[1]
Song, Z.F., Shi, X.B., Jiang, H.P., Lei, K.K. Spiral drum of a coal
shearer used to increase lump coal rate. CN204920947 (2015).
[2]
Li, Z., Li, J., Li, X.Y., Wang, X.J., Bi, Y.K., Song Y.Y. A high
lump coal mining machine drum. CN205654338 (2016).
[3]
Zhang, D.G., Yang, B., Zhou, S.Y. A coal mining machine drum
and coal mining machine. CN206458466 (2017).
[4]
Tong, J.F., Shang, Q.H., Meng, W.M., Liu, S.X., Du, J., Zhang, F.
A new type of rotary excavator cutter. CN206816253 (2017).
[5]
Zhao, L.J., Tian, Z., Shi, B.S., Liu, X.N., Zhang, M.C., Zhou, W.C.
Kind of spiral drum of coal mining machine for cutting coal rock
with gangue and gangue. CN106640067 (2017).
[6]
Wang, X.G., Qu, J.T., Zhang, L.J., Gao, W., Wang, L. A kind of
wear-resistant and sparkless cutter type tooth. CN207470181 (2018).
[7]
Yang, D.L., Wang, Y.X., Xing, B.S. A knife-type cutter that can
measure the cutting temperature. CN107780933 (2018).
[8]
Bai, H.W. A type of rotary tool cutter. CN207093086 (2018).
[9]
Wu, H.Z., Liu, S.Y., Du, C.L., Xue, Y.G., Cui, X.X., Li, J.P., Liu,
X.H. Wavy spiral blade roller. CN204609877 (2015).
[10]
Liu, Y.Y., Du, C.L., Cui, X.X., Li, J.P., Jiang, H.X., Liu, X.H.,
Tang, W., Wang, S.L. A hob cutting head. CN105178955 (2015).
[11]
Liu, C.Y., Du, C.L., Xue, Y.G., Li, J.P., Jiang, H.X., Liu, X.H.,Liu, Z.H., Han, D.D. Stepped trapezoid drum of high stress coal and rock in deep well. CN104712334 (2015).
[12]
Zhang, X.Q., Liu, X.H., Wang, S.X., Wang, S.B., Wang, H.G.,
Yan, G.C. Novel wear-resisting cutting tooth. CN204476411 (2015).
[13]
Song, Z.F., Su, X.B., Jiang, H.P., Lei, K.K. A coal-winning machine
helical drum for improving lump coal rate. CN204920947 (2015).
[14]
Hao, S.Q, Liu, T., Yang, M.; Bao, Q.B., Guo, S.L., Wu, S.Y., Lv,
X.D., Pang, J.F., Xu, S.W., Du, W., Xiao, H., Ding, Z.Y., Zhang,L.M., Li, W.W. Three-drum shearer and shearing method of ultrathick seams. CN106050228 (2016).
[15]
Liu, J.X., Gao, R., Ma, C., Yu, R.D., Li, X.H., Xue, F.X. An angle
adjustable pickaxe tooth socket. CN205400729 (2016).
[16]
Pu, C.Y., Jing, Z.G., Wu, L.M., Liu, F., Liu, Q., Yan, Z.L., Wang,
M.L., Lu, D.L. Coal mine roadway grooving machine.
CN105332700 (2016).
[17]
Li, Z., Li, J., Li, X.Y., Wang, X.J., Bi, Y.K., Song, Y.Y. High lump
coal rate coal -winning machine cylinder. CN205654338 (2016).
[18]
Li, W.H., Zhou, F., Zhang, W., Liang, Y.J., Chen, G.N., Wang, S.,
Di, L.L., Tao, K. A broken middle part groove reaches elevating
conveyor. CN205199625 (2016).
[19]
Zhang, D.G., Yang, B., Zhou, S.Y. Coal -winning machine cylinder
and coal -winning machine. CN206458466 (2017).
[20]
Xuan, H.B., Yang, F., Zhang, P., LI, T.Y., Kou, Z.M. Split pickaxshaped
cutting pick. CN106801604 (2017).
[21]
Wang, Z.P., Guo, G.F., Cai, J., Dong, C.J., Li, Z.X. A hard alloy
blade head. CN206200154 (2017).
