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首页> 外文期刊>Journal of Materials Research and Technology >Microstructure and machinability evaluation in micro milling of selective laser melted Inconel 718 alloy
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Microstructure and machinability evaluation in micro milling of selective laser melted Inconel 718 alloy

机译:选择性激光熔化Inconel 718合金微铣削中的微观结构和可加工性评价

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Selective laser melting (SLM) of Inconel 718 (IN718) alloy is common these days. The microstructure and surface integrity of fabricated components are highly depend on SLM parameters and post-processing processes. Micro milling is a promising solution to achieve good surface finish. However, the machinability of SLM fabricated IN718 is different than the wrought IN718 due to their significant differences in microstructure and properties, thus technical parameters applicable for wrought IN718 are unsuitable to SLM fabricated IN718. Therefore, the microstructure and machinability of SLM fabricated IN718 during micro milling processes were evaluated in this work, and comparisons with wrought IN718 were made. Micro milling experiments with varied spindle speed and feed rate were performed and comparisons between tool wear, surface roughness, residual stress and micro hardness were made. Further, the microstructure of SLM fabricated and wrought IN718 before and after machining were compared in terms of grain geometry and crystallographic texture. SLM fabricated IN718 shows slight grain coarsening and texture weaken behaviors, which is different with the obvious grain coarsening and slight texture strengthen phenomena of wrought IN718. The SLM fabricated component has lower compressive residual stress as compared with wrought alloy, and the tool wear, surface roughness and micro hardness values are higher while micro milling wrought IN718 alloy. The reasons leading to these differences were analyzed from the perspectives of technological characteristics and material properties. Observed phenomena and clarified mechanisms can be used as basis to determine suitable technological parameters of micro milling SLM fabricated IN718 alloy.
机译:无形718(IN718)合金的选择性激光熔化(SLM)是常见的。制造部件的微观结构和表面完整性高度取决于SLM参数和后处理过程。微铣削是实现良好表面光洁度的有希望的解决方案。然而,由于它们的微观结构和性能的显着差异,SLM制造的SLM的可加工性与锻造IN718不同,因此适用于OIN718的技术参数不适合于718的SLM制造的SLM。因此,在这项工作中评估了在微铣过程中在718期间制造的SLM的微观结构和可加工性,并制备了与锻造的比较。进行了多种主轴速度和进料速率的微铣削实验,并进行了刀具磨损,表面粗糙度,残余应力和微硬度之间的比较。此外,在晶粒几何形状和晶体纹理方面比较了在加工之前和之后的SLM制造和锻造的微观结构。 SLM制造于718号,显示轻微的晶粒粗化和质地削弱行为,这与明显的晶粒粗化和轻微的质地增强了锻造的现象。与锻造合金相比,SLM制造的部件具有较低的压缩残余应力,并且刀具磨损,表面粗糙度和微硬度值更高,而微型研磨锻造IN718合金。从技术特征和材料特性的角度分析了导致这些差异的原因。观察到的现象和澄清的机制可以用作确定在718合金中制造的微铣削SLM的合适技术参数。

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