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改进柴油机螺旋撑簧油环性能的研究
引用本文:谢宗法,曲云山,吴亚兰,张小印. 改进柴油机螺旋撑簧油环性能的研究[J]. 内燃机学报, 2006, 24(1): 83-87
作者姓名:谢宗法  曲云山  吴亚兰  张小印
作者单位:山东大学,机械工程学院,山东,济南,250061;山东轻工业学院,机电工程系,山东,济南,250100;山东建筑工程学院,机电工程系,山东,济南,250101
基金项目:山东省济南市科技攻关项目
摘    要:根据活塞环/缸套快速磨损模拟试验结果,发现螺旋撑簧油环的磨损量较大。该油环磨损后随开口间隙的增大,其接触比压迅速降低,严重影响了其刮油能力。通过对油环结构的改进,在开口间隙增量为2mm时,改进后的油环接触比压比原环提高45.7%;通过快速模拟磨损试验发现铌铸铁油环耐磨性能比铬钼铜油环提高87.3%,并降低了油环的制造成本。装机使用说明,改进后的铌铸铁螺旋撑簧油环具有良好的使用性能。

关 键 词:柴油机  油环  快速模拟磨损试验  切向弹力  接触比压  磨损性能
文章编号:1000-0909(2006)01-0083-05
收稿时间:2005-04-24
修稿时间:2005-07-02

Investigation on Performance Improvement of Coil-Spring Loaded Oil Ring in Diesel Engine
XIE Zong-fa,QU Yun-shan,WU Ya-lan,ZHANG Xiao-yin. Investigation on Performance Improvement of Coil-Spring Loaded Oil Ring in Diesel Engine[J]. Transactions of Csice, 2006, 24(1): 83-87
Authors:XIE Zong-fa  QU Yun-shan  WU Ya-lan  ZHANG Xiao-yin
Affiliation:1. School of Mechanical Engineering, Shandong University, Jinan 250061, China; 2. School of Mechanical and Electronic Engineering, Shandong Institute of Light Industry, Jinan 250100, China; 3. School of Mechanical and Electronic Engineering, Shandong Institute of Architecture and Engineering, Jinan 250101, China
Abstract:Based on the results of accelerated wear simulation test for piston ring/cylinder liner of diesel engine, it is found that the wear amount of coil-spring loaded oil ring is high and the contacting pressure of oil ring quickly decreases with the increase of wearing in ring gap, making the oil scraping of oil ring decrease remarkably. Through structure designing, the contacting pressure of the modified oil ring increases by 45.7 % compared to that of original oil ring while the wear amount of ring gap is 2 mm. The results also find that wear resistance of niobium cast iron oil ring is 87.3% higher than that of CrMoCu alloy cast iron along with the cost reduction for niobium cast iron oil ring. Engine operation shows better usability for the improved niobium cast iron oil ring.
Keywords:Diesel Engine   Oil ring   Accelerated wear simulation test   Tangential force   Contact pressure   Wear resistance
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