Yimei New Material-Professional Wax Product Solution Supplier

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High Density Polyethylene Wax L203



PE Wax

Product Details

Model Melting point (℃) Viscosity
Molecular weight Whiteness
L203 130±5 700-800 5000-6000 85±5 0.97 0.5 Powder 



(1)Excellent external lubricant in PVC profile, pipe, pipe fitting, foam board,WPC products, etc. It has good late-period lubricating ability, and will bring more glossy appearance and lower processing torque.

(2)As efficient dispersant in masterbatch, filler masterbatch, modified masterbatch and functional masterbatch. It makes the products inorganic components and pigments dispersed better, and get more beautiful appearance.

(3)Excellent external lubricant in PVC stabilizer, especially in Ca-Zn stabilizer. Additional use suitable inner lubricant, it will highly improve the overall effect of stabilizer and increase the cost-effective correspondingly.

(4)Used in hot melt adhesives can better adjust the products viscosity and hardness, improve its fluidity.

(5)In paint, coating and the road marking paint, its main performance is heat resistance, deforming, leveling, anti-setting and dispersion. It can increase the products surface hardness, wear-resistance and anti-smearing properties.

(6)As modifier in paraffin wax, and improve the paraffin’s melting point, crystallinity, etc.

(7)Releasing agent and protective agent in rubber.



Micronized polyolefin waxes represent a versatile and high-performance class of materials that find widespread application across various industries. These finely processed waxes are characterized by their exceptional properties, including controlled particle size distribution, low viscosity, and excellent thermal stability, making them indispensable in a range of formulations and end products.

One of the key attributes of micronized polyolefin waxes is their ability to act as efficient additives in diverse formulation systems. Due to their finely tuned particle size distribution, these waxes offer superb dispersion characteristics, enabling them to be seamlessly integrated into coatings, inks, adhesives, and polymer compounds. Their compatibility with a wide array of base materials allows for easy incorporation, leading to improved rheological properties, enhanced surface properties, and superior overall performance in the final product.

In the realm of coatings and paints, micronized polyolefin waxes play a pivotal role in delivering tailored functionalities. By imparting scratch resistance, anti-blocking properties, and controlled matting effects, these waxes contribute to the formulation of high-quality coatings that meet stringent performance requirements. Additionally, their impact on surface smoothness, abrasion resistance, and water repellency enhances the durability and aesthetics of the coated surfaces, catering to the diverse needs of industries such as automotive, industrial, and architectural coatings.

In the printing and ink industry, micronized polyolefin waxes serve as essential components for achieving desired print characteristics and endowing printed materials with enhanced properties. Their influence on rub resistance, slip control, and anti-set-off properties ensures the production of high-quality prints with improved handling and visual appeal. Moreover, the compatibility of these waxes with different ink systems enables the customization of formulations to meet specific application demands, ranging from packaging materials to publication prints.

Furthermore, the utilization of micronized polyolefin waxes extends to the realm of adhesives and sealants, where their impact on cohesive strength, tackiness, and moisture resistance enhances the performance and durability of bonded assemblies. By facilitating proper flow and wetting behavior, these waxes contribute to improved adhesion and bonding characteristics, addressing the requirements of applications spanning from packaging and construction to automotive and electronics.

The versatility of micronized polyolefin waxes is also evident in their role as processing aids and modifiers in polymer compounds. Their influence on melt flow properties, nucleation effects, and surface lubrication enhances the processability and end-use performance of a wide range of polymers, including polyethylene, polypropylene, PVC, and engineering plastics. This, in turn, leads to the production of molded parts, films, and fibers exhibiting improved mechanical properties, dimensional stability, and surface finish.

In addition to their functional attributes, micronized polyolefin waxes are recognized for their eco-friendly nature, as they are produced using sustainable processes and exhibit low volatility, contributing to reduced emissions and environmental impact. This aligns with the growing emphasis on sustainable and environmentally conscious manufacturing practices across industries, further enhancing the appeal of these waxes as preferred additives.

In conclusion, micronized polyolefin waxes stand as indispensable components with multifaceted benefits, offering tailored solutions for enhancing the performance and properties of formulations and end products across diverse industries. Their ability to fine-tune material characteristics, improve processing efficiency, and meet evolving sustainability requirements positions them as essential additives driving innovation and quality in the modern industrial landscape.


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