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Zur Erhöhung des Verformungswiderstandes von Asphaltbefestigungen ist eine Vielzahl von Produkten entwickelt worden, welche dem Bitumen erst an der Mischanlage zugegeben werden können. Da deren Praxisverhalten aber oftmals noch nicht hinreichend bekannt ist, wurde auf einem Streckenabschnitt der BAB 1 bei Euskirchen eine Versuchsstrecke zur Erprobung der Additive eingerichtet. Fazit nach vier Jahren Nutzungsdauer ist, dass die untersuchten Produkte in Verbindung mit einem nicht-modifizierten Straßenbaubitumen grundsätzlich als vergleichbare Bindemittelalternative verwendbar sind. Die separate Zugabe an der Mischanlage hat jedoch i. a. einen höheren Aufwand zur Folge, so dass der Einsatz sich insbesondere für Sonderanwendungen (z. B. Kleinmengen oder Mischgut mit höherer Modifizierung) eignet. Für die Anwendungen wird eine objektbezogene, aussagekräftige erweiterte Eignungsprüfung als zwingend notwendig angesehen. Bei großflächigen Anwendungen sollte aufgrund der noch nicht eindeutig dokumentierten gleichmäßigen Verteilung der Produkte und des noch fehlenden quantitativen Nachweises den gebrauchsfertigen PmB der Vorzug gegeben werden. Außerdem wird darauf hingewiesen, dass die Erprobungsfelder zwar in einem Autobahnabschnitt der Bauklasse SV liegen, die Verkehrsbelastung aber noch deutlich unter den besonders hoch belasteten Autobahnabschnitten in Nordrhein-Westfalen liegt. Auf der Erprobungsstrecke ist somit die Gefahr einer vergleichsweise schnellen Spurrinnenbildung nicht besonders hoch.
Pelvic fracture, cracking or breaking of a portion of the pelvis are extremely common injuries in the side impact collisions of motor vehicles. Due to both its shape and structural architecture, mechanics of the pelvic bone is complicated. There is a lack of knowledge regarding the dynamic behavior of the pelvis and its biomechanical tolerance under impact environment. Hence this study is aimed at the understanding of the mechanical response of the human pelvis with three-dimensional finite element (FE) models, under side impact load, applied through a structure, equivalent to a car door. The door structure was modeled, considering few layers, consisting of foam (Styrodur®, 3035 CS), plastic (UHMWPE), steel, glass and steel, putting them in series. A soft tissue layer (equivalent to fat) was also considered on the greater trochanter location. These FE models (with and without the car door structure) were analyzed with ANSYS-LS-DYNA-® dynamic finite element software to compare the effect of the car door padding system for shock absorption. It was observed that with proper combination of shock absorbing material (foam, etc.) and its thickness, the transmission of impact load to the body part (pelvis, etc.) from the outer surface of the car door could be reduced.
The average CO2 concentrations relevant to a motorcyclist wearing an integral helmet were measured twenty years ago and found to be alarmingly high. The present study examined gas concentrations typically inhaled by a motorcyclist. Average concentrations of CO2 for persons (n=4) wearing integral motorcycle helmets were measured in the laboratory and the field to facilitate comparison to previous work, and similarly high average concentrations were found: above 2% when stationary, well below 1% for speeds of 50km/h or more. Detailed measurements of the time-dependent CO2 concentrations during normal inhalation showed levels of about half of the corresponding average concentrations, including 1% at standstill, though higher concentrations (4% or more) are inhaled at the beginning of each breath. Opening the visor at standstill lowered the average inhaled concentration only to about 0.8%. The oxygen deficiency is equal to the CO2 concentration, and could also contribute negatively to motorcyclist cognitive abilities.
Im Beitrag wird zunächst der Begriff "Orthotrope Fahrbahnplatte" erläutert: Früher war das Konstruktionsprinzip des Brückenbaus so, dass jedes Tragglied die ihm eigene und zugewiesene Last allein zu tragen hatte und die daraus entstandenen Auflagerbelastungen an das nächste unterstützende Bauteil weitergab. So ging es von der Fahrbahn ueber Längs- und Querträger zu den Hauptträgern, und von da aus zu den Auflagern, Pfeilern, Fundamenten bis zum Baugrund. Nach dem 2. Weltkrieg wurden andere Lastabtragungsmodelle entwickelt. Bei der "Orthotropen Platte" handelt sich um eine für den Stahlbrückenbau entwickelte Bauweise, die aus einem oberen ebenen Stahlblech besteht, welches die Abdichtung und den Fahrbahnbelag trägt. Dieses wird auch Deckblech genannt. Das Deckblech wird durch ein rechtwinkliges System von längs und quer angeordneten Stahlprofilen unterschiedlicher Steifigkeit (Laengssteifen und Querträger) unterstützt. Das aus den drei Bestandteilen bestehende kombinierte System der Fahrbahntafel ist ausserdem mittragender Bestandteil des Gesamttragsystems der Brücke. An Beispielen werden die verschiedenen Möglichkeiten der konstruktiven Ausbildung der Fahrbahntafel mit ihren Vor- und Nachteilen erläutert. Es werden Hinweise zur Berechnung und baulichen Durchbildung insbesondere der Schweissverbindungen zwischen Deckblech und Längsrippen und des Stosses der Rippen (Fensterstoß) sowie zur Steifigkeit der Querträger gegeben. So genannte Trapezprofile haben sich als die günstigste Form für die Längsrippen ergeben. Sie werden auch vorteilhaft als Beulsteifen für Stege und Bodenplatten bei Kastenträgerbrücken aus Stahl und bei Verbundbrücken angewendet.
