ConstaMatic® SC- Cabinet Type Cyclic Corrosion Test Chamber
400–3000-litre test volumes • Programmable automatic control • Modular corrosion test systems
Liebisch ConstaMatic® SC is a front-loading, cabinet-type cyclic corrosion test chamber capable of applying different climatic conditions sequentially according to a defined programme.
Depending on the selected configuration, the chamber can combine salt spray, condensation humidity, ventilation, hot-air drying, controlled relative humidity, rain spray, and cooling stages within a single test programme. This enables not only continuous salt spray or condensation humidity testing, but also multi-stage cyclic corrosion tests used in the automotive and coatings industries.
ConstaMatic® A-SC is available with test chamber volumes of 400, 1000, 2000, and 3000 litres, allowing a suitable model to be selected for samples ranging from small coated panels to large automotive parts and assembled components.
What Applications Is ConstaMatic A-SC Used For?
ConstaMatic A-SC can be used to evaluate the corrosion resistance of the following products and materials:
- Painted and coated metal surfaces
- Automotive parts and assembled components
- Galvanised or electroplated products
- Fasteners and metal accessories
- Aluminium and other non-ferrous metal components
- Powder coating, liquid paint, and protective coating systems
- Components for the defence, aerospace, and transport industries
- Large or irregularly shaped test samples
The front-loading chamber design facilitates the placement of heavy or large samples inside the test chamber. Samples can be observed through the front door during testing. Test chamber lighting can also be added where required.
Advantages of Cyclic Corrosion Testing
In continuous salt spray tests, samples are exposed to similar atmospheric conditions throughout the test. In cyclic corrosion tests, different conditions—such as salt fog, condensation, controlled humidity, drying, ventilation, or cooling—are applied sequentially for specified periods.
This approach can provide a more comprehensive representation of the wetting, drying, temperature, and humidity changes that materials encounter under real service conditions. The stages included in the test and the duration of each stage are determined by the applicable standard.
The tests that ConstaMatic A-SC can perform depend on the Liebisch process systems installed in the chamber. Therefore, not every ConstaMatic model automatically supports every standard. The chamber configuration should be selected according to the test methods to be performed.
ConstaMatic A-SC According to the Liebisch System Code
| Code | System |
|---|---|
| S | Salt spray |
| K | Condensation humidity |
| B | Ventilation |
| W | Hot air |
| F | Controlled relative humidity |
| G | Gas dosing |
| R | Rain spray |
| C | Cooling connection |
| A | Automatic control |
| SC | Cabinet-type chamber |
Important note: The -C suffix in the model name does not mean that the CorroCool cooling unit is supplied with the chamber. It indicates that the chamber has been prepared with the required connections for CorroCool. The cooling unit must be selected separately and confirmed as part of the order.
For detailed information about Liebisch system codes and other process combinations, please visit the Liebisch Process Systems page.
System Configurations
Some tests may require additional equipment, a dedicated software programme, or specific laboratory conditions. Chamber suitability should therefore be determined by evaluating the current revision of the standard, the test cycle, and the required options together, rather than relying solely on the standard designation.
For detailed information about Liebisch test standards, please visit the Liebisch Corrosion Test Standards page.
S – Salt Spray System
The S configuration is used for tests requiring only the salt spray process. Test methods such as neutral salt spray, acetic acid salt spray, and CASS can be performed with the required chamber equipment and appropriate test solution.
Main relevant standards:
- ASTM B117 – Standard Practice for Operating Salt Spray (Fog) Apparatus
- ASTM B368 – Standard Test Method for Copper-Accelerated Acetic Acid-Salt Spray (Fog) Testing
- TS EN ISO 9227 – Corrosion Tests in Artificial Atmospheres — Salt Spray Tests
- TS EN 13523-8 – Coil Coated Metals — Resistance to Salt Spray
- TS EN 60068-2-11 – Environmental Testing — Salt Mist
- TS ISO 9022-4 – Optics and Photonics — Salt Atmosphere Tests
- JIS Z 2371 – Methods of Salt Spray Testing
- MIL-STD-202 Method 101
- MIL-STD-810 Method 509
K – Condensation Humidity System
The K system uses a heated water reservoir to create high humidity inside the test chamber and condensation on the sample surfaces. It is used to evaluate the resistance of paints, coatings, and metal surfaces to condensation humidity.
