1999Chalmers Publication Library (Chalmers University of Technology)Requires access

A COMPARISON BETWEEN VOLUNTEER, BIORID P3 AND HYBRID III PERFORMANCE IN REAR IMPACTS

Johan Davidsson, Per Lövsund, Koshiro Ono, Mats Y. Svensson, Satoshi Inami

Open publisher page 45 citations

Abstract

The most important tool to date for testing seat systems in rear impacts is a crash test dummy. However, investigators have noted limitations of the most commonly used dummy, the Hybrid III. Although the BioRID I is a step closer to a biofidelic crash test dummy it is not user-friendly and the straightening of the thoracic spine kyphosis is smaller than that of humans. The objective of this study is to compare the performance of the latest prototype of the BioRID, the P3, with those of volunteers. The BioRID P3 has new neck muscle substitutes, a softer thoracic spine and a softer rubber torso than does the BioRID I. The BioRID P3 was validated against volunteer test data in both a rigid and a standard seat without head restraints. The dummy kinematic performance, pressure distribution between subject and seatback, spine curvature, neck loads and accelerations were compared to those of seven volunteers and a Hybrid III fitted with a standard neck. The BioRID P3 provided repeatable test results, and its response was very sirnilar to that of the average volunteer in rear impacts at delta V (velocity change) = 9 km/h. (A) For the covering abstract of the conference see ITRD E203643.

About this research paper

What this paper is about

The most important tool to date for testing seat systems in rear impacts is a crash test dummy. However, investigators have noted limitations of the most commonly used dummy, the Hybrid III. Although the BioRID I is a step closer to a biofidelic crash test dummy it is not user-friendly and the straightening of the thoracic spine kyphosis is smaller than that of humans. The objective of this study is to compare the performance of the latest prototype of the BioRID, the P3, with those of volunteers. The BioRID P3 has new neck muscle substitutes, a softer thoracic spine and a softer rubber torso than does the BioRID I. The BioRID P3 was validated against volunteer test data in both a rigid and a standard seat without head restraints. The dummy kinematic performance, pressure distribution between subject and seatback, spine curvature, neck loads and accelerations were compared to those of seven volunteers and a Hybrid III fitted with a standard neck. The BioRID P3 provided repeatable test results, and its response was very sirnilar to that of the average volunteer in rear impacts at delta V (velocity change) = 9 km/h. (A) For the covering abstract of the conference see ITRD E203643.

Why it matters

OpenAlex reports 45 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The most important tool to date for testing seat systems in rear impacts is a crash test dummy. However, investigators have noted limitations of the most commonly used dummy, the Hybrid III. Although the BioRID I is a step closer to a biofidelic crash test dummy it is not user-friendly and the straightening of the thoracic spine kyphosis is smaller than that of humans. The objective of this study is to compare the performance of the latest prototype of the BioRID, the P3, with those of volunteers. The BioRID P3 has new neck muscle substitutes, a softer thoracic spine and a softer rubber torso than does the BioRID I. The BioRID P3 was validated against volunteer test data in both a rigid and a standard seat without head restraints. The dummy kinematic performance, pressure distribution between subject and seatback, spine curvature, neck loads and accelerations were compared to those of seven volunteers and a Hybrid III fitted with a standard neck. The BioRID P3 provided repeatable test results, and its response was very sirnilar to that of the average volunteer in rear impacts at delta V (velocity change) = 9 km/h. (A) For the covering abstract of the conference see ITRD E203643.

Key concepts: Hybrid III, Torso, Crash, Crash test, Engineering, Structural engineering, Simulation, Volunteer

Related papers

Back to paper searchBrowse research topicsOriginal source
A COMPARISON BETWEEN VOLUNTEER, BIORID P3 AND HYBRID III PERFORMANCE IN REAR IMPACTS — Research Paper | ScholarLens