The modes under which the material is removed, whether it is brittle or ductile, can be controlled in micro ultrasonic machining through setting of machining conditions and process parameters at desired levels to improve the process productivity as well as surface quality. However, the micro ultrasonic machining process lacks in fundamental understanding of brittle and ductile modes of material removal which is the key to develop predictive process models. In this paper the approach of single abrasive particle impingement is presented for the first time in micro ultrasonic machining with the purpose of providing insights into material removal modes. The morphology of the craters formed by single particle impact at various vibration amplitud...
Surface topography plays a significant role in the functional performance of engineered parts. It is...
The MUSM technique exploits the ultrasonic frequency vibration of a tool to force abrasive grains to...
100學年度研究獎補助論文[[abstract]]Ultrasonic machining (USM) technique has long been used for fabricating var...
This paper presents a model to predict ductile and brittle material removal modes when a brittle mat...
Research advancement in the field of micromanufacturing is motivated by the demand on miniaturized f...
The ever-increasing demand for miniaturized products has motivated the micromanufacturing industry t...
Precision abrasive processes are commonly employed to machine glasses, single crystals and ceramic m...
AbstractUltrasonic machining (USM) is known for its ability of processing hard and brittle materials...
Micro-ultrasonic machining (micro-USM) is one of the efficient material removal processes for proces...
A non-contact ultrasonic abrasive machining approach provides a potential solution to overcome the c...
This project involves research on the material removal mechanisms of ultrasonic cavitation in machin...
[[abstract]]Ultrasonic Machining (USM) is conventionally used for machining hard and brittle materia...
As an effective and efficient way of machining in hard-brittle materials, rotary ultrasonic milling(...
A comprehensive literature review on the development of abrasive waterjet (AWJ) machining technology...
Ultrasonic machining is a non-conventional machining technique used to process hard and brittle mate...
Surface topography plays a significant role in the functional performance of engineered parts. It is...
The MUSM technique exploits the ultrasonic frequency vibration of a tool to force abrasive grains to...
100學年度研究獎補助論文[[abstract]]Ultrasonic machining (USM) technique has long been used for fabricating var...
This paper presents a model to predict ductile and brittle material removal modes when a brittle mat...
Research advancement in the field of micromanufacturing is motivated by the demand on miniaturized f...
The ever-increasing demand for miniaturized products has motivated the micromanufacturing industry t...
Precision abrasive processes are commonly employed to machine glasses, single crystals and ceramic m...
AbstractUltrasonic machining (USM) is known for its ability of processing hard and brittle materials...
Micro-ultrasonic machining (micro-USM) is one of the efficient material removal processes for proces...
A non-contact ultrasonic abrasive machining approach provides a potential solution to overcome the c...
This project involves research on the material removal mechanisms of ultrasonic cavitation in machin...
[[abstract]]Ultrasonic Machining (USM) is conventionally used for machining hard and brittle materia...
As an effective and efficient way of machining in hard-brittle materials, rotary ultrasonic milling(...
A comprehensive literature review on the development of abrasive waterjet (AWJ) machining technology...
Ultrasonic machining is a non-conventional machining technique used to process hard and brittle mate...
Surface topography plays a significant role in the functional performance of engineered parts. It is...
The MUSM technique exploits the ultrasonic frequency vibration of a tool to force abrasive grains to...
100學年度研究獎補助論文[[abstract]]Ultrasonic machining (USM) technique has long been used for fabricating var...