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An Experimental Investigation of Machinability of Graphitic Cast Iron Grades; Flake, Compacted and Spheroidal Graphite Iron in Continuous Machining Operations

机译:石墨铸铁等级可加工性的实验研究;连续加工操作中薄片,压实和球形石墨铁

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In this study the machinability of different grades of cast iron has been studied in terms of cutting temperatures, cutting forces, tool life, deformed chip thickness and contact length in different continuous machining operations. The tests performed were: external turning, boring and face turning. Pearlitic Flake Graphite Iron (FGI), Compacted Graphite Iron (CGI) and Spheroidal Graphite Iron (SGI) materials were selected for making the experiments. Later the machinability was also compared with ferritic SGI material. The cutting temperature has been measured with the help of embedded thermocouple inserts. These inserts were having 2 junctions; 0.55 and 1.2 mm away from the cutting edge on the clearance face. It was found that the cutting temperature on the clearance face has not shown any significant difference for different grades of cast irons. However, the tool life and the cutting forces have shown significant differences. The face turning tests were performed in both dry and wet conditions to see the importance of cutting fluids for different grades of cast iron. It has been seen that the CGI and SGI require cutting fluid in a continuous machining operation. Later the wear mechanisms of different grades were also studied for dry and wet conditions in a boring operation. Both CGI and SGI have shown adhesion as a wear mechanism under dry conditions as compared to abrasive wear in wet conditions with a cutting speed of 300 m/min. The results can be input to designing a suitable insert for CGI and SGI and highlight the importance of using cutting fluids while machining CGI and SGI in continuous cutting operations.
机译:在这项研究中,在切割温度,切割力,工具寿命,变形芯片厚度和接触长度的不同连续加工操作中,研究了不同等级的铸铁的可加工性。所执行的测试是:外部转动,镗孔和面部转动。选择珠光体片石墨铁(FGI),压实石墨铁(CGI)和球形石墨铁(SGI)材料进行实验。后来还与铁素体SGI材料进行了加工性。在嵌入的热电偶插入件的帮助下测量了切削温度。这些插入物具有2个结;距离间隙面上的切削刃0.55和1.2毫米。结果发现,间隙面上的切削温度没有显示出不同等级的铸铁的任何显着差异。然而,工具寿命和切割力表明了显着的差异。在干燥和潮湿的条件下进行脸部转动试验,以了解切割液体用于不同等级的铸铁的重要性。已经看到CGI和SGI要求在连续加工操作中切割流体。后来在钻孔操作中还研究了不同级别的磨损机制,用于干燥和湿润的条件。与湿条件下的磨损磨损相比,CGI和SGI均显示为在干燥条件下的磨损机制粘附,切割速度为300米/分钟。结果可以输入为CGI和SGI设计合适的插入物,并突出在连续切割操作中加工CGI和SGI时使用切割流体的重要性。

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