机器人材料研发
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恒辉安防:在超高分子量聚乙烯纤维用于机器人腱绳材料的开发应用方面,公司研发团队已取得阶段性成果
Ge Long Hui· 2025-08-22 07:51
Core Viewpoint - The company has made progress in the development of ultra-high molecular weight polyethylene fibers for use in robotic tendon materials, achieving a significant milestone with the granting of a patent for a new fiber technology [1] Group 1: Technological Developments - The company has received an invention patent for a technology titled "A Creep-Resistant Ultra-High Molecular Weight Polyethylene Fiber and Its Preparation Method" [1] - The new technology involves innovative fiber surface treatment processes and special weaving structure designs, which effectively optimize the internal stress distribution of the fibers [1] - This advancement significantly enhances the material's resistance to deformation under long-term stress, improving the stability and lifespan of tendon products [1] Group 2: Market Engagement - The company has engaged in multiple rounds of sample communications with several robotic enterprises regarding the developed tendon products [1] - A regular technical communication mechanism has been established with relevant companies to facilitate ongoing collaboration [1] - Currently, the business is still in the continuous development and optimization phase, and no commercial orders have been formed yet [1] Group 3: Future Outlook - The company will promptly announce any new technological breakthroughs or application expansions in accordance with information disclosure requirements [1]
恒辉安防(300952.SZ):在超高分子量聚乙烯纤维用于机器人腱绳材料的开发应用方面,公司研发团队已取得阶段性成果
Ge Long Hui A P P· 2025-08-22 07:24
Core Viewpoint - The company has made significant progress in the development of ultra-high molecular weight polyethylene fibers for use in robotic tendon materials, having received a patent for its innovative technology [1] Group 1: Technological Development - The company’s research team has achieved a milestone with the invention patent titled "A Creep-Resistant Ultra-High Molecular Weight Polyethylene Fiber and Its Preparation Method" [1] - The patented technology enhances the fiber's internal stress distribution through innovative surface treatment and special weaving structure design, significantly improving the material's resistance to deformation under long-term stress [1] Group 2: Market Engagement - The developed tendon products have undergone multiple rounds of sample communication with several robotics companies, establishing a regular technical exchange mechanism with relevant enterprises [1] - Currently, the business is still in the continuous development and optimization phase, and has not yet generated commercial orders [1] Group 3: Future Outlook - The company will adhere to information disclosure requirements and will announce any new technological breakthroughs or application expansions in a timely manner [1]