Oleic acid amide
Key words:
Oleic acid amide, the use of high quality vegetable oleic acid as raw material, through the synthesis and purification of fine process of this product, insoluble in water, in the alcohol, ester, ketone, benzene and other solvents have a certain solubility. It has good stability to heat, oxygen and ultraviolet rays, can form a monomolecular film at the material interface, and has the functions of smoothness, lubrication, demoulding, moisture prevention, precipitation prevention, anti-adhesion, anti-fouling, anti-static, dispersion, etc. This product has passed the SGS green environmental protection test, conforms to the EU RoHS environmental protection directive, and is allowed to be used in food containers and food packaging materials (GB9685-2008).
Key words:
Oleic acid amide, the use of high quality vegetable oleic acid as raw material, through the synthesis and purification of fine process of this product, insoluble in water, in the alcohol, ester, ketone, benzene and other solvents have a certain solubility. It has good stability to heat, oxygen and ultraviolet rays, can form a monomolecular film at the material interface, and has the functions of smoothness, lubrication, demoulding, moisture prevention, precipitation prevention, anti-adhesion, anti-fouling, anti-static, dispersion, etc. This product has passed the SGS green environmental protection test, conforms to the EU RoHS environmental protection directive, and is allowed to be used in food containers and food packaging materials (GB9685-2008).
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What is the role of PVC plastic special additives?
At the same time, stearic acid, titanate coupling agent, aluminate coupling agent, etc. are used to modify the inorganic filler to change the lipophilicity of the inorganic phase, but it does not fundamentally change the balance and compatibility of the multi-phase PVC system. Long-term industrial application shows that defects will appear:
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How to choose plastic additives to better solve plastic problems
The structure of synthetic resin with similar structure is limited, and the structure of plastic additives is complicated. Not every polymer selection of plastic additives should choose varieties with similar structure, but plastic additives with similar structure and basic resin can really improve the efficacy of plastic additives and the comprehensive performance of products. For example, an antioxidant with an amide structure is 1098 used for nylon, and the stabilizing effect is much better than that of the antioxidant 1010, and the extraction resistance is also significantly better than the latter, while the antioxidant is 1098 used for polyolefin or polyester, without any advantage.
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