印度尼西亚angkot副交通工具进入时腰椎和颈部角度弯曲的模拟初步设计研究

Yukhi Mustaqim Kusuma Sya'Bana, Kadek Heri Sanjaya, M. R. Kurnia, J. Shippen
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引用次数: 3

摘要

这是一项研究的初步发现,该研究模拟了进入副Transit时的腰椎和颈部屈曲。模拟结果将确定设计方面的标准,作为构思和实施设计步骤之前的初步步骤。车身生物力学(BoB)是一种用于在副驾驶进入模拟过程中代表乘客任务的软件,使用的骨架模型高165厘米,重65公斤。代表该模拟的环境是铃木Carry SS 2013,它是一辆根据印尼政府道路测试改装成公共交通工具的私家车。由于入口高度低,离地间隙大,腰椎和颈部关节角度是此次入口模拟的重点。当2 s的骨骼在门限制入口点头时,颈关节处的峰值角度为40°,当5 s的骨骼弯腰行走时,腰椎屈曲为70°,这将增加该区域的负荷。基于生物力学模拟方法,我们可以提出公共交通设计框架发展的维度,尤其是副框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of lumbar and neck angle flexion while ingress of paratransit (angkot) in Indonesia as a preliminary design study
This is the preliminary finding of a study to simulate lumbar and neck flexion while ingress to the paratransit. The result of simulation will determine design aspect criteria as a preliminary step before ideation and implementation design steps. Biomechanics of Bodies (BoB) is software that used to represent passenger task during paratransit ingress simulation, with skeleton model that used is height 165 cm and weight 65 kg. Environment to represent this simulation is measured Suzuki Carry SS 2013 as a private car that has been modified into a public transportation in accordance with the Indonesian government road-worthy test. Due to the low height of the entrance and the high ground clearance, lumbar and neck joint angle was a focus of this ingress simulation. The peak angle at the neck joint is 40° when 2 s skeleton nod in the door limitation ingress and lumbar flexion is 70° when 5 s skeleton is walking while bend over that will increase the load on that area. Based on biomechanical simulation approach, we may suggest the dimension of public transportation design framework developments, especially paratransit.
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CiteScore
0.70
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