首页> 外文期刊>International Journal of Computer Applications in Technology >Experimental and numerical analysis of the body of a refuse collecting vehicle
【24h】

Experimental and numerical analysis of the body of a refuse collecting vehicle

机译:垃圾收集车车体的实验和数值分析

获取原文
获取原文并翻译 | 示例
           

摘要

Object of the present work is the body of a vehicle for the refuse collection. The main part of the body and the hatchback door have been studied, both experimentally, by means of strain gauges measurements and numerically, by means of finite element models. The aim of the study was to determine the pressure profile generated by refuse of different kind on the body walls during the typical operating conditions of the vehicle and to analyse the correspondent stress and strain distribution. The strain gauges measurements were carried out in different days on the vehicle operating 'in the field', during the collection of solid urban refuse, paper and plastics. Eighty grids were applied to the vehicle body for this aim and the measurements were taken during the charging of the refuse from the boxes and during the subsequent tamping and discharging phases. A numerical model of the body was also developed, and an unit pressure was applied on different zones of it, calculating the correspondent strains in the strain gauges locations and determining in this way the influence coefficients. The pressure distribution was then evaluated by minimising the differences between the so calculated strains and those experimentally measured: it shows different profiles, depending on the refuse type. Finally, the global stress and strain state of the body was numerically determined applying the pressure profiles found as above: the highest stresses were found in the back-lower part of the body and in particular in the hatchback door.
机译:本发明的目的是收集垃圾的车辆的主体。车身和掀​​背车门的主要部件均通过应变仪测量进行了实验研究,并通过有限元模型进行了数值研究。该研究的目的是确定在车辆的典型运行条件下,不同种类的垃圾在车体壁上产生的压力分布,并分析相应的应力和应变分布。在收集固体城市垃圾,纸张和塑料的过程中,应变仪的测量是在不同日期对“在野外”运行的车辆进行的。为此,在车身上安装了80个栅格,并在从箱子中装入垃圾的过程中以及随后的夯实和排放阶段进行了测量。还开发了主体的数值模型,并将单位压力施加到主体的不同区域,计算应变仪位置中的相应应变,并以此方式确定影响系数。然后通过最小化如此计算的应变与实验测得的应变之间的差异来评估压力分布:取决于垃圾类型,压力分布显示出不同的轮廓。最后,使用如上发现的压力曲线,通过数值确定车身的整体应力和应变状态:在车身的后下部,尤其是掀背门中发现了最大的应力。

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