Abstract The paper deals with assessing the influence of the braking fluid composition on the time of braking system actuation. It is justified that this factor should be taken into account in expert investigations of road accidents. The idea behind the research deals with putting forward proposals for improving the method for reconstructing road accidents by taking into account the braking fluid composition which can change during operation, resulting in increasing the time of brake drive actuation and in increasing the stopping distance of a vehicle equipped with a hydraulic braking system. The method of road accident reconstruction by adjusting standard (reference) values of braking parameters with consideration for properties of the braking fluid, affecting the time of deceleration rising up to its maximum and braking time with respect to steady deceleration, is reviewed. Experiments established the influence of the boiling temperature of the braking fluid and the moisture content on the total time of braking system actuation. A coefficient taking into account the influence of these factors on the estimated braking time and stopping distance of a vehicle is proposed and scientifically justified. The value of the paper lies in method application by automobile technical experts for the purposes of improving objectivity of expert evaluation results. The suggested refinements to the method allow improving and expanding the evidence base in road accident reconstruction in terms of the technical possibility to prevent the road accident, related to evaluation of the actual technical condition (as of the moment of the road accident) of the braking system equipped with a hydraulic drive.
[1]
M Matti Maricq,et al.
Airborne brake wear debris: size distributions, composition, and a comparison of dynamometer and vehicle tests.
,
2003,
Environmental science & technology.
[2]
G. Martini,et al.
Brake wear particle emissions: a review
,
2014,
Environmental Science and Pollution Research.
[3]
Yoichi Hori,et al.
Future vehicle driven by electricity and Control-research on four-wheel-motored "UOT electric march II"
,
2004,
IEEE Transactions on Industrial Electronics.
[4]
U. Olofsson,et al.
On the influence of car brake system parameters on particulate matter emissions
,
2018
.
[5]
Mukhtar Kerimov,et al.
Evaluation of Functional Efficiency of Automated Traffic Enforcement Systems
,
2017
.
[6]
C. Ren,et al.
Surface wetting of the C/SiC brake lining with micro-scale heat dissipation fins to cool off the brake system: Influence of the fibre ending orientation and fin interval
,
2017
.
[7]
C. Mathers,et al.
Projections of Global Mortality and Burden of Disease from 2002 to 2030
,
2006,
PLoS medicine.
[8]
Viktor Dobromirov,et al.
Methods of Assessing the Influence of Operational Factors on Brake System Efficiency in Investigating Traffic Accidents
,
2017
.
[9]
Valery Lukinskiy,et al.
Methods of Accident Reconstruction and Investigation Given the Parameters of Vehicle Condition and Road Environment
,
2017
.