Thermodynamic analysis of material removal mechanisms indicates that an ideal tool for shaping of materials is a high energy beam, having infinitely small cross-section, precisely controlled depth, and direction of penetration, and does not cause any detrimental effects on the generated surface. The production of the beam should be relatively inexpensive and environmentally sound while the material removal rate should be reasonably high for the process to be viable. A narrow stream of high energy water mixed with abrasive particles comes close to meeting these requirements because abrasive waterjet machining has become one of the leading manufacturing technologies in a relatively short period of time. This paper gives an overview of the bas...
Abrasive Waterjet technology is one of the fastest growing metal cutting technologies. Even so, very...
In the recent years the interest in loose abrasive machining processes as efficient, flexible proces...
In order to improve efficiency when manufacturing gas turbine components, alternative machining tech...
The development of high performance material such as composites and advanced ceramics has a variety ...
Abrasive Water Jet (AWJ) has grown to be an important industrial tool during the last decade. A grea...
Abrasive Water Jet (AWJ) has grown to be an important industrial tool during the last decade. A grea...
A comprehensive literature review into the current state of abrasive waterjet (AWJ) machining techno...
Abrasive Water Jet (AWJ) has grown to be an important industrial tool during the last decade. A grea...
Abrasive Waterjet technology is one of the fastest growing metal cutting technologies. Even so, very...
The waterjet technology is enjoying considerable success in industrial processing applications. Thi...
The waterjet technology is enjoying considerable success in industrial processing applications. Thi...
Abrasive waterjets (AWJ) have in a short time become an indispensable industrial tool for many machi...
Abrasive waterjets (AWJ) have in a short time become an indispensable industrial tool for many machi...
Abrasive Waterjet technology is one of the fastest growing metal cutting technologies. Even so, very...
Abrasive Waterjet technology is one of the fastest growing metal cutting technologies. Even so, very...
Abrasive Waterjet technology is one of the fastest growing metal cutting technologies. Even so, very...
In the recent years the interest in loose abrasive machining processes as efficient, flexible proces...
In order to improve efficiency when manufacturing gas turbine components, alternative machining tech...
The development of high performance material such as composites and advanced ceramics has a variety ...
Abrasive Water Jet (AWJ) has grown to be an important industrial tool during the last decade. A grea...
Abrasive Water Jet (AWJ) has grown to be an important industrial tool during the last decade. A grea...
A comprehensive literature review into the current state of abrasive waterjet (AWJ) machining techno...
Abrasive Water Jet (AWJ) has grown to be an important industrial tool during the last decade. A grea...
Abrasive Waterjet technology is one of the fastest growing metal cutting technologies. Even so, very...
The waterjet technology is enjoying considerable success in industrial processing applications. Thi...
The waterjet technology is enjoying considerable success in industrial processing applications. Thi...
Abrasive waterjets (AWJ) have in a short time become an indispensable industrial tool for many machi...
Abrasive waterjets (AWJ) have in a short time become an indispensable industrial tool for many machi...
Abrasive Waterjet technology is one of the fastest growing metal cutting technologies. Even so, very...
Abrasive Waterjet technology is one of the fastest growing metal cutting technologies. Even so, very...
Abrasive Waterjet technology is one of the fastest growing metal cutting technologies. Even so, very...
In the recent years the interest in loose abrasive machining processes as efficient, flexible proces...
In order to improve efficiency when manufacturing gas turbine components, alternative machining tech...