An Ergonomics Study and Rapid Upper Limb Assessments (RULA) for a Car Interior to Support Limb Disabled Drivers

Salami Bahariah Suliano, S. Ahmad, A. As’arry, F. Aziz
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Abstract

The demanding market shows that the need for the disabled vehicles have been increasing over the recent years. However, these factory setting cars are pricey, and its buy-sell process is time-consuming. These cars also are not meant as a universal design or inclusion design type of car, so that when it is designed for the disabled, it can be beneficial for all. With the motivation to include limbs disabled drivers in designing a universally designed car, this study aims to determine the preferred ergonomics interior of the car which can improve features needed to meet the mobility of impaired individuals in most scenarios. 5 simulations were carried out to simulate these conditions using the RULA analysis, in order to simulate the ergonomics impact on the manikin. In the final analysis, the simulations showed a virtuous score, which was between 1 and 2 for the newly redesigned interior, compared to the score of 3 to 6 for current cars. Another verification made, post questionnaire delineates positive responses upon the redesigned parts scoring 70%~90% level of ergonomics rated. Therefore, this research has set forth the necessity of redesigning a car interior and improved its ergonomic features extensively, specifically for lower limb and combined limb disabled drivers.
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面向肢体残疾驾驶员的汽车内饰人机工程学研究与快速上肢评估(RULA
需求旺盛的市场表明,近年来对残疾车辆的需求一直在增加。然而,这些工厂生产的汽车价格昂贵,而且买卖过程耗时。这些车也不是通用设计或包容设计类型的车,所以当它是为残疾人设计时,它可以对所有人都有益。为了在设计通用设计汽车时考虑到肢体残疾驾驶员,本研究旨在确定汽车的最佳人体工程学内饰,以改善在大多数情况下满足残疾人士行动所需的功能。为了模拟人体工程学对人体模型的影响,使用RULA分析进行了5次模拟。在最后的分析中,模拟显示了一个良性得分,新设计的内饰在1到2之间,而现有汽车的得分在3到6之间。另一项验证是通过问卷调查,对重新设计的零件的人体工程学评分达到70%~90%。因此,本研究提出了重新设计汽车内饰的必要性,并广泛改进其人体工程学特征,特别是针对下肢和合并肢体残疾的驾驶员。
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