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首页> 外文期刊>Tribology Transactions >Evaluation of the machinability of nickel-base, inconel 718, alloy with nano-ceramic cutting tools
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Evaluation of the machinability of nickel-base, inconel 718, alloy with nano-ceramic cutting tools

机译:纳米陶瓷切削工具评估镍基铬镍铁合金718合金的切削性能

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摘要

The machinability of difficult-to-cut aerospace alloys can be enhanced by the rapid development of cutting tool materials that can withstand machining at high-speed conditions. The performance of nano- grain size ceramic tool materials were evaluated when machining nickel base, Inconel 718, in terms of tool life, tool failure modes and wear mechanisms as well as component forces generated under different roughing conditions. Comparison tests were carried out with commercially available ceramic tool materials of micron-grain composition. The test results show that the micron grain size commercially available tool materials generally gave the longest tool life. The dominant failure mode is nose wear while some of the nano-ceramic tools were rejected mainly due to chipping at the cutting edge. This suggests that physical properties and mechanical stability of the cutting edge of the ceramic tools influence their overall performance. It is also evident that chemical compositions of the tool materials played a significant role in their failure. The alumina base ceramics are more susceptible to premature fracture than the silicon nitride base ceramics with higher fracture toughness.
机译:通过快速开发可承受高速条件下机加工的切削刀具材料,可以提高难以切削的航空合金的可加工性。在加工镍基Inconel 718时,对纳米晶粒尺寸陶瓷刀具材料的性能进行了评估,包括刀具寿命,刀具失效模式和磨损机理以及在不同粗加工条件下产生的分力。用市售的微米颗粒组成的陶瓷工具材料进行比较测试。测试结果表明,市售的微米级工具材料通常可提供最长的工具寿命。主要的失效模式是机头磨损,而某些纳米陶瓷工具则主要由于切削刃上的碎裂而被拒绝。这表明陶瓷工具切削刃的物理特性和机械稳定性会影响其整体性能。同样明显的是,工具材料的化学成分在其失效中起着重要作用。氧化铝基陶瓷比具有较高断裂韧性的氮化硅基陶瓷更容易过早断裂。

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