Formation Mechanisms of Exit-Chippings in Rotary Ultrasonic Drilling and Conventional Drilling of Glass BK7

Author:

Lv Dongxi1,Liu Dong1,Chen Gang1,Song Leilei1,Yan Chun1,Wu Xiaofei1,Zhu Yingdan23

Affiliation:

1. Institute of Advanced Manufacturing Technology, Ningbo Institute of Material, Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China

2. Institute of Advanced Manufacturing Technology, Ningbo Institute of Material, Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China;

3. Center of Materials Science and, Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China

Abstract

Abstract This paper presented a fundamental investigation on the exit-chipping formation mechanisms involved in rotary ultrasonic drilling (RUD) and conventional drilling (CD) of glass BK7. It was found that the mutual tool-material extrusion initially activated the subsurface crack with the maximum depth (incipient crack) at the margin of the machined surface, and its penetration of the undrilled thickness brought about the emergence of the exit-chipping at Region I. Subsequently, the opposite propagations of two ring-cracks along the circumferential direction of the drilled hole were conducive to the collapse of the machined cylinder, thus leading to the appearance of the exit-chipping at Region II. Ultrasonic superposition significantly decreased the actual undrilled thickness of the machined surface, while slightly increased the exit-chipping width. All the exit-chippings, generated with and without ultrasonic, exhibited the elliptic and symmetrical morphologies accompanied by the corrugated stripes winding the entire chipping surfaces. The quantitative relationship between the instantaneous extrusion pressure and the propagation direction of the incipient crack was proposed, revealing that the propagation angle was inversely proportional to the extrusion pressure. Ultrasonic superimposition augmented the extrusion pressure exerted the machined surface, which reduced the propagation angle of the incipient crack. The elliptic morphology characteristics of the exit-chipping were attributed to the parabolic variation of the additional bending moment with the circumferential spreading of the ring-crack. Ultrasonic superposition increased the propagation angle of the ring-crack, thus deteriorating the exit quality of the drilled hole.

Funder

Natural Science Foundation of Zhejiang Province

Chinese Academy of Sciences and Technology Services

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Control and Systems Engineering

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