A non-aqueous hot melt coating composition consisting of a thermoplastic rubber block copolymer, a polyethylene wax and a low molecular weight resin compatible with the end styrenic block of the rubber block copolymer is useful as a hot melt size.
Non-aqueous coatings for glass fibers consist essentially of a cycloaliphatic epoxy resin, an ethylene-ethylacrylate copolymer, a microcrystalline wax, a phenolic-modified terpene resin, and an organosilane. Glass fibers coated with the composition of the present invention are suitable for being utilized as reinforcement media for various polymeric resins including nylon, rubber modified styrene-maleic anhydride copolymer, acetal, and polybutyl terphthalate.
An aqueous starch-based corrugating adhesive containing casein, a carboxylated styrene-butadiene copolymer latex and preferably glyoxal is used to adhere liner and medium substrates having normally abherent surfaces.
This invention relates to relatively thick pressure sensitive adhesive films comprising a homogeneous mixture based on 100% of the solids weight of the adhesive film, (i) at least 20 weight % of a low molecular weight resin produced by the polymerization and hydrogenation of styrenic monomer feedstock having a ring and ball softening point of about 10.degree.-45.degree. C., (ii) from about 2 to about 40 weight % of a triblock copolymer with a saturated elastomeric block in the center and a thermoplastic block on each end alone or in combination with a diblock copolymer of a hard thermoplastic block and a saturated, soft ethylene-propylene polymeric block, and (iii) up to about 80 weight % of a mineral oil.
A hot melt adhesive consisting essentially of amorphous polypropylene, styrene-based themoplastic elastomer, tackifier and wax having a dissipation factor of about 0.010 or less at 1 kilohertz at 23.degree. C., and a volume resistivity of at least about 1.times.10.sup.14 ohm-cm at 23.degree. C. Such adhesives exhibit good shear strength and shock resistance.
A nonaqueous sizing composition useful for coating glass or carbon fibers. The composition comprises one or more epoxy resins, one or more polymers, a lubricant and one or more silane coupling agents. The sizing composition reduces the volatile organic components associated with chemical treatment of glass and carbon fibers while also eliminating the need to disperse or emulsify the ingredients of the composition.