首页> 外文会议>ASME international mechanical engineering congress and exposition >FALLING BODY IMPACT BEHAVIOR OF FIBERGLASS STEPLADDERS WITH PLASTIC KNEE BRACES
【24h】

FALLING BODY IMPACT BEHAVIOR OF FIBERGLASS STEPLADDERS WITH PLASTIC KNEE BRACES

机译:塑料膝关节支撑的玻璃纤维梯子的跌落冲击行为

获取原文

摘要

According to estimates reported in the U.S. Consumer Product Safety Commission's National Electronic Injury Surveillance System, there were greater than 10,000 stepladder related injuries treated in hospital emergency rooms nationwide per year in the period from 2009 through 2013. Research and experience have sought to correlate specific stepladder damage patterns to the causes of some injuries involving stepladders. Prior studies have associated a specific damage pattern -inward deformation of the stepladder's front side rails - with impact loading of a user's body onto the lower portion of a front side rail following a fall from the stepladder. Those prior studies were conducted using stepladders with metal knee braces and with the ladder cap simply supported during impact testing. Currently sold fiberglass stepladders often have plastic rather than metal knee braces. In our study, side rail impact testing was performed in order to evaluate how a design change from metal knee braces to plastic knee braces affects impact damage patterns in fiberglass stepladders. Biomechanics simulations were used to inform the selection of the weights used for impact testing and allowed the test results to be evaluated in the context of potential body contact scenarios that could produce equivalent loading of the side rail. Our study demonstrates that depending on the weight of the impacting body, fiberglass ladders with plastic knee braces show different dynamic responses to impact loading than do their metal counterparts. Additionally, the test methods in this study incorporate realistic dynamics in that the weight impacted the lower portion of the stepladder's front side rail while the stepladder was actively tipping with only two of its feet in contact with the ground and with the top cap unsupported. The results indicate that ladders with metal knee braces can permanently deform when impacted with loads less than that required to permanently deform the ladders tested with plastic knee braces. The absence of permanent side rail deformation in the plastic knee braced stepladders tested even after undergoing significant elastic deformation during testing gives rise to new questions about the potential for damage that is not observable based on a visual examination.
机译:根据美国消费者产品安全委员会国家电子伤害监视系统的估计,从2009年到2013年,全国每年在急诊室中治疗的梯梯相关伤害超过10,000例。研究和经验试图将特定的梯梯关联起来梯子造成某些伤害的原因的损坏方式。先前的研究已经将特定的损伤模式-梯子的前侧栏杆向内变形-与从梯子掉落后使用者身体撞击到前侧栏杆的下部上相关联。那些先前的研究是使用带有金属护膝的梯子进行的,梯子帽在冲击测试过程中得到了简单的支撑。当前销售的玻璃纤维梯凳通常具有塑料而不是金属的膝盖支架。在我们的研究中,进行了侧轨冲击测试,以评估从金属护膝到塑料护膝的设计变化如何影响玻璃纤维梯子的冲击损伤模式。使用生物力学模拟来告知用于冲击测试的砝码的选择,并允许在可能产生侧轨等效载荷的潜在身体接触情况下评估测试结果。我们的研究表明,根据撞击物体的重量,带有塑料护膝的玻璃纤维梯子对撞击载荷的动态响应与金属撞击物不同。此外,本研究中的测试方法还结合了实际的动力学原理,其中重量影响了梯子前侧导轨的下部,而梯子仅在其两只脚与地面接触且无顶盖的情况下主动倾翻。结果表明,带有金属护膝的梯子在承受的载荷小于使塑料护膝使梯子永久变形所需的载荷时可以永久变形。即使在测试过程中经历了明显的弹性变形后,在测试的塑料膝撑阶梯梯中也没有永久性的侧轨变形,这引起了新的问题,即基于视觉检查无法观察到的潜在损坏可能性。

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