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Assessment of Current Process Modeling Approaches to Determine Their Limitations, Applicability and Developments Needed for Long-Fiber Thermoplastic Injection Molded Composites

, , , , , , and . PNNL-16236. Pacific Northwest National Laboratory, (2006)

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Long-fiber Thermoplastic Injection Molded Composites: From Process Modeling to Property Prediction, , , and . (2005)SurfaceFlow: Large Area Haptic Display via Compliant Liquid Dielectric Actuators., , , , and . HAPTICS, page 815-820. IEEE, (2020)HapSense: A Soft Haptic I/O Device with Uninterrupted Dual Functionalities of Force Sensing and Vibrotactile Actuation., , , , , , and . UIST, page 949-961. ACM, (2019)Fiber Length and Orientation in Long-Fiber Injection-Molded Thermoplastics — Part I: Modeling of Microstructure and Elastic Properties, , , , , , , and . Journal of Composite Materials, 42 (10): 1003-1029 (2008)A Self-Conformable Smart Skin with Sensing and Variable Stiffness Functions., , , and . Adv. Intell. Syst., 1 (5): 1900054 (2019)Stress Monitoring using Multimodal Bio-sensing Headset., , , , , , , and . CHI Extended Abstracts, page 1-7. ACM, (2020)iMold: Enabling Interactive Design Optimization for In-Mold Electronics., , , , and . CHI Extended Abstracts, page 1-7. ACM, (2020)Assessment of Current Process Modeling Approaches to Determine Their Limitations, Applicability and Developments Needed for Long-Fiber Thermoplastic Injection Molded Composites, , , , , , and . PNNL-16236. Pacific Northwest National Laboratory, (2006)