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Offering CCBI Carbon Black N220/N550/N330/N339/N375/N660

Offering CCBI Carbon Black N220/N550/N330/N339/N375/N660

离岸价格

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Minimum Order

位置:

sichuan

最小订单价格:

-

最小订单:

24

包装细节:

-

交货时间:

-

供应能力:

100000

付款方式:

-

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免费会员

联系人 Mr. Pingan

Huixing Road,, Zigong, Sichuan

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详情

1. carbon black for masterbatch 2. carbon black for rubber 3. conductive carbon black N**5 OTHER NAME High abrasion furnace black-high structure ïÂ&frac*4;ï¿&frac*2;New technologyïÂ&frac*4;ï¿&frac*2;ïÂ&frac*4;ï¿&frac*2;HAF-HSïÂ&frac*4;ï¿&frac*2;New technologyïÂ&frac*4;ï¿&frac*2; PHYSICAL AND CHEMICAL PROPERTIES Carbon black N**5 is another grade of high abrasion furnace black with high structure (new technology). Its structure is a little lower than N**9, and its properties are similar as N**9. Its iodine adsorption value is *0 g/kg, and DBP adsorption is **4cm3/**0g. APPLICATION The application of carbon black N**5 is similar as N**9, mainly used in the tread compounds of passenger tire, truck tire and cross-country tire. It is also used in coating compounds of conveyor belt. USAGE AND FUNCTION The usage and function of carbon black N**5 is similar as carbon black N**9 although the structure and heat-up is a little lower than N**9. âï¿&frac*2;² Back to the product catalog *0. N**9 OTHER NAME Fast Extrusion Furnace Black âï¿&frac*2;ï¿&frac*2;low Structure ; FEF-LS PHYSICAL AND CHEMICAL PROPERTIES Its iodine adsorption value is *3 g/kg, and DBP adsorption is **1cm3/**0g.Carbon black N**9 is derived from carbon black N**0. Its structure is lower than N**0. Carbon black N**9 with intermediate re-inforcement property is a general-purpose furnace black. APPLICATION Carbon black N**9 is used in carcass compound, especially suitable for buffering layer compound with natural rubber base. It is also used in the matrix compound of tire, coating compound of belt and other rubber products as well as wire and cable compounds. USAGE AND FUNCTION The compound filled with N**9 has smooth extrusion surface, small swelling rate, high tensile strength and high elongation. The N**9 compound has lower tensile stress than N**0 compound. The N**9 compound has good elasticity and fatigue resistance properties. âï¿&frac*2;² Back to the product catalog *1. N**0 OTHER NAME Fast Extrusion Furnace Black; FEF PHYSICAL AND CHEMICAL PROPERTIES Its iodine adsorption value is *3 g/kg, and DBP adsorption is **1cm3/**0g. Carbon black N**0 has smooth particle surface and high structure, resulting in best reinforcement properties among soft carbon blacks. APPLICATION Carbon black N**0 is used in fabric cord, tire side compound, extrusion and rolling compounds. USAGE AND FUNCTION Carbon black N**0 is suitable for natural rubber and synthetic rubbers. N**0 is easy to disperse, resulting in high enduring property, high extrusion rate, smooth surface, small expansion, high temperature resistance and high heat-conductive, high re-inforcement, high elasticity and rebounding properties. Carbon black N**0 is mainly used in fabric cord of tire, tire side, extrusion and rolling compounds. Carbon black N**0 is preferred to use with N**0 when used in butyl rubber compounds. âï¿&frac*2;² Back to the product catalog *2. N**0 OTHER NAME General Purpose Furnace Black ; GPF PHYSICAL AND CHEMICAL PROPERTIES Its iodine adsorption value is *6 g/kg, and DBP adsorption is *0cm3/**0g. Carbon black N**0 has high tensile stress, good processing performance, high rebounding performance and high flexibility. It is widely used in various fields. APPLICATION Carbon black N**0 is used in fabric cord of tire, inner tire, bicycle tire, hose, belt, cable, shoes, extrusion compounds and rolling compounds. USAGE AND FUNCTION Carbon black N**0 is suitable for various vulcanizates. Compared to semi-reinforcement blacks, carbon black N**0 has higher structure, smaller particle size, easy to disperse, higher tensile stress and strain at break, lower heat-up, good elasticity and fatigue properties. The deficiency carbon black N**0 is the low elongation.

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Mr. Pingan < China Rubber Group Carbon Black Research and Design Institute >

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