Completed Materials & Manufacturing Engineering

Light-join: Joining technologies to enable implementation of lightweight structures in automotive

In plain English

AI plain-English summary

Car manufacturers are developing new ways to glue and fasten lightweight composite parts to metal car bodies, aiming to slash vehicle weight without blowing up production costs. The problem is simple: composites like carbon fibre are strong and light, but joining them to metal components in a fast, reliable, and cheap way has been a bottleneck. Current joining methods are too slow or too expensive for high-volume car production. This project, led by Jaguar Land Rover and Nissan alongside their suppliers, targets that gap head-on. It focuses on rapid joining techniques that can work on an assembly line, not just in a lab. If successful, the impact is concrete. For an all-aluminium vehicle, the approach could cut component weight by 30%; for a steel-based vehicle, by 60%. That directly improves fuel efficiency and reduces emissions without sacrificing performance. Critically, the project aims to push the technology to a manufacturing readiness level where it can be scaled up for mass-market cars. That means lighter, more efficient vehicles could become the norm, not just a premium option. The work also strengthens the UK supply chain for composite manufacturing, making it easier for other industries—from aerospace to rail—to adopt similar lightweighting strategies.

View original technical description
The automotive industry faces major challenges to meet targets for emissions, efficiency, performance and cost; light weighting of parts using composites enables all of these to be addressed, except for cost. A key driver of cost of composites is the limited ability & capacity in the joining technology available. In project Light-Join, JLR, Nissan and their Tier 1 suppliers aim to develop a number of solutions that will enable cost effective integration of high performance composite components into volume car production. Light-Join aims to enable replacement of specific metal vehicle components with composites, specifically focussed on developing rapid joining solutions, raising the manufacturing maturity to produce a small scale demonstrator component (MRL5) and assessing the potential for scale-up to MRL9A. This project will develop a solution leading to 30% weight reduction for all-aluminium construction (for JLR) and 60% compared to an all steel construction (for Nissan). Critically this approach will have industry wide applicability, allowing a lower risk introduction of lightweight composite components to the mass market.

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Related Research

Grants with similar aims, by meaning.

High Volume Lightweight Technologies for Vehicle Structures (HiLiTe)
Building a Volume Supply Chain for affordable lightweight composite Structures
Aluminium Matrix Composite Materials for Vehicle Weight Reduction - Technology Refinement and Production Readiness
Lightweight Energy Absorbing Aluminium Structures for Transport (LEAAST)
Lightweight Automotive Fibre-Steered Structures (LeAFS)

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Collaborative R&D

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