Attention is drawn to a painting alternative method that grants functionality! The dimple effect of golf balls applied to automobile bodies!
"Neo-TOM molding" is a method that has evolved the TOM process for decorating ultra-large products (such as automobile bodies). A major feature is that while conventional jigs were solid, this method utilizes gas, allowing for the coating of surface materials on substrates with complex shapes that have cavities, without deformation or damage. While maintaining the uniqueness of the TOM process, the substrate (product) can be ultra-large (heavy) and is fixed in a designated position, allowing for a reduction in the weight of the equipment as the surface film side descends. 【Features】 ■ Decoration is possible on substrates made of aluminum, magnesium alloys, ceramics, etc. ■ Expresses a genuine texture with "textures" that cannot be achieved by other methods. ■ Gaining attention as an alternative method for coating that imparts functionality. ■ Can decorate ultra-large products (such as automobile bodies). *For more details, please refer to the PDF document or feel free to contact us.
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【Equipment】 ■ Air pressure forming machine: CUPF-1222-PWB-80t ■ NGF forming machine: NGF-0512-RS ■ Laser trimming machine: LTM-0305-12K *For more details, please refer to the PDF document or feel free to contact us.
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For more details, please refer to the PDF document or feel free to contact us.
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Busei Vacuum Co., Ltd. is highly regarded as an innovative company that combines a molding processing division with a manufacturing division for molding machines, aimed at developing processing technologies related to thermoforming and realizing the concretization of those technologies. In pursuit of further development, we have established the next-generation molding (NGF molding) technology to explore the market for environmentally conscious decorative technologies. As an alternative processing method to painting and plating, it is being recognized for its future potential across the entire industry as a surface treatment method that enhances the functionality of the base materials for fork products.








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