Enhancing Complex Injection Mold Design Validation Using Multicombined RV Environments
J.M. Mercado-Colmenero, D. F. Garcia-Molina, B. Gutierrez-Jimenez, C. Martin-Donate

TL;DR
This paper introduces a multimodal virtual environment using VR to improve the validation of complex injection mold designs, significantly reducing errors and enhancing efficiency compared to traditional CAD-based methods.
Contribution
It presents a novel VR-based validation environment that integrates visual tools and statistical analysis to improve mold design validation processes.
Findings
VR validation significantly improves interference detection accuracy.
Multidimensional validation reduces manufacturing errors.
Efficiency gains observed with VR devices in mold validation.
Abstract
The intricate design of real complex injection molds poses significant challenges. Mold design vali-dation often falls to operators with tool-handling experience but limited CAD proficiency. Unlike other industries, the scale and costs of injection mold fabrication hinder prototyping before pro-duction. Virtual reality (VR) has emerged as a revolutionary solution offering a safe, immersive, and realistic experience and accessible using QR codes. This paper presents a new multimodal virtual environment tailored to validate mold design complexities. Integrating knowledge-enriched visual tools like interactive 3D models and dynamic visualizations enables users to explore complex mold designs. Statistical analyses, including the Wilcoxon test, unveil significant differences in interference detection, internal topology tracking, and validation of assembly and disassembly accessibility for…
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