Two new accelerated laboratory corrosion tests for electronic components in
automotive applications have been developed, based on the use of metallic
copper as a meter for corrosivity. The accelerated tests are designed so th
at they reproduce the same kind of corrosion effects as observed with expos
ure of copper in real vehicle environments.
The test cycle that best simulates the corrosion characteristics of an engi
ne compartment is composed of the following steps:
a) exposure to neutral salt spray for 2 h;
b) drying at 23 degreesC and 50% RH for 22 h;
c) exposure to a test atmosphere of 1.5 ppm NO2 and 0.5 ppm SO2 at 25 degre
esC and 95% RH for five days;
d) drying at 23 degreesC and 50% RH for one day.
The predominating corrosion products of copper, formed both during service
exposure and in the accelerated test, are Cu2O and Cu2Cl(OH)(3), with a sma
ll amount of sulphur-containing corrosion products in the form of sulphates
, In terms of corrosivity of copper, a test duration of six weeks correspon
ds to 7.5 years of exposure in the reference engine compartment selected fo
r this study.
The test cycle designed for the passenger compartment contains the steps: a
) exposure for five days to a test atmosphere of 10 ppm NO2 and 95% RH at 3
5 degreesC, followed by b) drying at 23 degreesC and 50% RH for two days. I
n this case, Cu2O is the predominating corrosion product. Zn terms of corro
sivity of copper, a test duration of four weeks corresponds to 7.5 years of
exposure in the reference passenger compartment of this study.