Skip to main navigation
Skip to search
Skip to main content
Experts@Minnesota Home
Search content at Experts@Minnesota
Home
Profiles
Research units
University Assets
Projects and Grants
Research output
Datasets
Press/Media
Activities
Fellowships, Honors, and Prizes
Impacts
Pressure die casting: A model of vacuum pumping
G. Bar-Meir
, E. R.G. Eckert
, R. J. Goldstein
Mechanical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
18
Link opens in a new tab
Scopus citations
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Pressure die casting: A model of vacuum pumping'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Pressure Die Casting
100%
Gasses
100%
Vent Area
100%
Vacuum Pumping
100%
Airflow
33%
Law
33%
Numerical Simulation
33%
Ventilation
33%
Air Entrainment
33%
Thermal Conductivity
33%
Porosity
33%
Elastic Modulus
33%
Compressibility
33%
Filling Time
33%
Pressure Variation
33%
Low Porosity
33%
Cavity Filling
33%
Residual Air
33%
Total Porosity
33%
Air Porosity
33%
Optimum Area
33%
Vent Size
33%
Vacuum Casting
33%
Design Engineers
33%
Area Variations
33%
Multifunctional Characteristics
33%
Die Casting Parts
33%
Engineering
Die Casting
100%
Pressure Die
100%
Porosity
100%
Duct
25%
Young's Modulus
25%
Air Entrainment
25%
Simple Model
25%
Design Engineer
25%
Thermal Conductivity
25%
Compressibility
25%
Optimum Area
25%
Computer Simulation
25%
Air Flow
25%
Material Science
Die Casting
100%
Thermal Conductivity
50%
Elastic Moduli
50%
Compressibility
50%
Physics
Porosity
100%
Air Flow
25%
Thermal Conductivity
25%
Compressibility
25%
Young's Modulus
25%
Numerical Simulation
25%