[22]
Yan, P.F., Li, W.W., Zhou, X., Ding, Z.Y., Liu, Z.P., Wang, B., Li,
R.F., Li, G. A high lump coal cutting device. CN206409229
(2017).
[23]
Zhang, Q., Cao, Y.K., Sun, R.D. A high ground stress tunneling
unloading cutting device. CN106321111 (2017).
[24]
Yan, H.P., He, D.H., Ma, Z.B., Hu, L.Y., Guo, W.F., Hui, B.L.,
Xing, S.X., Liu, G.Y., Huang, W.L., Yin, G.J., Bao, T.Y., Zhou, T.
A cutting head used in boring machine and its construction method.
CN106968680 (2017).
[25]
Zhao, L.J., Tian, Z., Shi, B.S., Liu, X.N., Zhang, M.C., Zhou, W.C.
Kind of spiral drum of coal mining machine for cutting coal rock
with gangue and gangue. CN106640067 (2017).
[26]
Ma, M.Z., Shi, X.B., Yuan, B., Tao, X.Z., Bu, Q.H., Shi, J. A spiral
drum of coal mining machine for improving lump coal rate.
CN206737915 (2017).
[27]
Xu, Z.P. Spiral drum of a high reliability coal miner.
CN206816248 (2017).
[28]
Yang, D.L., Wang, Y.X., Xing, B.S. A pickaxe type cutter that can
measure the cutting temperature. CN107542463 (2018).
[29]
Ma, C., Yu, R.D., Jiao, W., Gao, R., Wang, Y. A rotary pickaxe
gear cutting device. CN207212335 (2018).
[30]
Li, S.J., Lei, G.Y., Yao, M.B., Liu, Q.W., Zhang, Y.Q., Wu, Q.F.,
Kang, M., Liang, W.C., Huang, Z.B., Zhang, L.J., Zhang, T. New
type of double-helix gear cutting device for water mining machine.
CN107780940 (2018).
[31]
Qian, D., Huang, M., A spiral drum of a coal mining machine.
CN207598235 (2018).
[32]
Wan, Z.J., Cheng, X.L., Liu, S.P., Zhang, Y., Zhou, C.B., Cheng,
J.Y. The utility model relates to a cutting tooth which can be used
to measure the cutting head temperature in the process of cutting
coal rock by mining machinery. CN204200231 (2014).
[34]
Yang DL, Li JP, Du CL, Liu SY, Zheng KH, Jiang HX. Wear performance of conical pick in rotary-drilling cutting process. Electron J Geotech Eng 2015; 20(8): 2031-40.
[40]
Liu CS, Wang QH, Li DG. Fractal characteristic and specific energy model of conical picks cutting resistance spectrum. J China Coal Soc 2015; 40(11): 2623-8.
[41]
Wang LP, Jiang BS, Zhang Q. Calculation of peak cutting force of conical picks under conditions of dissymmetrical slotting. J China Coal Soc 2016; 41(11): 2876-82.
[42]
Wang LP, Jiang BS, Zhang Y, Zhang Q. Calculation of peak cutting force of conical picks based on Evans’ cutting model. J China Coal Soc 2016; 41(9): 2367-72.
[43]
Zhang QQ, Han ZN, Zhang MQ, Zhang JG. Tests and simulation for wear of conical pick under impact load. J Vib Shock 2016; 35(13): 58-65.
[44]
Ou Y, Yi P, Yang Q. Estimation of cutting force of rock cutting with conical picks. J Shanghai Jiaotong Univ 2016; 50(1): 35-40 and 46.
[45]
Liu CS, Li DG. Experimental research and theoretical model on lateral force of conical pick under different cutting conditions. J China Coal Soc 2016; 41(9): 2359-66.
[47]
Liu JX, Ma C, Zeng QL, Gao R, Jiao ZY. Research on cutting force of conical pick in cutting coal process. J China Coal Soc 2017; 42(5): 1325-30.
[50]
Choi SW, Lee C, Kang TH, Park B, Chang SH. An experimental study of cutter forces of conical picks with uniaxial compressive strength of mortar specimens. 4th ISRM Young Scholars Symposium on Rock Mechanics, YSS. Jeju, Korea, May, 2017.
[52]
Liang YP, Wang X, Wang QF. Effects of cut depth and cut spacing on tool forces acting on a conical pick in rock cutting. J Vib Shock 2018; 37(3): 27-33.