface properties, can form a uniform and dense protective layer on the surface of plastic products, effectively reflecting light and enhancing the glossiness of the products. This increase in glossiness not only makes the product visually more beautiful, but also enhances its grade and added value.
Touch is the sensation that users experience when in direct contact with a product, which is crucial for enhancing the user experience.
The addition of silicone masterbatch can give plastic products a more delicate and soft touch, making people feel more comfortable and pleasant when touched. The optimization of this tactile sensation not only enhances the quality of the product, but also increases users’ desire to purchase and satisfaction with its use.
9. The application of silicone masterbatch can significantly improve the wear resistance and scratch resistance of plastic shoe soles.
Filling mechanism: The filler in silicone masterbatch can be filled into the substrate of plastic shoe soles, forming a particle structure with high hardness.
This structure can reduce the contact area when subjected to external friction, thereby dispersing and resisting wear forces, significantly improving the wear resistance of the sole.
Lubrication mechanism: Organic silicon monomers in silicone masterbatch can form chemical bonds with the substrate, increasing the lubricity of the material.
This lubrication effect can reduce frictional resistance and further reduce wear when the sole comes into contact with the ground.
Reaction mechanism: The silicone monomer in the silicone additives can also react with the substrate to form oxide compounds, forming a hard oxide film on the surface of the material.
This oxide film not only increases the hardness of the material surface, but also enhances its ability to resist external wear.
Surface hardness improvement: Silicone masterbatch forms a hard protective layer on the surface of plastic shoe soles through filling and reaction mechanisms.
This protective layer can effectively resist scratches from sharp objects and protect the integrity of the shoe sole.
Durability: Silicone masterbatch provides long-lasting and durable wear and scratch resistance. This means that the sole can still maintain good scratch resistance during long-term use, extending the service life of the shoes.
Compatibility with other materials: Silicone masterbatch has good compatibility with various plastic materials and can be easily applied to high-end shoe materials such as TPR, EVA, TPU, and rubber outsole.
This compatibility ensures the stability and effectiveness of silicone masterbatch in different shoe materials.
10. Silicone masterbatch can improve the fluidity and demolding properties of plastic processing, reduce torque, minimize equipment wear, make mold filling easier, and lower product defect rates.
Through these advantages, silicone masterbatch plays an important role in plastic processing and modification, not only improving production efficiency and product performance, but also meeting environmental requirements.