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基于FBG-3D打印的加强肋土工格栅拉拔试验
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作者 陈智富 张孟喜 +1 位作者 戴治恒 陈昌茂 《上海大学学报(自然科学版)》 北大核心 2026年第1期116-129,共14页
基于3D打印技术和光纤布拉格光栅(fiber Bragg grating, FBG)制备了一种加强肋中内嵌FBG压力传感区的加强肋土工格栅,通过试验验证了压力传感区在土中工作的可靠性.通过室内拉拔试验研究了加强肋格栅在不同加强肋高度、间距和数量下的... 基于3D打印技术和光纤布拉格光栅(fiber Bragg grating, FBG)制备了一种加强肋中内嵌FBG压力传感区的加强肋土工格栅,通过试验验证了压力传感区在土中工作的可靠性.通过室内拉拔试验研究了加强肋格栅在不同加强肋高度、间距和数量下的拉拔界面特性,以及拉拔过程中加强肋侧压力的变化规律,基于刺入剪切破坏理论提出加强肋被动侧压力理论计算公式.结果表明,加强肋可以有效提高土工格栅的抗拉拔特性,土工格栅的极限拉拔力随着加强肋高度和数量的增加而增大,而加强肋间距过小会使极限拉拔力减小;加强肋被动侧压力先随拉拔位移的增加而逐渐增大,达到峰值后趋于稳定,加强肋主动侧压力则先下降后趋于稳定,纵肋上加强肋被动侧压力略小于网格上加强肋;在多加强肋情况下,拉拔方向后侧加强肋被动侧压力会减小,加强肋间距越小,被动侧压力减小幅度越大;加强肋被动侧压力理论计算结果与试验结果基本吻合.所得结果验证了将FBG传感器嵌入土工格栅加强肋监测侧压力的可行性,深化了加强肋土工格栅与填土间相互作用的机制理论. 展开更多
关键词 光纤布拉格光栅(fiber Bragg grating fbg) 3D打印 加强肋土工格栅 拉拔试验 拉拔界面特性 加强肋侧压力
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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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AH-FBG法用于毛细水运移规律的温度效应研究
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作者 辛雨凌 徐成华 +3 位作者 孙梦雅 刘瑾 戴正彬 井淼 《天津大学学报(自然科学与工程技术版)》 北大核心 2026年第1期31-40,共10页
毛细水运移作为非饱和土体水分运移的重要形式,其动态特征直接影响土体的力学性质,并与多种地质灾害、环境岩土问题密切相关.地下水位以上的土体温度分布往往存在差异,进而对毛细水运移速率产生影响.为了探究毛细水运移规律的温度效应,... 毛细水运移作为非饱和土体水分运移的重要形式,其动态特征直接影响土体的力学性质,并与多种地质灾害、环境岩土问题密切相关.地下水位以上的土体温度分布往往存在差异,进而对毛细水运移速率产生影响.为了探究毛细水运移规律的温度效应,本研究利用主动加热光纤布拉格光栅(AH-FBG)法开展室内模型试验,在定水头条件下,通过控制加热桶与常温桶的温度变量监测土体中毛细水运移过程,并对不同温度条件下土体的体积含水率分布变化进行对比,分析温度效应对毛细水运移的影响.研究结果表明:在一定时间内,毛细水上升高度随时间增加而升高,湿润峰出现的位置标志着该时刻水分运移的最远位置;土体温度升高对毛细水运移具有促进影响,土体温度越高,毛细水上升同一高度所需的时间越短,毛细水上升速率越高;湿润锋界面作为状态界面,在运移过程中具有动态变化特性,温度升高会显著促进湿润峰界面的运移速率;毛细水湿润锋界面变化及其温度效应与外界环境条件紧密相关,是工程建设中不可忽视的运动与状态界面. 展开更多
关键词 毛细水运移 主动加热光纤布拉格光栅法 体积含水率 湿润锋 温度效应 状态界面
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Research on a compact and high sensitivity gas pressure sensor based on fiber Fabry-Pérot interferometer and Bragg grating
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作者 LIU Qinpeng XING Meihua +2 位作者 YANG Di LIU Bo YAN Cheng 《Optoelectronics Letters》 2025年第6期321-327,共7页
A compact and highly sensitive gas pressure and temperature sensor based on Fabry-Pérot interferometer(FPI)and fiber Bragg grating(FBG)is proposed and demonstrated experimentally in this paper.The theoretical mod... A compact and highly sensitive gas pressure and temperature sensor based on Fabry-Pérot interferometer(FPI)and fiber Bragg grating(FBG)is proposed and demonstrated experimentally in this paper.The theoretical model for pressure and temperature sensing is established.Building on this foundation,a novel micro silicon cavity sensor structure sensitive to pressure is devised downstream of an FBG.The concept of separate measurement and the mechanisms enhancing pressure sensitivity are meticulously analyzed,and the corresponding samples are fabricated.The experimental results indicate that the pressure sensitivity of the sensor is-747.849 nm/MPa in 0—100 k Pa and its linearity is 99.7%and it maintains good stability in 150 min.The sensor offers the advantages of compact size,robust construction,easy fabrication,and high sensitivity,making it potentially valuable for micro-pressure application. 展开更多
