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A Novel Method of Improving Ride Comfort of Two Wheeler by Optimization of Seat Parameters

机译:通过优化座位参数来提高两个驾驶员乘坐舒适性的新方法

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Two-wheeler plays a significant role in personal transportation in India. People prefer two-wheelers, which has better fuel economy, comfort, and performance. It is vital to enhance comfort, as the seat is in direct contact with the user. Better user comfort improves the vehicle feel and behavior. Dynamic comfort analysis is necessary to understand and improve the vibration characteristics of the human-seat system. The vibration characteristics under analysis are Natural frequency, Maximum transmissibility, Attenuation frequency, and Transmissibility at 6 Hz. A test set-up was developed to collect data samples with different seat characteristics. The data collected from the seat are IFD, Hysteresis, Air-Permeability, Resilience, Thickness, and Mass. The relation between the seat parameters and vibration characteristic is established by statistically analyzing the data. Best seat was identified by ranking vibration characteristics. Correlation analysis determines the best seat by subjective rating of the sample and seat vibration ranking.
机译:两轮车在印度个人交通中起着重要作用。人们喜欢两轮车,有更好的燃料经济性,舒适性和性能。由于座椅与用户直接接触,因此可以提高舒适性至关重要。更好的用户舒适性可以提高车辆感觉和行为。动态舒适性分析是为了理解和改善人座系统的振动特性。在分析的振动特性是自然频率,最大透射性,衰减频率和6Hz的传输性。开发了一种测试设置,以收集具有不同座椅特性的数据样本。从座椅收集的数据是IFD,滞后,透气性,弹性,厚度和质量。通过统计分析数据来建立座椅参数和振动特性之间的关系。通过排序振动特性来确定最佳座位。相关性分析通过样品和座椅振动排名的主观评级来确定最佳座位。

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