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首页> 外文期刊>Transactions of the Indian Institute of Metals >On Heat Treatment and Surface Characterization of Spark Eroded Nickel-Based Superalloy Developed by Additive Manufacturing
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On Heat Treatment and Surface Characterization of Spark Eroded Nickel-Based Superalloy Developed by Additive Manufacturing

机译:加油制造业发光侵蚀镍高超合金的热处理与表面特征

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In this study, a nickel-based superalloy Inconel 718 material was developed through direct metal laser sintering process. To enhance the mechanical properties, printed material was heat-treated at two different conditions in the combination of solution and ageing. The transformations of microstructure from original anisotropic phase were studied using optical microscope. The changes in mechanical properties were evaluated. The hardness of the heat-treated samples obtained is 35HRC and 39HRC for the heat treatment plan at 1100 degrees C + 845 degrees C and 980 degrees C + 720 degrees C (solution + ageing), respectively. Further, micro-holes were machined on these two material samples using spark erosion micro-machining or micro-electric discharge machining (mu EDM) process. Applied voltage, capacitance and material hardness were three major variable parameters. Experiments were performed with hollow tungsten carbide rod of 300 mu m in diameter as a drill tool rotating at a speed of 1500 rpm for a constant machining time of 30 min. Optical and scanning electron micrographs were used to analyse the hole quality and therefore the performance of mu EDM. Perfect concentric drill hole was produced with 35HRC sample than the other. Weld spatters and metal drops were found around the surface of 39HRC sample. The range of drill hole varied to a maximum of phi 385 mu m in low-hardness and phi 400 mu m in high-hardness samples. The depth of drill hole was maximum with high hard sample at 100 V and 100 nF process condition. Light spectroscope-based roughness characterization revealed that the minimum surface roughness measured was 6.946 mu m in low hard and 9.829 mu m in high hard material.
机译:在该研究中,通过直接金属激光烧结工艺开发了一种基于镍的超合金Inconel 718材料。为了增强机械性能,在溶液和老化的组合的两种不同条件下热处理印刷材料。使用光学显微镜研究了原始各向异性相的微观结构的转化。评估机械性能的变化。得到的热处理样品的硬度为35Hrc和39Hrc,热处理平面为1100℃+ 845℃和980℃+ 720℃(溶液+老化)。此外,使用火花腐蚀微加工或微电放电加工(MU EDM)工艺在这两种材料样品上加工微孔。施加的电压,电容和材料硬度是三个主要可变参数。通过直径为300μm的中空钨碳棒进行实验,作为钻头以1500rpm的速度旋转,恒定加工时间为30分钟。光学和扫描电子显微照片用于分析孔质量,因此采用MU EDM的性能。完美的同心钻孔用35HRC样品产生比另一个。在39Hrc样品的表面周围发现焊接飞溅物和金属滴。钻孔的范围在低硬度和高硬度样品中的施力400μm的最大值变化。钻孔深度最大,在100V和100nF工艺条件下具有高硬质样品。基于光谱仪的粗糙表征显示,测量的最小表面粗糙度为6.946μm,低硬质和9.829μm的高硬质材料。

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