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Machinability Investigation in High Speed Turning of Powder Metallurgy Nickel-based Superalloy with Sialon Ceramic Inserts

机译:锡亚隆陶瓷插入件粉冶金镍高超合金高速转动的可加工性研究

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An experimental investigation was carried out to understand the behavior of a powder metallurgy nickel-based superalloy when machined with sialon ceramic insert tools. Turning experiments were carried out at different cutting speeds and feed rates while depth of cut was kept constant. Cutting tool performance was evaluated with respect to temperature and cutting forces generated during turning, and tool wear. The sialon ceramic cutting tool showed high performance when increasing cutting speed, the machining experiments showed that sialon ceramic tools performed better at cutting speed up to 80 m/min. Abrasion and adhesion was the dominant wear mechanisms. Chipping on the tool rake and flank faces, as well as catastrophic failure under thermal shock and mechanical loading, was also observed in experiments. As cutting temperature was very high when turning powder metallurgy nickel-based superalloy, good high-temperature strength and thermal shock resistance were indispensable to the cutting tools for machinging this kind of material.
机译:实验调查进行时塞隆陶瓷刀片刀具加工明白粉末冶金镍基高温合金的行为。车削实验在不同的切削速度和进给率进行,而切削深度保持不变。切削刀具性能相对于车削过程中产生的温度和切削力,和刀具磨损评价。该赛隆陶瓷切削工具表现出高性能增加切割速度的情况下,加工的实验表明,硅铝氧氮陶瓷的陶瓷工具在切割速度高达80米/分钟表现较好。耐磨性和附着力是主要的磨损机制。崩刃上下热冲击和机械负荷刀具前倾和后刀面,以及灾难性故障,在实验中也观察到。由于切削温度为车削镍基粉末高温合金的时候非常高,良好的高温强度和抗热震性是必不可少的切割工具machinging这种物质。

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