CASTING
SIMULATION
MY PORTFOLIO
SOME OF MY BEST WORKCOOLING SIM
PLASTICS
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PointX3Deng will help you to optimize or improve existing cooling in your mold, as uniform part cooling make high impacts on part warpage, cycle time. With our analysis you can examine the Confidence of Fill and Quality Prediction results, as well as Fill Time, Injection Pressure, Pressure Drop and Flow Front Temperature results.
FILLING
TOOLING
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The filling phase of the injection molding process greatly affects the quality of the end product.
By utilizing filling analysis the processing characteristics of an injection mold can investigated and optimized at the design stage. Improvements in part quality are achieved by refining gate points, the position of weld lines, eliminating gas traps, balancing pressure drops and reducing stress levels.
WARP ANALYSIS
AUTOMOTIVE/AEROSPACE
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Warpage analysis evaluates the dimensional characteristics of a molding once ejected from the mold. In addition diagnostic capabilities allow the cause of warpage to identified, and remedied during the early stages of design.
This analysis is also a very useful tool for investigating practical solutions for existing moldings that have distortion problems.
CORE SHIFT SIM
VARIOUS DOMAIN
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PointX3Deng can offer Core shift Simulation that is the spatial deviation in the position of the core from its original position in the mold before plastic is injected into the cavity. It is a frequent problem with long, slender, and not necessarily thin-walled products, such as vials, test tubes, and pen barrels
MUCELL SIM
AUTOMOTIVE/ AEROSPACE
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Microcellular Injection Molding (MuCell) is a mechanical foaming process used to improve the performance/weight characteristics of an injection-molded part. We explore how well the module correlates with real-world molded samples, determine the best approach for using the module for a brand new mold, and discuss any limitations to the module.
MAGAM SIM
AUTOMOTIVE / HEAVY INSUT.
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PointX3DEng engineers improving metalcasting quality, optimizing process conditions and reducing production costs. Consequently utilizing the methodology of virtual Design of Experiments and Autonomous Optimization, robust process parameters and optimized casting layouts can be established for all cast materials and processes including heat treatment and melt metallurgy – efficiently and comprehensively at the same time.