Studying and Improving the Hardness Properties of Gray Cast Iron

Saad T. Faris, Huda Salih Mahdi, Khuder N. Abed
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Abstract

This research focuses on the hardness of gray cast iron. Hardness is a measure of the resistance to localized plastic deformation induced by either mechanical indentation or abrasion. The machinability cannot set a specific definition. However, several indicators and directories give a clear image, the most important of which is the factors that affect the machinability of gray cast iron according to the metallurgies and the metal cutting and cutting conditions. The main goal of this research is to improve the hardness of gray cast iron. Many experiments on several samples to get different results and then compare these results to get the best which is the goal of the research. The conclusions through the practical side of this research are the different values of hardness through the different hardening processes. As the hardening processes gave a sample of grey cast iron a hardness value that differs in each type of hardening. The notes through the graph that the hardness reaches its peak in the traditional hardening, where its value is (370.6), followed by the laser hardening process, which reaches (321.6) The amount of increase between the hardness of the laser and the traditional hardness takes the value of (15.24 %) The work on samples in the form of aggregates, and each group will be treated in a specific way and then subject to tests.
灰口铸铁硬度性能的研究与提高
本文对灰口铸铁的硬度进行了研究。硬度是对机械压痕或磨损引起的局部塑性变形的抵抗力的量度。可加工性不能设定一个具体的定义。然而,几个指标和目录给出了一个清晰的图像,其中最重要的是根据冶金和金属切削和切削条件影响灰铸铁可加工性的因素。本研究的主要目的是提高灰铸铁的硬度。在几个样品上进行多次实验,得到不同的结果,然后将这些结果进行比较,得到最好的结果,这就是本研究的目的。通过实际研究得出的结论是,不同的硬化工艺导致的硬度值不同。由于硬化过程使灰口铸铁样品的硬度值在每种硬化类型中有所不同。从图中可以看出,硬度在传统硬化过程中达到峰值,其值为(370.6),其次是激光硬化过程,硬度达到(321.6),激光硬度与传统硬度之间的增加量为(15.24%)。对样品以聚集体的形式进行工作,每组都将进行特定的处理,然后进行测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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