About the job
Hello, I am looking for a polymer flow simulation in solidworks flow simulation.
Flow Pattern Identification: The aim is to map how the polymer behaves throughout the extruder, identifying flow patterns that may indicate areas of efficiency or potential problems.
Vortex and Stop Point Detection: The simulation should reveal the formation of vortices or stop points in the polymer, which may affect the homogeneity of the extruded material and the efficiency of the process.
Extruder Design Optimization: Based on the data obtained, it will be possible to make adjustments to the extruder design, such as the geometry of the screw and the head, to improve the flow and plasticization of the polymer.
Extrusion Process Validation: The simulation will help to validate whether the proposed operating conditions (such as temperature and screw rotation speed) are adequate to ensure a uniform and efficient flow of the material.
Generation of Data for Research: The results will provide valuable data that can be used in future research on the processing of different types of polymers, contributing to the advancement of knowledge in the area.
Participant Training: The experience gained during the simulation will allow academics and members of the research group to develop practical and theoretical skills in simulating extrusion processes, preparing them for future challenges in the area of materials engineering.
The 3D model is ready
Hello, I am looking for a polymer flow simulation in solidworks flow simulation.
Flow Pattern Identification: The aim is to map how the polymer behaves throughout the extruder, identifying flow patterns that may indicate areas of efficiency or potential problems.
Vortex and Stop Point Detection: The simulation should reveal the formation of vortices or stop points in the polymer, which may affect the homogeneity of the extruded material and the efficiency of the process.
Extruder Design Optimization: Based on the data obtained, it will be possible to make adjustments to the extruder design, such as the geometry of the screw and the head, to improve the flow and plasticization of the polymer.
Extrusion Process Validation: The simulation will help to validate whether the proposed operating conditions (such as temperature and screw rotation speed) are adequate to ensure a uniform and efficient flow of the material.
Generation of Data for Research: The results will provide valuable data that can be used in future research on the processing of different types of polymers, contributing to the advancement of knowledge in the area.
Participant Training: The experience gained during the simulation will allow academics and members of the research group to develop practical and theoretical skills in simulating extrusion processes, preparing them for future challenges in the area of materials engineering.
The 3D model is ready
Hello, I am looking for a polymer flow simulation in solidworks flow simulation.
Flow Pattern Identification: The aim is to map how the polymer behaves throughout the extruder, identifying flow patterns that may indicate areas of efficiency or potential problems.
Vortex and Stop Point Detection: The simulation should reveal the formation of vortices or stop points in the polymer, which may aff...
read more
Hello, I am looking for a polymer flow simulation in solidworks flow simulation.
Flow Pattern Identification: The aim is to map how the polymer behaves throughout the extruder, identifying flow patterns that may indicate areas of efficiency or potential problems.
Vortex and Stop Point Detection: The simulation should reveal the formation of vortices or stop points in the polymer, which may affect the homogeneity of the extruded material and the efficiency of the process.
Extruder Design Optimization: Based on the data obtained, it will be possible to make adjustments to the extruder design, such as the geometry of the screw and the head, to improve the flow and plasticization of the polymer.
Extrusion Process Validation: The simulation will help to validate whether the proposed operating conditions (such as temperature and screw rotation speed) are adequate to ensure a uniform and efficient flow of the material.
Generation of Data for Research: The results will provide valuable data that can be used in future research on the processing of different types of polymers, contributing to the advancement of knowledge in the area.
Participant Training: The experience gained during the simulation will allow academics and members of the research group to develop practical and theoretical skills in simulating extrusion processes, preparing them for future challenges in the area of materials engineering.
The 3D model is ready
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