Abstract:
The present invention provides a resin modifier capable of obtaining a coating film having satisfactory basic performances such as antistatic properties, water resistance and transparency, a method for producing a coating film using the resin modifier, and a coating film obtained by the production method. The resin modifier of the present invention is a resin modifier represented by R 31 -O-(AO) n -SO 3 -, R 32 -OSO 3 - , or R 33 -SO 3 - and an ammonium ion that has a polymerizable unsaturated group.
Abstract:
PROBLEM TO BE SOLVED: To provide a resin composition for lamination which has excellent heat seal strength and antistatic properties and has substantially improved slip properties, and to provide a laminate using the composition, and a method for producing the laminate.SOLUTION: The resin composition for lamination is obtained by compounding a polyethylene resin (A) containing a specific ethylene-α-olefin copolymer (A1) with at least an antistatic agent (B) comprising (b1) 0.10-0.50 pt.wt. of a glycerin-fatty acid monoester, (b2) 0.01-0.1 pt.wt. of a polyoxyalkylene alkylamine, (b3) 0.01-0.1 pt.wt. of an aliphatic alcohol, and (b4) 0.01-0.1 pt.wt. of a metal alkylsulfonate, based on 100 pts.wt. of the polyethylene resin (A). The compounding weight ratio of (b1)/(b4) is 1.5-3.0 and that of (b2)/(b4) is 0.3-1.3.
Abstract:
PROBLEM TO BE SOLVED: To provide an antistatic polypropylene resin composition capable of suppressing generation of a scattered gas at a high temperature such as molding and reducing troubles such as environmental pollution or molding defect without lowering an antistatic property or a slipping property. SOLUTION: This antistatic resin composition is obtained by compounding a polypropylene resin with (A) a glycerol fatty acid ester containing 40-80 wt.% of monoester and 20-50 wt.% of diester (the fatty acid composing the ester is a 12-22C saturated fatty acid) and (B) a mixture of alkyldiethanolamine and a fatty acid monoester of alkyldiethanolamine.
Abstract:
PROBLEM TO BE SOLVED: To obtain an antistatic composition that is improved in its handleability and can solve the troubles such as fusing or feeder blockage by using an anionic surfactant and an aliphatic higher alcohol at a specific ratio. SOLUTION: This composition comprises (A) an anionic surfactant such as an alkane sulfonate salt of the formula.P SO3 M (R is a 10-18C alkyl; M is an alkali metal) and (B) an aliphatic higher alcohol of the formula: R -OH (R is a 16-36C alkyl), typically 1-octadecanol, 1-eicosanol, 1-docosanol or the like at a weight ratio (A/B) of 80/20 to 60/40, preferably 70/30 to 60/40. The composition is molten with heat and granulated by funnel granulation, spray cooling, crushing, and the like.
Abstract:
PURPOSE:To improve cleaning performance and to expand the life of a blade by containing an antistatic agent for preventing the generation of frictional electrification in a material constituting a rubber elastic body. CONSTITUTION:The antistatic agent is contained in the material of the cleaning blade 1 consisting of the rubber elastic body. Thereby, toner particles stuck to the edge face of the blade are comparatively prevented from being scattered by repulsion caused by the electrification of the blade due to friction with a photosensitive drum 5 and the adhesion of sufficient quantity of toner to the edge face of the blade can be attained within an extremely short period. The toner particles stuck to the edge face of the blade act as lubricant and the application of excess stress into the blade can be suppressed. Consequently, the cleaning performance can be improved, friction on the edge face of the blade, especially tearing destruction on both the end parts of the edge face, can be removed and the long-life cleaning blade can be obtained.
Abstract:
PURPOSE:An antistatic agent for styrenic resin having a specific structure, providing antistatic properties with a small amount without damaging physical properties, obtained by condensation of a fatty acid and monoethanolamine through dehydration, etc. CONSTITUTION:A styrenic resin (e.g., transparent polystyrene, ABS, etc.) is blended with 0.1-5wt% compound shown by the formula (R' is 7-11C alkyl or alkenyl; n is 1-3).
Abstract:
PROBLEM TO BE SOLVED: To provide a method for producing a polyolefin resin composition, excellent in antistatic performance and hardly causing yellowing over a long period of time.SOLUTION: A method for producing a polyolefin resin composition includes the following steps (1)-(3). In a step (1), a 8-22C fatty acid and/or an methyl ester thereof (a) and a diethanolamine (b) are charged at a molar ratio [(b)/(a)] of 0.95-1.2, and subjected to a condensation reaction until an unreacted percentage of the fatty acid and/or the methyl ester thereof (a) charged by the unreacted fatty acid and/or the methyl ester thereof (a) is decreased to 2 mol% or less to obtain a crude product of a fatty acid diethanolamide. In a step (2), the crude product obtained through the step (1) is maintained for one day or more at 40-80°C to obtain a fatty acid diethanolamide (A). In a step (3), the fatty acid diethanolamide (A) obtained through the step (2), an alkanesulfonate (B) having an 8-22C alkyl group, a phenol-based oxidation inhibitor (C) and a polyolefin resin (D) are mixed.
Abstract:
PROBLEM TO BE SOLVED: To provide a resin composition for lamination which has excellent adhesive strength to substrates, excellent cuttability and antistatic properties, and has substantially improved heat seal strength, and to provide a laminate using the composition, and a method for producing the laminate.SOLUTION: The resin composition for lamination is obtained by compounding a polyethylene resin (A) obtained by a high pressure radical polymerization method, wherein a melt flow rate (MFR) of the resin measured at 190°C under a load of 21.18 N is 1-100 g/10 min and density is 0.91-0.97 g/cm, with at least an antistatic agent (B) comprising (b1) a fatty acid glycerol ester, (b2) a polyoxyalkylene alkylamine, (b3) an aliphatic alcohol, and (b4) a metal alkylsulfonate each in a specific amount based on 100 pts.wt. of the polyethylene resin (A). The compounding weight ratio of (b1)/(b4) is 1.5-3.0 and that of (b2)/(b4) is 0.3-1.3.