Citation: | SUN Yi-yang, XU Jin-kai, YU Zhan-jiang, ZHANG Xiang-hui, CHENG Ya-ya, YU Hua-dong. Coaxial holographic reconstruction method of micro-milling tool pose[J].Chinese Optics, 2022, 15(2): 355-363.doi:10.37188/CO.2021-0089 |
[1] |
SHI G F, ZHANG Y SH, ZHANG H,
et al. Analysis of the influence of installation tilt error on the tool setting accuracy by laser diffraction[J].
Applied Optics, 2018, 57(12): 3012-3020.
doi:10.1364/AO.57.003012
|
[2] |
ZHENG K B, HE N, LI L,
et al. Method of precise tool setting for micro turning[J].
Materials Science Forum, 2012, 723: 383-388.
doi:10.4028/www.scientific.net/MSF.723.383
|
[3] |
XU M, NAKAMOTO K, TAKEUCHI Y. Compensation method for tool setting errors based on non-contact on-machine measurement[J].
International Journal of Automation Technology, 2020, 14(1): 66-72.
doi:10.20965/ijat.2020.p0066
|
[4] |
曾超, 高洪跃, 刘吉成, 等. 动态全息三维显示研究最新进展[J]. 物理学报,2015,64(12):124215.
doi:10.7498/aps.64.124215
ZENG CH, GAO H Y, LIU J CH,
et al. Latest developments of dynamic holographic three-dimensional display[J].
Acta Physica Sinica, 2015, 64(12): 124215. (in Chinese)
doi:10.7498/aps.64.124215
|
[5] |
陈竹, 姜宏振, 刘旭, 等. 数字全息术用于光学元件表面缺陷形貌测量[J]. 光学 精密工程,2017,25(3):576-583.
doi:10.3788/OPE.20172503.0576
CHEN ZH, JIANG H ZH, LIU X,
et al. Measurement of surface defects of optical elements using digital holography[J].
Optics and Precision Engineering, 2017, 25(3): 576-583. (in Chinese)
doi:10.3788/OPE.20172503.0576
|
[6] |
KOZACKI T, CHLIPALA M, MAKOWSKI P L. Color Fourier orthoscopic holography with laser capture and an LED display[J].
Optics Express, 2018, 26(9): 12144-12158.
doi:10.1364/OE.26.012144
|
[7] |
朱越, 刘文耀, 刘方超, 等. 用数字全息术检测轮胎气泡缺陷[J]. 光学 精密工程,2009,17(5):1099-1104.
ZHU Y, LIU W Y, LIU F CH,
et al. Inspection of air bubble defect in tires by digital holography[J].
Optics and Precision Engineering, 2009, 17(5): 1099-1104. (in Chinese)
|
[8] |
王雪, 刘虹遥, 路鑫超, 等. 无透镜全息显微细胞成像[J]. 光学 精密工程,2020,28(8):1644-1650.
WANG X, LIU H Y, LU X CH,
et al. Cell imaging by holographic lens-free microscopy[J].
Optics and Precision Engineering, 2020, 28(8): 1644-1650. (in Chinese)
|
[9] |
郭力菡, 王新柯, 张岩. 生物组织的太赫兹数字全息成像[J]. 光学 精密工程,2017,25(3):611-615.
doi:10.3788/OPE.20172503.0611
GUO L H, WANG X K, ZHANG Y. Terahertz digital holographic imaging of biological tissues[J].
Optics and Precision Engineering, 2017, 25(3): 611-615. (in Chinese)
doi:10.3788/OPE.20172503.0611
|
[10] |
DI CAPRIO G, FERRARA M A, MICCIO L,
et al. Holographic imaging of unlabelled sperm cells for semen analysis: a review[J].
Journal of Biophotonics, 2015, 8(10): 779-789.
doi:10.1002/jbio.201400093
|
[11] |
杨德兴, 许增奇, 姜宏振, 等. 利用数字全息干涉术测量电路板的连续弯曲形变[J]. 光学 精密工程,2012,20(8):1789-1795.
doi:10.3788/OPE.20122008.1789
YANG D X, XU Z Q, JIANG H ZH,
et al. Measurement of continuous bending deformation for circuit boards by digital holographic interferometry[J].
Optics and Precision Engineering, 2012, 20(8): 1789-1795. (in Chinese)
doi:10.3788/OPE.20122008.1789
|
[12] |
LI X Y, TANG CH, ZHU X J,
et al. Image/video encryption using single shot digital holography[J].
Optics Communications, 2015, 342: 218-223.
doi:10.1016/j.optcom.2014.12.082
|
[13] |
SU Y G, XU W J, LI T L,
et al. Optical color image encryption based on fingerprint key and phase-shifting digital holography[J].
Optics and Lasers in Engineering, 2021, 140: 106550.
doi:10.1016/j.optlaseng.2021.106550
|
[14] |
马利红, 王辉, 李勇, 等. 全息模拟再现像的三维重构[J]. 光子学报,2006,35(4):595-598.
MA L H, WANG H, LI Y,
et al. 3-D rebuilding based on numerical reconstruction of the hologram[J].
Acta Photonica Sinica, 2006, 35(4): 595-598. (in Chinese)
|
[15] |
阳静, 吴学成, 吴迎春, 等. 数字显微全息重建图像的景深扩展研究[J]. 物理学报,2015,64(11):114209.
doi:10.7498/aps.64.114209
YANG J, WU X CH, WU Y CH,
et al. Study on extending the depth of field in reconstructed image for a micro digital hologram[J].
Acta Physica Sinica, 2015, 64(11): 114209. (in Chinese)
doi:10.7498/aps.64.114209
|
[16] |
程亚亚, 于化东, 于占江, 等. 微铣刀同轴全息图像增强方法[J]. 中国光学,2020,13(4):705-712.
doi:10.37188/CO.2019-0217
CHENG Y Y, YU H D, YU ZH J,
et al. Method of enhancing the quality of in-line holographic images for micro-milling tool[J].
Chinese Optics, 2020, 13(4): 705-712. (in Chinese)
doi:10.37188/CO.2019-0217
|