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Servo pressurized robot hemming system(2)
The robot hemming system developed in 1991 is a groundbreaking system that offers numerous advantages compared to traditional press hemming and tabletop hemming methods. In 2013, the conventional mechanism was completely revamped. The method of applying pressure with the rollers was changed from hydraulic control to servo motor control, and a dedicated control function for hemming processing was added, resulting in the release of the servo pressure-type robot hemming system.
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Robot Machining System(5)
The "Robot Machining System" has mounted a machining spindle motor developed specifically for robots at the tip of a 6-axis articulated robot arm, enabling various machining processes.
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Robot Polishing System(2)
A system has been developed that applies the technology of the Hemming system to perform polishing of resin products and sheet metal using robots while adjusting fine forces. Compared to the processes carried out by hand, this significantly improves work efficiency and standardizes quality. It also addresses issues such as time loss due to over-quality.
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Robot FSW(2)
Friction Stir Welding (FSW) is a joining method developed as an alternative to fusion welding. It has various characteristics, such as reducing the correction work for joints, minimizing deformation, and enabling the joining of different materials, which has garnered particular attention in recent years from industries like automotive and aerospace. Tri Engineering has systematized this joining method, which has significant advantages, by combining it with proprietary robotic technology. In addition to characteristics that can be realized through automation, such as reducing the installation area of the equipment and expanding the versatility of line construction, the adoption of a one-sided pressure application method has improved processing flexibility and made it possible to accommodate variations in workpiece thickness.
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Robot Roll Forming(2)
"Robot Roll Forming" is a product that realizes processing traditionally done by dedicated roll forming machines or brake presses using robots, making it suitable for space reduction and automation.
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Robot sponge sealing(3)
"Robot Sponge Sealing" has realized the application of sealing sponge materials, which was traditionally done manually, using robots.
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3D PRINT JIG(3)
Traditionally, the production of jigs has faced various constraints such as material shapes and processable shapes, which have led to dissatisfaction among workers due to issues like "difficult to hold" and "heavy." Therefore, since 2011, Torai Engineering has been manufacturing freely designed jigs made of ABS resin, utilizing the characteristics of FDM (Fused Deposition Modeling) 3D printers. We sell lightweight, easy-to-hold, and user-friendly jigs.
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Robot simulation software(2)
As a sales agent for Senit Japan Co., Ltd., the robot simulation software 【FASTCURVE】 provided by Tri Engineering is an extension package developed on DELMIA V5 Robotics. It can be used without data conversion for product models created in CATIA V5, as well as other work models created in DELMIA V5. Additionally, it allows for easy offline teaching of robot motion definitions from the edges and contours of product parts (3D models). At Tri Engineering, we are utilizing this product in our main offerings, the robot hemming system and the laser cutting system 【VOTAN-BIM】, achieving significant results.
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Robot laser cutting system(1)
In recent years, the practical application of industrial laser processing systems has become widespread, gaining attention as an important technology field, especially for materials that were traditionally difficult to process. Therefore, Tri Engineering has collaborated with Jena Optical Japan Co., Ltd. to provide a robot laser cutting system, VOTAN BIM, centered around the laser cutting robot (JENOPTIK-VOTAN BIM) manufactured by Jena Optical in Germany. Using a laser processing robot equipped with a cutting head as the basic system, Tri Engineering designs and manufactures peripheral equipment, dedicated jigs, and system controls, while also managing quality through teaching. Additionally, we perform total system upgrades by combining with peripheral devices and provide optimal system proposals that incorporate customer specifications.