Journal Article

·2019 OPEN ACCESS

The effects of different engine material properties on the performance of a diesel engine at maximum combustion temperatures

Yüksel Palacı YTU , Güven Gonca YTU

Thermal Science

Abstract

In this study, the influences of various engine materials such as palladium, titanium, thorium, zirconium, vanadium, alumina, aluminum bronze, copper, iron (gray cast), manganese, nickel, cobalt, and carbon steel on the effective efficiency and effective power with respect to the variation of equivalence ratio at the maximum combustion temperatures. In-cylinder gas temperatures have been determined with respect to the melting temperatures and the performance values have been calculated with respect to the variation of the gas temperatures. The results indicated that alumina provides the maximum performance values as aluminum bronze gives the minimum performance values due to the combustion temperatures. Further-more, the equivalence ratios which give the maximum performance characteristics have been parametrically described. The obtained results can be assessed by engine designers and manufacturers to choose suitable engine material.

Keywords

Materials science Combustion Diesel engine Aluminium Metallurgy Equivalence ratio Cast iron Compression ratio Composite material Automotive engineering Combustor Chemistry

Subject Areas

Advanced Combustion Engine Technologies ·Fluid Flow and Transfer Processes ·Physical Sciences
Advanced Thermodynamic Systems and Engines ·Mechanical Engineering ·Physical Sciences
Advanced Thermodynamics and Statistical Mechanics ·Statistical and Nonlinear Physics ·Physical Sciences

Citations by Year

OpenAlex SDG Match

SDGs auto-classified by OpenAlex (score ≥ 0.4 shown).

Affordable and clean energy 75%