Completed Materials & Manufacturing Engineering

CHASSIS (Composite Hybrid Automotive Suspension System Innovative Structures)

In plain English

AI plain-English summary

A Ford Transit van chassis will shed 37% of its weight—about 25 kilograms—by replacing steel with a hybrid composite-and-steel structure. This matters because the automotive industry needs drastic weight reductions to meet tightening CO₂ and fuel economy standards, but conventional steel and aluminium components can no longer deliver the necessary improvements, especially for lighter vans and hybrid vehicle architectures. The project tackles two problems at once: cutting material weight and reducing the number of parts and interfaces across the entire chassis. If successful, the research could accelerate the use of composite materials in mass-produced vehicles. That would directly lower fuel consumption and emissions for commercial vans, which quietly keep supply chains and deliveries running. It also addresses a manufacturing bottleneck—developing a rapid, repeatable, cost-effective composite process—so that lightweight chassis can move from prototypes to production lines. The project uses the latest design and process optimisation tools to ensure the weight savings do not compromise any performance attributes.

View original technical description
The automotive industry is heaviliy being driven towards weight reduction as a means of achieving ever more demanding emissions (CO2 and fuel economy) requirements. Lower weight solutions for traditional steel and aluminium chassis components are failing to deliver the step improvements required to give lighter LCVs or the required weight reductions for Hybrid Vehicle Architectures. This project focuses on the development of hybrid composite/steel material solutions; used in a optimised way to save weight via step reductions in material weight but also via reduction of parts and interfaces across a full Transit van chassis. This will be done by using some of the latest Design and Process optimisation tools available on the market today. An essential part of the project is the selection and development of a reliable, robust and cost effective composite manufacturing process since rapid, repeatible and productive processese are key to accelerate the use of composites for mass production vehicles. The aim of the project is to achieve a 37% weight saving (circa 25Kg) over the existing full steel Transit Van chassis without reducing any of the vehicles perfomance attributes

View the original record at the funder ↗

Related Research

Grants with similar aims, by meaning.

Development of Lightweight Composite Suspension Components
Metal Composite Hybrids for Lightweighting
Translating Metallic Automotive Compents to Advanced Materials
Composite Ultra Lightweight Automotive Suspension Components (CUSP)
Chass - e - Cab

Original classification

Collaborative R&D

Plain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research.