关键词 fiber bragg grating fbg gas pressure sensor temperature sensor separate measurement fiber Bragg grating fiber Fabry P rot interferometer theoretical model pressure temperature sensing micro silicon cavity sensor structure
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A clip-on composite sensor based packaging design method for fiber Bragg grating axle counter
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作者 Mengyao Zhao Xueyun Cao +2 位作者 Longsheng Wang Yang Peng Tao Wang 《Railway Sciences》 2025年第5期647-665,共19页
Purpose–To address the encapsulation challenge of fiber Bragg grating(FBG)sensors in complex railway environments,this paper designs a clip-on composite sensor enabling installation-friendly deployment and long-term ... Purpose–To address the encapsulation challenge of fiber Bragg grating(FBG)sensors in complex railway environments,this paper designs a clip-on composite sensor enabling installation-friendly deployment and long-term axle counting system monitoring.Design/methodology/approach–Wheel–rail mechanical behavior was simulated via finite element analysis(FEA)to determine optimal sensor placement.A clip-on composite sensor was subsequently engineered.Stress transduction efficacy was validated through FEA quantification of stress responses at the axle counter location.Findings–The proposed FBG axle counter integrates temperature compensation and anti-detachment monitoring as well as advantages such as simplified installation with minimal maintenance and sustained operational reliability.It effectively transmits stress,yielding a measured strain of 39μe under static loading conditions without sensitivity-enhancing elements.Originality/value–This study performs FEA of wheel-rail stress distribution and engineers the dual-slot composite sensor,FEAwas conducted to quantify the stress magnitude at the axle sensor position of the dual-slot composite sensor.Additionally,FEA was performed on sensors with different structural configurations,including adjustments to the axle sensor position,number of slots and axle position.The results confirmed that the designed composite sensor exhibits superior stress transfer characteristics. 展开更多
关键词 Fiber Bragg grating Axle counting Finite element sensor Wheel-rail forces
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Plasmonic dual-parameter biosensor with self-referencing capability based on one-dimensional metal gratings
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作者 LIU Jun LUO Jianhua 《Optoelectronics Letters》 2025年第8期449-454,共6页
There is limited amount of research on surface plasmon resonance(SPR)sensors with self-referencing capabilities which are based on dielectric gratings.In the short-wavelength range,a metal grating sensor is capable of... There is limited amount of research on surface plasmon resonance(SPR)sensors with self-referencing capabilities which are based on dielectric gratings.In the short-wavelength range,a metal grating sensor is capable of simultaneously measuring liquid refractive index under proposed temperature.A fabricated gold grating is placed on one side of a thin