scholarly journals Design of a Cable Pulled Electric Parking Brake System for Light Commercial Vehicle

Author(s):  
XIN JI ◽  
SHAOHUA ZHONG
Energies ◽  
2021 ◽  
Vol 14 (3) ◽  
pp. 661
Author(s):  
Alexandros T. Zachiotis ◽  
Evangelos G. Giakoumis

A Monte Carlo simulation methodology is suggested in order to assess the impact of ambient wind on a vehicle’s performance and emissions. A large number of random wind profiles is generated by implementing the Weibull and uniform statistical distributions for wind speed and direction, respectively. Wind speed data are drawn from eight cities across Europe. The vehicle considered is a diesel-powered, turbocharged, light-commercial vehicle and the baseline trip is the worldwide harmonized light-duty vehicles WLTC cycle. A detailed engine-mapping approach is used as the basis for the results, complemented with experimentally derived correction coefficients to account for engine transients. The properties of interest are (engine-out) NO and soot emissions, as well as fuel and energy consumption and CO2 emissions. Results from this study show that there is an aggregate increase in all properties, vis-à-vis the reference case (i.e., zero wind), if ambient wind is to be accounted for in road load calculation. Mean wind speeds for the different sites examined range from 14.6 km/h to 24.2 km/h. The average increase in the properties studied, across all sites, ranges from 0.22% up to 2.52% depending on the trip and the property (CO2, soot, NO, energy consumption) examined. Based on individual trip assessment, it was found that especially at high vehicle speeds where wind drag becomes the major road load force, CO2 emissions may increase by 28%, NO emissions by 22%, and soot emissions by 13% in the presence of strong headwinds. Moreover, it is demonstrated that the adverse effect of headwinds far exceeds the positive effect of tailwinds, thus explaining the overall increase in fuel/energy consumption as well as emissions, while also highlighting the shortcomings of the current certification procedure, which neglects ambient wind effects.


2021 ◽  
Author(s):  
Tiago Silva Duarte ◽  
Sérgio Bruno Provazi Maia ◽  
Lucas de Césares Martins ◽  
Bárbara Mihailoff ◽  
Leandro Couto Batista ◽  
...  

Author(s):  
Muneer Sultana ◽  
Khairul Amilin Ibrahim

Objective- a study has been conducted to scrutinize the vehicle production and sales by segment in ASEAN. Methodology/Technique- The study is prepared grounded on primary evidence and secondary material. The primary evidences have composed through oral interview from stalwarts of automotive industry. The secondary information has collected from the reports of international Insight of automotive industry and all existing literature has obtained from internet automotive websites, auto business magazines, and e-auto journals. Findings- Outcome of the research divulges that, in vehicle production and sales by segment i.e. Light Commercial Vehicle (LCV), Large Size and also Compact Vehicles in ASEAN expected to increase further in future years, so the Automotive Industries of ASEAN should uninterruptedly participate in Research and Development in order to keep up with their Global competitors in terms of technological advance. Novelty - ASEAN countries would implement the thoughtful and achievement policies in Automotive Industry in agreement to the auto information and world-wide automotive industry competition tendency, to enhance the development of automotive industry. Type of Paper : Empirical paper Keywords: , Sales, Vehicle, Automotive, Industry, Segment, ASEAN


1996 ◽  
Vol 33 (7) ◽  
pp. 373-377
Author(s):  
S. G. K. Pillai ◽  
K. Sukumaran ◽  
K. K. Ravikumar ◽  
K. G. Sathyanarayana ◽  
B. C. Pai

2019 ◽  
Vol 15 (4) ◽  
pp. 238
Author(s):  
Mrunal Kshirsagar ◽  
Satyajit R. Patil ◽  
Ansar A. Mulla ◽  
Sudhir P. Takalkar

Author(s):  
Christopher W. Ferrone

After an accident it is often necessary to check the brake push rod stroke adjustment and pneumatic integrity of the brake system of a truck or bus. In many instances, due to the traumatic accident damage, the brake system may not be able to be tested/checked by the conventional means. Test methods used at the scene of an accident may compromise or influence the brake stroke adjustment levels. A tool has been developed which eliminates these issues. This tool, when used to test air brakes (push-rod stroke) on a heavy truck or bus, will eliminate the common problems and difficulties that occur during brake stroke adjustment testing in a post-accident situation. • Checking brake push rod stroke with improper air pressure levels; • System leaks creating measurement inaccuracies; • Parking brake release issues; • System interruption due to traumatic accident damage. By using this tool an engineer can determine the brake push rod stroke adjustment level or diagnose a system failure in an efficient and nondestructive manner, by minimizing the alteration of post-accident conditions.


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