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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Stability analysis for micro-milling nickel-based superalloy process
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Stability analysis for micro-milling nickel-based superalloy process

机译:微铣削镍基高温合金工艺的稳定性分析

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摘要

Nowadays, there is strong demand for micro parts and components which are able to function properly at high temperature in the fields of aerospace, biomedicine, and energy and power. Nickel-based superalloy with good comprehensive thermal performance is well fit for the requirement of micro parts and components. Micro-milling is a novel processing technology for machining micro and high-precision parts with high temperature resistance and it can be applied to manufacture nickel-based superalloy micro parts. Nickel-based superalloy is a kind of typical difficult-to-machine material and chatter tends to occur during its micro-milling process. Chatter damages machining precision and efficiency during the process. Considering the influences of multiple regenerative effect, minimum cutting thickness, and elastic recovery of processed surface, dynamical model of micro-milling process of nickel-based superalloy is built and chatter stability is analyzed in the time domain. Based on the stability lobes, cutting parameters to avoid chatter can be gained. Consequently, machining precision and efficiency are improved.
机译:如今,对能够在高温下在航空航天,生物医学以及能源和动力领域中正常工作的微型零件和组件的强烈需求。具有良好的综合热性能的镍基高温合金非常适合微型零件和组件的需求。微铣削是一种用于加工具有耐高温性能的微型和高精度零件的新颖加工技术,可用于制造镍基高温合金微型零件。镍基高温合金是一种典型的难加工材料,在其微铣削过程中容易发生震颤。颤振会损害加工过程中的加工精度和效率。考虑到多重再生效应,最小切削厚度和加工表面弹性回复的影响,建立了镍基高温合金微铣削过程动力学模型,并在时域内分析了颤振稳定性。基于稳定性波瓣,可以获得避免震颤的切削参数。因此,提高了加工精度和效率。

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