Research Outcomes
We strive for constant technological development and quality improvement.
-
Regional industry-focused technology development project - 2023
Development of a high-tensile steel (1500Mpa) coil leveler system for roll forming electric vehicle battery frame
Effect of task development outcomes
- Established design capabilities for the leveling system device
- Acquired manufacturing technology for a high-tensile steel (1500MPa) coil leveler
- Secured hydraulic system technology for the high-tensile steel (1500MPa) coil leveler unit
- Obtained full program control and fabrication technology for the high-tensile steel (1500MPa) coil leveler system
-
Development project for a component,material and equipment company - 2020
Industrial robot rotary positioner development
Effect of task development outcomes
- 5 types of positioners and commercialized
- plan to widen global market for core technology secure
- global export extension
- Set up a goal to be a hidden champion on component,material and equipment
-
Convergence in Robot industry - 2019
Fabricated the industrial robot’s 0.5 ton 2-axis positioner prototype
Effect of task development outcomes
- Secured the precision for a 0.5-ton-level positioner applied with 2 axes (T-axis and R-axis)
- Applied durability and precision achieved with an hourglass reducer
- Fabricated a prototype applied with 2-axis servo control and a reducer’s assembly technology
-
Region’s key technology development project - 2018
Rotary cylindrical cam servo stretch bending technology for automobile door & aluminum CHNL molding
Effect of task development outcomes
- Developed a rotation device for the rotary cylindrical cam table secured with high position precision and durability
- Secured the speed and position precision control technology for the stretch tension device
- Secured the max. 1.5-ton-level tension capability, speed (max. 140mm/sec), and servo position precision (within ±0.5) technology
- Secured molding load tension and directional load control technology
- Realized the up/down/left/right tension balancing device’s 3D molding technique applied with position control technology
- Secured 3D bending technology for controlling torsion
-
Export company’s technology development project - 2018
Developed the roll forming & bending mold technology for hard-to-form lightweight metal (AL Alloy) Door Frames
Effect of task development outcomes
- Completed developing the roll forming & bending mold technology for hard-to-form lightweight metal (AL Alloy) Door Frames
- Various application to automobile's aluminium parts (chassis and bodywork parts)
- Automobile parts and other aluminum alloy bending parts
- Embodied the figure precision of ±0.4mm or less
- Embodied the cutting sectional precision of ±0.8mm or less
- Embodied the door frame’s external measurement precision of ±0.4mm or less
- Embodied the position precision of ±0.4mm or less
-
Commercialization support project for entry into the global market of automobile convergence parts - 2017
Conference for automobile part export to Malaysia
Effect of task development outcomes
- Export consultation for bending machines, forming machines, positioners, etc
- Secured the overseas marketing business course
- Opened the way for exporting the aluminum ROOF RACK bending machine
-
Product process technology development project - 2016
Developed a rotary barrel cam type positioner
Effect of task development outcomes
- Developed a 5-ton-level rotary positioner applied with a barrel cam
- Developed equipment with improved precision, noise, and durability
- Secured price competitiveness (reduced price by 15% compared to the previous cost)
- Developed the system applied with barrel cam and wireless bearing
- Developed position precision and structural simplification for height reduction
-
First Step Project - 2015
Developed mold design technology for bending for automobile channel molding
Effect of task development outcomes
- Secured springback interpretation technology for bending (Software)
- Secured channel mold design technology
- Secured molding error (springback) correction technology