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Investigations on belt polishing of heat-resistant titanium alloys

机译:耐热钛合金砂带抛光的研究

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The majority of aero-engine components are designed and manufactured with high surface quality/integrity in mind. Repeatable and productive finishing processes are needed to support this. There is little information available in the literature related to finishing processes of aero-engine components. Up to now limited research has been reported in the use of belt polishing for finishing aero-engine components made of thermally sensitive alloys. The paper aims to investigate the possibility of using belt polishing as a final finishing operation for components made of Ti-6-4 heat-resistant alloy. The challenge of this attempt resides in achieving a required workpiece surface quality/integrity that ensures high fatigue performances of the polished components. The capability to remove the machining marks and to establish a required workpiece surface quality was optimised on three different milled surface textures by changing cutting parameters (cutting speed, depth of cut, feed rate, and belt stepover) as well as the finishing strategy (e.g. succession of polishing stages/type of belts). For the 'optimised' cutting conditions, the belt lives were evaluated relative to the following output measures: surface roughness, belt material removal, and machining time. Additional polishing trials, directed to reduce the thermal effect on the polished surfaces, were carried out using chilled air (-10 deg C) supplied close to the machining zone. Workpiece surface integrity inspections (e.g. microhardness measurements, optical analysis) revealed that no major microstructural changes occurred on or under the polished surfaces. Taking into account the capacity to remove machining marks and the satisfactory results of the workpiece surface analysis, it could be concluded that belt polishing might be considered as a viable process for finishing aero-engine components.
机译:大多数航空发动机组件的设计和制造都考虑到了高表面质量/完整性。需要可重复且富有成效的整理过程来支持这一点。文献中几乎没有与航空发动机部件的精加工有关的信息。迄今为止,在使用带抛光技术对由热敏合金制成的航空发动机部件进行精加工方面的报道很少。本文旨在研究使用带抛光作为Ti-6-4耐热合金制成的零件的最终精加工工序的可能性。这种尝试的挑战在于实现所需的工件表面质量/完整性,以确保抛光部件的高疲劳性能。通过更改切削参数(切削速度,切削深度,进给速度和皮带步距)以及精加工策略(例如,切削参数),在三种不同的铣削表面纹理上优化了去除加工痕迹和建立所需工件表面质量的能力。抛光阶段的连续性/皮带的类型)。对于“最佳”切割条件,皮带寿命是根据以下输出指标进行评估的:表面粗糙度,皮带材料去除和加工时间。为了减少对抛光表面的热效应,还进行了其他抛光试验,使用靠近加工区的冷空气(-10摄氏度)进行。工件表面完整性检查(例如,显微硬度测量,光学分析)表明,在抛光表面上或表面下没有发生重大的微观结构变化。考虑到去除加工痕迹的能力和工件表面分析的令人满意的结果,可以得出结论,砂带抛光可以被认为是完成航空发动机部件的可行方法。

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