Rollover scenarios in Europe
(2005)
Rollover accidents seem to be a rising problem in Europe and therefore the systematic of this accident scenario should be investigated. Based on statistical investigations on major European accident databases for different countries a series of 73 real world rollover accidents was analysed. These cases were reconstructed using PC-Crash and preliminary categorised using a modified USbased rollover classification. In a first step, the rollover events were reconstructed from the point of conflict to the vehicle- rest position. The vehicles kinematics as well as its linear and rotational velocities were derived. In a second step typical velocity characteristics as well as kinematics were identified and the events categorised according to these criteria. Based on these results four main categories were defined, covering all reconstructed accidents. This categorisation was based on mechanical parameters (rotatory and translator kinematical data of the vehicle). Significant differences can be seen for different scenarios for the "first phase of rollover".
Portugal has the highest rate of road fatalities in Europe (2002 and for Eur-15 - CARE database). For this highest rate, the accidents involving pedestrians and motorcycle occupants have a higher contribution than the European average. In the last years, especially accidents involving motorcycles have been investigated and currently two different projects are being carried out, one related with motorcycles accidents and the other with pedestrian accidents. In these projects, countermeasures among others to reduce the fatalities between these two types of road users are being studied. These accidents are investigated with the commercial accident reconstruction software PCCRASH but also new methodologies based on multibody dynamics are in development in order to more accurately study these two types of accidents. In this paper, the methodologies in use for accident reconstruction and new methodologies in development are presented. Speeding his found to be one of the major causes of road fatalities for pedestrians and motorcycle occupants. In the case of motorcycle accidents, these involve mainly young drivers. Aspects as social behavior are also important to understand the causes of some of these accidents. Some examples of accidents occurring in Portugal, involving especially motorcycles and pedestrians are presented and discussed.
The improvement of passive car security devices led to a reduction of injuries, especially of the head, the neck and the torso mainly due to the airbag function. The passenger's foot and ankle could not profit from this development. Some investigators even reported a progression of leg injuries (1). In this study, we investigated a current collective of patients with foot and ankle fractures or severe soft tissue injuries in relation with defined crash parameters. Special interest was paid to the car's footwell.
The so-called "seat-belt injuries" or "seat-belt syndromes", described as 2-point seat-belt injuries, contain heavy inflection injuries of the lumbal spinal column, combined with heavy abdominal injuries as rupture of the upper intestinal bold or heavy injuries of the upper entrails. With "playing" children in the font of the car, with inappropriate plant of 3-point belts, identical injuries can occur.
Road safety is a major preoccupation of the European Commission and the road transport industry and depends on numerous significant factors. In order to improve road safety and to plan effective safety improvement actions for truck transport, we must first identify the problems to be addressed, i.e. what are the main causes of truck accidents. The ETAC project, initiated by the European Commission and the IRU, was launched in order to set up a heavy goods vehicle accident causation study across European countries to identify future actions which could contribute to the improvement of road safety. The results will be based on a detailed analysis of truck accident data collected in seven European countries according to a common methodology which has been elaborated through numerous national and European projects. This paper describes the common methodology used to collect the information on the scene of the accident and to analyse the data so that the reconstruction of the crash events may be carried out. CEESAR proposes a methodology using its experience gained from over 10 years of accident data collection. This methodology is based on an in-depth investigation of the parameters involved in-an accident and linked to the driver, the vehicle, the road and their environment. In-depth investigation requires accident investigator presence on the scene of the accident in order to collect volatile information such as marks on the road, weather conditions, visibility, state and equipment of the vehicle, driver interview. Later, passive and active information is gathered, either at the hospital for the driver, at the garage for the vehicle or on the spot for the road geometry. A reconstruction carried out with the help of specific software and the analysis of the data collected and calculated enables the identification of the main causes of the accident and the future actions to plan in order to improve road safety as regards truck traffic.
Interaction of road environment, vehicle and human factors in the causation of pedestrian accidents
(2005)
The UK On-the-Spot project (OTS) completed over 1500 in-depth investigations of road accidents during 2000-2003 and is continuing for a further 3 years. Cases were sampled from two regions of England using rotating shifts to cover all days of the week and all hours of the day and night. Research teams were dispatched to accidents notified to police during the shifts; arrival time to the scene of the accident was generally less than 20 minutes. The methodology of OTS includes sophisticated systems for describing accident causation and the interaction of road, vehicle and human factors. The purpose of this paper is to describe and illustrate these systems by reference to pedestrian accidents. This type of analysis is intended to provide an insight into how and why pedestrian accidents occur in order to assist the development of effective road, vehicle and behavioural countermeasures.