Component-based transfer path analysis on agricultural tractor

IF 1.3 4区 医学 Q3 AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY
Hyun-Woo Han, Minwoo Kang, Seung-Je Cho, Young-Jun Park
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引用次数: 0

Abstract

Agricultural tractors are special purpose machines that perform agricultural operation in harsh environments such as unpaved roads and farmlands, and generate high levels of noise and vibration. Eco-friendly tractors using electric drivetrains and hydrogen fuel cells are being developed to reduce exhaust gas in accordance with global environmental regulations. Unlike traditional tractor structures, these electrified tractors are being developed as modular and shared platforms. Therefore, it is changing into a system that is easy to apply component-based transfer path analysis (C-TPA) to reduce noise and vibration of tractors. In this paper, the noise and vibration contributions of an agricultural tractor were analyzed using C-TPA, and the blocked force usable as the excitation force of the virtual model was derived. The accuracy of transfer path analysis was improved by applying transfer functions including the rotational directions using virtual point transformation technique. The prediction result of developed experimental model were similar to the vibration response of the actual tractor, and the contribution of structure-borne noise could be quantitatively evaluated.
基于组件的农用拖拉机传递路径分析
农用拖拉机是在未铺设的道路和农田等恶劣环境中进行农业作业的专用机械,会产生高水平的噪音和振动。为了减少废气排放,根据世界环境法规,正在开发利用电动传动系统和氢燃料电池的环保型拖拉机。与传统的拖拉机结构不同,这些电动拖拉机正在开发为模块化和共享平台。因此,它正在转变为一个易于应用基于组件的传递路径分析(C-TPA)来降低拖拉机的噪声和振动的系统。本文利用C-TPA分析了某型农用拖拉机的噪声和振动贡献,并推导了阻塞力作为虚拟模型的激励力。利用虚点变换技术引入包含旋转方向的传递函数,提高了传递路径分析的精度。所建立的试验模型预测结果与实际拖拉机的振动响应基本一致,可以定量评价结构噪声对拖拉机振动响应的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Noise & Health
Noise & Health AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY-PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH
CiteScore
2.10
自引率
14.30%
发文量
27
审稿时长
6-12 weeks
期刊介绍: Noise and Health is the only International Journal devoted to research on all aspects of noise and its effects on human health. An inter-disciplinary journal for all professions concerned with auditory and non-auditory effects of occupational, environmental, and leisure noise. It aims to provide a forum for presentation of novel research material on a broad range of topics associated with noise pollution, its control and its detrimental effects on hearing and health. It will cover issues from basic experimental science through clinical evaluation and management, technical aspects of noise reduction systems and solutions to environmental issues relating to social and public health policy.
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