Main relevant standards:
- TS EN ISO 6270-1 – Single-Sided Condensation
- TS EN ISO 6270-2 – Methods for Exposure to Condensation Humidity Atmospheres
- DIN 50958 – Corrosion Testing in a Condensation Water Atmosphere
SK – Salt Spray and Condensation Humidity
SK models are designed for laboratories that need to perform salt spray and condensation humidity tests in the same chamber. The two processes can be applied sequentially within a programme; however, standards requiring ventilation or controlled drying require additional systems.
SKB – Salt Spray, Condensation Humidity, and Ventilation
The SKB system adds automatic ventilation to the salt spray and condensation stages. This allows the chamber atmosphere to be changed under controlled conditions between cycle stages.
This configuration can be used for certain automotive cycles and specific tests covered by ASTM G85, provided that the relevant standard does not require hot air, controlled relative humidity, or cooling.
SKBW – Cycles with Ventilation and Hot-Air Drying
SKBW models can incorporate a hot-air or drying stage into the test cycle. The sequential application of salt spray, condensation, ventilation, and hot-air processes enables more advanced test programmes comprising wet and dry cycles.
This system can be considered for specific applications within the following test families:
- ASTM G85 Annex A5 – Prohesion
- Cycles under TS EN ISO 11997-1 involving wet, salt fog, dry, and humid stages
- SAE J2334 – Laboratory Cyclic Corrosion Test
- ISO 14993
- Certain Mazda and Nissan cyclic corrosion methods
SKBWF – Cycles with Controlled Relative Humidity
The SKBWF configuration adds controlled relative humidity to the salt spray, condensation humidity, ventilation, and hot-air systems.
This configuration can be selected for advanced automotive tests requiring controlled humidity levels or humidity ramps. Depending on the application, the following standards and manufacturer methods may be considered:
- TS EN ISO 16701
- GMW 14872
- VDA 233-102
- Renault D17 2028
- Relevant Volvo cyclic corrosion methods
- Manufacturer specifications incorporating controlled temperature and humidity stages
SKBWFR and SKBWFR-C – Advanced Cyclic Systems
The SKBWFR configuration adds a removable rain spray system to the salt spray, condensation, ventilation, hot-air, and controlled humidity processes.
The SKBWFR-C model includes the connections required for operation with an external CorroCool cooling system. This configuration can be used for specific automotive or customer-defined tests requiring water spraying, controlled humidity, drying, and low-temperature stages within the same programme.
The temperature, humidity, rain spray flow rate, and transition times required by the applicable test method should be verified separately at the quotation stage.
Applicable Corrosion Tests
With a suitable system configuration and the required options, the ConstaMatic A-SC product family can be configured for the following standards and manufacturer test methods:
- ASTM B117
- ASTM B368
- ASTM G85 Annex A3
- ASTM G85 Annex A5 – Prohesion
- TS EN ISO 9227
- TS EN ISO 6270-1 and TS EN ISO 6270-2
- TS EN ISO 11997-1
- TS EN ISO 16701
- TS EN 13523-8
- TS EN 60068-2-11
- TS EN 60068-2-52
- TS ISO 9022-4
- JIS Z 2371
- SAE J2334
- VDA 621-415
- VDA 233-102
- VW PV 1210
- GMW 14872
- GME 60203, 60205, 60206, 60207, and 60213
- Renault D17 2028
- Mazda MCT-1H and MCT-2M
- Nissan M0158
- MIL-STD-202 Method 101
- MIL-STD-810 Method 509
Operating Principle
ConstaMatic A-SC is equipped with a programmable automatic control system. Test stages can be defined as a cycle using duration, temperature, relative humidity, and the relevant process parameters. The programmed cycle can be repeated automatically for the required number of times.
The control system automatically manages the different process stages and can record setpoints and measured values over time. Errors and warnings occurring during the test can be logged, and the operator can be alerted to critical conditions such as low air pressure or an insufficient water level. The system also allows the test start and end times to be scheduled.
With suitable interfaces and options, data can be transferred via USB or a network connection. Test monitoring and record management can also be supported by the optional CorroControl software.
The availability of preset test programmes on the chamber does not eliminate the need to check the current version of the standard and the laboratory procedure.
