Suppr超能文献

手动轮椅惯性特性的经验测定试验方法。

Test method for empirically determining inertial properties of manual wheelchairs.

作者信息

Eicholtz Matthew R, Caspall Jayme J, Dao Phuc V, Sprigle Stephen, Ferri Al

机构信息

Carnegie Mellon University-Mechanical Engineering, 5000 Forbes Ave, Pittsburgh, PA 15213, USA.

出版信息

J Rehabil Res Dev. 2012;49(1):51-62. doi: 10.1682/jrrd.2011.03.0045.

Abstract

The iMachine is a spring-loaded turntable used to measure inertial properties of irregularly shaped rigid bodies, specifically manual wheelchairs. We used a Newton-Euler approach to calculate wheelchair mass and center of mass (CM) location from static force measurements using load cells. We determined the moment of inertia about the vertical axis from the natural frequency of the system in simple harmonic motion. The device was calibrated to eliminate the effects of platform components on measurement error. For objects with known inertial properties, the average relative error of the mass and the CM coordinates (x and y) were 0.76%, 0.89%, and 1.99%, respectively. The resolution of the moment of inertia calculation depends on the ratio of test piece inertia to system inertia, such that the higher the ratio, the more accurate the measurements. We conducted a Gage Repeatability and Reproducibility (Gage R&R) test using three manual wheelchairs measured three times by three operators; the results showed that over 90% of the variance in inertia was caused by differences in the wheelchairs being measured. Gage R&R analysis indicated that measurement system operation was acceptable using criteria from the Automobile Industry Action Group for both inertia and mass measurements.

摘要

iMachine是一种装有弹簧的转盘,用于测量不规则形状刚体(特别是手动轮椅)的惯性特性。我们采用牛顿 - 欧拉方法,通过使用测力传感器进行静态力测量来计算轮椅的质量和质心(CM)位置。我们根据系统在简谐运动中的固有频率确定绕垂直轴的转动惯量。该设备经过校准,以消除平台组件对测量误差的影响。对于具有已知惯性特性的物体,质量和CM坐标(x和y)的平均相对误差分别为0.76%、0.89%和1.99%。转动惯量计算的分辨率取决于试件惯性与系统惯性的比值,该比值越高,测量越准确。我们使用三把手动轮椅,由三名操作员各测量三次,进行了量具重复性和再现性(Gage R&R)测试;结果表明,超过90%的惯性差异是由被测轮椅的差异引起的。Gage R&R分析表明,根据汽车工业行动小组的标准,测量系统在惯性和质量测量方面的操作是可接受的。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验