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Test for the deep:magnetic loading characterization of elastomers under extreme hydrostatic pressures
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作者 Yukai Zhao Chengqian Zhang +6 位作者 Xuxu Yang Xunuo Cao Tao Feng fanghao zhou Xuanqi Wang Peng Zhao Tiefeng Li 《International Journal of Extreme Manufacturing》 SCIE EI CAS CSCD 2024年第5期311-322,共12页
Soft robot incarnates its unique advantages in deep-sea exploration,but grapples with high hydrostatic pressure’s unpredictable impact on its mechanical performances.In our previous work,a self-powered soft robot sho... Soft robot incarnates its unique advantages in deep-sea exploration,but grapples with high hydrostatic pressure’s unpredictable impact on its mechanical performances.In our previous work,a self-powered soft robot showed excellent work performance in the Mariana Trench at a depth of 11000 m,yet experienced notable degradation in deforming capability.Here,we propose a magnetic loading method for characterizing elastomer’s mechanical properties under extremely high hydrostatic pressure of up to 120 MPa.This method facilitates remote loading and enables in-situ observation,so that the dimensions and deformation at high hydrostatic pressure are obtained and used for calculations.The results reveal that the Young’s modulus of Polydimethylsiloxane(PDMS)monotonously increases with pressure.It is found that the relative increase in Young’s modulus is determined by its initial value,which is 8% for an initial Young’s modulus of 2200 kPa and 38% for 660 kPa.The relation between initial Young’s modulus and relevant increase can be fitted by an exponential function.The bulk modulus of PDMS is about 1.4 GPa at 20℃ and is barely affected by hydrostatic pressure.The method can quantify alterations in the mechanical properties of elastomers induced by hydrostatic pressure,and provide guidance for the design of soft robots which serve in extreme pressure environment. 展开更多
关键词 ELASTOMER hydrostatic pressure mechanical property CHARACTERIZATION
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自供电软机器人成功挑战马里亚纳海沟 被引量:1
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作者 陈祥平 周方浩 +2 位作者 李国瑞 曹许诺 李铁风 《科学通报》 EI CAS CSCD 北大核心 2022年第23期2697-2699,共3页
海水覆盖了地球约71%的表面积,并孕育了独特的生物,而海底拥有多样的地质特征和丰富的矿产资源.一直以来,人类在不停追求对深海的探索.深海通常按照深度不同可划分为中层带(200~1000 m)、深层带(1000~4000 m)、深渊带(4000~6000 m)与超... 海水覆盖了地球约71%的表面积,并孕育了独特的生物,而海底拥有多样的地质特征和丰富的矿产资源.一直以来,人类在不停追求对深海的探索.深海通常按照深度不同可划分为中层带(200~1000 m)、深层带(1000~4000 m)、深渊带(4000~6000 m)与超深渊带(6000 m以上).随着深度的增加,环境压力也以1 atm/10 m的速度增加.特别是在深渊带与超深渊带,这里水压高、完全黑暗、温度低,生物分布也极其稀少. 展开更多
关键词 矿产资源 生物分布 环境压力 自供电 机器人
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