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基于离散元法的圆锥破碎机固定锥衬板磨损行为研究

Research on the Wear Behavior of the Fixed Cone Liner of a Cone Crusher Based on the Discrete Element Method.

作者信息

Li Dasheng, Wang Yonghai, Wang Chao, Li Sehui

机构信息

School of Mechanical and Vehicular Engineering, Bengbu University, Bengbu, Anhui 233030, China.

Chankoo Mechanical and Electrical Technology (Shanghai) Co. Ltd, Shanghai 201199, China.

出版信息

ACS Omega. 2020 May 5;5(19):11186-11195. doi: 10.1021/acsomega.0c01272. eCollection 2020 May 19.

Abstract

Taking reducing the wear of the fixed cone liner of a cone crusher as the starting point, the movement and geometry parameters of the cone crusher are studied using the discrete element method. To improve the service life and working efficiency of the whole cone crusher. The UG model and discrete element Yade model of the cone crusher are established, and the different shapes of the tin ore are represented using Yade's preprocessor through eight different ways of particle combination and superposition. The static friction coefficient between the manganese ore and the cone crusher is studied and calibrated using the slope method. The relative error between the Yade and test results is 1.58%, and the calibration result is 0.44. The repose angle of the manganese ore is studied using the collapse method. The repose angle increases with the increase of the static friction coefficient and the dynamic friction coefficient, but the change trend is different. The effect of the dynamic friction coefficient on the repose angle is obviously greater than that of the static friction coefficient. The dynamic friction coefficient obtained by Yade is 0.042. Taking the swing distance, rotating speed, and bottom angle of the fixed cone as the orthogonal experimental factors of Yade, the regression equation of the fixed cone liner was obtained through the nonlinear processing of SPSS 25.0. According to Matlab R2017b, the influences of the swinging distance, rotating speed, and bottom angle of the fixed cone on the fixed cone liner are obtained. According to Yade's research results, the order of the influence degree of liner wear is: the rotating speed of moving cone, the swinging distance of the fixed cone, and the base angle of fixed rotation. When the swinging distance of the fixed cone is 146 mm, the rotating speed of the moving cone is 198 rpm, the fixed rotation bottom angle is 28°, and the minimum value of the liner wear is 23 mm. Yade's results are consistent with the change trend of the wear amount of the bushing obtained from the test. The research results show the correctness of using the Yade method to study the wear of the fixed cone liner of a cone crusher, which provides a theoretical basis for reducing the wear of the fixed cone liner of a cone crusher, and puts forward a new method to study the wear of relevant parts of a fixed cone crusher. At the same time, the research results are of great significance for achieving energy-saving in mining enterprises.

摘要

以降低圆锥破碎机固定锥衬板磨损为出发点,采用离散元法对圆锥破碎机的运动和几何参数进行研究,以提高整个圆锥破碎机的使用寿命和工作效率。建立了圆锥破碎机的UG模型和离散元Yade模型,利用Yade的前置处理器通过八种不同的颗粒组合和叠加方式来表征不同形状的锡矿石。采用坡度法研究并标定了锰矿石与圆锥破碎机之间的静摩擦系数,Yade结果与试验结果的相对误差为1.58%,标定结果为0.44。采用塌落法研究了锰矿石的休止角,休止角随静摩擦系数和动摩擦系数的增大而增大,但变化趋势不同,动摩擦系数对休止角的影响明显大于静摩擦系数,Yade得到的动摩擦系数为0.042。以固定锥的摆动距离、转速和底角作为Yade的正交试验因素,通过SPSS 25.0的非线性处理得到了固定锥衬板的回归方程。根据Matlab R2017b,得到了固定锥的摆动距离、转速和底角对固定锥衬板的影响。根据Yade的研究结果,衬板磨损影响程度的顺序为:动锥转速、固定锥摆动距离、固定旋转底角。当固定锥摆动距离为146mm、动锥转速为198rpm、固定旋转底角为28°时,衬板磨损最小值为23mm。Yade结果与试验得到的衬套磨损量变化趋势一致。研究结果表明了采用Yade方法研究圆锥破碎机固定锥衬板磨损的正确性,为降低圆锥破碎机固定锥衬板磨损提供了理论依据,提出了一种研究固定圆锥破碎机相关部件磨损的新方法。同时,研究结果对矿山企业实现节能具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57df/7241016/59c62ae907ab/ao0c01272_0001.jpg

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