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Erschienen in: The International Journal of Advanced Manufacturing Technology 3-4/2020

26.02.2020 | ORIGINAL ARTICLE

Mathematical modeling and experimental studies on axial drilling load for rotary ultrasonic drilling of C/SiC composites

verfasst von: Shafiul Islam, Songmei Yuan, Zhen Li

Erschienen in: The International Journal of Advanced Manufacturing Technology | Ausgabe 3-4/2020

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Abstract

Ceramic matrix composites of type C/SiC have great potential in space applications because of their superior properties such as low density, high wear resistance, and high-temperature resistance. However, due to their heterogeneous, anisotropic, and unstable thermal properties, the machining is still challenging to achieve desired efficiency and quality. For advanced materials, rotary ultrasonic machining (RUM) is considered as a highly efficient technology. Predicting mechanical load in RUM can help to optimize input variables and reduce processing defects in composites. In this research, a mathematical axial drilling load (force and torque) model has been developed based on the indentation fracture theory of material removal mechanism considering penetration trajectory and energy conservation theorem for rotary ultrasonic drilling (RUD) of C/SiC. Experiments were conducted on C/SiC composites to validate the model, and experimental results agreed well with model predictions with less than 14% (force) and 10% (torque) error. Therefore, this theoretical model can be effectively applied to predict axial drilling load during RUD of C/SiC. The relationships of axial drilling force and torque with machining process parameters, including spindle speed, feed rate, and ultrasonic power, were investigated. A specific range of experiments was carried out to demonstrate the benefit of ultrasonic vibration in RUD over conventional drilling (CD) on mechanical load for a designed drilling tool. It was noticed that RUD outperformed CD with a maximum of 38.11% and 34.30% in axial drilling force and torque reduction, respectively. The influence of drilling tool flute length on drilling performance was also elucidated based on a set of experiments using several designed drilling tools.

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Literatur
1.
Zurück zum Zitat Bansal NP, Lamon J (2015) Ceramic matrix composites - materials, Modeling and Technology Bansal NP, Lamon J (2015) Ceramic matrix composites - materials, Modeling and Technology
8.
Zurück zum Zitat Pei ZJ, Prabhakar D, Ferreira PM, Haselkorn M (1995) A mechanistic approach to the prediction of material removal rates in rotary ultrasonic machining. J Eng Indust 117(2):142–151CrossRef Pei ZJ, Prabhakar D, Ferreira PM, Haselkorn M (1995) A mechanistic approach to the prediction of material removal rates in rotary ultrasonic machining. J Eng Indust 117(2):142–151CrossRef
9.
Zurück zum Zitat Pei ZJ, Ferreira PM, Kapoor SG, Haselkorn M (1995) Rotary ultrasonic machining for face milling of ceramics. Int J Mach Tools Manuf 35(7):1033–1046CrossRef Pei ZJ, Ferreira PM, Kapoor SG, Haselkorn M (1995) Rotary ultrasonic machining for face milling of ceramics. Int J Mach Tools Manuf 35(7):1033–1046CrossRef
10.
Zurück zum Zitat Pei ZJ, Ferreira PM (1999) An experimental investigation of rotary ultrasonic face milling. Int J Mach Tools Manuf 39:1327–1344CrossRef Pei ZJ, Ferreira PM (1999) An experimental investigation of rotary ultrasonic face milling. Int J Mach Tools Manuf 39:1327–1344CrossRef
11.
Zurück zum Zitat Zhang QH, Wu CL, Sun JL, Jia ZX (2000) The mechanism of material removal in ultrasonic drilling of engineering ceramics. Proc Inst Mech Eng B J Eng Manuf 214(9):805–810CrossRef Zhang QH, Wu CL, Sun JL, Jia ZX (2000) The mechanism of material removal in ultrasonic drilling of engineering ceramics. Proc Inst Mech Eng B J Eng Manuf 214(9):805–810CrossRef
20.
Zurück zum Zitat Lawn BR, Evans AG, Marshall DB (1980) Elastic/plastic indentation damage in ceramics: the median/radial crack system. J Am Ceram Soc 63(9–10):574–581CrossRef Lawn BR, Evans AG, Marshall DB (1980) Elastic/plastic indentation damage in ceramics: the median/radial crack system. J Am Ceram Soc 63(9–10):574–581CrossRef
21.
Zurück zum Zitat Marshall DB, Lawn BR, Evans AG (1982) Elastic/plastic indentation damage in ceramics: the lateral crack system. J Am Ceram Soc 65(11):561–566CrossRef Marshall DB, Lawn BR, Evans AG (1982) Elastic/plastic indentation damage in ceramics: the lateral crack system. J Am Ceram Soc 65(11):561–566CrossRef
22.
Zurück zum Zitat Lawn B, Wilshaw R (1975) Review indentation fracture: principles and applications. J Mater Sci 10:1049–1081CrossRef Lawn B, Wilshaw R (1975) Review indentation fracture: principles and applications. J Mater Sci 10:1049–1081CrossRef
Metadaten
Titel
Mathematical modeling and experimental studies on axial drilling load for rotary ultrasonic drilling of C/SiC composites
verfasst von
Shafiul Islam
Songmei Yuan
Zhen Li
Publikationsdatum
26.02.2020
Verlag
Springer London
Erschienen in
The International Journal of Advanced Manufacturing Technology / Ausgabe 3-4/2020
Print ISSN: 0268-3768
Elektronische ISSN: 1433-3015
DOI
https://doi.org/10.1007/s00170-020-05052-z

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