Olejniczak Klaudia, Napiórkowski Jerzy
Department of Construction, Vehicle and Machine Operation, Faculty of Technical Sciences, University of Warmia and Mazury in Olsztyn, M. Oczapowskiego 11, 10-719 Olsztyn, Poland.
Materials (Basel). 2021 Oct 18;14(20):6164. doi: 10.3390/ma14206164.
This paper presents the results of comparative research on materials used for a track steering system in an abrasive soil mass. Two types of elastomer tracks were tested: a steel-rubber stave from an asphalt paver and a rubber overlay used in vehicles with a steel track chain. The results obtained were related to the wear of Hadfield steel. The tests were carried out on a "spinning bowl" stand in a natural soil mass, which consisted of two types of soil: light and heavy. It was shown that the resistance to abrasive wear depended on the grain size of the worked soil and the chemical composition of the materials. Rubber overlay was found to have the highest resistance index in all types of soils. It was made of high-density polyethylene, low-density polyethylene, ethylene acrylate/ethyl copolymer (ethylene acrylate 18%) and ethylene/propylene copolymer with an ethylene content of 60%. An analysis of the condition of the machined surfaces after friction tests complements the results presented.
本文介绍了在磨蚀性土壤中用于履带转向系统的材料的对比研究结果。测试了两种类型的弹性体履带:一种来自沥青摊铺机的钢-橡胶板条,以及一种用于带有钢制履带链车辆的橡胶覆盖层。所获得的结果与哈德菲尔德钢的磨损有关。测试在天然土壤中的“旋转碗”试验台上进行,该天然土壤由两种类型的土壤组成:轻质土和重质土。结果表明,耐磨蚀性取决于被加工土壤的粒度和材料的化学成分。发现橡胶覆盖层在所有类型的土壤中具有最高的阻力指数。它由高密度聚乙烯、低密度聚乙烯、乙烯丙烯酸酯/乙烯共聚物(乙烯丙烯酸酯含量为18%)和乙烯含量为60%的乙烯/丙烯共聚物制成。摩擦试验后对加工表面状况的分析补充了所呈现的结果。