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Design optimization of a sensitivity-enhanced tilt sensor based on femtosecond fiber bragg grating
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作者 Nutsuglo Theophilus GUO Yong-xing +3 位作者 ZHOU Wan-huan YU Hai-sheng REN Ru-hua SHEN Shun-an 《中国光学(中英文)》 北大核心 2025年第4期908-920,共13页
Aiming at the requirement for high-precision tilt monitoring in the field of structural health monitoring(SHM),this paper proposes a sensitivity-enhanced tilt sensor based on a femtosecond fiber Bragg grating(FBG).Fir... Aiming at the requirement for high-precision tilt monitoring in the field of structural health monitoring(SHM),this paper proposes a sensitivity-enhanced tilt sensor based on a femtosecond fiber Bragg grating(FBG).Firstly,structural design of the tilt sensor was conducted based on static mechanics principles.By positioning the FBG away from the beam’s neutral axis,linear strain enhancement in the FBG was achieved,thereby improving sensor sensitivity.The relationship between FBG strain,applied force,and the offset distance from the neutral axis was established,determining the optimal distance corresponding to maximum strain.Based on this optimization scheme,a prototype of the tilt sensor was designed,fabricated,and experimentally tested.Experimental results show that the FBG offset distance yielding maximum sensitivity is 4.4 mm.Within a tilt angle range of−30°to 30°,the sensor achieved a sensitivity of 129.95 pm/°and a linearity of 0.9997.Compared to conventional FBG-based tilt sensors,both sensitivity and linearity were significantly improved.Furthermore,the sensor demonstrated excellent repeatability(error<0.94%),creep resistance(error<0.30%),and temperature stability(error<0.90%).These results demonstrate the sensor’s excellent potential for SHM applications.The sensor has been successfully deployed in an underground pipeline project,conducting long-term monitoring of tilt and deformation in the steel support structures,further proving its value for engineering safety monitoring. 展开更多
关键词 fiber Bragg grating tilt sensor sensitivity-enhanced femtosecond FBG
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板料冲压成形滑移线形成机理及影响因素 被引量:3
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作者 何鑫鑫 李贵 方学彬 《塑性工程学报》 CAS CSCD 北大核心 2023年第4期53-60,共8页
通过理论分析和数值模拟探究了滑移线缺陷的形成机理和滑动过程,分析了影响滑移线产生的相关因素。采用田口法设计正交试验研究了凸模圆角半径、压边力差值、摩擦因数、拔模角度和板料厚度等因素对滑移线的影响程度,通过控制变量法研究... 通过理论分析和数值模拟探究了滑移线缺陷的形成机理和滑动过程,分析了影响滑移线产生的相关因素。采用田口法设计正交试验研究了凸模圆角半径、压边力差值、摩擦因数、拔模角度和板料厚度等因素对滑移线的影响程度,通过控制变量法研究了凸模圆角半径、压边力差值、摩擦因数和拔模角度对滑移线的影响规律。结果表明,各因素对滑移线的影响程度为:压边力差值>拔模角度>凸模圆角半径>板料厚度>摩擦因数。得到了凸模圆角半径、压边力差值、摩擦因数和拔模角度等对滑移线的影响趋势,并应用影响规律解决前顶盖滑移线问题,为滑移线的控制提供了参考。 展开更多
关键词 冲压成形 滑移线 机理 影响因素
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