Author:
Huang Weihua,Li Ming,Ge Chang,Wei Lijiao,Niu Zhaojun,Zhu Xianzhong
Abstract
Abstract
In order to solve the problems of adhesion to soil and high resistance in traditional subsoiling shovel operation, a bionic energy-saving subsoiling shovel with bionic viscosity reducing and resistance reducing chisel is designed based on the polygon geometry structure of pangolin scales. In this paper, the bionic modeling analysis of chisel type energy-saving subsoiling shovel is carried out by using 3D modeling software. According to the simulation analysis data, we optimize the key structural parameters, and try to produce the bionic energy-saving deep scarifier with reducing viscosity and resistance. In order to study the performance of the chisel type energy-saving subsoiling shovel, L9 (34) orthogonal test was carried out in the field with the number of bionic surfaces, coating materials and forward speed as the experimental factors, and the adhesion soil amount and traction resistance as the test indexes. The results show that the order of influence of each factor on the index is the number of subsoiling shovel bionic surface, coating material and advancing speed; the optimal horizontal combination is that the number of bionic surfaces of subsoiling shovel is 10, the coating material is UHMWPE, and the advancing speed is 6km/h.
Subject
General Physics and Astronomy
Reference8 articles.
1. Discussion on the present situation and development direction of subsoiling machines and tools in China;Guo;Chinese Agricultural Mechanization,1996
2. Modification of amouldboard plough surface using arrays of polyethylene protuberances;Soni;Journal of Terramechanics,2007
3. Effect of enamel coating on the field performance of a mouldboard plough;Salokh;Soil and Tillage Research,1992
4. Experimental study on reducing viscosity and resistance of disc opener;Zuo;Journal of agricultural machinery,1997
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