Abstract:A kind of sugarcanegathering carriages of selfpropelled sugarcane transporters with scissor lifting mechanisms was designed aiming at geographic and geomorphic characteristics of hilly areas and existing problems of traditional sugarcane transporters with long wheel distances, high lifting gravity center and poor overall stability. Stabilities of traditional and scissor sugarcanegathering carriages were analyzed and studied from angles of their mass centers and discharging angles through the EDEM software based on the discrete element method. The virtual simulation analysis and experiment results showed that the lateral deviation value of the mass center of traditional sugarcanegathering carriages was 123556mm, their mass center oscillating quantity was 177008mm, the maximum change of centroid relative height was 158927mm and their discharging angle was 10493°. Both the lateral deviation value and oscillating quantity of the mass center of scissor sugarcanegathering carriageswas 70549mm, the maximum change of centroid relative height was 161982mm and their discharging angle was 2983°. Compared with traditional sugarcanegathering carriages, scissor sugarcanegathering carriages had a lateral mass center deviation value decreased by 429%, a mass center oscillating quantity decreased by 601% and a discharging angle decreased by 716%. The center of mass of the two cars was changed almost the same as the height. On the other hand, relative contact parameters needed in discrete element simulation were studied, the obtained results were validated through combination of simulation analysis tests and verification experiments in the test platform, which indicated that the theoretical results matched well with experimental ones. In other words, the sugarcanegathering carriages had a good stability. The research results provided references on stability simulation development and innovative design of sugarcanegathering carriages.