gold film for refractive index measurement,while the other with polydimethylsiloxane(PDMS)is deposited on the other side for temperature measurement.We use finite element analysis to research its sensing characteristics.Due to the high refractive index sensitivity of SPR sensors and thermo-optic coefficient of PDMS,we discovered the maximum spectral sensitivity of the sensor is 564 nm/RIU and-50 pm/℃when the liquid refractive index ranges from 1.30 to 1.40 with temperature ranging from 0℃ to 100℃.Numerical results indicate that there may not be mutual interference between two channels for measuring refractive index and temperature,which reduces the complexity of sensor measurements. 展开更多
关键词 thin gold film fabricated gold grating plasmonic biosensor metal grating sensor liquid refractive index self referencing capability refractive index dielectric gratingsin
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预加应力下的平行磁环式GMM-FBG电流传感装置
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作者 陈新岗 邹政廷 +3 位作者 马志鹏 张知先 李松 阳鑫 《传感器与微系统》 北大核心 2026年第2期116-122,共7页
针对超磁致伸缩材料的光纤布拉格光栅(GMM-FBG)电流传感器响应灵敏度低和FBG易受环境温度干扰的问题,设计了一种预加应力下的异形GMM结构和平行磁环式聚磁回路设计的GMM-FBG传感器。首先,构建了该传感器的理论模型,并通过COMSOL仿真,在... 针对超磁致伸缩材料的光纤布拉格光栅(GMM-FBG)电流传感器响应灵敏度低和FBG易受环境温度干扰的问题,设计了一种预加应力下的异形GMM结构和平行磁环式聚磁回路设计的GMM-FBG传感器。首先,构建了该传感器的理论模型,并通过COMSOL仿真,在预加应力下比较圆柱形GMM棒和异形GMM棒的响应特性,针对FBG的栅区长度对GMM的结构尺寸进行优化。然后,对磁环结构进行分析,得到合适的形状和磁路间距。最后,利用差分的方式消除环境温度的影响,并以实验得到2个FBG的中心波长差值与被测电流的关系。结果表明:方形磁环的磁通分布更均匀,异形GMM棒在预加应力为30 MPa,磁路间距为60 mm,输入电流为0~100 A时传感系统灵敏度为17.13 pm/A。 展开更多
关键词 光纤布拉格光栅 超磁致伸缩材料 电流传感器 应力
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高灵敏度的FBG埋入式应变传感器研究
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作者 罗伟 杨曦 +2 位作者 支万荣 刘亚 张珍瑜 《传感器与微系统》 北大核心 2026年第2期18-22,共5页
针对土木工程长期应变监测中传感器灵敏度不足与应变传递效率低等问题,提出一种基于变截面增敏结构的埋入式光纤布拉格光栅(FBG)应变传感器。通过优化弹性结构设计与关键参数,结合一体化增材制造工艺,有效提升了传感器的应变传递效率与... 针对土木工程长期应变监测中传感器灵敏度不足与应变传递效率低等问题,提出一种基于变截面增敏结构的埋入式光纤布拉格光栅(FBG)应变传感器。通过优化弹性结构设计与关键参数,结合一体化增材制造工艺,有效提升了传感器的应变传递效率与测量一致性。实验结果表明:正行程的平均线性度为0.58%,灵敏度为4.78 pm/με;反行程的平均线性度为0.622%,灵敏度为4.82 pm/με。此外,3次正行程与反行程之间的重复性分别为0.58%、0.68%和0.71%,整体正行程重复性为1.18%、反行程重复性为1.48%,传感器表现出良好的线性特征与测量稳定性。本文为解决土木结构长期应变监测中的传感技术难点提供了一种具有工程应用价值的可靠方案。 展开更多
关键词 光纤布拉格光栅 应变传感器 埋入式安装 高灵敏度
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TLS解调法3D技术封装FBG测温系统研究
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作者 刘佳 刘震武 +3 位作者 马环环 刘俊逸 卢秋链 王志会 《激光与红外》 北大核心 2026年第1期145-152,共8页
为实现光纤光栅传感器在全国高校物理实验的普及,搭建了一种基于可调谐光源解调法(TLS)的测温实验系统,提出了一种基于3D打印技术立方体外壳的实验室光纤光栅温度传感器。采用聚乳酸(PLA)和不锈钢(SS316L)两种不同材质的外壳材料对飞秒... 为实现光纤光栅传感器在全国高校物理实验的普及,搭建了一种基于可调谐光源解调法(TLS)的测温实验系统,提出了一种基于3D打印技术立方体外壳的实验室光纤光栅温度传感器。采用聚乳酸(PLA)和不锈钢(SS316L)两种不同材质的外壳材料对飞秒激光刻写的光纤光栅进行保护封装,通过DP460环氧树脂胶作为粘结剂,制作了不同类型的光纤光栅温度传感器并对其性能指标进行实验验证。结果表明,不锈钢材质传感器性能高于聚乳酸传感器。在40~200℃(40~120℃)温度范围内,不锈钢(聚乳酸)材质传感器的温度灵敏度为14.09pm/℃(8.07pm/℃),线性相关度高达0.99977(0.99414),具有很好的稳定性。同时,SS316L(PLA)传感器响应时间为1.3s(3.4s),不确定度2.6℃(6.9℃)实现了温度测量的高灵活性与便捷操作,可用于高校大学物理实验。 展开更多
关键词 光纤光栅 温度传感器 3D打印 可调谐光源解调仪
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基于FBG传感器的带式输送机故障监测研究 被引量:6
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作者 方新秋 吴洋 +5 位作者 宋扬 陈宁宁 丰宇龙 冯豪天 贺德幸 乔富康 《煤炭科学技术》 北大核心 2025年第1期326-340,共15页
