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SAE transactions | 2000

REPEATABILITY EVALUATION OF THE PRE-PROTOTYPE NHTSA ADVANCED DUMMY COMPARED TO THE HYBRID III

Lan Xu; Venkatesh Agaram; Stephen W. Rouhana; Robert W. Hultman; Gregory Kostyniuk; Joseph D. McCleary; Harold J. Mertz; Guy S. Nusholtz; Risa Scherer

A comparison of the NHTSA advanced dummy and the Hybrid III is presented in this paper based on their performance in repeated sled tests under 3 different restraint systems. The restraint systems considered are: the airbag alone, the 3-point belt alone, and a combined use of the airbag and the 3-point belt. Various time-histories pertaining to accelerations, angular velocities, deflections and forces have been compared between the two dummies in order to study their repeatability. The Hybrid III appears to be more repeatable than the NHTSA advanced dummy in its response in one case, that of restraint with the 3-point belt alone. The response of the NHTSA advanced dummy in two other restraint modes, the airbag alone and the combination of 3-point belt and airbag, appears to be no less repeatable than that of Hybrid III in this series of tests. The variability in the sled pulse appears to mask the differences, if any, in the variability of response between the two dummies in two later cases. Under some restraint configurations, for some body segments, the NHTSA advanced dummy appears to show better repeatability. In addition, it appears that the read-out of the chest-deflection measurement system in the NHTSA advanced dummy is not well defined because it is influenced by the rotation of the upper spine relative to the lower spine. (A) For the covering abstract see ITRD E106439.


SAE transactions | 2000

COMPARATIVE PERFORMANCE EVALUATION OF THOR AND HYBRID III

Lan Xu; Jack Jensen; Kathleen Byrnes; Agnes S. Kim; Venkatesh Agaram; Kathy L. Davis; Robert W. Hultman; Gregory Kostyniuk; Mike E. Marshall; Harold J. Mertz; Guy S. Nusholtz; Stephen W. Rouhana; Risa Scherer

A comparison of the NHTSA advanced dummy, THOR, and the Hybrid III dummy is presented in this paper, based on their performance in four vehicle barrier tests, six HYGE sled tests and twenty-two pendulum chest-impact tests. Various time-histories pertaining to accelerations, angular motions, deflections, forces and moments are compared between the two dummies in light of their design difference. In general, in the vehicle crash tests, the resultant head acceleration and chest deflection in THOR are greater than those in the HYBRID III. The shear, axial force and lateral moment in THORs lumbar are less than those in the Hybrid III in frontal impacts. The differences in the head/chest acceleration and chest deflection could be due to the differences in the construction of the neck and the thorax of the THOR when compared to those of the Hybrid III. The THOR and the Hybrid III have the same level of repeatability in the rear impact sled tests. The THOR is less repeatable in tests involving pendulum impacts on the chest. No major durability problems were identified in the THOR. The construction of the THOR is much more complex than that of the HYBRID III. In order for the THOR to be as easy to use as the HYBRID III, greater effort is needed to improve convenience in terms of data processing, documentation and handling. (A) For the covering abstract see ITRD E106349.


SAE transactions | 1995

TECHNICAL SPECIFICATIONS OF THE SID-IIS DUMMY

Roger P. Daniel; Annette L. Irwin; John Athey; Joe Balser; Paul Eichbrecht; Robert W. Hultman; Sarah L. Kirkish; Ann Kneisly; Harold J. Mertz; Guy S. Nusholtz; Stephen W. Rouhana; Risa Scherer; Michael Salloum; Joe Smrcka

A new dummy, the SID-IIs, a small (s) second generation (II) side impact dummy (SID) is reported. The SID-IIs is being developed to: 1) help evaluate proposed side impact countermeasures, such as side airbags, for the smaller segment of the population. This smaller segment includes both children and small adults; 2) help harmonize between existing side impact dummies toward one design worldwide by offering the begining of a family of biofidelic Anthropomorphic Test Devices (ATD) with as much worldwide input as possible. The dummy weighs 43.5 kg, is 790 mm high and has over 100 data channels available.


Stapp car crash journal | 2005

Side Impact Response Corridors for the Rigid Flat-Wall and Offset-Wall Side Impact Tests of NHTSA Using the ISO Method of Corridor Development

Annette L. Irwin; Aleta Sutterfield; Timothy P. Hsu; Agnes S. Kim; Harold J. Mertz; Stephen W. Rouhana; Risa Scherer


Stapp car crash journal | 2001

WORLDSID PROTOTYPE DUMMY BIOMECHANICAL RESPONSES

Dominique Cesari; Sabine Compigne; Risa Scherer; Lan Xu; Nobuhiko Takahashi; Martin Page; Kazuhito Asakawa; Greg Kostyniuk; Edmund Hautmann; Klaus Bortenschlager; Minoru Sakurai; Takeshi Harigae


Stapp car crash journal | 2003

A biofidelity evaluation of the BioRID II, Hybrid III and RID2 for use in rear impacts

Agnes S. Kim; K.F. Anderson; Jeff Berliner; J. Hassan; Jack Jensen; Harold J. Mertz; Hollie Pietsch; A. Rao; Risa Scherer; Aleta Sutterfield


Publication of: Society of Automotive Engineers | 1998

SID-IIS BETA+-PROTOTYPE DUMMY BIOMECHANICAL RESPONSES

Risa Scherer; Sarah L. Kirkish; Joseph P. McCleary; Stephen W. Rouhana; John Athey; Joseph S. Balser; Robert W. Hultman; Harold J. Mertz; Jeffrey M. Berliner; Lan Xu; Gregory W. Kostyniuk; Michael Salloum; Zhenwen Wang; Craig R. Morgan


Stapp car crash journal | 2000

Comparative Evaluation of the Q3 and Hybrid Iii 3-Year-Old Dummies in Biofidelity and Static Out-Of-Position Airbag Tests

Jeffrey M. Berliner; John Athey; Elias Baayoun; Kathleen Byrnes; Ali M. Elhagediab; Robert W. Hultman; Jack Jensen; Agnes S. Kim; Gregory Kostyniuk; Harold J. Mertz; Jessie Prest; Stephen W. Rouhana; Risa Scherer; Lan Xu


Stapp car crash journal | 2002

ES-2 Dummy Biomechanical Responses.

Katie Byrnes; Joseph Abramczyk; Jeff Berliner; Annette L. Irwin; Jack Jensen; Murthy Kowsika; Harold J. Mertz; Stephen W. Rouhana; Risa Scherer; Yibing Shi; Aleta Sutterfield; Lan Xu; Suzanne Tylko; Dainius Dalmotas


Stapp car crash journal | 2005

Evaluation of the ES-2re Dummy in Biofidelity, Component, and Full Vehicle Crash Tests.

Aleta Sutterfield; Katie Pecoraro; Stephen W. Rouhana; Lan Xu; Joe Abramczyk; Jeff Berliner; Annette L. Irwin; Jack Jensen; Harold J. Mertz; Guy S. Nusholtz; Hollie Pietsch; Risa Scherer; Suzanne Tylko

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