Generic placeholder image

Recent Patents on Engineering

Editor-in-Chief

ISSN (Print): 1872-2121
ISSN (Online): 2212-4047

Mini-Review Article

Recent Patents on Concrete Pavers of Coalmines

Author(s): Zhan Cao, Daolong Yang*, Xiaolei Ma, Yanxiang Wang, Songquan Wang and Tianchi Chen

Volume 16, Issue 4, 2022

Article ID: e151021197259 Pages: 10

DOI: 10.2174/1872214812666211015121227

Price: $65

Abstract

Background: Concrete pavers are self-propelled units used in concrete pavement construction that have of paving, vibrating, and leveling functions. The existing concrete pavers have a large size, making it difficult for them to enter underground roadways, and it is difficult to adjust the paving equipment in real time when the width of the underground roadway is deformed.

Objective: To realize intelligent concrete paving in coal mine roadways, based on the analysis of recent concrete paver patents, this paper proposes an intelligent virtual paving system based on 3D infrared scanning imaging.

Methods: The intelligent virtual paving system, which uses multiple groups of 3D infrared scanners and signal processing systems, can collect and analyze 3D images in the roadway and perform virtual paving in the computer. This system can obtain the required parameters of roadway paving, such as the feeding amount, driving speed, limiter height, and width of the synovium, as well as give the initial paving parameters.

Results: In the actual paving process, through virtual paving parameters, the feeding amount and accelerator can be regulated in real time, and the difference between the actual paving and virtual paving can be judged to change the paving width in real time.

Conclusion: Intelligent virtual paver systems have a guiding significance for the improvement of existing paver systems.

Keywords: Coal mining machinery, concrete, road paver, intelligent virtual paving, 3D infrared scanning imaging, patent.

