Energy-absorbing FUPDs and their interactions with fronts of passenger cars

Author:

Krusper Aleksandra,Thomson Robert

Publisher

Informa UK Limited

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering,Transportation

Reference18 articles.

1. Berg, F. A., Lauer, F., Riebeck, L. and Breitling, U. 2001. “Compatibility of trucks and cars in frontal collisions: Benefit of an energy-absorbing front underride guard”. 339–340. UK: Proceedings of IRCOBI Conference on the Biomechanics of Impact, Isle of Man.

2. Impact simulation and full scale crash testing of a low profile concrete work zone barrier

3. de Coo, P., Schram, R., Malczyk, A. and Bende, J. 2006. “Deliverable number D12, Task 6.3, Summary of tests carried out in WP6, conclusions and recommendations regarding the relationship between injury mechanisms and type of underrun protection”. Delft, The Netherlands: VC-Compat project, TNO Automotive.

4. Delannoy, P. and Faure, J. 2003. “Compatibility assessment proposal close from real life accident”. Nagoya, Japan: Proceedings of the 18th International Technical Conference on the Enhanced Safety of Vehicles, paper 94.

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1. Underride Protection Devices;Road and Off-Road Vehicle Dynamics;2023

2. Heavy truck front-end deployable system opportunities for crash compatibility with passenger vehicles;International Journal of Crashworthiness;2017-02-22

3. A review on rear under-ride protection devices for trucks;International Journal of Crashworthiness;2016-11-16

4. Truck frontal underride protection – compatibility factors influencing passenger car safety;International Journal of Crashworthiness;2012-04

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