Existence scope of only primary vibration within one impact period of a hydraulic drifter piston via point transformation
Author:
Affiliation:
1. College of Energy and Power Engineering, Lanzhou University of Technology
2. Key Laboratory of Fluid Machinery and Systems, Gansu Province
3. Institute of Chongqing Gederui Heavy Industry Intelligent Equipment
Publisher
Japan Society of Mechanical Engineers
Subject
Industrial and Manufacturing Engineering,Mechanical Engineering
Link
https://www.jstage.jst.go.jp/article/jamdsm/12/7/12_2018jamdsm0123/_pdf
Reference22 articles.
1. Arffman, A., Marjamäki, M. and Keskinen, J., Simulation of low pressure impactor collection efficiency curves, Journal of Aerosol Science, Vol.42, No.5 (2011), pp.329-340.
2. Cavanough, G. L., Kochanek, M., Cunningham, J. B. and Gipps, I. D., A self-optimizing control system for hard rock percussive drilling, Transactions on Mechatronics, Vol.13, No.2 (2008), pp.153-157.
3. Chiang, L. E. and ElíAs, D. A., Modeling impact in down-the-hole rock drilling, International Journal of Rock Mechanics and Mining Sciences, Vol.37, No.4 (2000), pp.599-613.
4. Guo, Y., Liu, D., Yang, S., Li, X. and Chen, J., Hydraulic–mechanical coupling modeling by bond graph for impact system of a high frequency rock drill drifter with sleeve distributor, Automation in Construction, Vol.63 (2016), pp.88-99.
5. Hu, Q., Yang, C. and Zheng, H., Dynamic simulation and test research of impact performance of hydraulic rock drill with no constant-pressurized chamber, Automation in Construction, Vol.37, No.1 (2014), pp.211-216.
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1. Influence of Piston Mass and Working Pressure on the Impact Performance of a Hydraulic Rock Drill Using the Stress Wave Method;Machines;2023-10-25
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