Graphical Abstract
[1]
L. Wang, Z.G. Ren, and H.B. Wang, "Pavers hopper control system, pavers and pavers hopper control method", C.N. Patent 111,694,312, 2020.
[2]
H.P. Gao, J.B. Hu, and J.Y. Xia, "Paver start control method and paver", C.N. Patent 111,520,240, 2020.
[3]
Q.B. Liu, and F. Chen, "Pavers leveling display system, paving machine and control method", C.N. Patent 110,565,486, 2019.
[4]
H.P. Zhong, Z.G. Ren, and L. Wang, "Automatic driving control method and control system of paver, and paver", C.N. Patent 111,236,017, 2020.
[5]
Z.M. Fu, J. Xu, G.T. Ji, and R.C. Zhang, "Paver traveling system and paver", C.N. Patent 208,411,416, 2019.
[6]
Y.C. Wang, J. Xu, D.Q. Li, and G.X. Shao, "Paver material distribution system and paver", C.N. Patent 209,292,831, 2019.
[7]
Z.R. Sun, S.Q. Hao, C. Guo, R.C. Zhang, X.C. Zhang, X.R. Wang, Y.Y. Chen, and J. Xu, "Paver tire track combined type walking system", C.N. Patent 209,010,905, 2019.
[8]
G.X. Shao, G.T. Ji, Y.C. Wang, Z.M. Fu, D.Q. Li, Z.R. Sun, J. Xu, and C.C. Kong, "Telescopic material guide device of paver", C.N. Patent 210,529,438, 2020.
[9]
Y.C. Wang, J. Xu, L. Li, and Y.F. Fu, "Tire formula paver climbing auxiliary device and paver", C.N. Patent 208,533,327, 2019.
[10]
G.T. Ji, N.J. Zhang, G.X. Shao, Z.M. Fu, and Z.R. Sun, "Paver direction indicating device", C.N. Patent 210,529,437, 2020.
[11]
G.B. Sang, Y.C. Wang, and R.C. Zhang, "Signal installs alternately for paver", C.N. Patent 208,379,401, 2018.
[12]
Y.B. Su, X.F. Guo, R.C. Zhang, and Y.C. Wang, "Fixed suspension system and paver screed testing device", C.N. Patent 211,504,651, 2020.
[13]
W.G. Mao, E.H. Zhen, W. Zhi, L. Zhang, Y.J. Kong, and K.J. Fu, "Adjusting device for vibrating mechanism of paver", C.N. Patent 210,529,445, 2020.
[14]
B.M. Cui, Y.M. Fu, G.Y. Wei, Z.M. Fu, and X.N. Qian, "Paver hydraulic system fluid cleaning device", C.N. Patent 208,185,141, 2018.
[15]
H.J. Liu, B. Wei, and T. Zhang, "Paver longitudinal slope automatic leveling control device and method and paver", C.N. Patent 107,741,719, 2018.
[16]
H.J. Liu, B. Wei, and T. Zhang, "Paver longitudinal gradient auto seeking plane controlling means and paver", C.N. Patent 208,092,471, 2018.
[17]
H.J. Liu, B. Wei, and M.N. Wang, "Paver controlling means that makes level", C.N. Patent 207,965,641, 2018.
[18]
H.J. Liu, B. Wei, and M.N. Wang, "Leveling fault detection controller, and leveling control device and method of lying machine", C.N. Patent 108,415,407, 2018.
[19]
H.J. Liu, B. Wei, and T. Zhang, "Leveling controller, paver, and leveling control method", C.N. Patent 109,024,170, 2018.
[20]
C.Z. Hu, Y.S. Tao, and M.N. Wang, "Level detecting device and method and paver", C.N. Patent 106,483,987, 2017.
[21]
X.M. Zong, B. Zhang, L. Zhang, and X.G. Zhang, "Paver (shed type)", C.N. Patent 304,191,825, 2017.
[22]
X.G. Zhang, L.R. Li, B. Ma, L.G. Xue, T.W. Zhang, M. Qi, J.F. Zheng, and C. Luo, "The utility model relates to a wheeled pavers with a rear four-wheel drive wheel arrangement", C.N. Patent 209,099,118, 2019.
[23]
Y.B. Wang, R. Jing, and Z.Y. Han, "Electrical heating system of flat ironing by paver, detection method of leakage of flat ironing by paver and flat ironing by paver", C.N. Patent 109,235,203, 2019.
[24]
J.B. Cui, L.J. Yu, and C.Z. Hu, "The controller, control system and control method of the spreader", C.N. Patent 106,702,858, 2017.
[25]
L.G. Xue, Z. Xu, Y.S. Tao, R. Jing, and Z.F. Shao, "The monitoring and control system, paver and method of paving thickness based on radar technology", C.N. Patent 109,235,204, 2019.
[26]
Z.G. Sun, W.X. Shang, and Z.X. Zeng, "The utility model relates to a cold starting device of a paver and a control method thereof", C.N. Patent 109,162,835, 2019.
[27]
J.F. Zheng, H. Feng, Z.G. Sun, B. Ma, R. Gao, and F.C. Sun, "Pavers hydraulic control system and pavers", C.N. Patent 108,071,058, 2018.
[28]
J.F. Zheng, H. Feng, Z.G. Sun, B. Ma, R. Gao, and F.C. Zhao, "Pavers hydraulic control system and pavers", C.N. Patent 206,204,739, 2017.
[29]
H. Feng, J. Yan, Y.C. Xu, and J.M. Yang, "A simulation modeling method for automatic leveling system of paver", C.N. Patent 106,874,629, 2017.
[30]
H. Sun, Y.C. Xu, and G. Xiao, "The utility model relates to a pavers leveling system and pavers", C.N. Patent 106,480,811, 2017.
[31]
M.E. Congost, "Asphalt aggregate paver for asphalting a surface to be asphalted", U.S. Patent 2,021,189,666, 2021.
[32]
B. Feight, "Flap for an asphalt paver hopper", U.S. Patent 2,021,054,581, 2021.
[33]
M. Guido, "Road paver with asphalt fume risk reduction system", E.P. Patent 3,276,081, 2018.
[34]
M. Kappel, and A. Mahler, "A paver machine and a method for paver screed height calibration", U.S. Patent 2,021,062,440, 2021.
[35]
N. Laugwitz, M. Witsch, and M. Nick, "Road paver with control unit for determining the weight and/or the center of gravity and/or the width of the screed and corresponding method", U.S. Patent 2,017,268,181, 2017.
[36]
J. Mueller, "Paver", U.S.D. Patent 856,375, 2019.
[37]
