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Formation of an ultrafine grained layer due to high temperature treatment of the surface of a cast iron cylinder bore

机译:通过对铸铁气缸孔表面进行高温处理,形成超细晶粒层

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摘要

In order to meet environmental standards, a finishing laser treatment on the honed cylinder bores of V-engine blocks was performed. Samples of laser-treated cast-iron cylinder bores with lamellar graphite were taken. Scanning electron micrographs were taken on cross-sectioned specimens with a scanning electron microscope/focused ion beam dual beam instrument in order to evaluate the microstructure and grain size of the laser-treated layer. Specimens were found to be ultrafine grained. To simulate the thermal distribution during laser treatment, finite element method simulations were made for different laser energy densities. During laser treatment oil reserving holes were formed due to the inhomogenity of the pearlitic matrix and graphite lamellae, and the high temperature of the laser treatment. To quantify the number of oil reserving holes, a new image analysis method has been developed. It was found that the amount of oil reserving holes increased with higher laser energy densities.
机译:为了满足环境标准,对V型发动机缸体的珩磨缸孔进行了精加工激光处理。采集了带有层状石墨的激光处理铸铁气缸孔的样品。使用扫描电子显微镜/聚焦离子束双束仪器在横截面样品上拍摄扫描电子显微照片,以评估激光处理层的微观结构和晶粒尺寸。发现标本是超细颗粒的。为了模拟激光处理过程中的热分布,针对不同的激光能量密度进行了有限元方法模拟。在激光处理过程中,由于珠光体基体和石墨薄片的不均匀性以及激光处理的高温,形成了储油孔。为了量化储油孔的数量,开发了一种新的图像分析方法。发现随着更高的激光能量密度,储油孔的数量增加。

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