[1]
Research Institute of the Ministry of Transportation of P. R. China. Highway construction and road transport industry market research report. Beijing, China, (2009).
Google Scholar
[2]
X.D. He, G.S. Liu and J.N. Lv: Shandong Building Materials, (2010) No. 3, p.39.
Google Scholar
[3]
Ministry of Transportation of P.R. China. Transportation Twelfth Five Year Plan,. Beijing, China, (2011).
Google Scholar
[4]
R. Boyer, W. Jones: Airfield Pavements Specialty Conference (Las Vegas, Nevada, United States, September 21-24, 2003). Vol. 1, p.148.
Google Scholar
[5]
Q.H. Wang: Research on mechanism and effect of resonant broking for existing cement concrete pavements (MS., Chongqing Jiaotong University, China 2011), p.15.
Google Scholar
[6]
X.F. Yan, W.B. Chung, B.L. Li, C.M. He: Machinery Design & Manufacture, Vol. 1 (2008) No. 1, p.11.
Google Scholar
[7]
X.F. Yan: Reverse Study on Vibrating System on Resonant Machine Based on Method of Simulation and Optimization (MS., Southwest Jiaotong University, China 2008), p.20.
Google Scholar
[8]
P.J. Zhang: Key technology research of resonant cement concrete pavement breaker control and fault diagnosis system (Ph.D., Central South University, China 2011), p.24.
Google Scholar
[9]
Resonant Technology Company: U.S. Patent 4, 402, 629. (1983).
Google Scholar
[10]
Z.Q. Zhao: Research on panel broken and regenerated in situ technology based on the transformation of the rural cement concrete road (MS., Chongqing Jiaotong University, China 2009), p.18.
Google Scholar
[11]
K. Yang, T. Han: Journal of Jiamusi University (Natural Science Edition), Vol. 23 (2005) No. 1, p.81.
Google Scholar
[12]
L.P. Chen: ADAMS mechanical system dynamics analysis and application tutorial (Tsinghua University Press, China 2005).
Google Scholar
[13]
Y.J. Chen: Construction Mechanization, (1982) No. 4, p.7.
Google Scholar