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Assessment of a ride comfort number for agricultural tractors: A simplified approach

机译:评估农业拖拉机的乘坐舒适号:简化的方法

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Farming activities cause operators to experience whole body vibration (WBV), which may result in back injuries. Studies have shown that despite a wide variability when operating a tractor, the accelerations arising from "ground input" have similar spectral trends making it possible to simplify and standardise the driver comfort testing procedures. Based on the recommendations of three standards on WBV measurement, a single scalar value (Ride Number - R-N) has been defined and used to characterise the vibration comfort of agricultural tractors. The operation of ten tractors equipped with different damping systems on a standard test track (ISO 5008:2002) at three speeds (10, 12, 14 km h (1)) has resulted in the acquisition of accelerations along the x, y and z axes at the seat. The R-N was calculated by averaging the overall total values of vibration (a(w)) calculated for each speed. Data processing has shown that machine settings (tyre size and pressure, tractor mass) significantly affect the R-N so as to achieve the recommendations for proper tractor settings. It has been observed that at each speed, the relative contribution of the components (a(w10), a(w12) and a(w14)) ranged from -12% to +11.5% showing that obtaining the R-N by averaging them arithmetically was a suitable procedure. According to principal component analysis, great part of the accounted variance can be explained by accelerations acquired on the y and z axes, distinguishing between tractors with and without suspension. Thus the R-N obtained can be used to compare a given tractor when provided with different equipment. (C) 2019 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:农业活动导致运营商体验全身振动(WBV),可能导致伤害。研究表明,尽管在操作拖拉机时尽管有很大的变化,所产生的“接地输入”产生的加速度具有类似的光谱趋势,使得可以简化和标准化驾驶员舒适性测试程序。根据三种标准对WBV测量标准的建议,已经定义了单个标量值(骑行号码 - R-N)并用于表征农业拖拉机的振动舒适度。在三个速度(10,12,14km H(1))的标准测试轨道上(ISO 5008:2002)上配备有不同阻尼系统的十个拖拉机的操作导致沿x,y和z获取加速度座椅轴。通过对每个速度计算的振动(A(W))的总体总值进行平均来计算R-N。数据处理表明,机器设置(轮胎尺寸和压力,拖拉机质量)显着影响R-N,以实现适当拖拉机设置的建议。已经观察到,在每次速度下,组分的相对贡献(A(W10),A(W12)和(W14)的相对贡献范围为-12%至+ 11.5%,示出通过算术平均值来获得RN一个合适的程序。根据主要成分分析,可以通过在Y和Z轴上获得的加速来解释核算方差的大部分,区分拖拉机,有悬浮液。因此,当具有不同设备时,所获得的R-N可用于比较给定拖拉机。 (c)2019年IAGRE。 elsevier有限公司出版。保留所有权利。

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