...
首页> 外文期刊>International Journal of Automotive Technology >IMPACT BEHAVIOR MODELING OF MOTORCYCLE FRONT WHEEL-TIRE ASSEMBLY
【24h】

IMPACT BEHAVIOR MODELING OF MOTORCYCLE FRONT WHEEL-TIRE ASSEMBLY

机译:摩托车前轮总成的冲击行为建模

获取原文
获取原文并翻译 | 示例
           

摘要

Experiments were conducted to investigate the influence of certain parameters that affect the impact response of the motorcycle front wheel-tire assembly under various impact conditions. Impact tests were conducted according to (2{sub}v){sup}(5-1) fractional factorial design using a pendulum impact test apparatus with impact speed, impact mass, tire inflation pressure level, striker geometry, and impact location as design factors. Significant factors influencing the response of the wheel-tire assembly were identified. Coefficients for each factor were also determined, and empirical models were then developed for each response. An analysis indicates that the developed models fit well within the experimental ranges of the respective factors. However, for several interaction effects, the models become unrealistic, whereby they give certain deformation values when approaching zero impact mass and/or zero impact velocity. This is not consistent with the mechanics of the physical world, as there should not be any significant deformation when delivered impact energy is small enough. Efforts have been made in developing better models to resolve the inconsistency and to include a wider range, especially considering the case of the lower limit of experimental factors, which are an impact mass of 51.18 kg and/or an impact velocity of 3 m s{sup}(-1) (10.8 km/h) down to zero. The minimum amount of impact energy required to produce the onset of observable deformation on the wheel was incorporated in the development of new models. Finally, the present models have been developed not only to cover the lower regions but also to range up to the upper limits of the factors, which are an impact mass of 101.33 kg and an impact velocity of 6 m s{sup}(-1) (21.6 km/h).
机译:进行了实验,以研究某些参数的影响,这些参数会在各种冲击条件下影响摩托车前轮轮胎组件的冲击响应。根据(2 {sub} v){sup}(5-1)分数阶乘设计,使用摆锤式冲击试验仪进行冲击试验,冲击速度,冲击质量,轮胎充气压力水平,撞针几何形状和冲击位置作为设计因素。确定了影响车轮轮胎组件响应的重要因素。还确定了每个因素的系数,然后为每个响应建立了经验模型。分析表明,所开发的模型在各个因素的实验范围内拟合得很好。但是,对于几种交互作用,模型变得不切实际,从而当接近零冲击质量和/或零冲击速度时,它们会提供某些变形值。这与物理世界的力学原理不一致,因为当传递的冲击能量足够小时,不应有任何明显的变形。已经做出努力来开发更好的模型来解决不一致问题并扩大范围,特别是考虑到实验因素的下限情况,即冲击质量为51.18 kg和/或冲击速度为3 ms {sup }(-1)(10.8 km / h)降至零。在新车型的开发过程中,考虑了使车轮产生可观察到的形变所需的最小冲击能量。最后,本模型的开发不仅涵盖了下部区域,而且还涵盖了影响因素的上限,即撞击质量为101.33 kg,撞击速度为6 ms {sup}(-1) (21.6 km / h)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号