带式输送机的故障监测有助于预防安全事故、提高生产效率以及实现设备智能化运行。从带式输送机常见故障分析、综合保护系统组成、光纤型传感器阵列设计与分析、核心敏感元件设计与选材等方面,对基于FBG传感器的带式输送机故障监测进行... 带式输送机的故障监测有助于预防安全事故、提高生产效率以及实现设备智能化运行。从带式输送机常见故障分析、综合保护系统组成、光纤型传感器阵列设计与分析、核心敏感元件设计与选材等方面,对基于FBG传感器的带式输送机故障监测进行了深入研究。首先针对传统监测手段无法定量感知、实时性不足、数据融合能力薄弱等问题,提出了一种基于光纤光栅(FBG)的带式输送机综合保护系统,明确了光纤型传感器阵列的设计是系统搭建的重要前提。其次,在分析带式输送机常见故障形成原因和表现形式的基础上,以FBG-等强度悬臂梁为核心敏感元件设计了一系列故障监测传感器,组成了带式输送机综合保护系统的光纤型传感器阵列,实现了故障的实时定量监测。接着,通过理论分析和Ansys有限元仿真,对FBG-等强度悬臂梁的尺寸结构设计和材料选择进行了深入研究,在传感模型中分析了灵敏度和精度的影响因素,并据此确定了敏感元件的结构尺寸,优选了尼龙6作为制作材料。最后,通过试验对FBG-等强度悬臂梁的结构有效性、灵敏度和稳定性进行了验证。在灵敏度试验中,敏感元件表现出良好的线性响应特性,理论灵敏度S=52.9780Nnm,实际灵敏度S^(*)=38.1157 Nnm;在重复性试验中,平均重复性误差仅为1.002%,表现出良好的重复性和稳定性;温度敏感性试验和温度补偿试验则验证了光纤光栅在温度测量中的线性相关性,从而进一步揭示了温度补偿对提升传感灵敏度的必要性,即便在微小温度变化环境下,补偿机制仍能有效提高灵敏度0.6%。所设计的光纤型传感器阵列解决了现有带式输送机运行故障无法实时定量感知的问题,为实现设备智能化感知与控制提供了坚实的数据基础。研究成果不仅能有效降低带式输送机故障率,提高生产效率,更推动了煤矿行业向自动化、智能化方向的发展。 展开更多
关键词 光纤光栅 等强度悬臂梁 温度补偿 光纤型传感器阵列 带式输送机综合保护
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基于PS-FBG的坦克火炮高精度加速度传感研究
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作者 陆锋 张俊生 +1 位作者 刘青芳 王建国 《火力与指挥控制》 北大核心 2025年第1期169-174,共6页
坦克火炮微振动信号对于火炮的射击精度具有重要影响。针对传统光纤光栅(fiber Bragg grating,FBG)加速度传感器精度低、灵敏度小等问题,提出一种基于相移光栅(phase shift-fiber Bragg grating,PS-FBG)的高精度坦克火炮加速度传感器。P... 坦克火炮微振动信号对于火炮的射击精度具有重要影响。针对传统光纤光栅(fiber Bragg grating,FBG)加速度传感器精度低、灵敏度小等问题,提出一种基于相移光栅(phase shift-fiber Bragg grating,PS-FBG)的高精度坦克火炮加速度传感器。PS-FBG和普通FBG串联形成级联光栅,并与振子相连组成弹簧质量系统。PS-FBG相移点的存在显著降低了级联光栅反射光谱的3 dB带宽,进而大幅提高了光谱测量精度。实验结果显示,在0.01~0.07 g的加速度激励下,PS-FBG级联光栅传感器可有效识别并还原微振动信号,而传统FBG传感器在加速度小于0.03 g时已经无法识别。坦克车载测试结果显示,所提出的传感器有效提取了发动机怠速状态和正常行驶状态下的微振动信号。传感器在瞬态冲击响应下体现出良好的动态性能,并通过并联匹配FBG,有效减弱了环境温度变化导致的测量误差。 展开更多
关键词 加速度 传感器 相移光栅 火炮 精度
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基于FBG传感器的预应力单向碳纤维复合材料性能研究
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作者 李学磊 吴鹏 +1 位作者 王茜 田浩彬 《塑性工程学报》 北大核心 2025年第8期231-237,共7页
针对复合材料固化成型后存在残余应力,而导致复合材料出现变形、纤维断裂和界面脱粘等缺陷,严重影响复合材料的性能及其可靠性的问题,以降低固化过程中的残余应力来提高碳纤维复合材料性能为目标,根据复合材料成型特点对碳纤维预应力装... 针对复合材料固化成型后存在残余应力,而导致复合材料出现变形、纤维断裂和界面脱粘等缺陷,严重影响复合材料的性能及其可靠性的问题,以降低固化过程中的残余应力来提高碳纤维复合材料性能为目标,根据复合材料成型特点对碳纤维预应力装置进行设计和制造,并制备了多组具有不同预应力的复合材料。为了准确监测并跟踪复合材料固化过程中的应变,在复合材料试件中嵌入FBG传感器。通过对具有不同预应力的复合材料进行拉伸性能测试及断面SEM分析,获得预应力对复合材料的影响规律,并从材料微观结构的演变过程进行分析,揭示其内在机制,为复合材料成型的发展提供新质生产力。 展开更多
关键词 复合材料固化成型 残余应力 预应力装置 fbg传感器
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基于FBGs的复合材料桨叶承载与损伤监测
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作者 刘勇 胡海晓 +2 位作者 夏俊康 曹东风 李书欣 《振动.测试与诊断》 北大核心 2025年第4期751-757,846,共8页
针对复合材料桨叶在运行过程中的结构健康监测问题,提出了一种基于光纤光栅传感器(fiber Bragg grating sensor,简称FBGs)的桨叶实时监测方法。首先,采用内埋FBGs的方式对复合材料桨叶运转过程中的结构动态响应进行实时监测,分别采集不... 针对复合材料桨叶在运行过程中的结构健康监测问题,提出了一种基于光纤光栅传感器(fiber Bragg grating sensor,简称FBGs)的桨叶实时监测方法。首先,采用内埋FBGs的方式对复合材料桨叶运转过程中的结构动态响应进行实时监测,分别采集不同叶偏角、转速以及测点位置的动态应变;然后,借助三维数字图像相关技术(digital image correlation,简称DIC-3D)对桨叶表面位移场进行同步监测;最后,在复合材料叶片内引入冲击损伤,对比完整结构和含损伤结构的FBGs监测信号,确定适用于复合材料桨叶结构的损伤指标。结果表明∶FBGs监测的桨叶结构内部动态应变信号周期与DIC测得的表面位移场变化周期一致,且叶根处的FBGs动态应变信号的趋势量随着叶偏角和转速的增大而增大,验证了FBGs实时监测技术的可行性。对比不同实验工况下引入损伤前后监测信号的频率信息可知,叶根处的FBGs的第1阶主频是轴频,与转速对应;第2阶主频(叶频)所对应的振幅对桨叶的损伤较为敏感,可作为一种桨叶结构局部损伤的识别指标。 展开更多
关键词 光纤光栅传感器 复合材料桨叶 实时监测 损伤识别 数字图像相关
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基于FBG的机器人腕部三维力传感器设计
