TY - JOUR
T1 - A measurement method for three-dimensional inner and outer surface profiles and spatial shell uniformity of laser fusion capsule
AU - Ma, Xianxian
AU - Ni, He
AU - Lu, Mengshuang
AU - Liu, Zihao
AU - Huang, Jingwen
AU - Wang, Qi
AU - Wang, Yun
N1 - Publisher Copyright:
© 2020 Elsevier Ltd
PY - 2021/2
Y1 - 2021/2
N2 - We propose a novel laser differential confocal measurement method with high spatial resolution for the simultaneous measurement of 3D inner and outer surface profiles and spatial shell uniformity of capsules. The zero-crossing point of characteristic curve of a laser differential confocal sensor (LDCS) exactly corresponds to the focal point; therefore, the proposed method performs high-precision and fast fixed-focus measurements on the vertexes of the surfaces of the capsule along its radial direction using the sensor. Then through the precision rotation measurement of the circumference trace and multi-directional meridian contour measurement of the capsule around the horizontal axis, the simultaneous high-precision measurement of 3D inner and outer surface profiles and spatial shell uniformity of the capsule can be achieved. To the best of our knowledge, the proposed method is the first to achieve high-precision and non-destructive measurement of 3D inner and outer surface profiles and spatial shell uniformity of the capsule simultaneously, and it provides a novel technical approach for achieving high-precision and non-destructive measurement of geometric parameters of ICF capsules.
AB - We propose a novel laser differential confocal measurement method with high spatial resolution for the simultaneous measurement of 3D inner and outer surface profiles and spatial shell uniformity of capsules. The zero-crossing point of characteristic curve of a laser differential confocal sensor (LDCS) exactly corresponds to the focal point; therefore, the proposed method performs high-precision and fast fixed-focus measurements on the vertexes of the surfaces of the capsule along its radial direction using the sensor. Then through the precision rotation measurement of the circumference trace and multi-directional meridian contour measurement of the capsule around the horizontal axis, the simultaneous high-precision measurement of 3D inner and outer surface profiles and spatial shell uniformity of the capsule can be achieved. To the best of our knowledge, the proposed method is the first to achieve high-precision and non-destructive measurement of 3D inner and outer surface profiles and spatial shell uniformity of the capsule simultaneously, and it provides a novel technical approach for achieving high-precision and non-destructive measurement of geometric parameters of ICF capsules.
KW - High-precision 3D measurement
KW - ICF capsule
KW - Laser differential confocal
KW - Shell uniformity measurement
KW - Surface profile measurement
UR - http://www.scopus.com/inward/record.url?scp=85091233244&partnerID=8YFLogxK
U2 - 10.1016/j.optlastec.2020.106601
DO - 10.1016/j.optlastec.2020.106601
M3 - Article
AN - SCOPUS:85091233244
SN - 0030-3992
VL - 134
JO - Optics and Laser Technology
JF - Optics and Laser Technology
M1 - 106601
ER -