芳纶腱绳材料
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泰和新材:公司正在布局机器人领域用芳纶材料
Zheng Quan Shi Bao Wang· 2025-10-23 02:49
Core Viewpoint - The company is actively expanding into the robotics sector by developing aramid materials that enhance safety and performance in robotic applications [1] Group 1: Product Development - The company has developed aramid explosion-proof fabric, which combines high-strength aramid fabric with inorganic materials, providing flame-retardant and explosion-proof characteristics for battery protection in robots [1] - The company has created aramid impact-resistant composite materials, which consist of high-impact aramid fabric combined with impact-resistant resin and lightweight metal materials, suitable for robot shells and transmission components [1] - The company's subsidiary produces aramid paper, which can be used as insulation material for servo motors and inductors in industrial robots [1] - The company is also working on developing aramid tendon materials to enhance the efficiency, flexibility, and longevity of robotic hands [1]
泰和新材:公司正在布局开发芳纶腱绳材料,提升灵巧手的高效、灵活、高寿命特性
Mei Ri Jing Ji Xin Wen· 2025-10-23 01:24
Core Viewpoint - The company is actively developing aramid materials for application in the robotics sector, indicating a strategic focus on enhancing safety and performance in robotic technologies [1]. Group 1: Product Development - The company has developed aramid explosion-proof fabric, which combines high-strength aramid fabric and inorganic materials, providing flame-retardant and explosion-proof characteristics to create a safety barrier for robot batteries [1]. - The company has created aramid impact-resistant composite materials, which consist of high-impact aramid fabric combined with impact-resistant resin and lightweight metal materials, suitable for use in robot shell equipment and transmission components [1]. - The company's subsidiary produces aramid paper, which can be used as insulation materials for industrial robot servo motors and inductors [1]. - The company is in the process of developing aramid tendon materials to enhance the efficiency, flexibility, and longevity of robotic hands [1].