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作者 魏莉 张海洋 +2 位作者 吴宇昌 丁华雷 王洋涛 《传感器与微系统》 北大核心 2025年第12期82-86,共5页
为了实现机器人腕部受力状态的实时监测,将光纤布拉格光栅(FBG)与经典马耳他十字梁结构结合,设计了一种适用于机器人腕部的FBG三维力传感器。运用有限元分析软件ANSYS研究了传感器的应变分布特性和动态性能,确定了FBG在梁上的最优粘贴... 为了实现机器人腕部受力状态的实时监测,将光纤布拉格光栅(FBG)与经典马耳他十字梁结构结合,设计了一种适用于机器人腕部的FBG三维力传感器。运用有限元分析软件ANSYS研究了传感器的应变分布特性和动态性能,确定了FBG在梁上的最优粘贴位置。通过差分及求和的测量方法,仅用5个FBG实现自解耦和温度补偿的三维力测量。最后,搭建了实验平台,研究了传感器的灵敏度、维间耦合等特性参数。实验结果表明,该传感器在0~100 N测力范围内在x,y,z方向的灵敏度分别为16.475,15.068,8.651 pm/N,维间耦合误差分别为1.3%,0.8%,1.5%。该传感器结构简单、工作可靠,可应用于对机器人腕部的三维力监测。 展开更多
关键词 光纤布拉格光栅 三维力传感器 机器人 腕部力监测
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Electroless Nickel Plating and Electroplating on FBG Temperature Sensor 被引量:5
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作者 SHEN Ren-sheng TENG Rui +6 位作者 LI Xiang-ping ZHANG Jin XIA Dao-cheng FAN Zhao-qi YU Yong-sen ZHANG Yu-shu DU Guo-tong 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2008年第5期635-639,共5页
Metal-coated fiber Bragg grating(FBG)temperature sensors were prepared via electroless nickel(EN)plating and tin electroplating methods on the surface of normal bare FBG.The surface morphologies of the metal-coate... Metal-coated fiber Bragg grating(FBG)temperature sensors were prepared via electroless nickel(EN)plating and tin electroplating methods on the surface of normal bare FBG.The surface morphologies of the metal-coated layers were observed under a metallographic microscope.The effects of pretreatment sequence,pH value of EN plating solution and current density of electroplating on the performance of the metal-coated layers were analyzed.Meanwhile, the Bragg wavelength shift induced by temperature was monitored by an optical spectrum analyzer.Sensitivity of the metal-coated FBG(MFBG)sensor was almost two times that of normal bare FBG sensor.The measuring temperature of the MFBG sensor could be up to 280℃,which was much better than that of conventional FBG sensor. 展开更多
关键词 fbg Metal-coated layer Electroless nickel plating ELECTROPLATING Temperature sensor
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Non-destructive Evaluation of Composite Pressure Vessel by Using FBG Sensors 被引量:5
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作者 HAO Jun-cai LENG Jin-song WEI Zhang 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2007年第2期120-123,共4页
In recent years, advanced composite structures are used extensively in many industries such as aerospace, aircraft, automobile, pipeline and civil engineering. Reliability and safety are crucial requirements posed by ... In recent years, advanced composite structures are used extensively in many industries such as aerospace, aircraft, automobile, pipeline and civil engineering. Reliability and safety are crucial requirements posed by them to the advanced composite structures be- cause of their harsh working conditions. Therefore, as a very important measure, structural health monitoring (SHM) in-service is deft- nitely demanded for ensuring their safe working in-situ. In this paper, fiber Bragg grating (FBG) sensors are surface-mounted on the hoop and in the axial directions of a FRP pressure vessel to monitor the strain status during its pressurization. The experimental results show that the FBG sensors could be used to monitor the strain development and determine the ultimate failure strain of the composite pressure vessel. 展开更多
