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Milling tool's flank wear prediction by temperature dependent wear mechanism determination when machining Inconel 182 overlays

机译:在加工Inconel 182覆盖层时,通过确定与温度相关的磨损机制来确定铣削刀具的侧面磨损

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摘要

Inconel 182 overlays is popular for its advantageous mechanical and chemical properties at elevated temperature, which is widely used as anti-corrosion material deposited on cast seal surface of nuclear steam turbine. The Inconel overlays deposited on the complicated shape of cast seal requires further milling process to obtained high quality surface. However, Inconel 182 overlays is a typical difficult to cut material due to its low thermal conductivity, plastic deformation and severe adhesion, which result in catastrophically tool wear. Therefore, it is necessary to establish a milling tool wear model to predict actual tool wear so as to save tool costs. Unfortunately, the existing tool wear models are all established to predict tool wear in continuous turning process, not suitable for the interrupted milling process. To solve this problem, this paper firstly determines the threshold temperature of adhesive wear, diffusive wear and oxidative wear of the cemented carbide and its basic TiAIN or TiN coating against Inconel 182 overlays by sliding wear tests, which is the emergence criterion of different tool wear mechanism. Based on the above wear mechanism determination, a mathematical model of milling tool's flank wear is then proposed by acquisition of the real time cutting force and temperature. The results show that the errors of the predicted minimum values are all within 10%, demonstrating that this model can be used to predict the milling tool's flank wear when machining Inconel 182 overlays. (C) 2016 Elsevier Ltd. All rights reserved.
机译:Inconel 182覆盖层因其在高温下具有优越的机械和化学性能而广受欢迎,被广泛用作沉积在核汽轮机铸件密封表面上的防腐材料。沉积在复杂形状的铸造密封件上的Inconel覆盖层需要进一步的铣削工艺才能获得高质量的表面。但是,由于Inconel 182覆层的导热系数低,塑性变形和严重的粘着性(通常会造成工具的灾难性磨损),因此通常是难以切割的材料。因此,有必要建立铣削刀具磨损模型以预测实际的刀具磨损,以节省刀具成本。不幸的是,所有现有的刀具磨损模型都被建立用来预测连续车削过程中的刀具磨损,而不适合中断的铣削过程。为了解决这个问题,本文首先通过滑动磨损试验确定了硬质合金及其在Inconel 182覆盖层上的基础TiAIN或TiN涂层的粘着磨损,扩散磨损和氧化磨损的阈值温度,这是不同工具磨损的出现标准。机制。基于上述磨损机理的确定,通过获取实时切削力和温度,提出了铣削刀具侧面磨损的数学模型。结果表明,预测最小值的误差都在10%以内,这说明在加工Inconel 182覆盖层时,该模型可用于预测铣削刀具的侧面磨损。 (C)2016 Elsevier Ltd.保留所有权利。

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