suspension n. 1.悬吊,悬挂;悬垂;悬架吊架。 2.中止,停止;停止支付[宣判,处刑];停职,停学,停权。 3.悬置,保留,未决。 4.【化学】悬浮(液);悬胶(体);【音乐】悬留法;悬留音;【修辞学】悬疑法〔以引起读者的好奇心,关心下文〕;【商业】停止[无力]支付。 suspension of arms [hostilities] 停战。 suspension of business 停业。 suspension of publication 暂停刊行。
Air spring for automotive suspension - rubber bellows 汽车悬架用空气弹簧橡胶气囊
Automotive suspension tester 汽车悬架装置检测台
China spring factory , founded in 1937 , is the largest spring manufacturer in china . it mainly produces automotive suspension spring , engine valve spring , stabilizer bar , die spring , shaped spring , dise spring , clutch spring 中国弹簧厂始建于1937年,是中国规模最大的弹簧制造企业,主要生产汽车悬架弹簧、发动机气门弹簧、稳定杆以及模具弹簧、异型弹簧、碟形弹簧、离合器弹簧、超大型弹簧、各类弹性冲压件和其他精密螺旋弹簧。
In view of the progress of mr techniques and automotive suspension techniques , some mr damping techniques for automotive suspension systems , including system theory , experimental investigation , design method , manufacture technique , and models of the dampers , etc . have been presented in this dissertation in order to progress the mr fluids and automotive suspension techniques based on mr damper 本文根据磁流变技术的研究现状和汽车悬架技术的发展趋势,系统研究了汽车磁流变阻尼技术,包括:磁流变效应、阻尼器系统理论、设计方法、实验研究和阻尼器的动力学模型,旨在推进磁流变体和磁流变阻尼器在汽车工程中的应用研究。
The automotive semi - active suspension systems , which consist of passive springs and active dampers with adjustable damping force for different road conditions and automobile running conditions , are the most popular automotive suspension systems due to the active suspension ' s high cost and passive suspension ' s limited performances 鉴于汽车全主动悬架系统高额的价格和被动悬架性能上的不足,由被动弹性元件和主动阻尼器构成的半主动悬架越来越受到相关研究机构的关注,并逐渐成为研究热点,也受到全球汽车制造商的青睐。
This dissertation are divided into six chapters : 1 . the purpose and significance of this study are expounded in the first chapter . the application prospect and development tendency of mr fluids and mr devices in the domain of automotive suspension vibration control have been pointed out , on the basis of systematically summarizing of state of automotive suspension technology and mr technique 本文包括下列六章:首先回顾了汽车悬架技术的发展趋势,分析了可调阻尼器的工作原理;论述了磁流变材料和磁流变器件的研究进展,分析了开发基于磁流变阻尼技术的汽车可调阻尼器的重要性和必要性,提出本文的研究目的和研究内容。