The ConstaMatic A-SC test chamber is manufactured from glass-fibre-reinforced plastic resistant to corrosive test atmospheres. Minimising the use of corrosion-sensitive metal components within the test volume increases the chamber’s durability under intensive, long-duration testing conditions.
Insulated heating sections in the side walls transfer heat evenly into the test chamber. Isolating the heating elements from the corrosive atmosphere contributes to both uniform temperature distribution and equipment protection.
Separate outlets for the test atmosphere and drainage help keep the salt fog under control. A removable drain strainer reduces the risk of corrosion residues detached from the samples blocking the drainage line.
- 400 litres: Suitable for small and medium-sized samples, coated test panels, and laboratories with limited space.
- 1000 litres: Provides a balanced test volume for a larger number of samples or medium-sized assembled components.
- 2000 litres: Suitable for laboratories testing large components or long samples, or requiring high sample capacity.
- 3000 litres: Considered for large automotive components, assembled parts, and high-volume custom applications.
When determining the chamber volume, it is not sufficient to consider only whether the samples physically fit inside the test chamber. Spacing between samples, spray distribution, positioning angle, runoff direction, support structure, and sample weight should be evaluated together.
Samples must not come into contact with one another, and test solution or condensation water running off one sample must not drip onto another. The model and product code table should also be checked to confirm whether the selected process systems are available for the required test volume.
Optional Accessories and Systems
Depending on the application, ConstaMatic A-SC can be configured with the following options:
The availability of each option should be confirmed according to the selected chamber volume, system combination, and applicable standard.
Which Model Should You Choose?
The following information should be evaluated together when selecting a chamber:
- Full designation and current revision of the applicable standards
- Salt fog, condensation, ventilation, drying, humidity, rain spray, and cooling stages within the test cycle
- Sample dimensions, weight, and positioning inside the test chamber
- Number of samples to be tested simultaneously
- Required test volume
- Required temperature and relative humidity range
- Data logging, network connectivity, and reporting requirements
- The laboratory’s compressed-air supply, purified-water supply, exhaust system, and ambient conditions
Share your intended test standard, test cycle, sample dimensions, and required capacity with us so we can assess the necessary process systems and a suitable chamber configuration together.
Contact us for assistance with selecting the appropriate Liebisch process system and chamber, and for a technical quotation.
| Model Volumes and Codes | Description | System | |||
|---|---|---|---|---|---|
| 400 litres | 1000 litres | 2000 litres | 3000 litres | ||
| 2504 8012 | 2510 8012 | 2520 8014 | 2530 8014 | Automatically controlled salt spray chamber | S A-SC |
| 2504 8042 | — | — | — | Automatically controlled condensation humidity chamber | K A-SC |
| 2504 8082 | 2510 8084 | 2520 8082 | — | Salt spray and condensation humidity tests | SK A-SC |
| 2504 8162 | 2510 8162 | 2520 8162 | — | Condensation humidity and automatic ventilation | KB A-SC |
| 2504 8172 | 2510 8172 | — | — | Condensation humidity, ventilation, and gas dosing | KBG A-SC |
| 2504 8282 | 2510 8282 | 2520 8284 | 2530 8284 | Salt spray, condensation humidity and ventilation | SKB A-SC |
| — | — | — | 2530 8294 | SKB processes and external cooling connection | SKB-C A-SC |
| 2504 8302 | 2510 8302 | — | — | Salt spray, humidity, ventilation, and gas dosing | SKBG A-SC |
| 2504 8324 | 2510 8324 | — | 2530 8324 | Salt spray, humidity, ventilation, and hot air | SKBW A-SC |
| — | 25104 8332 | — | — | Salt spray, humidity, ventilation, and relative humidity control | SKBF A-SC |
| 2504 8364 | 2510 8364 | 2520 8364 | 2530 8364 | Advanced cycles incorporating hot air and controlled relative humidity | SKBWF A-SC |
| 2504 8374 | 2510 8374 | 2520 8374 | 2530 8374 | SKBWF processes and external cooling connection | SKBWF-C A-SC |
| 2504 8384 | 2510 8384 | — | — | Cycles incorporating controlled humidity, hot air and rain spray | SKBWFR A-SC |
| 2504 8424 | 2510 8424 | — | 2530 8424 | Advanced cycles with rain spray and cooling connection | SKBWFR-C A-SC |










