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Mechanical And Microstructure Properties Of Chilled Cast Iron Camshaft: Experimental And Computer Aided Evaluation

机译:冷硬铸铁凸轮轴的力学和微观结构特性:实验和计算机辅助评估

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摘要

In the present study, the mechanical and metallographic properties of camshafts produced from chilled cast iron were examined experimentally and numerically relating with the solidification, cooling rate and metal flow. First of all, with the help of the 3-dimensional drawing and design programs the whole casting methodology was planned. This planning was analyzed with casting simulation software. After that camshafts were produced experimentally at the foundry. Chill material was used in order to get rapid cooling. The phases, dendrite structure and dendrite arm spacing on the lobes of camshaft were examined with an optic microscope and XRD. The Brinell, Rockwell and Vickers hardness tests were carried out on surfaces of lobes and camshafts. On the rapid cooling areas, the ledeburitic phase and high hardness values, on the slow cooling surfaces, rosette like graphite in pearlitic and low ferrite phase and low hardness values were examined. On the chill areas 2-15 μm DAS (dendrite arm spacing) were measured.
机译:在本研究中,通过实验和数值研究了由冷硬铸铁制成的凸轮轴的机械和金相性能,并与凝固,冷却速率和金属流量相关。首先,借助3D绘图和设计程序,计划了整个铸造方法。使用铸造模拟软件对该计划进行了分析。之后,凸轮轴在铸造厂进行了实验生产。使用冷却材料以快速冷却。用光学显微镜和XRD检查凸轮轴凸角上的相,枝晶结构和枝晶臂间距。在凸角和凸轮轴的表面上进行了布氏,洛氏和维氏硬度测试。在快速冷却区域,检查了疏松相和高硬度值,在慢速冷却表面,检查了珠光体状的玫瑰花状石墨,低铁素体相和低硬度值。在寒冷地区,测量了2-15μm的DAS(树枝状臂间距)。

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