T. Neumann, "Road paver or feeder with material retention device with overload protection, material retention device, and method for protecting a material retention device", U.S. Patent 2,018,002,875, 2018.
[38]
T. Neumann, "Road construction machine of the road paver or feeder type", U.S. Patent 2,017,341,498, 2017.
[39]
T. Noll, "Road paver with operating module and process to activate an operating function", U.S. Patent 2,016,090,102, 2016.
[40]
J. Prather, "Asphalt paver with remixer", U.S. Patent 10,704,208, 2020.
[41]
J. Brieskorn, L. Schwalbach, S. Wagner, B. Walterscheid, G. Ramseger, and M. Dahm, "Paver having elevation profile monitoring equipment and methods for operation thereof", U.S. Patent 2,020,270,823, 2020.
[42]
M. Dahm, M. Fritz, and C. Barimani, "Slipform paver and method for operating a slipform paver", U.S. Patent 2,019,276,992, 2019.
[43]
M. Fritz, "Slip form paver", U.S. Patent 2,021,010,211, 2021.
[44]
M. Fritz, S. Wagner, and C. Barimani, "Slipform paver and method for operating a slipform paver", U.S. Patent 2,020,057,444, 2020.
[45]
J.L. Marsolek, T. Frelich, and K. Hoisington, "Control system for a road paver", U.S. Patent 2,018,030,672, 2018.
[46]
T. Anheier, T. Haubrich, and T. Klein, "Road paver with viewing indentation in material container", U.S. Patent 2,018,223,486, 2018.
[47]
R.J. Bench, J.R. Leyva, and S.B. Gwilliam, "Paver accompanying device and associated heating system", U.S. Patent 2,017,325,292, 2017.
[48]
H. Delius, A. Rutz, and M. Buschmann, "System for a paver for determining a cooling behavior", U.S. Patent 2,016,061,755, 2016.
[49]
W. Eliason, and T. Berry, "Paver adhesive and method of laying pavers", U.S. Patent 2,019,270,674, 2019.
[50]
W. Eliason, "Paver and methods for manufacturing and using same", U.S. Patent 2,020,131,717, 2020.
[51]
I. Herzberg, F. Grimm, T. Gloeckner, and H. Reufels, "Road paver with spraying device", J.P. Patent 2,019,124,120, 2019.
[52]
I. Herzberg, "Road paver with support device", U.S. Patent 2,017,292,231, 2017.
[53]
A. Horn, D. Horn, T. Hiltenkamp, and M. Watermann, "Road paver having layer thickness detecting device, and method for detecting the thickness of an applied material layer", U.S. Patent 2,018,245,295, 2018.
[54]
J.Z. Liu, H.J. Peng, J.Z. Wang, and P.P. Li, "Substrate auto-paver for table-top culture", U.S. Patent 2,018,288,947, 2018.
[55]
S. Logan, S. Thorat, and C. Drake, "Pedestal mounted paver heating system", W.O. Patent 2,019,077,411, 2019.
[56]
G. Martin, "Road paver with water fog spray device", U.S. Patent 2,018,245,294, 2018.
[57]
S.J. Pan, J. He, C.Q. Chen, A.Q. Tong, and K. Lu, "Automatic paver system having movable material dropping structure and an operating method therefor", W.O. Patent 2,019,076,052, 2019.
[58]
S.J. Pan, J. He, C.Q. Chen, A.Q. Tong, and K. Lu, "Automatic paver system having a measuring and positioning structure", W.O. Patent 2,019,076,059, 2019.
[59]
S. Parrilla, M. Pedriali, and F. Baldrati, "Road paver with quick coupling apparatus for the transverse distribution device, and method", U.S. Patent 2,019,186,085, 2019.
[60]
C.S. Pinson, "Paver", U.S. Patent 2,018,127,929, 2018.
[61]
K. Repasky, and B. Repasky, "Paver supporting apparatus", U.S. Patent 2,020,299,974, 2020.
[62]
J. Repasky, "Aerodynamically stable roof paver system and ballast block therefor", U.S. Patent 2,019,338,526, 2019.
[63]
T.S. Riccobene, and D.T. Riccobene, "Permeable joint for paver and structural system therefor", U.S. Patent 2,019,323,178, 2019.
[64]
T. Schmidt, and M. Seibel, "Limiting plate of a road paver", U.S. Patent 2,019,368,136, 2019.
[65]
B. Stiles, "One piece water permeable paver", U.S. Patent 2,019,194,885, 2019.
[66]
C.M. Thiesse, and R.L. Mings, "Paver material feed system sensor mounting", U.S. Patent 2,020,064,174, 2020.
[67]
S. Trilling, and T.J. Kennedy, "Dynamic paver device with vibration feedback", U.S. Patent 2,020,063,381, 2020.
[68]
R. Uttorodt, and H. Schade, "Method of forming a multi-course paver for paving multi-course road surfaces, and multi-course paver", U.S. Patent 2,008,063,475, 2008.
[69]
A. Vani, "Method for installation of system for paver support", U.S. Patent 2,019,382,963, 2019.
[70]
A. Vani, "System for paver support and method for installation of same", U.S. Patent 10,407,836, 2019.
[71]
Y.Z. Yang, "Paver lockdown systems against wind uplift that work with regular pedestals", U.S. Patent 2,020,263,434, 2020.
[72]
D.L. Yang, Y.X. Wang, X.L. Ma, H.X. Jiang, Z. Cao, and Y.C. Wang, "An intelligent concrete pavement paver and its paving technology", C.N. Patent 112,647,386, 2021.
[73]
D.L. Yang, Y.X. Wang, X.L. Ma, H.X. Jiang, Z. Cao, and Y.C. Wang, "Spherical gear reducer", C.N. Patent 112,628,355, 2021.
[74]
D.L. Yang, Y.X. Wang, X.L. Ma, H.X. Jiang, Z. Cao, and Y.C. Wang, "A kind of small concrete paving equipment and technology driven by mine monorail crane", C.N. Patent 112,681,069, 2021.
[75]
D.L. Yang, Y.X. Wang, X.L. Ma, H.X. Jiang, Z. Cao, and Y.C. Wang, "A kind of micro concrete paving equipment and technology for mining monorail crane traction", C.N. Patent 112,626,980, 2021.

Rights & Permissions Print Cite
© 2024 Bentham Science Publishers | Privacy Policy