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Technical Paper

Approach to Determine Slip Values Based on the Intensity of Tire Marks with Respect to Tire and Road Properties

2013-04-08
2013-01-0781
The objective of the presented research is to analyze the cause-and-effect chain of the emergence of tire marks and to indentify how the intensity of a friction-related tire mark on asphalt or concrete pavements can provide additional information related to forces or slips at the marking wheels. Focusing on tire marks due to abrasive wear, the influences on the intensity of tire marks are analyzed based on three categories: vehicle dynamic parameters, tire and road properties, which determine the sensitivity of tire marking for a specific tire-road combination for constant vehicle dynamic parameters; and optical parameters, influencing the contrast of a given tire mark. The analysis includes a new objective method for the assessment of the tire mark intensities derived by photos of tire marks, generated with a tire measurement trailer. Additionally a test rig was developed to determine the tire marking sensitivity with reference marks under controlled friction conditions.
Journal Article

Tire Mark Analysis of a Modern Passenger Vehicle with Respect to Tire Variation, Tire Pressure and Chassis Control Systems

2009-04-20
2009-01-0100
Tire mark analysis is an important factor in accident reconstruction. A precise determination of pre- and postcrash speeds as well as longitudinal and lateral accelerations from tire marks contributes significantly to a reliable accident reconstruction. Continuous advancements in tire and vehicle technology – in particular with respect to modern control systems such as anti-lock braking systems (ABS) – raises the question what role tire marks play in accident reconstruction today. Moreover, this accompanies the question to what extent potential interventions by vehicle control systems such as the electronic stability program (ESP®) resp. the electronic stability control (ESC) can be identified in a tire mark. The widespread use of these systems today makes them increasingly important in accident reconstruction.
Technical Paper

Effects Causing Untripped Rollover of Light Passenger Vehicles in Evasive Maneuvers

2004-03-08
2004-01-1057
Accident statistics show that rollover accidents contribute to a large proportion of fatal traffic accidents in the U.S.. In the past it has been documented that some light passenger cars showed tendencies to roll over in evasive lane change maneuvers. In 1997, a newly developed mini van rolled over in a severe double lane change test called “moose-test”. Recently (2001), a new SUV showed similar tendencies in the Consumers Union Short Course test. It is not immediately clear why these evasive test maneuvers are so strongly related to untripped rollover of light passenger vehicles. Therefore, the goal of current research is to understand the circumstances and effects causing modern passenger vehicles to roll over in evasive maneuvers on the road. This paper discusses research activities concerning the following questions: How do critical steering strategies lead to untripped rollover? Are resonant frequencies excited during maneuvers leading to rollover?
Technical Paper

New Powerful Catalysts for Autothermal Reforming of Hydrocarbons and Water-Gas Shift Reaction for On-board Hydrogen Generation in Automotive PEMFC Applications

2001-03-05
2001-01-0234
Polymer electrolyte fuel cell (PEMFC) systems are clean and efficient power sources for mobile applications. The required anode feed gas hydrogen can either be stored as such or generated on-board the vehicle. The on-board reforming of hydrocarbon fuels like gasoline, diesel or light naphtha to generate the required hydrogen is attractive due to the existing production and infrastructure. Lack of the latter is a drawback for the use of hydrogen or methanol as energy source. One focus of research and development at dmc2 (Degussa Metals Catalysts Cerdec AG) is on catalyst systems for hydrogen generation and purification for mobile PEMFC applications, particularly for autothermal reforming (ATR) of gasoline and methane, and for water gas shift (WGS) reaction. This paper reports on hydrogen productivity, selectivity, operational stability, and dynamic response upon load change of precious metal based catalysts for ATR and WGS reaction.
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