首页> 外文期刊>Applied Ergonomics >Recommendations for tool-handle material choice based on finite element analysis
【24h】

Recommendations for tool-handle material choice based on finite element analysis

机译:基于有限元分析的刀柄材料选择建议

获取原文
获取原文并翻译 | 示例
           

摘要

Huge areas of work are still done manually and require the usages of different powered and non-powered hand tools. In order to increase the user performance, satisfaction, and lower the risk of acute and cumulative trauma disorders, several researchers have investigated the sizes and shapes of tool-handles. However, only a few authors have investigated tool-handles' materials for further optimising them. Therefore, as presented in this paper, we have utilised a finite-element method for simulating human fingertip whilst grasping tool-handles. We modelled and simulated steel and ethylene propylene diene monomer (EPDM) rubber as homogeneous tool-handle materials and two composites consisting of EPDM rubber and EPDM foam, and also EPDM rubber and PU foam. The simulated finger force was set to obtain characteristic contact pressures of 20 kPa, 40 kPa, 80 kPa, and 100 kPa. Numerical tests have shown that EPDM rubber lowers the contact pressure just slightly. On the other hand, both composites showed significant reduction in contact pressure that could lower the risks of acute and cumulative trauma disorders which are pressure-dependent. Based on the results, it is also evident that a composite containing PU foam with a more evident and flat plateau deformed less at lower strain rates and deformed more when the plateau was reached, in comparison to the composite with EPDM foam. It was shown that hyper-elastic foam materials, which take into account the non-linear behaviour of fingertip soft tissue, can lower the contact pressure whilst maintaining low deformation rate of the tool-handle material for maintaining sufficient rate of stability of the hand tool in the hands. Lower contact pressure also lowers the risk of acute and cumulative trauma disorders, and increases comfort whilst maintaining performance.
机译:仍然需要手动完成大量工作,并且需要使用不同的电动和非电动手动工具。为了提高用户的性能,满意度并降低急性和累积性创伤疾病的风险,一些研究人员研究了工具手柄的尺寸和形状。但是,只有少数作者研究了工具句柄的材料以进一步优化它们。因此,如本文所述,我们利用有限元方法在握住工具手柄的同时模拟人的指尖。我们对作为均质工具材料的钢和乙丙二烯单体(EPDM)橡胶以及由EPDM橡胶和EPDM泡沫以及EPDM橡胶和PU泡沫组成的两种复合材料进行了建模和仿真。设置模拟手指力以获得20 kPa,40 kPa,80 kPa和100 kPa的特征接触压力。数值测试表明,EPDM橡胶仅稍微降低了接触压力。另一方面,两种复合材料均显示接触压力显着降低,这可以降低与压力有关的急性和累积性创伤疾病的风险。基于该结果,还明显的是,与具有EPDM泡沫的复合材料相比,含有更明显且平坦的平台的PU泡沫的复合物在较低的应变速率下变形较小,并且在达到平台时变形更大。结果表明,考虑到指尖软组织的非线性行为的超弹性泡沫材料可以降低接触压力,同时保持工具手柄材料的低变形率,从而保持手动工具的足够的稳定性。在手中。较低的接触压力还可以降低急性和累积性创伤疾病的风险,并在保持性能的同时增加舒适度。

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