The composite salt spray test is also called cyclic corrosion test, and the cyclic corrosion test (CCT) is mainly used in the automobile industry. Based on the constant salt spray test, parameters such as high temperature, humidity, low temperature and dryness are introduced, and many conditions in the natural environment are considered as far as possible, in order to obtain the test results with higher correlation with the natural environment. The purpose of the composite salt spray test is to confirm the ability of the test object to endure the salt spray environment, and the mutual circulation of salt spray and moisture is used to simulate the actual use environment. It is suitable for evaluating the electrochemical corrosion effect of metal materials and salt particles.
Description
The cyclic corrosion test chamber (CCT) is mainly used in the automotive industry. Based on the constant salt spray test, the parameters of high temperature, humidity, low temperature and drying are introduced, and many conditions in the natural environment are considered as far as possible. The purpose is to obtain the test results with higher correlation with the natural environment!
Core Parameters
CCT cyclic corrosion test chamber | |||
Model | CZZ-1000D | CZZ-1600D | CZZ-2000D |
Inner Dimension WxHxD(mm) | 1200x800x1000 | 1600x800x1000 | 2000x800x1000 |
Outer Dimension WxHxD(mm) | 2250x1720x1220 | 2950x1720x1220 | 3550x1900x1220 |
Laboratory temperature range | 20℃~70℃ | ||
Saturated barrel temperature range | RT~70℃ | ||
Humidity range | 20%~98%RH | ||
Brine spray rate | 1.0~2.0ml/80cm²/h(collect for at least 16 hours and take the average value) | ||
Spray pressure | 70~170KPa | ||
Sample placement Angle | 20°±5° | ||
Rapid alternating process of dry and wet salt spray | Salt spray test 1min~99H arbitrary setting; Drying test 1min~99H arbitrary setting; Humid heat test 1min~99H arbitrary setting; | ||
Spray pattern | Continuous spray, cycle spray, cycle spray choice | ||
Control accuracy | Temperature deviation: ±2.0℃; Temperature deviation: ≤+2-3%R.H when ≥75RH; Humidity deviation: < 75%RH ≤±5%R.H | ||
Box material | Inner titanium plate, outer stainless steel plate paint | ||
Cooling method | Water-cooling | ||
Control system | Siemens PLC+ Siemens Temperature Module + HMI | ||
Power supply condition | AC380V 50Hz(customized at 60Hz) three-phase four-wire + protective grounding |
Product meets test conditions and implementation standards
DO160E/F/G salt spray test requirements
GB/T20854-20071S014993-2001 Accelerated testing of corrosion cycles of metals and alloys exposed to salt spray, "dry" and "wet" conditions
GB/T24195-2009/1S016151:2005 Acid salt spray, dry and wet conditions of accelerated corrosion test
GJB150.11A-2009 Military equipment laboratory environmental test method salt spray test
GB/T2424.17-2008/1EC60068-2-11:1981 Salt spray test method
GB/T2423.18-2012/1EC60068-2-52:1996 Alternating salt spray test method for sodium chloride
GB/T2423.3-2006/1EC6008-2-78-2001 Test cab: Constant wet heat test method
GB/T10125-2012/1S09227-2006 Artificial atmosphere corrosion test salt spray test
Lithium-ion power battery packs and systems for electric vehicles - Part 3: Safety requirements and test methods: salt spray test
ASTM B117, ASTM B368
GB/T10587-2006 salt spray test chamber technical conditions
GBT10586-2006 wet heat test chamber technical conditions
GB/T5170.8-2008 Electrical and electronic products environmental test equipment inspection method - salt spray test equipment
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