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Hysteresis compensation of the piezoelectric ceramic actuators-based tip/tilt mirror with a neural network method in adaptive optics
Wang, C. C.; Y. K. Wang; L. F. Hu; S. X. Wang; Z. L. Cao; Q. Q. Mu; D. Y. Li; C. L. Yang and L. Xuan
2016
发表期刊Optical Engineering
卷号55期号:5
摘要This study tests the mechanical property of textile reinforced self-stressing concrete (TRSSC) sheets, particularly the bond behavior between fiber bundles and self-stressing concrete sheets and the bending property of a TRSSC one-way sheet under four-point loading to understand the enhancement mechanism associated with TRSSC. Bond test results show that the ultimate pull-out force increases with an increase in the initial bond length. The bond behavior between textiles and self-stressing concrete is superior to that between textiles and common concrete. The calculation formula of bond strength is established, and the bending test results show that the cracking load of the TRSSC sheets is greater than that of textile reinforced concrete (TRC) sheets. The cracking capacity and ultimate bearing capacity of TRSSC is analyzed, and the calculation results are congruent with the experimental results. (c) 2016 Elsevier Ltd. All rights reserved.
文章类型期刊
收录类别SCI ; EI
语种英语
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/57217
专题中科院长春光机所知识产出
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GB/T 7714
Wang, C. C.,Y. K. Wang,L. F. Hu,et al. Hysteresis compensation of the piezoelectric ceramic actuators-based tip/tilt mirror with a neural network method in adaptive optics[J]. Optical Engineering,2016,55(5).
APA Wang, C. C..,Y. K. Wang.,L. F. Hu.,S. X. Wang.,Z. L. Cao.,...&C. L. Yang and L. Xuan.(2016).Hysteresis compensation of the piezoelectric ceramic actuators-based tip/tilt mirror with a neural network method in adaptive optics.Optical Engineering,55(5).
MLA Wang, C. C.,et al."Hysteresis compensation of the piezoelectric ceramic actuators-based tip/tilt mirror with a neural network method in adaptive optics".Optical Engineering 55.5(2016).
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