Thermoplastic resin composition, cellulose-reinforced thermoplastic resin composition, method for producing cellulose-reinforced thermoplastic resin composition, cellulose-reinforced resin molded article, and method for producing cellulose-reinforced resin molded article
A thermoplastic resin and resin composition technology, applied in the field of thermoplastic resin composition, can solve the problems of poor dispersion of cellulose fibers, lack of affinity, difficulty in obtaining mechanical strength, etc., and achieve the effect of improving mechanical strength and reducing incineration ash
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Embodiment 1
[0272] A thermoplastic resin composition composed of 11 parts by mass of cellulose, 1 part by mass of maleic anhydride-modified polyethylene A, and 0.1 part by mass of dialkyl peroxide A was used in a twin-screw extruder with respect to 100 parts by mass of high-density polyethylene. [KZW15TW-45MG-NH manufactured by TECHNOVEL CO., LTD.] was heated and kneaded to obtain pellets of cellulose-reinforced thermoplastic resin.
[0273] Next, a test piece as a molded product for tensile strength evaluation was prepared using an injection molding machine [Robot shot α-30C manufactured by FANUC CORPORATION] with respect to the above-mentioned pellets.
Embodiment 2~5
[0275] In the thermoplastic resin composition of Example 1, except that the compounding amount of the maleic anhydride-modified polyethylene A was changed as shown in the following Table 1, moldings for tensile strength evaluation were produced in the same manner as in Example 1. sample of the product.
Embodiment 6
[0277] In the thermoplastic resin composition of Example 1, 11 parts by mass of cellulose, 2 parts by mass of maleic anhydride-modified polyethylene A, and 0.05 parts by mass of dialkyl peroxide A were changed to 100 parts by mass of high-density polyethylene. Except that, a test piece as a molded product for tensile strength evaluation was produced in the same manner as in Example 1.
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