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Analysis of Parameters Affecting Liner Bore Distortion in DI Diesel Engines

机译:迪柴油发动机中衬里孔失真的参数分析

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The stringent emission norms and increasing demand for engines with higher power density lead to an extensive investigation of parameters affecting combustion performance. Recent emission norms have forced the engine manufacturers to reduce the Particulate matter (PM) emissions along with other emissions substantially. In order to achieve lo PM emissions the lubrication oil consumption need to be controlled by optimizing piston group design with low liner bore distortion. Bore Distortion is the deviation of actual profile from perfect circular profile at any plane perpendicular to axis of cylinder. Liner bore distortion in engines causes' number of problems like deterioration of piston ring performance, liner-ring conformability issues, high lubricating oil consumption and emissions. Besides traditional prediction of stresses, fatigue life and verification by mechanical testing, the prediction of liner bore distortion is one of today's most important topics in crankcase structure development. Low bore distortion opens up potential for optimized piston group design. The research work focuses on analyzing the parameters affecting liner bore distortion in DI Diesel engines. The study has been carried out on direct injection diesel engine of heavy duty off-highway application with top hung liner. The effects of variation in gasket thickness, liner thickness, number of cylinder head bolts and bolt pre load on liner bore distortion are analyzed successfully. Firstly, a FEA model of crankcase-liner-cylinder head assembly has been developed and the bore distortion results are compared with actual measurements on engine. An extensive analysis has been carried out to study effect of four parameters considered on liner bore distortion. Thus the present research work helps to bridge the gap between understanding the effect of these parameters on liner bore distortion occurrence, lube oil consumption and hence PM emissions.
机译:严格排放规范和对具有更高功率密度的发动机的需求增加导致影响影响燃烧性能的参数的广泛研究。最近的排放规范迫使发动机制造商减少颗粒物质(PM)排放以及大大排放。为了实现Lo PM排放,需要通过利用低衬垫孔失真优化活塞组设计来控制润滑油消耗。孔失真是从垂直于圆柱轴轴的任何平面的完美圆形轮廓的实际轮廓的偏差。引擎中的衬垫孔失真会导致活塞环性能劣化等问题,衬里环形符合性问题,高润滑油消耗和排放。除了传统的对压力预测,疲劳寿命和通过机械测试验证,衬里孔畸变的预测是当今曲轴箱结构开发中最重要的主题之一。低孔失真打开了优化的活塞组设计的潜力。该研究工作侧重于分析影响DI柴油发动机中衬里孔失真的参数。该研究已经在带有顶部悬挂式衬里的重型卸车应用的直接注射柴油机进行。成功地分析了垫圈厚度,衬垫厚度,气缸盖螺栓和螺栓预载荷对衬垫孔失真的影响的影响。首先,已经开发了曲轴箱 - 衬里 - 圆筒盖组件的FEA模型,并将孔失真结果与发动机上的实际测量进行比较。已经进行了广泛的分析,以研究在衬里孔失真上考虑的四个参数的效果。因此,本研究工作有助于弥合理解这些参数对衬里孔失真发生,润滑油消耗的影响之间的差距,因此PM排放。

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