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首页> 外文期刊>Acoustical physics >Application of gas-fluid atomization technology in ultrosonic vibration cutting titanium alloy workpiece
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Application of gas-fluid atomization technology in ultrosonic vibration cutting titanium alloy workpiece

机译:气态雾化技术在超声振动切削钛合金工件中的应用

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摘要

To further improve machined surface quality of diamond cutting titanium workpiece and reduce diamond tool wear, it puts forward a kind of machining technology with mixture of carbon dioxide gas, water and vegetable oil atomized mist as cooling media in the paper. The cooling media is sprayed to cutting area through gas-liquid atomizer device to achieve purpose of cooling, lubricating, and protecting diamond tool. Experiments indicate that carbon dioxide gas can touch cutting surface more adequately through using gas-liquid atomization technology, which makes iron atoms of cutting surface cause a chemical reaction directly with carbon in carbon dioxide gas and reduce graphitizing degree of diamond tool. Thus, this technology of using gas-liquid atomization and ultrasonic vibration together for cutting Titanium Alloy is able to improve machined surface quality of workpiece and slow of diamond tool wear.
机译:为了进一步提高金刚石切削钛工件的加工表面质量,减少金刚石刀具的磨损,提出了一种以二氧化碳,水和植物油的雾化混合雾为冷却介质的加工技术。通过气液雾化器将冷却介质喷到切削区域,达到冷却,润滑和保护金刚石工具的目的。实验表明,采用气液雾化技术可使二氧化碳气体更充分地接触切削面,使切削面的铁原子直接与二氧化碳气体中的碳发生化学反应,降低金刚石工具的石墨化程度。因此,将气液雾化和超声振动一起用于切割钛合金的这项技术能够改善工件的机加工表面质量并减慢金刚石工具的磨损。

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