Literature DB >> 28040629

A mechanistic ultrasonic vibration amplitude model during rotary ultrasonic machining of CFRP composites.

Fuda Ning1, Hui Wang1, Weilong Cong2, P K S C Fernando3.   

Abstract

Rotary ultrasonic machining (RUM) has been investigated in machining of brittle, ductile, as well as composite materials. Ultrasonic vibration amplitude, as one of the most important input variables, affects almost all the output variables in RUM. Numerous investigations on measuring ultrasonic vibration amplitude without RUM machining have been reported. In recent years, ultrasonic vibration amplitude measurement with RUM of ductile materials has been investigated. It is found that the ultrasonic vibration amplitude with RUM was different from that without RUM under the same input variables. RUM is primarily used in machining of brittle materials through brittle fracture removal. With this reason, the method for measuring ultrasonic vibration amplitude in RUM of ductile materials is not feasible for measuring that in RUM of brittle materials. However, there are no reported methods for measuring ultrasonic vibration amplitude in RUM of brittle materials. In this study, ultrasonic vibration amplitude in RUM of brittle materials is investigated by establishing a mechanistic amplitude model through cutting force. Pilot experiments are conducted to validate the calculation model. The results show that there are no significant differences between amplitude values calculated by model and those obtained from experimental investigations. The model can provide a relationship between ultrasonic vibration amplitude and input variables, which is a foundation for building models to predict other output variables in RUM. Copyright Â
© 2016 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Brittle material; Cutting force; Rotary ultrasonic machining (RUM); Ultrasonic vibration amplitude

Year:  2016        PMID: 28040629     DOI: 10.1016/j.ultras.2016.12.012

Source DB:  PubMed          Journal:  Ultrasonics        ISSN: 0041-624X            Impact factor:   2.890


  2 in total

1.  Investigation on the Edge Chipping in Ultrasonic Assisted Sawing of Monocrystalline Silicon.

Authors:  Jianyun Shen; Xu Zhu; Jianbin Chen; Ping Tao; Xian Wu
Journal:  Micromachines (Basel)       Date:  2019-09-16       Impact factor: 2.891

2.  Study on Generating Machining Performance of Two-Dimensional Ultrasonic Vibration-Composited Electrolysis/Electro-Discharge Technology for MMCs.

Authors:  Jing Li; Wanwan Chen; Yongwei Zhu
Journal:  Materials (Basel)       Date:  2022-01-14       Impact factor: 3.623

  2 in total

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