Selecting pre-tensioning of rubber reinforced track on agricultural tractor with cushion suspension

C. Zhdanovich, V. N. Plishch
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引用次数: 1

Abstract

Rubber reinforced tracks and cushion suspension are becoming increasingly common on agricultural tractors. They increase environmental friendliness, provide asphalt driving ability and allow for higher transport speed of crawler tractors, improving working conditions for the tractor driver. The crawler tracks of these thrusters have a high degree of suppleness, so a loss of stability of the rubber reinforced track on the drive wheel can be a problem when operating under high traction loads. The most effective measure to increase the stability of the rim in the mover is to increase the pre-static tension. However, high track tension increases losses in the undercarriage and stresses the undercarriage, resulting in reduced undercarriage life and loss of performance. Analytical dependencies are derived to determine the rational pre-static tension of rubber reinforced crawler tractors with cushion and blocked suspensions during start of moving and moving modes. The required static pre-tensioning of rubber reinforced tracks for Belarus 1802, 2102 and 2103 tractors is determined. It has been found that the greatest necessary static pre-tensioning of the rubber reinforced tracks is required at the maximum forces on the driving wheels of the tractor. It is shown that locking the suspension when operating the tractor with high traction loads at low speed allows to reduce the required static pre-tensioning of rubber reinforced tracks and, as a consequence, their loading. The results of this research can be used in design and operation of tractors with rubber reinforced tracks. 
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缓冲悬架农用拖拉机橡胶履带预张紧的选择
橡胶履带和缓冲悬架在农用拖拉机上越来越普遍。提高了环境友好性,提供了沥青行驶能力,提高了履带式拖拉机的运输速度,改善了拖拉机司机的工作条件。这些推力器的履带轨道具有高度的柔韧性,因此在高牵引载荷下运行时,驱动轮上橡胶增强轨道的稳定性损失可能是一个问题。提高动圈稳定性的最有效措施是增加预静张力。然而,高轨道张力会增加起落架的损耗,并对起落架造成压力,导致起落架寿命缩短和性能下降。为确定带缓冲和阻塞悬架的橡胶增强履带拖拉机在启动和移动模式下的合理预静张力,推导了相关解析式。确定了白俄罗斯1802、2102和2103拖拉机橡胶增强履带所需的静态预张紧力。已经发现,在拖拉机驱动轮上的最大力时,橡胶增强履带需要最大的静态预张力。结果表明,在低速运行具有高牵引载荷的拖拉机时,锁定悬架可以减少橡胶加固轨道所需的静态预张力,从而减少其负载。研究结果可为橡胶履带拖拉机的设计和使用提供参考。
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