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加强轮胎的使用管理对装载机的保值、增值具有重大意义.针对不同工作状况,从保护轮胎的角度介绍了装载机使用和管理过程中应注意的事项. 相似文献
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为揭示轻度胶结橡胶-砂颗粒混合物的压缩特性和胶结退化过程,通过室内一维压缩试验、剪切波速测试和扫描电镜检测,对比分析混合物的应力-应变特征和刚度演化规律,研究颗粒间胶结作用、砂掺量等对试样密度、残余应变、剪切波速和小应变剪切模量的影响,同时定性评价压缩后胶结混合物微观结构特征,探讨轻度胶结刚-柔性颗粒混合物的受力变形机制。试验结果表明:橡胶-砂颗粒混合物密度随砂掺量增加呈线性增加趋势;少量胶结物质添加可有效减小压缩变形和残余应变,胶结试样的加载压缩曲线可分为胶结控制、胶结退化和应力控制3个阶段,残余应变与砂掺量间呈指数减小关系;颗粒间胶结作用在高应力条件下退化完全,胶结试样剪切波速表现出与未胶结试样相似的变化规律;相同砂掺量与应力条件下,胶结试样具有较高的小应变剪切模量,压缩过程中小应变剪切模量的演化规律与剪切波速类似;颗粒间胶结在荷载作用下首先发挥作用并逐渐退化,当刚性颗粒(砂颗粒)含量较低时,混合物的受力介质主要为柔性颗粒(橡胶颗粒),颗粒空间位置无显著改变;当刚性颗粒含量较高时,荷载作用下刚性颗粒会发生一定的滑移和滚动,形成相互接触的受力链以承受荷载,柔性颗粒则可阻止受力链倾覆与倒塌。 相似文献
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跨座式单轨列车轮胎寿命的影响因素分析 总被引:2,自引:0,他引:2
介绍跨座式单轨列车的现状和问题,分析其转向架的结构和工作原理。结合单轨列车的运行条件,论述影响其轮胎寿命的主要原因,包括线路条件、驾驶操作情况、运行情况及轨道面质量等。 相似文献
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利用三维有限元软件研究沪宁高速公路扩建工程中柔性基层在实测荷载作用下结构层内的应力应变,并与传统的圆形均布荷载作用下的路面结构作比较.研究表明,采用柔性基层并不会使土基受力过大,土基的变形在允许范围之内;级配碎石层顶和层底的受力大小相差不大,变形也很缓和. 相似文献
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《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(11):1601-1620
ABSTRACTTires are used by the customers during several tens of thousands of kilometres, and before their replacement, the driver will encounter a continuous variation of tread depth due to the tire wearing. Although the wet braking labelling demonstrates the performance of the tire in the new stage, it is known that the wet traction evolves with tire wear. In this paper, an in-depth comparison of the wet grip performance of new and worn tires will be conducted, based on the regulatory wet braking test. For this purpose, we propose an original approach to analyse braking test results, which allows breaking down and quantifying the relative importance of the mechanisms involved during this test. This study demonstrates that two main mechanisms are taking place during the entire test: rubber friction and hydroplaning mechanisms. The µ value obtained at low speeds reflects the friction potential of the tested tires while the decline of performance at higher speeds is attributed to hydroplaning mechanisms. This analysis is conducted on numerous tires and demonstrates that current regulatory test applied on new tires is focussing mainly on the rubber friction mechanism. The same test applied on worn tires exhibits both rubber friction and hydroplaning mechanisms. The mechanisms decomposition shows that the source of the performance decline from new to worn status varies greatly, some tires having most of their performance loss due to hydroplaning, some others due to rubber friction drop. 相似文献
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