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Engineering plastic lubricant - hyperbranched resin HyPer C100

2016-09-30View Original

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Product name Hyperbranched nylon lubricant (anti-glass fiber exposure agent) Main ingredient Hyperbranched polyester Physical and chemical properties and technical indicators Appearance: Particulate white powder moisture content: <1% Decomposition temperature: >300℃ Density: 1.1 g/cm3 Application characteristics A Excellent lubrication ability (1) Increase the extrusion speed of the product, increase the fluidity of the system, reduce the defective rate, reduce torque, and improve the mold filling and demoulding capabilities (2) Improve the surface smoothness (feel), wear resistance, and scratch resistance of the product Improve the self-cleaning ability of the product B Significant dispersion (1) Significantly improve the dispersion of fillers (such as combustion accelerants, glass fiber, etc.) to improve the flame retardant and mechanical properties of the product (2) Improve surface gloss and smoothness, eliminate surface defects caused by adding fillers, and reduce defective rates (3) Increase the amount of fillers added to reduce production costs. C has no migration and good compatibility (1) It has good compatibility with polymer carriers such as nylon (2) There is no progressive migration trend, which can improve the adhesion of the product surface and facilitate printing and coating. D can increase the elongation at break, and the tensile strength, bending strength and impact strength are almost unaffected in terms of flow properties. Hyperbranched resin has a highly branched structure (main chain ends and many branches), which is superior to steric hindrance, has minimal intermolecular entanglement, and has low melt viscosity characteristics. In terms of mechanical properties, the large number of functional groups on the surface of the hyperbranched resin enables it to have a good coupling effect and ensure a large intermolecular force, thereby maintaining good mechanical properties of the material. Adding amount: 0.3%-0.7%. The specific adding amount depends on product performance, application conditions and formula. 78% ; When adding the same amount of CBT100, the melt index is 17.0g/10min, indicating that the effect of HyPerC100 resin is significantly better than that of CBT100 resin. Composition PA-66 50wt%PA-66+50wt%glass fiber+1.0wt% CBT100 50wt%PA-66+50wt%glass fiber+1.0wt%HyPer C100 Melt index (275℃/2.16kg) 9.0g/10min 17.0g/10min 30.4g/10min Application example 3: HyPer C100 improves the fluidity of nylon-66/glass fiber. When HyPer C100 is added at about 1.0%, the melt index increases from 9.0g/10min to 30.4g/10min and increases by 237. Storage: Low temperature drying, sealed storage packaging, PE inner film, 25 kg drum
Reply #22016-10-24
A Excellent lubrication ability (1) Increase the extrusion speed of the product, increase the fluidity of the system, reduce the defective rate, reduce torque, and improve the mold filling and demoulding capabilities (2) Improve the surface smoothness (feel), wear resistance, and scratch resistance of the product Improve the self-cleaning ability of the product B Significant dispersion (1) Significantly improve the dispersion of fillers (such as combustion accelerants, glass fiber, etc.) to improve the flame retardant and mechanical properties of the product (2) Improve surface gloss and smoothness, eliminate surface defects caused by adding fillers, and reduce defective rates (3) Increase the amount of fillers added to reduce production costs. C has no migration and good compatibility (1) It has good compatibility with polymer carriers such as nylon (2) There is no progressive migration trend, which can improve the adhesion of the product surface and facilitate printing and coating. D can increase the elongation at break, and the tensile strength, bending strength and impact strength are almost unaffected in terms of flow properties. Hyperbranched resin has a highly branched structure (main chain ends and many branches), which is superior to steric hindrance, has minimal intermolecular entanglement, and has low melt viscosity characteristics. In terms of mechanical properties, the large number of functional groups on the surface of the hyperbranched resin enables it to have a good coupling effect and ensure a large intermolecular force, thereby maintaining good mechanical properties of the material.
Reply #32016-11-21
In terms of flow properties, hyperbranched resin has a highly branched structure (main chain ends and many branches), which is superior to steric hindrance, has very little intermolecular entanglement, and has low melt viscosity characteristics. In terms of mechanical properties, the large number of functional groups on the surface of the hyperbranched resin enables it to have a good coupling effect and ensure a large intermolecular force, thereby maintaining good mechanical properties of the material.
Reply #42016-11-30
