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27
2026-06
Thermal Deformation Suppression Technology: Ensure Long-Term Precision Operation of Full-Range Laser Equipment
Continuous high-power laser cutting, long-duration batch processing will generate cumulative thermal radiation, friction heat and laser residual heat inside the machine frame, beam guide components and cutting beds. Uncontrolled thermal expansion and contraction will cause thermal deformation of core structural parts, leading to focal drift, dimensional tolerance overrun and unstable cutting consistency, which seriously restricts the long-term precision stability of laser equipment. This paper systematically elaborates our self-developed full-chain thermal deformation suppression technology, covering bed stress relief, layered heat isolation, real-time temperature closed-loop compensation and air-cooled heat dissipation integration. Combined with practical test data, this technology effectively restrains thermal displacement of key components, maintains stable machining accuracy under 24-hour non-stop production, and provides reliable precision guarantee for metal processing factories with high-volume continuous orders.
2026-06-27
11
Energy Field Precise Regulation: Unlock the Scientific Secrets of High-Power Fiber Laser Cutting
2026-06-11
29
2026-05
Synergy between mechanics and optics: The core technology for stable operation of laser exchange platforms
The stable operation of laser exchange platforms is never the victory of a single mechanical or optical system, but the in-depth coupling and dynamic collaboration of rigid mechanical mechanics support and precise controllable optical systems. In 2026, with the continuous empowerment of AI, new materials and digital twin technology, opto-mechanical collaboration will evolve toward higher precision, higher efficiency and greater intelligence, injecting stronger stability and reliability into laser cutting equipment and helping the manufacturing industry upgrade from traditional manufacturing to intelligent manufacturing. As a professional manufacturer focusing on the R&D and production of laser cutting machines, we deeply cultivate core opto-mechanical collaboration technologies. We polish the stability of exchange platforms in the whole link including structural design, precision manufacturing and intelligent control, providing customers with high-precision, high-efficiency and high-stability laser cutting solutions to empower industrial upgrading and create manufacturing value together.
2026-05-29
07
Fiber laser beam propagation mechanism: the underlying research logic of full-power cutting equipment
Fiber lasers rely on fiber structure, the principle of total internal reflection of light, and a complete optical path to achieve low-loss beam transmission. At the same time, they overcome industry challenges such as high-power transmission attenuation and beam distortion under full-power conditions, and achieve stable power transmission across the entire range through structural optimization, beam coupling, and flying optical path technology.
2026-05-07
13
2026-02
Industrial applications of laser cutting machines
Electronics industry: Laser cutting machines are used in the electronics industry for cutting and shaping small and delicate components such as circuit boards, microchips, and sensors. The high precision and accuracy of laser cutting machines ensure that electronic components are produced with minimal errors and defects.
2026-02-13
28
The Rise of Handheld Laser Welding
2026-02-28