| 1. | The study of stress field by double - exposure holographic interomentry 二次曝光全息干涉计量技术研究应力场 |
| 2. | ( 4 ) investigation of the capabilities of sensitivity of temperature and microbend . ( 5 ) research on the compatibility of the lcof between composite materials ( 6 )液芯光纤与复合材料的兼容性研究:采用较成熟的全息干涉计量术,研究埋入液芯光纤与复合材料的兼容性。 |
| 3. | In this paper , we apply the fourier transform method ( ftm ) of the phase analysis method to double - exposure holographic interferometry and propose double - exposure digital holographic interferometry 本文将相位分析技术中的傅立叶变换法( ftm )引入二次曝光全息干涉计量中,提出了二次曝光数字全息干涉术。 |
| 4. | The photorefractive effects was introduced . the applications of the photorefractive materials in optical information technology such as holographic storage , real time information processing and holographic interferometry , etc . were discussed 简要介绍光折变材料的光折变效应及其在光信息技术中的应用:全息存储、实时信息处理、全息干涉计量等 |
| 5. | Abstract : the photorefractive effects was introduced . the applications of the photorefractive materials in optical information technology such as holographic storage , real time information processing and holographic interferometry , etc . were discussed 文摘:简要介绍光折变材料的光折变效应及其在光信息技术中的应用:全息存储、实时信息处理、全息干涉计量等 |
| 6. | ( 4 ) applications of digital holography in optical metrology are briefly discussed . we also present the fundamental principles of digital holographic interferometry and the two ways to realize it . and also the difference between digital holographic interferometry and optical holographic interferometry is considered ( 4 )阐述了数字全息干涉术的基本原理和两种实现方法,讨论了其与传统光学全息干涉术之间的联系与区别,并根据数字全息术自身的特点,讨论了诸如相位倍增因子等提高全息干涉计量精度的方法。 |
| 7. | The fundamental principle of digital holographic interferometry is then presented . based on this , the poisson ' s ratio of material and the out - of - plane displacement of a deformed aluminum board are successfully measured . the main influencing factors for experimental results of poisson ' s ratio and the settlement approach are further analyzed 讨论了数字全息干涉术的基本原理,并利用数字无透镜傅里叶变换全息干涉计量术分别测量了材料的泊松比和加载铝板的离面位移,详细分析了影响测量材料泊松比实验结果精度的主要因素及解决途径,取得了较为满意的结果。 |