A Bicyclist Airbag Vest on the SAFER Human Body Model: Protection of Shoulder, Thorax, and Head
Paper i proceeding, 2026
most common configuration and the most frequently injured body part is the head. However, the most frequent
crash configuration is single-bicycle with the shoulder as the most injured body part. Shoulder injuries are non-
fatal but often result in long-term consequences. Shoulder-thorax-protection for bicyclists is underdeveloped.
The objective of the study was to evaluate the protection provided by a conceptual airbag vest. Twenty-four car-
to-bicycle and eight single-bicycle crash simulations with a Human Body Model rider (SAFER HBM) were carried
out, varying impact speed and impact angle. The airbag was coupled with the SAFER HBM and the shape covers
the outer surface of the torso, particularly the shoulder and thorax. Shoulder peak contact force, risk of mild
traumatic brain injury (mTBI), Head Injury Criterion (HIC), and the risk for two or more fractured ribs were
assessed for bicyclists with and without an airbag vest. The airbag vest showed potential for shoulder protection.
In single-bicycle crash simulations, a substantial reduction in shoulder contact force was observed. Additionally,
the airbag vest showed potential to reduce the risk of mTBI and HIC, particularly in single-bicycle crash simulations.
For all evaluated loadcases, the risk of fractured ribs remained low, both with and without the airbag vest. The
detachment and position upward next to the head provided unexpected head injury protection and could be
incorporated deliberately in future designs of the airbag vest. Shoulder contacts with stiff elements of the car
produced the highest shoulder contact forces and biggest challenge for the airbag vest design. These contacts
could be further simplified into worst-case component testing to aid the development of better protection. A
tissue-based injury risk prediction is desirable as injury prediction capability of human body model need to be
developed in the future. Nevertheless, the conceptual airbag vest substantially reduced loading to the shoulder
and had protective effects on head and thorax.
Virtual testing
Bicycle crash
Shoulder injury
Vulnerable road users
Författare
Bei Li
Autoliv AB
Jolyon Carrol
Autoliv AB
Bengt Pipkorn
Chalmers, Mekanik och maritima vetenskaper, Fordonssäkerhet
Nils Lübbe
Autoliv AB
Chalmers, Mekanik och maritima vetenskaper, Fordonssäkerhet
2026 IRCOBI Conference Proceedings
2235-3151 (ISSN)
IRC-26-129München, Germany,
Styrkeområden
Transport
Hälsa och teknik
Ämneskategorier (SSIF 2025)
Farkost och rymdteknik
Beräkningsmatematik