关键词 fiber optic sensor fiber Bragg grating composite pressure vessel non-destructive evaluation
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Strain transfer of surface-bonded fiber Bragg grating sensors for airship envelope structural health monitoring 被引量:19
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作者 Hai-tao ZHAO Quan-bao WANG +3 位作者 Ye QIU Ji-an CHEN Yue-ying WANG Zhen-min FAN 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2012年第7期538-545,共8页
This paper deals with an improved bonding approach of surface-bonded fiber Bragg grating (FBG) sensors for airship envelope structural health monitoring (SHM) under the strain transfer theory. A theoretical formula is... This paper deals with an improved bonding approach of surface-bonded fiber Bragg grating (FBG) sensors for airship envelope structural health monitoring (SHM) under the strain transfer theory. A theoretical formula is derived from the proposed model to predict the strain transfer relationship between the airship envelope and fiber core. Then theoretical predictions are validated by numerical analysis using the finite element method (FEM). Finally, on the basis of the theoretical approach and numerical validation, parameters that influence the strain transfer rate from the airship envelope to fiber core and the ratio of effective sensing length are analyzed, and some meaningful conclusions are provided. 展开更多
关键词 Airship envelope Fiber Bragg grating fbg Surface-bonded Strain transfer Structural health monitoring (SHM)
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Resistance Spot Welding Method for Metal-Based Fiber Bragg Grating Sensors 被引量:1
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作者 张涛 韦朋余 岳亚霖 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2015年第3期289-296,共8页
Aiming at the requirements of installation and work environment of metal-based fiber Bragg grating(FBG)sensor,a resistance spot welding method is presented.Firstly,the effect of welding parameters on welding quality i... Aiming at the requirements of installation and work environment of metal-based fiber Bragg grating(FBG)sensor,a resistance spot welding method is presented.Firstly,the effect of welding parameters on welding quality is discussed theoretically,and a suitable resistance spot welding method for the metal-based FBG sensor is proposed for the first time.Then through serial resistance spot welding tests,the feasibility and practicability of the method are verified,and optimal welding parameters for two different tested metals are obtained.Fatigue performance test validates FBG sensors installed by the proposed method with good fatigue properties and long-term stable measurement performance.The research results can provide technical guidance for engineering structure long-term safety monitoring. 展开更多
关键词 FIBER BRAGG grating(fbg)sensor resistance SPOT wel
