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    200,000 satellites set to launch? Opportunities and pitfalls in 3D-printing startups: Only by finding the right niche can you unlock real financial potential.

    2026-01-13

    200,000 satellites set to launch? Opportunities and pitfalls in 3D-printing startups: Only by finding the right niche can you unlock real financial potential.

    On January 10, 2026, China’s announcement that it had submitted a single application to the International Telecommunication Union for frequency and orbital resources for over 200,000 satellites sent shockwaves through the industry—this number is five times greater than SpaceX’s Starlink project (42,000 satellites), marking the entry of China’s commercial space sector into a brand-new phase of large-scale development. The explosive growth of the commercial space industry will inevitably drive an expansion in demand across the upstream manufacturing supply chain. As a core enabling technology for satellite and rocket manufacturing, 3D printing has become an entrepreneurial opportunity that cannot be overlooked. However, not everyone can reap the benefits of this booming trend; 3D-printing entrepreneurs must clearly identify their specific market niches and carefully manage risks if they hope to capture this wave of industrial rewards.

    Completed the journey from concept to test runs in just two years! AI + 3D printing is reshaping the R&D paradigm for rocket engines, with global breakthroughs happening in parallel with China’s practical advancements.

    2026-01-12

    Completed the journey from concept to test runs in just two years! AI + 3D printing is reshaping the R&D paradigm for rocket engines, with global breakthroughs happening in parallel with China’s practical advancements.

    3D printing has become a cornerstone of aerospace engine manufacturing, and the integration of AI technology is now propelling this field to new heights of “accelerated R&D.” From the debut in 2022 of the world’s first AI-designed 3D-printed rocket engine prototype, to the completion of its first hot-fire test by the end of 2024, and then to the realization of a higher-thrust model by 2025—within just two years, the combination of AI and 3D printing has achieved a critical leap from concept to engineering validation. This synergistic technology not only shortens the R&D cycle from several years to just a few weeks but also unlocks complex structural designs that would have been impossible to achieve using conventional methods, injecting fresh momentum into the competitive landscape of commercial spaceflight. Drawing on global benchmark cases and domestic implementation practices, this article provides an in-depth analysis of the core logic and industry-wide impact of the AI-plus-3D-printing transformation reshaping rocket engine R&D.

    Shenzhen’s 3D-printing “army” sweeps the globe: The consumer market is becoming increasingly accessible, but how far are we from 100-yuan printers?

    2026-01-10

    Shenzhen’s 3D-printing “army” sweeps the globe: The consumer market is becoming increasingly accessible, but how far are we from 100-yuan printers?

    Shenzhen’s 3D-printing “army” sweeps the globe: The consumer market is becoming increasingly accessible, but how far are we from affordable 100-yuan printers?

    8 types of 3D Printed Furniture Models: Focusing on Sustainability, Craftsmanship, and Heritage

    2026-01-10

    8 types of 3D Printed Furniture Models: Focusing on Sustainability, Craftsmanship, and Heritage

    8 types of 3D Printed Furniture Models: Focusing on Sustainability, Craftsmanship, and Heritage

    A rapid breakthrough in just 12 months! China’s MWS200 3D-printed turbofan engine has successfully completed its first ignition, paving the way for the localization of high-end drone propulsion systems.

    2026-01-09

    A rapid breakthrough in just 12 months! China’s MWS200 3D-printed turbofan engine has successfully completed its first ignition, paving the way for the localization of high-end drone propulsion systems.

    Another significant breakthrough has been achieved in China’s aerospace propulsion field! According to reports from 3D Printing Technology Reference, on December 23, 2025, the MWS200 turbofan engine—developed by Luzhou Maowei Technology Co., Ltd.—successfully completed its first ignition on the first attempt, marking a key milestone in the verification of this engine model’s overall design, precision manufacturing, and system integration reliability. Notably, this engine, targeted for high-end drones and unmanned aerial vehicles (UAVs), features 3D-printed components accounting for as much as 50% of its total parts. Moreover, from the project’s inception in early 2025 to the successful ignition, the entire development process took less than 12 months. This achievement not only highlights China’s industrial strength in additive manufacturing technology but also paves a new path toward the domestic production of high-end UAV propulsion systems.

    10 commonly used 3D modeling software programs (some are free)

    2026-01-09

    10 commonly used 3D modeling software programs (some are free)

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