2011International Journal of NanomanufacturingRequires access

Research on material removal rate in rotary ultrasonic grinding machining

Yunfeng Liu, Hong Zhao, Juntao Jing, Shiliang Wei

Open publisher page 7 citations

Abstract

To improve the material removal rate (MRR) of engineering ceramics in rotary ultrasonic grinding machining (RUGM), machining mathematical model of material removal rate was established based on analysis of fracture removal mechanism of the engineering ceramics. Parameters which affect the material removal rate of the rotary ultrasonic machining were studied, and by experiments the model was proved and the processing parameters of cutting area, feed rate and cutting speed were optimised to achieve higher material removal rate.

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What this paper is about

To improve the material removal rate (MRR) of engineering ceramics in rotary ultrasonic grinding machining (RUGM), machining mathematical model of material removal rate was established based on analysis of fracture removal mechanism of the engineering ceramics. Parameters which affect the material removal rate of the rotary ultrasonic machining were studied, and by experiments the model was proved and the processing parameters of cutting area, feed rate and cutting speed were optimised to achieve higher material removal rate.

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OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

To improve the material removal rate (MRR) of engineering ceramics in rotary ultrasonic grinding machining (RUGM), machining mathematical model of material removal rate was established based on analysis of fracture removal mechanism of the engineering ceramics. Parameters which affect the material removal rate of the rotary ultrasonic machining were studied, and by experiments the model was proved and the processing parameters of cutting area, feed rate and cutting speed were optimised to achieve higher material removal rate.

Key concepts: Machining, Materials science, Grinding, Ultrasonic machining, Ultrasonic sensor, Ceramic, Composite material, Mechanical engineering

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