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Technical Paper

Thermoplastic Solution for Electric Vehicle Battery Protection

2022-10-05
2022-28-0342
Light-weight solutions are gaining traction in the development of Electric Vehicles to improve the overall range of the vehicle. One key focus area is to replace metallic structural members with thermoplastic solutions as they contribute to the major weight of the vehicle. However, since the structural components influence the crashworthiness requirements of the vehicle such as frontal, side and rollover impact, the design of the lightweight solutions need to be robust. Rocker panel structures are situated at the bottom of the lateral edges of the vehicle and are intended to absorb the energy during a side crash, protecting the battery from intrusion and shock. Rocker reinforcement is one application targeted by OEM’s to reduce weight and carbon footprint compared to the conventional metallic solutions. In this paper, we discuss the design and development of rocker reinforcements using SABIC’s Specialties NORYL GTXTM resin.
Journal Article

Role of Predictive Engineering in the Design Evolution of a Thermoplastic Fender for a Compact SUV

2011-04-12
2011-01-0768
Automotive fenders is one such example where specialized thermoplastic material Noryl GTX* (blend of Polyphenyleneoxide (PPO) + Polyamide (PA)) has successfully replaced metal by meeting functional requirements. The evolution of a fender design to fulfill these requirements is often obtained through a combination of unique material properties and predictive engineering backed design process that accounts for fender behavior during the various phases of its lifecycle. This paper gives an overview of the collaborative design process between Mitsubishi Motors Corporation and SABIC Innovative Plastics and the role of predictive engineering in the evolution of a thermoplastic fender design of Mitsubishi Motors Corporation's compact SUV RVR fender launched recently. While significant predictive work was done on manufacturing and use stage design aspects, the focus of this paper is the design work related to identifying support configuration during the paint bake cycle.
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