Computational Fluid Dynamics (CFD) softwares have been prevalent in Abrasive Waterjet (AWJ) Modelling for optimization and prediction. However, there are many different methods in approaching a single problem especially in predicting the erosion rate of nozzle which is critical in influencing kerf quality of AWJ cutting. In this paper, three main methods of assembly meshing for an abrasive waterjet erosion were simulated which is Quadrilateral,Cutcell and Tetrahedrons and each processing time, quality of convergence and accuracy of results are discussed. Results shows that Quadrilateral mesh prevails in the mentioned category followed by Tetrahedrons and Cutcell
Abrasive waterjet cutting comprises already today many applications in high precision and near net-s...
Das Schneiden mit dem Wasserabrasivstrahl hat sich in vielen Bereichen der industriellen Fertigung ...
Today, manufacturing methods are classified into two groups as conventional and non- conventional ma...
Summarization: The utilization of abrasive waterjet (AWJ) cutting/drilling, and in particular its ap...
In Abrasive Waterjet (AWJ) machining, the nozzle is the most critical component that influences the ...
The nozzle of the Abrasive Waterjet (AWJ) machine is the most critical component that consequently a...
The usage of abrasive waterjet has been established in many fields of industrial production. Limitat...
The application of abrasive waterjets is spreading more and more among various industries. Two diffe...
International audienceThe increasing use of high-pressure water jets in the industry for machining m...
The objective of this work is to study the particle‐induced erosion within a nozzle for abrasive cut...
peer reviewedIn this work, a numerical approach to study erosion phenomena inside a focusing tube fo...
In this work, a numerical approach to study erosion phenomena inside a focusing tube for Abrasive Wa...
The objective of this work is to study the particle‐induced erosion within a nozzle for abrasive cut...
Abstract: Abrasive waterjet (AWJ) machining is a non-conventional process. Its most striking advanta...
The objective of this work is to study the particle‐induced erosion within a nozzle for abrasive cut...
Abrasive waterjet cutting comprises already today many applications in high precision and near net-s...
Das Schneiden mit dem Wasserabrasivstrahl hat sich in vielen Bereichen der industriellen Fertigung ...
Today, manufacturing methods are classified into two groups as conventional and non- conventional ma...
Summarization: The utilization of abrasive waterjet (AWJ) cutting/drilling, and in particular its ap...
In Abrasive Waterjet (AWJ) machining, the nozzle is the most critical component that influences the ...
The nozzle of the Abrasive Waterjet (AWJ) machine is the most critical component that consequently a...
The usage of abrasive waterjet has been established in many fields of industrial production. Limitat...
The application of abrasive waterjets is spreading more and more among various industries. Two diffe...
International audienceThe increasing use of high-pressure water jets in the industry for machining m...
The objective of this work is to study the particle‐induced erosion within a nozzle for abrasive cut...
peer reviewedIn this work, a numerical approach to study erosion phenomena inside a focusing tube fo...
In this work, a numerical approach to study erosion phenomena inside a focusing tube for Abrasive Wa...
The objective of this work is to study the particle‐induced erosion within a nozzle for abrasive cut...
Abstract: Abrasive waterjet (AWJ) machining is a non-conventional process. Its most striking advanta...
The objective of this work is to study the particle‐induced erosion within a nozzle for abrasive cut...
Abrasive waterjet cutting comprises already today many applications in high precision and near net-s...
Das Schneiden mit dem Wasserabrasivstrahl hat sich in vielen Bereichen der industriellen Fertigung ...
Today, manufacturing methods are classified into two groups as conventional and non- conventional ma...