High applicability and high design freedom! Introduction of technical examples that enhance material properties and create new materials.
This is an introduction to our technology case studies that enhance material properties and create new materials. We redefine injection molding as a technology that utilizes shear flow, imparting innovative material properties. This enables high applicability and a high degree of design freedom. As a potential application, by utilizing Nisshin's long fiber pellets for orientation control, it can become a solution to enhance the strength of the material as a whole or in parts. [Overview] ■ It can become a completely new material that goes beyond the framework of mere products. ■ We redefine injection molding as a technology that utilizes shear flow, imparting innovative material properties. ■ High degree of design freedom. ■ High applicability. *For more details, please refer to the PDF materials or feel free to contact us.
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■Orientation control molding of fillers: Controls the orientation of carbon fibers, glass fibers, talc, etc. In particular, it improves issues such as strength reduction at joints, bulging due to shrinkage differences, and appearance defects through the orientation control of fillers. This technology also addresses the appearance defects that occur as black streaks due to the orientation of paint-free metallic-colored resins. It is important to note that this is orientation control, which differs from weldless molding. ■Paint-free metallic resin molding technology: Demonstrates advantages different from painting and plating. ■Thick-walled molding: Achieves downsizing of molding machines through our unique intrusion (flow molding) technology. Unlike conventional technologies from other companies, it is possible to improve the quality of molded products to be equal to or better than that of standard injection molding. We have trademarked our distinctive technology as Revolution Injection Molding (Rev Inj). ■Flow analysis: Possesses analysis technology where molding engineers (first-class skilled workers) analyze and integrate actual molding phenomena with simulations.