Science & Technology Review
|
2018, 36(13): 58-64
• Articles •
Ultra high speed digital image correlation system and its application in blasting research
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YANG Liyun1, ZHANG Lanyue1, DING Chenxi1, SUN Jinchao1,2, LIU Linlin1, LI Ming1
Affiliations
1. School of Mechanics and Civil Engineering, China University of Mining and Technology, Beijing 100083, China;
2. China First Metallurgical Group Co., Ltd., Wuhan 430081, China
Published: 2018-07-13
doi: 10.3981/j.issn.1000-7857.2018.13.008
Outline
Combining with the digital image correlation method and the ultra high speed photography technology, an experimental system of ultra high speed digital image correlation is set up to realize monitoring and analysis of the ultra-dynamic strain field under blasting loading. By using the experimental system and the UV flatbed printing technology, a blasting model experiment on polycarbonate (PC) plate is conducted, the evolution of blasting strain field and the attenuation law are analysed. The results show that the compressive wave is the main form of blasting stress wave and the shear wave is the minor form. With the propagation of stress wave in the specimen plane, the stress wave decays from high frequency to low frequency, and the energy of stress wave dissipates gradually. In addition, the ABAQUS finite element analysis code is used to simulate the dynamic process of blasting. The deformation evolution of numerical simulation is in good agreement with the experimental results, it is verified that the experimental system has good applicability to blasting research.
digital image correlation method
/
high speed photography
/
blasting
/
strain field
/
stress wave
杨立云, 张蓝月, 丁晨曦, 孙金超, 刘林林, 李明.
超高速数字图像相关实验系统及其在爆炸研究中的应用.
科技导报,
2018
, 36
(13)
: 58
-64
.
DOI: 10.3981/j.issn.1000-7857.2018.13.008
YANG Liyun, ZHANG Lanyue, DING Chenxi, SUN Jinchao, LIU Linlin, LI Ming.
Ultra high speed digital image correlation system and its application in blasting research[J].
Science & Technology Review,
2018
, 36
(13)
: 58
-64
.
DOI: 10.3981/j.issn.1000-7857.2018.13.008
Year 2018 volume 36 Issue 13
PDF
598
175
Cite this Article
BibTeX
Article Info
doi: 10.3981/j.issn.1000-7857.2018.13.008
- Receive Date:2017-09-18
- Online Date:2018-07-23
- Published:2018-07-13