Abstract:
Disclosed is a method for producing a rubber-modified styrenic resin. The method includes the steps of (a) producing a rubber solution by dissolving a rubber polymer in a vinyl monomer; (b) producing a rubber composition by continuously supplying the above rubber solution in a first reactor to polymerize the rubber polymer with the vinyl monomer at a reaction temperature of 120°-145° C. to perform phase inversion of the rubber polymer, thereby producing the polymer of conversion ratio of 10-40 wt %, and realized through 50-99% of rubber particles having an average particle diameter of 0.1-0.5 &mgr;m, and 1-50% of rubber particles having an average particle diameter of 1-5 &mgr;m; (c) performing polymerization until conversion ratio reaches 70-90% by continuously supplying a reactant solution produced in the first reactor in a second, third and fourth reactor; and (d) separating the polymer containing a rubber component from unreacted monomer by continuously supplying a reaction solution resulting from the fourth reactor to a devolatilizer.
Abstract:
A structure for mounting a horizontal hood latch to an automobile includes an upper panel of a front-end module and a bracket over-molded onto the upper panel of the front-end module. A pair of through-openings are provided on opposite side portions of the bracket that allow both surfaces of the bracket to be coated by plastic material and the bracket to be mounted onto the upper panel, as the plastic material is poured thereon.
Abstract:
A structure for mounting a horizontal hood latch to an automobile includes an upper panel of a front-end module and a bracket over-molded onto the upper panel of the front-end module. A pair of through-openings are provided on opposite side portions of the bracket that allow both surfaces of the bracket to be coated by plastic material and the bracket to be mounted onto the upper panel, as the plastic material is poured thereon.