College of mechanical engineering, Liaoning Technical University, Fuxin, China.
PLoS One. 2024 Feb 9;19(2):e0296624. doi: 10.1371/journal.pone.0296624. eCollection 2024.
A coal model containing gangue was established by discrete elements to study the forces occurring when a shearer cuts coal, and a rigid-flexible coupled shearer section model was established in RecurDyn; the drum cutting process was simulated through bidirectional coupling. The dynamic distribution of the force chain was obtained when cutter teeth cut the coal rock. During the cutting process, the coal rock failure is caused by normal and tangential forces, with the latter having a major role. The ratio of the average tangential force to normal force was 1.34~1.79. When the rock is in the middle of the coal seam, the force (including normal and tangential forces) on the rock is the highest. Moreover, the force on the rock-coal interface is greater than that on the coal-rock interface. The results show that the force on the coal decreases with the increases in rotation speed. In contrast, the number of broken bonds increases. Further, the number of broken bonds and the force of coal increased nonlinearly with traction speed. Finally, the increase of tooth mounting angle decreased the force on the coal rock and the number of broken bonds, followed by an increase. As such, this study provides a reference for further theoretical research on forces in coal cutting.
建立了含矸石的煤体离散元模型,研究采煤机截割煤岩时的受力情况,在 RecurDyn 中建立了刚柔耦合采煤机截割部模型,通过双向耦合模拟滚筒截割过程。得到截齿截割煤岩时力链的动态分布。在截割过程中,煤岩破坏是由法向力和切向力引起的,其中后者起主要作用。平均切向力与法向力的比值为 1.34~1.79。当岩石处于煤层中部时,岩石上的力(包括法向力和切向力)最大。而且,岩石-煤界面上的力大于煤岩界面上的力。结果表明,随着转速的增加,煤体上的力减小,而断裂键的数量增加。此外,煤体上断裂键的数量和力随牵引速度呈非线性增加。最后,安装角的增加减小了煤岩上的力和断裂键的数量,随后又增加。因此,本研究为进一步研究采煤机截割力提供了参考。