Nylon lubricant, high-performance engineering plastic lubricant
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Hyper C100 is an environmentally friendly, energy-saving polymer resin developed independently by Wuhan Hyperbranched Resin Technology Co., Ltd.; it can serve as a substitute for the imported cyclic butylene terephthalate (CBT) resin. Nylon lubricant – hyperbranched resin C100 offers superior performance in terms of pigment dispersion, improvement of rheology, increased filler usage, and enhancement of product quality, while also effectively reducing processing energy consumption. Adding C100 to plastics can improve the compatibility between pigments and resin, as well as enhance the brightness and luster of the pigments ; Nylon lubricant – the hyperbranched resin C100 significantly improves flowability and rheology, while reducing processing temperatures and thus saving energy consumption ; The amount of filler in the composite material can be increased to reduce costs ; Resin also enables easy injection of thin-walled parts over long distances. As a pigment dispersant, using just 0.2–1.0% of the additive amount is sufficient to obtain masterbatches with good dispersion, offering vivid and rich colors that appear more realistic. Basic physical properties: Solid powder with a density of 1.1 g/cm3, a melting range of 140–200°C, and no volatility. Performance features: The nylon lubricant – hyperbranched resin C100 – helps reduce the processing current, thereby saving energy and reducing consumption. It offers good dispersion properties and gives products a vibrant color. As it is a non-volatile high-molecular-weight resin, it is environmentally friendly. Increasing the amount of filler used helps to lower costs, while reducing surface cracking and the \"shark skin\" effect improves product quality. Application Areas and Advantages: (1) Pigment Dispersant/Nylon Lubricant – The hyperbranched resin C100 is used as a dispersant for pigments (red, orange, yellow, black, blue, purple, etc.). With just 0.2–1.0% of the material’s weight added in the form of this resin, color masterbatches with excellent dispersion can be obtained, resulting in colors that are vivid, rich, and more realistic. (2) Blended rheology modifiers: Even in very small amounts, they can significantly improve the fluidity, melt index, and mechanical properties of the resin ; It reduces the energy consumption associated with blending and increases production capacity; it can also reduce the current by around 20% or lower the processing temperature by 10–20°C, resulting in significant savings in energy use. Hyper C100 is blended with polyolefins (PVC, PP, PE, PS, etc.), polyesters (PBT, PET, PC, PCT, etc.), PA, acetals (POM), PPO, PVC, PMMA, TPU, ABS, SAN, PEI, PSU, and alloys (PC/ABS, PC/PEI, PC/PBT, PC/PET) to improve the compatibility between pigments and resins ; Adding 0.2–1% of Hyper C100 to CBT100 resin can significantly improve its flowability and mechanical properties ; Even with enhanced engineering plastics, the addition of Hyper C100 enables easy injection of thin-walled parts over long cycles. (3) Plastic filler enhancer: Nylon lubricant – the hyperbranched resin C100 Hyper C100 features strong wetting and filling capabilities as well as low processing viscosity; it can be used both as a carrier for masterbatches and as an additive in them. C100 has excellent compatibility with various fillers (calcium carbonate, talc, wollastonite, silica powder, glass microspheres), fibers (carbon fiber, glass fiber), stabilizers, flame retardants, release agents, and pigments, as well as strong wetting capacity ; C100 is suitable as a masterbatch for various high-fill, easily dispersible materials, and the CBT100 resin can effectively suppress the \"shark skin\" phenomenon in materials with high filler content. Adding 0.2–1% C100 to plastic formulations allows the filler content to be increased by about 10%, without the occurrence of a \"shark skin\" effect on the surface.A. Excellent lubricating properties: (1) Increases the extrusion speed of products, enhances the fluidity of the mixture, reduces the rate of defective products, lowers torque, and improves the ability to fill and remove products from the mold. (2) Improves the surface smoothness (feel) of products, as well as their wear resistance and scratch resistance, and enhances their self-cleaning capabilities.
B. Outstanding dispersing properties: (1) Significantly improves the dispersion of fillers (such as combustion promoters, glass fibers, etc.), thereby enhancing the flame-retardant and mechanical properties of the products. (2) Improves surface gloss and smoothness, eliminates surface defects caused by the use of fillers, and reduces the rate of defects. (3) Allows for higher amounts of filler to be used, thus reducing production costs. C shows no migration and has good compatibility: (1) it has good compatibility with polymer carriers such as nylon; (2) there is no tendency for progressive migration, which enhances the adhesion on the surface of the products, facilitating printing and coating. D improves the elongation at break, while the tensile strength, flexural strength, and impact strength remain almost unaffected
A. Excellent lubricating properties: (1) Increases the extrusion speed of products, enhances the fluidity of the mixture, reduces the rate of defective products, lowers torque, and improves the ability to fill and remove products from the mold. (2) Improves the surface smoothness (feel) of products, as well as their wear resistance and scratch resistance, and enhances their self-cleaning capabilities.
B. Outstanding dispersing properties: (1) Significantly improves the dispersion of fillers (such as combustion promoters, glass fibers, etc.), thereby enhancing the flame-retardant and mechanical properties of the products. (2) Improves surface gloss and smoothness, eliminates surface defects caused by the use of fillers, and reduces the rate of defects. (3) Allows for higher amounts of filler to be used, thus reducing production costs. C shows no migration and has good compatibility: (1) it has good compatibility with polymer carriers such as nylon; (2) there is no tendency for progressive migration, which enhances the adhesion on the surface of the products, facilitating printing and coating. D improves the elongation at break, while the tensile strength, flexural strength, and impact strength remain almost unaffected