首页> 外文期刊>Measurement >Development of a finger adapter method for testing and evaluating vibration-reducing gloves and materials
【24h】

Development of a finger adapter method for testing and evaluating vibration-reducing gloves and materials

机译:开发用于测试和评估减振手套和材料的手指适配器方法

获取原文
获取原文并翻译 | 示例
           

摘要

The objective of this study was to develop a convenient and reliable adapter method for testing and evaluating vibration-reducing (VR) gloves and VR materials at the fingers. The general requirements and technical specifications for the design of the new adapter were based on our previous studies of hand-held adapters for vibration measurement and a conceptual model of the fingers-adapter-glove-handle system developed in this study. Two thicknesses (2 mm and 3 mm) of the adapter beam were fabricated using a 3-D printer. Each adapter is a thin beam equipped with a miniature tri-axial accelerometer (1.1 g) mounted at its center, with a total weight <= 2.2 g. To measure glove vibration transmissibility, the adapter is held with two gloved fingers; a finger is positioned on each side of the accelerometer. Each end of the adapter beam is slotted between the glove material and the finger. A series of experiments was conducted to evaluate this two-fingers-held adapter method by measuring the transmissibility of typical VR gloves and a sample VR material. The experimental results indicate that the major resonant frequency of the lightweight adapter on the VR material (>= 800 Hz) is much higher than the resonant frequencies of the gloved fingers grasping a cylindrical handle (<= 300 Hz). The experimental results were repeatable across the test treatments. The basic characteristics of the measured glove vibration transmissibility are consistent with the theoretical predictions based on the biodynamics of the gloved fingers-handarm system. The results suggest that VR glove fingers can effectively reduce only high-frequency vibration, and VR effectiveness can be increased by reducing the finger contact force. This study also demonstrated that the finger adapter method can be combined with the palm adapter method prescribed in the standardized glove test, which can double the test efficiency without substantially increasing the expense of the test.Published by Elsevier Ltd.
机译:本研究的目的是开发一种方便且可靠的适配器方法,用于测试和评估手指的减振(VR)手套和VR材料。新适配器设计的一般要求和技术规范基于我们之前对振动测量的手持式适配器的研究以及在本研究中开发的手指适配器手柄系统的概念模型。使用3-D打印机制造两个厚度(2mm和3毫米)的适配器梁。每个适配器都是配备有微型三轴加速度计(1.1g)的薄梁,其在其中心安装,总重量<= 2.2g。为了测量手套振动传动,适配器用两个手套;手指定位在加速度计的每一侧。适配器光束的每个端部在手套材料和手指之间进行开槽。进行了一系列实验以通过测量典型的VR手套和样品VR材料的传递率来评估该双手指固定的适配器方法。实验结果表明,VR材料(> = 800Hz)上的轻量级适配器的主要谐振频率远高于抓圆柱手套(<= 300Hz)的手套的谐振频率。实验结果在测试处理中是可重复的。测量手套振动传递率的基本特征与基于手套手指 - 手工系统的生物动力学的理论预测一致。结果表明,VR手套手指可以有效地降低高频振动,并且通过减小手指接触力可以增加VR效果。本研究还证明,手指适配器方法可以与标准化手套试验中规定的手掌适配器方法相结合,这可以将测试效率加倍而不会大幅增加测试费用。由elsevier有限公司发布

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