A fast response thermocouple for internal combustion engine surface temperature measurements

作者:Marr Michael A; Wallace James S*; Chandra Sanjeev; Pershin Larry; Mostaghimi Javad
来源:Experimental Thermal and Fluid Science, 2010, 34(2): 183-189.
DOI:10.1016/j.expthermflusci.2009.10.008

摘要

A fast response thermocouple was developed for measuring surface temperatures of aluminum components in ICE combustion chambers. The key features of the design are the use of the aluminum substrate as one of the thermocouple metals and the use of a thick copper layer as the hot junction at the surface. The copper equalizes the hot junction temperature with the surrounding aluminum to correct for the differences in thermal properties between the two materials. FEA determined the optimum thickness of the copper layer to be between 100 and 125 pm. Under typical SI engine heat flux conditions, the thermocouple should be able to measure average surface temperatures within 0.19 degrees C and the magnitude of temperature swings within 6% of true values. Following the FEA, the optimized thermocouple was tested in a SI engine. Experimental results displayed the same trends as the FEA at measuring average temperatures and temperature swings, suggesting the thermocouple was performing as predicted.

  • 出版日期2010-2