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IEC 2023 Guide

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STUDENT SYMPOSIUM<br />

STUDENT SYMPOSIUM • OCTOBER 17-19, <strong>2023</strong><br />

The Student Symposium includes oral presentations by graduate and undergraduate students, as well as a poster<br />

session. Technical Meeting attendees are encouraged to view the student presentations. The posters are displayed<br />

on the Expo floor and in the Technical Meeting area so all <strong>IEC</strong> attendees can view them.<br />

STUDENT PRESENTATIONS<br />

Each presentation will take place in the relevant session topic<br />

during the Technical Meeting.<br />

October 17<br />

• Traceless Crosslinking of Polyisobutylene - Arsalaan<br />

Pathan, The University of Akron<br />

• Durability Variation and Composition of Medical Gloves -<br />

Ashley Herkins, The Ohio State University<br />

• The Influence of Temperature on Friction and Wear<br />

Performance of Tire Tread Compounds Using a Novel<br />

Friction-Wear Rig - Eathan Plaschka, Queen Mary<br />

University of London<br />

October 18<br />

• Chain Shuffling: A Synthetic Pathway to Multiblock<br />

Copolymers - Abhishek Banerjee, The University of Akron<br />

• Fiber-reinforced Silicone Pneumatic System with Haptic<br />

Feedback for Teleoperation - Nathalia Diaz Armas,<br />

University of Massachusetts Lowell<br />

• Direct-Ink Write of Rubber Formulations for Automotive<br />

Applications - Sarath Kamath, The University of Akron<br />

• Investigation of Filler Interaction and Degradation<br />

of Disulfide Elastomers Made by Reversible Radical<br />

Recombination Polymerization (R3P) - Aswathy Pillai, The<br />

Ohio State University<br />

• Closing the Loop for Silica-filled Passenger Car Tire Rubber<br />

- Rounak Ghosh, University of Twente<br />

• Influence of Silica and Silane on the Cure Behavior in Filled<br />

SSBR Compounds - Anmol Aggarwal, University of Twente<br />

• Enhanced Thermal Performance Properties of EPDM<br />

Carbon Black Composites via Crossover Curing<br />

Ingredients - Arshad Rahman Parathodika, Indian<br />

Institute of Technology Kharagpur<br />

• Rubber Dandelion: A Source of Natural Rubber Latex -<br />

Nathaniel King-Smith, The Ohio State University<br />

• Investigating the Effects of Thermal History on Interlayer<br />

Adhesion in Thermoset 3D Printing by Atomic Force<br />

Microscopy (AFM) - AA Mubasshir, University of<br />

Massachusetts Lowell<br />

• Evaluating the Combined Effects of Swelling and<br />

Elevated Temperatures in Elastomer Composites - Aaron<br />

M. Duncan, Queen Mary University of London<br />

• Investigating the Effects of Graphene Nanoplatelets<br />

(GNPs) and External Waterbased Crosslinker (eWCL) on<br />

the Mechanical and Thermal Properties of Waterbased<br />

Elastomer (WBE) Nanocomposites - Christian Nwosu,<br />

The University of Manchester<br />

October 19<br />

• Characterization of Dielectric Elastomer Actuators<br />

Based on Functionalized Liquid Isoprene Rubber for Soft<br />

Robotics Applications - Jishnu Nirmala Suresh, Leibniz-<br />

Institut für Polymerforschung Dresden<br />

• Understanding the Role of Temperature-dependent<br />

Bound Rubber on the Viscoelastic Properties of Filled<br />

Elastomer Composites - Kirsty Rutherford, Queen Mary<br />

University of London<br />

• Investigating Origin of Temperature Dependence of<br />

Rubber Rupture - Zehao Fan, The University of Akron<br />

• Understanding the Role of Silica Hybrid Particles with<br />

Styrene-butadiene Rubber Shells on Tread Compound<br />

Properties - Marcin Sek, University of Twente<br />

• Vulcanization of an IR/BR-copolymer Using a CO2-laser<br />

as Inline-curing Method for Additive Manufacturing of<br />

Rubber-based Parts - Sebastian Leineweber, Leibniz<br />

Universität Hannover Institut für Transport- und<br />

Automatisierungstechnik<br />

• Physical Characterization of SuMo Fly Ash Compounds -<br />

Eric Devney, The Ohio State University<br />

• Minimizing Temperature Deviations in Rubber Extrusion<br />

Lines Using Artificial Neural Network based Process<br />

Control - Marco Lukas, Leibniz Universität Hannover<br />

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