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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Quantification of the cold worked material inside the deep honing grooves on cylinder liner surfaces and its effect on wear
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Quantification of the cold worked material inside the deep honing grooves on cylinder liner surfaces and its effect on wear

机译:量化汽缸套表面深珩磨槽内的冷加工材料及其对磨损的影响

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摘要

The increased presence of cold work material on cylinder liners due to the introduction of the diamond honing is undesirable as it seals the oil-bearing honing grooves. The most of it is a smeared metal inside the deep honing grooves (blechmantel) that may break and act as abrasive wear particles increasing the bore wear. An attempt has been made to estimate the extent of removal of blechmantel for different wear regimes present at the middle and top region (near the top dead centre) of the liner surface using the least worn bottom region as a reference for comparison. A number of truck grey iron cylinder liners were axially sectioned after varying periods of engine running under similar conditions of load, engine speed and lubrication. 3D surface measurements were taken at the three regions and a range of standard parameters was extracted. Combining the profile and image analysis, an algorithm was developed to identify and quantify the blechmantel. The algorithm has successfully identified/quantified the blechmantel and can be used for automatic surface quality and process control. It was found that the amount of the blechmantel in the middle section was approximately the same (though slightly lower) as that in the bottom section, while there was a considerable dislocation and removal of blechmantel in the top section and thereby it represents one of the possible causes for wear. Axial wear scratches of different size and distribution were observed not only through the whole stroke area, but also in the bottom region. All engines and liners performed well throughout the tests, and the observed quantities of blechmantel and axial scratches are acceptable for the time being.
机译:由于引入了金刚石珩磨,汽缸套上冷加工材料的存在增加是不希望的,因为它密封了含油珩磨槽。其中最主要的是深珩磨槽(blechmantel)内的金属涂污,可能会破裂并充当磨料磨损颗粒,从而增加钻孔的磨损。已经尝试使用磨损最少的底部区域作为比较的参考来估计衬里表面的中部和顶部区域(靠近上止点)处存在的不同磨损方式下的漂白剂的去除程度。在类似的负载,发动机转速和润滑条件下,经过不同时间的发动机运行后,对许多卡车灰铁气缸套进行了轴向剖分。在这三个区域进行了3D表面测量,并提取了一系列标准参数。结合轮廓分析和图像分析,开发了一种算法来识别和量化blechmantel。该算法已成功识别/量化了漂白剂,可用于自动表面质量和过程控制。发现中间部分的漂白剂的量与底部的含量大致相同(尽管略低),而顶部的漂白剂有相当大的位错和去除,因此代表了其中一种。可能的磨损原因。不仅在整个行程区域,而且在底部区域,都观察到了不同尺寸和分布的轴向磨损划痕。在整个测试过程中,所有发动机和衬套均表现良好,暂时观察到的漂白剂和轴向刮擦量是可以接受的。

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