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为了解决光纤光栅作为应变传感器使用时的温度应变交叉敏感问题,提出了一种全新的光纤光栅温度补偿方法,该方法最大特点是利用一个光纤光栅同时实现了温度自动补偿与应变测量。该方法基于材料的热应力原理,简称为基于材料热应力的光纤光栅温度补偿方法。通过理论分析表明:温度灵敏度系数与应变灵敏度必须精确测定,否则会影响结构设计;应变元件与温度补偿元件的面积之比对温度补偿效果很大,原则上应小于0.5,因此结构半径的加工误差对温度补偿影响很大。应变元件与温度补偿元件的长度比对温度补偿效果基本可忽略,因此,原则上在不影响温度补偿效果的前提下,尽量提高温度补偿元件与应变元件的长度比。 相似文献
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为了解决光纤光栅作为应变传感器使用时的温度应变交叉敏感问题,提出了一种全新的光纤光栅温度补偿方法,该方法最大特点是利用一个光纤光栅同时实现了温度自动补偿与应变测量。该方法基于材料的热应力原理,简称为基于材料热应力的光纤光栅温度补偿方法。通过理论分析表明:温度灵敏度系数与应变灵敏度必须精确测定,否则会影响结构设计;应变元件与温度补偿元件的面积之比对温度补偿效果很大,原则上应小于0.5,因此结构半径的加工误差对温度补偿影响很大。应变元件与温度补偿元件的长度比对温度补偿效果基本可忽略,因此,原则上在不影响温度补偿效果的前提下,尽量提高温度补偿元件与应变元件的长度比。 相似文献
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岩石在外力作用下会发生形变,发现和了解岩石材料的形变、应力分布等对避免灾害会起到重要的预警作用。采用高精度的数字散斑相关技术,对岩石材料形变、应力和应变进行了非接触式测量。为验证实验结果的有效性,电阻应变计贴附于采集区附近并且实验结果与电测结果吻合较好。表明数字散斑相关测量技术能够用于岩石等材料的形变检测,预报变形信息,结果可以定量和定性显示。 相似文献
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热效应仍是限制激光放大器向高功率、高光束质量进一步发展的瓶颈问题, 高效的热管理是抑制热效应的重要技术途径. 研究了基于激光二极管抽运氦气冷却的钕玻璃叠片激光放大器的热效应. 利用有限元数值模拟的方法, 分析了钕玻璃的温度、应力应变和应力双折射分布, 并计算了热致波前畸变和退偏损耗, 与实验结果符合得较好, 在热沉积为0.7 W/cm3的条件下, 6片钕玻璃总的热致波前畸变为6.77λ , 最大退偏量大于90%. 相似文献
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Partially end-pumped slab laser is an innovative solid state laser, namely InnoSlab. Combining the hybrid resonator with partially end-pumping, the output power can be scaled with high beam quality. In this paper, the output intensity distributions are simulated by coordinate transformation fast Fourier transform(FFT) algorithm, comparing the thermal lens influence. As the simulated curves showed, the output mode is still good when the thermal lens effect is strong, indicatingthe good thermal stability of InnoSlab laser.Such a new kind of laser can be designed and optimized on the base of this simulation. 相似文献
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介绍了一种用于测试面内三个应变分量的应变测量技术,在试件表面预先压制三个压痕,通过激光照射压痕,经衍射后干涉,产生干涉图。通过分析变形前后干涉斑点的光强值的变化来对待测位置进行应变测量。实验表明该方法对待测试件表面损伤小,且压痕应变花尺寸小,是一种新的光学应变测试技术,不仅可以用来进行普通应变测量,尤其对解决小空间应变测试问题有其独特的优点。 相似文献
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A numerical model is developed for the calculation of transient temperature field of thin film coating induced by a long-pulsed high power laser beam. The electric field intensity distribution of HfO2/Si02 high reflective (HR) film is investigated to calculate the thermal field of the film. The thermal-mechanical relationships are discussed to predict the laser damage area of optical thin film under long pulse high energy laser irradiation. 相似文献
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An investigation of thermal effects in a high-power Nd:YAG disk-type solid state laser pumped with different pump beam transverse profiles is carried out by numerical simulation based on the finite element method (FEM). Impact of the heat sink on the thermal effects is included in the simulation. The distribution of first principle stress, thermally induced birefringence, including the distribution and variation of the birefringence loss, are studied. The characteristics of the phase variation are analyzed with consideration of the temperature gradient, deformation, strain and thermal stress. Thermal lensing is explored as a function of pump power and of the radius pumped with different pump beam transverse profiles. The non-parabolic part of optical phase distortion is simulated. Furthermore, the characteristics of the bi-focus of the disk laser are also studied. Experiments on the maximum tensile stress distribution and depolarization loss are carried out. The presented calculations are in qualitative agreement with the experimental observations. 相似文献
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