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Parameters optimization and nonlinearity analysis of grating eddy current displacement sensor using neural network and genetic algorithm 被引量:17
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作者 Hong-li QI Hui ZHAO +1 位作者 Wei-wen LIU Hai-bo ZHANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2009年第8期1205-1212,共8页
A grating eddy current displacement sensor(GECDS) can be used in a watertight electronic transducer to realize long range displacement or position measurement with high accuracy in difficult industry conditions.The pa... A grating eddy current displacement sensor(GECDS) can be used in a watertight electronic transducer to realize long range displacement or position measurement with high accuracy in difficult industry conditions.The parameters optimization of the sensor is essential for economic and efficient production.This paper proposes a method to combine an artificial neural network(ANN) and a genetic algorithm(GA) for the sensor parameters optimization.A neural network model is developed to map the complex relationship between design parameters and the nonlinearity error of the GECDS,and then a GA is used in the optimization process to determine the design parameter values,resulting in a desired minimal nonlinearity error of about 0.11%.The calculated nonlinearity error is 0.25%.These results show that the proposed method performs well for the parameters optimization of the GECDS. 展开更多
关键词 grating eddy current displacement sensor (GECDS) Artificial neural network (ANN) Genetic algorithm (GA) Parameters optimization Nonlinearity error
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A novel plasmonic refractive index sensor based on gold/silicon complementary grating structure 被引量:4
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作者 Xiangxian Wang Jiankai Zhu +4 位作者 Yueqi Xu Yunping Qi Liping Zhang Hua Yang Zao Yi 《Chinese Physics B》 SCIE EI CAS CSCD 2021年第2期313-318,共6页
A novel complementary grating structure is proposed for plasmonic refractive index sensing due to its strong resonance at near-infrared wavelength.The reflection spectra and the electric field distributions are obtain... A novel complementary grating structure is proposed for plasmonic refractive index sensing due to its strong resonance at near-infrared wavelength.The reflection spectra and the electric field distributions are obtained via the finite-difference time-domain method.Numerical simulation results show that multiple surface plasmon resonance modes can be excited in this novel structure.Subsequently,one of the resonance modes shows appreciable potential in refractive index sensing due to its wide range of action with the environment of the analyte.After optimizing the grating geometric variables of the structure,the designed structure shows the stable sensing performance with a high refractive index sensitivity of 1642 nm per refractive index unit(nm/RIU)and the figure of merit of 409 RIU^(-1).The promising simulation results indicate that such a sensor has a broad application prospect in biochemistry. 展开更多
关键词 plasmonic sensor GOLD SILICON grating
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