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Exploring New Possibilities in Intelligent Manufacturing | Falcontech at the 2024 Mechatronics Conference

From October 17th to 19th, 2024, the 2024 Mechatronics Academic Conference was grandly held in Guilin, Guangxi. The theme of this conference is "Cross-domain Collaborative Innovation·Mechatronics Empowering New Quality", focusing on basic research, intelligent manufacturing technology, advanced engineering applications and other directions in the field of mechatronics. Falcontech participated in this conference with advanced additive manufacturing design concepts and exhibits to promote technological innovation, academic exchanges and industrial integration in the field of mechatronics systems, and to inject attention to the development of the industry...

Exploring New Possibilities in Intelligent Manufacturing | Falcontech at the 2024 Mechatronics Conference

From October 17th to 19th, 2024, the 2024 Mechatronics Academic Conference was grandly held in Guilin, Guangxi. With the theme of "Cross-Domain Collaborative Innovation·Mechatronics Empowering New Quality", this conference focuses on basic research, intelligent manufacturing technology, advanced engineering applications and other directions in the field of mechatronics. Falcontech participated in this conference with advanced additive manufacturing design concepts and exhibits to promote technological innovation, academic exchanges and industrial integration in the field of mechatronics systems, and to inject new vitality into the development of the industry.

Explore Thousands of Possibilities and Empower Intelligent Manufacturing | Review of Falcontech’s 2024 Mechatronics Academic Conference

Wang Qi, Sales Director of Falcontech, was invited to give a keynote speech on "Application of Additive Manufacturing Technology in Avionics Thermal Management Systems". Wang Qi discussed with the guests the design experience of thermal management products based on additive manufacturing and the development and prospects of thermal management systems based on the current development status of additive manufacturing technology, comparison of the advantages and disadvantages of additive manufacturing processes in the field of heat dissipation and heat exchange, advanced design cases, and industrial applications of thermal management systems, starting from the dimensions of material selection, functional integration design, and thermal simulation calculations.

Explore Thousands of Possibilities and Empower Intelligent Manufacturing | Review of Falcontech’s 2024 Mechatronics Academic Conference

Explore Thousands of Possibilities and Empower Intelligent Manufacturing | Review of Falcontech’s 2024 Mechatronics Academic Conference

heat sink

Material:AlSi10Mg

Structural features:The radiator structure is based on heat transfer simulation cloud diagram design, using bionics to design a tree-shaped crown structure. Each branch is evenly distributed and the structure is closely refined, so it can provide a larger contact area and improve heat dissipation efficiency. At the same time, thick branches and branches provide wider heat transfer channels and reduce thermal resistance.

Explore Thousands of Possibilities and Empower Intelligent Manufacturing | Review of Falcontech’s 2024 Mechatronics Academic Conference

Explore Thousands of Possibilities and Empower Intelligent Manufacturing | Review of Falcontech’s 2024 Mechatronics Academic Conference

Heat dissipation cold plate (cooling channel)

Material:TC4

Structural features:The TPMS structure is widely found in nature. As a three-dimensional curved structure of periodic repeating units, it has a smooth surface without sharp turns and connection points. This allows the structure to have better fluidity when passing through the fluid, and the smooth transition can appropriately reduce the flow resistance. The repetitive multi-faceted structure provides better heat dissipation when passing through thermal fluid.

Explore Thousands of Possibilities and Empower Intelligent Manufacturing | Review of Falcontech’s 2024 Mechatronics Academic Conference

About Falcontech

Through more than ten years of R&D work, Falcontech has completed the development and optimization of laser parameters, verification of processing platform stability, post-processing process development and optimization, and surface treatment process development and optimization, breaking through the stability, consistency, repeatability, shape controllability and other problems of the 3D printing process. It has completed the development of laser scanning parameters and optimization of heat treatment processes for more than 40 metal materials such as titanium alloys, aluminum alloys, high-temperature alloys, copper alloys, and stainless steel, and established a mature whole-process process system for parts processing. Established metal powder raw material specifications, 3D printing technical specifications and post-processing specifications, metal powder raw material performance database and 3D printing metal material mechanical properties database. In the future, Falcontech will continue to innovate, improve technology, strengthen cross-border integration, and contribute to the promotion of China's electronic machinery technology!

Explore Thousands of Possibilities and Empower Intelligent Manufacturing | Review of Falcontech’s 2024 Mechatronics Academic Conference

Editor: Wang Jinyu

Check: Wang Yun

Approval: Zou Yuhong