van Roosmalen L, Bertocci G, Ha D R, Karg P, Szobota S
Department of Rehabilitation Science and Technology, University of Pittsburgh, PA 15260, USA.
J Rehabil Res Dev. 2000 Sep-Oct;37(5):543-53.
Safety of motor vehicle seats is of great importance in providing crash protection to the occupant. An increasing number of wheelchair users use their wheelchairs as motor vehicle seats when traveling. A voluntary standard requires that compliant wheelchairs be dynamically sled impact tested. However, testing to evaluate the crashworthiness of add-on wheelchair seating systems (WCSS) independent of their wheelchair frame is not addressed by this standard. To address this need, this study developed a method to evaluate the crash-worthiness of WCSS with independent frames. Federal Motor Vehicle Safety Standards (FMVSS) 207 test protocols, used to test the strength of motor vehicle seats, were modified and used to test the strength of three WCSS. Forward and rearward loads were applied at the WCSS center of gravity (CGSS), and a moment was applied at the uppermost point of the seat back. Each of the three tested WCSS met the strength requirements of FMVSS 207. Wheelchair seat-back stiffness was also investigated and compared to motor vehicle seat-back stiffness.
机动车座椅的安全性对于为驾乘人员提供碰撞保护至关重要。越来越多的轮椅使用者在出行时将轮椅用作机动车座椅。一项自愿性标准要求符合规定的轮椅要进行动态雪橇碰撞测试。然而,该标准并未涉及对独立于轮椅框架的附加轮椅座椅系统(WCSS)的防撞性进行测试。为满足这一需求,本研究开发了一种评估具有独立框架的WCSS防撞性的方法。用于测试机动车座椅强度的联邦机动车安全标准(FMVSS)207测试规程经过修改后,用于测试三种WCSS的强度。向前和向后的载荷施加在WCSS的重心(CGSS)上,并且在座椅靠背的最高点施加一个力矩。三种测试的WCSS均符合FMVSS 207的强度要求。还对轮椅座椅靠背的刚度进行了研究,并与机动车座椅靠背的刚度进行了比较。