A Excellent lubrication ability (1) Increase the extrusion speed of the product, increase the fluidity of the system, reduce the defective rate, reduce torque, and improve the mold filling and demoulding capabilities (2) Improve the surface smoothness (feel), wear resistance, and scratch resistance of the product Improve the self-cleaning ability of the product B Significant dispersion (1) Significantly improve the dispersion of fillers (such as combustion accelerants, glass fiber, etc.) to improve the flame retardant and mechanical properties of the product (2) Improve surface gloss and smoothness, eliminate surface defects caused by adding fillers, and reduce defective rates (3) Increase the amount of fillers added to reduce production costs. C has no migration and good compatibility (1) It has good compatibility with polymer carriers such as nylon (2) There is no progressive migration trend, which can improve the adhesion of the product surface and facilitate printing and coating. D can increase the elongation at break, and the tensile strength, bending strength and impact strength are almost unaffected in terms of flow properties. Hyperbranched resin has a highly branched structure (main chain ends and many branches), which is superior to steric hindrance, has minimal intermolecular entanglement, and has low melt viscosity characteristics. In terms of mechanical properties, the large number of functional groups on the surface of the hyperbranched resin enables it to have a good coupling effect and ensure a large intermolecular force, thereby maintaining good mechanical properties of the material.
Reply #52016-12-19
Product name Hyperbranched nylon lubricant (anti-glass fiber exposure agent) Main ingredient Hyperbranched polyester Physical and chemical properties and technical indicators Appearance: Particulate white powder moisture content: <1% Decomposition temperature: >300℃ Density: 1.1 g/cm3 Application characteristics A Excellent lubrication ability (1) Increase the extrusion speed of the product, increase the fluidity of the system, reduce the defective rate, reduce torque, and improve the mold filling and demoulding capabilities (2) Improve the surface smoothness (feel), wear resistance, and scratch resistance of the product Improve the self-cleaning ability of the product B Significant dispersion (1) Significantly improve the dispersion of fillers (such as combustion accelerants, glass fiber, etc.) to improve the flame retardant and mechanical properties of the product (2) Improve surface gloss and smoothness, eliminate surface defects caused by adding fillers, and reduce defective rates (3) Increase the amount of fillers added to reduce production costs. C has no migration and good compatibility (1) It has good compatibility with polymer carriers such as nylon (2) There is no progressive migration trend, which can improve the adhesion of the product surface and facilitate printing and coating. D can increase the elongation at break, and the tensile strength, bending strength and impact strength are almost unaffected in terms of flow properties. Hyperbranched resin has a highly branched structure (main chain ends and many branches), which is superior to steric hindrance, has minimal intermolecular entanglement, and has low melt viscosity characteristics. In terms of mechanical properties, the large number of functional groups on the surface of the hyperbranched resin enables it to have a good coupling effect and ensure a large intermolecular force, thereby maintaining good mechanical properties of the material.
Reply #62016-12-21
In terms of flow properties, hyperbranched resin has a highly branched structure (main chain ends and many branches), which is superior to steric hindrance, has very little intermolecular entanglement, and has low melt viscosity characteristics. In terms of mechanical properties, the large number of functional groups on the surface of the hyperbranched resin enables it to have a good coupling effect and ensure a large intermolecular force, thereby maintaining good mechanical properties of the material.
Reply #72017-01-03
A Excellent lubrication ability (1) Increase the extrusion speed of the product, increase the fluidity of the system, reduce the defective rate, reduce torque, and improve the mold filling and demoulding capabilities (2) Improve the surface smoothness (feel), wear resistance, and scratch resistance of the product Improve the self-cleaning ability of the product B Significant dispersion (1) Significantly improve the dispersion of fillers (such as combustion accelerants, glass fiber, etc.) to improve the flame retardant and mechanical properties of the product (2) Improve surface gloss and smoothness, eliminate surface defects caused by adding fillers, and reduce defective rates (3) Increase the amount of fillers added to reduce production costs. C has no migration and good compatibility (1) It has good compatibility with polymer carriers such as nylon (2) There is no progressive migration trend, which can improve the adhesion of the product surface and facilitate printing and coating. D can increase the elongation at break, and the tensile strength, bending strength and impact strength are almost unaffected in terms of flow properties. Hyperbranched resin has a highly branched structure (main chain ends and many branches), which is superior to steric hindrance, has minimal intermolecular entanglement, and has low melt viscosity characteristics. In terms of mechanical properties, the large number of functional groups on the surface of the hyperbranched resin enables it to have a good coupling effect and ensure a large intermolecular force, thereby maintaining good mechanical properties of the material.

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