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Product Spec Sheets

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July 17, 2013
MPP-620 is a finely micronized Polyethylene. Additions of 1-3% (by weight) will impart excellent rub and mar resistance and surface slip to printing inks, paints and coatings. Due to the fine particle size of MPP-620, prior compounding or grinding…  Read More »
July 17, 2013
MPP-620 is a finely micronized Polyethylene. Additions of 1-3% (by weight) will impart excellent rub and mar resistance and surface slip to printing inks, paints and coatings. Due to the fine particle size of MPP-620, prior compounding or grinding…  Read More »
July 17, 2013
MPP-620 is a finely micronized Polyethylene. Additions of 1-3% (by weight) will impart excellent rub and mar resistance and surface slip to printing inks, paints and coatings. Due to the fine particle size of MPP-620, prior compounding or grinding…  Read More »
July 17, 2013
MPP-615 waxes are finely micronized Polyethylenes produced from a unique Polyethylene polymer. Additions of 1-3% (by weight) will impart excellent rub and mar resistance and surface slip to printing inks, paints and coatings. Due to the extra fine…  Read More »
July 17, 2013
MPP-615 waxes are finely micronized Polyethylenes produced from a unique Polyethylene polymer. Additions of 1-3% (by weight) will impart excellent rub and mar resistance and surface slip to printing inks, paints and coatings. Due to the extra fine…  Read More »
July 17, 2013
MPP-611XF is a finely micronized polyethylene wax that has been processed to a NPIRI grind gauge reading of 1.0-1.5. Due to fine particle size ofMPP-611XF, prior compounding or grinding is not necessary. Incorporation into most inks or coatings ca…  Read More »
July 17, 2013
MPP-611 is a finely micronized polyethylene wax that has been processed to a NPIRI grind gauge reading of 2.0-3.0. Additions of 1-3% (by weight) will impart excellent rub and mar resistance and surface slip to printing inks, paints and coatings.…  Read More »
July 17, 2013
MPP-480 is a micronized polyethylene wax designed to increase abrasion resistance and anti-blocking characteristics in liquid or paste printing inks as well as industrial paints and coatings. MPP-480 is characterized by its ease of dispersion and l…  Read More »
July 17, 2013
MPP-308F is a micronized economical polyethylene wax designed to impart mar and abrasion resistance characteristics in printing inks as well as paints and coatings. MPP-308F is ideally suited for use in powder coatings as a de-gassing additive fo…  Read More »
July 17, 2013
MPP-230 is a micronized economical polyethylene wax designed to impart abrasion resistance and slip characteristics in liquid or paste printing inks as well as paints and coatings. Addition of MPP-230 is simplified by its fine particle size which…  Read More »
July 17, 2013
MPP-230 is a micronized economical polyethylene wax designed to impart abrasion resistance and slip characteristics in liquid or paste printing inks as well as paints and coatings. Addition of MPP-230 is simplified by its fine particle size which…  Read More »
July 17, 2013
MPP-1241 is a high melt point, crystalline form of polyethylene powder controlled to a mean particle size of 20.0 - 25.0 microns. The nature of this product makes it perfect for use as a dusting agent in hot-melt adhesives.…  Read More »
July 17, 2013
MPP-123 is a micronized polyethylene wax that will impart excellent abrasion resistance when incorporated at low levels into all types of printing inks, paints and other types of surface coatings. MPP-123 can be directly added to most systems by si…  Read More »
July 15, 2013
MP-28C is a special grade of micronized synthetic wax that has been processed to produce a spherical shape and narrow particle size distribution for easier dispersion into printing inks, paints and coatings. MP-28C will impart a smooth and slippery…  Read More »
July 15, 2013
MP-22XXF WAX is a micronized synthetic wax that will impart a high degree of abrasion resistance and slip into almost any type of surface coating. Prior compounding and grinding are eliminated by the use of this fine powder which can be readily dis…  Read More »

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