Descrizione dei prodotti
B1C è un polipropilene modificato con anidride maleica ad alto tasso di innesto. One kind of coupling agent made especially for use with polypropylene base compounds is called B1C. Maleic anhydride modified polypropylene, or polypropylene with the backbone of maleic anhydride chemically attached to it, makes up its composition.
This coupling agent has many benefits due to its advanced qualities, which include improved mechanical properties, increased thermal stability, greater adhesion and dispersion, compatibility with different fillers and reinforcements, and chemical resistance. Better material performance, cost effectiveness, adaptability, processing benefits, and sustainability are some of these advantages. Applications for the coupling agent are found in the consumer products, automotive, electrical and electronics, packaging, and construction industries. Producers of polypropylene compounds can obtain superior goods with increased performance, dependability, and durability by adding this coupling agent.
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Caratteristica
Aspetto | Bianco o giallo chiaro |
Indice di fusione (190℃, 2,16kg): g/10min | 3-10 |
Contenuto di anidride maleica | Alto |
Densità(g/㎤) | 0.92 |
- Improved Mechanical Properties: Polypropylene composites’ mechanical qualities are considerably improved by the coupling agent. Enhancements in tensile strength, flexural strength, impact resistance, and stiffness lead to materials with improved structural integrity and durability.
- Better Thermal Stability: The coupling agent-treated polypropylene compounds show better thermal stability. By efficiently slowing down the rate of thermal deterioration, the agent enables the compounds to tolerate greater temperatures without losing their mechanical characteristics.
- Improved Adhesion and Dispersion: Within the polypropylene matrix, the coupling agent enhances the adhesion and dispersion of fillers, reinforcements, and additives. This results in higher dispersion, decreased agglomeration, and improved interfacial bonding, which improves the PP compounds’ overall performance.
- Compatibility with Different Fillers and Reinforcements: A wide variety of fillers and reinforcements that are frequently employed in polypropylene compounds are compatible with the coupling agent with outstanding results. It guarantees even dispersion and robust interfacial adhesion with substances including minerals, glass fibers, and nanoparticles, hence augmenting the mechanical characteristics of the mixtures.
Vantaggio
Better Material Performance: Manufacturers may now create materials with better mechanical qualities, thermal stability, and chemical resistance thanks to the Coupling Agent for Polypropylene Compounds, which dramatically improves the performance of polypropylene compounds. This results in increased dependability and durability of the product.
Cost-Effectiveness: The coupling agent enhances the mechanical characteristics and thermal stability of polypropylene compounds, allowing producers to optimize material designs and perhaps lowering the requirement for further reinforcements or additives. Saving money is achieved without performance being sacrificed.
Versatility: The coupling agent can be used in a variety of sectors and applications since it works well with a broad spectrum of polypropylene compounds. It can be used in building products, electrical appliances, automobile parts, packaging, and other areas.
Processing Advantages: The coupling agent makes polypropylene compounds easier to process, which leads to improved mold filling, easier melt flow, and fewer processing errors. Increased productivity and efficiency in production follow from this.
Sustainability: By improving the qualities of polypropylene compounds, the Coupling Agent for Polypropylene Compounds may prolong product lifetimes and cut down on material waste. Furthermore, the agent itself is frequently made using compounds that are beneficial to the environment, guaranteeing a low impact on the environment.
Chemical Resistance: Polypropylene compounds become more resistant to solvents, chemicals, and harsh media when they have a coupling agent added to them. This characteristic broadens the range of possible uses for PP compounds, especially in sectors where chemical resistance is essential.
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Applicazione
Da utilizzare come agente di accoppiamento nei compound a base di polipropilene per rafforzare l'adesione tra i materiali di riempimento e la matrice polimerica.
Da utilizzare come compatibilizzanti per migliorare la compatibilità tra poliammide e polipropilene.
Industria di applicazione
Automotive sector: A wide range of components, including door panels, bumpers, interior trimmings, and under-the-hood parts, are manufactured in the automotive sector using coupling agents. For demanding automotive applications, its capacity to enhance mechanical qualities and thermal stability makes it perfect.
Electrical and Electronics: Electrical appliances, electronic enclosures, connections, and cable insulation are all made with the coupling agent. It satisfies the demanding standards of the electrical and electronics industries by improving the flame retardancy, mechanical strength, and electrical qualities of polypropylene composites.
Packaging Materials: The production of rigid containers, caps, and closures involves the employment of coupling agents. It ensures dependable packaging solutions by enhancing the impact resistance, stiffness, and environmental stress fracture resistance of polypropylene compounds.
Construction Industry: The coupling agent is used in the construction industry to make fittings, pipelines, roofing membranes, and insulation materials. It gives polypropylene compounds improved mechanical strength, chemical resistance, and dimensional stability, which makes them appropriate for a variety of building applications.
Consumer Goods: The coupling agent is used in the manufacturing of furniture, sporting goods, and home appliances, among other consumer products. The performance and longevity of these goods are improved by its capacity to increase the mechanical characteristics and processability of polypropylene composites.