Soluble Salt Detector

The soluble salt detector measures the ion concentration in aqueous solutions through conductivity, and is used for analyzing surface salt content in materials such as coatings and inks to prevent blistering and peeling of the coating.
Selection
When selecting, consider matching the electrode material to the sample type, ensuring the conductivity range covers common salts, the temperature compensation suits the field environment, and the calibration method aligns with operational habits.

Terms

Standards

Instruments

Ceramic sand core salt bridge material, Temperature Measurement range 5-55 ℃, Single salt bridge structure to ensure measurement Stability, U-shaped insert design for easy connection.

$ 91.00

Measurement range 0~ 1500 μS/cm, accuracy +/- 2 μS/cm, automatic temperature standardization, acid and waterproof design, can store 250 data, in line with a number of international standards.

$ 908.00

Measurement range 0~ 1500μS/cm, accuracy +/- 2μS/cm, automatic temperature standardization, acid and waterproof design, can store 1000 sets of data, support USB, Bluetooth, WiFi interface.

$ 1427.00

Measurement range 5-55 ℃, ceramic sand core salt bridge material, Glass shell design, Dimension Φ 10 × 120mm, providing stable reference potential.

$ 91.00

Single salt bridge structure and bulb sensitive membrane are adopted. Measurement range is 0-14pH and temperature adaptability is 0-100 ℃.

$ 99.00

Using Platinum ElectRode to Ensure Measurement Stability, Ceramic Sand Core Single Salt Bridge Design Improves Response Speed, Temperature range 0-70 ℃, Filler 3.0 mol/L KCl, Glass shell corrosion resistance.

$ 162.00

Measurement range 5-55 ℃, Glass shell design ensures stable and reliable measurement performance.

$ 91.00

Platinum Sensor provides linearly stable measurement results, Conductivity Detector cell constant K = 10, Measurement range 0 to 200mS/cm, suitable for high Conductivity Detector liquid detection.

$ 106.00

Conductivity Detector cell constant K = 0.1, built-in temperature sensor real-time sensing sample temperature, suitable for low Conductivity Detector liquid measurement.

$ 314.00

Adopt mercurous sulfate single salt bridge structure, equipped with ceramic sand core salt bridge material, temperature range 5-55 ℃, Glass shell design to ensure stable measurement performance.

$ 91.00

Using platinum sheet material, Conductivity Detector cell constant is 10, suitable for high conductivity environment water measurement, equipped with three core socket interface, no temperature compensation design.

$ 102.00

Using platinum sheet material, Conductivity Detector cell constant 0.1, no temperature compensation function, suitable for pure water and ultra-pure water and other water quality measurement, optional Glass flow Tank.

$ 185.00

Using platinum sheet material, Conductivity Detector cell constant is 1, Measurement range covers 2.0~ 200 µS/cm, suitable for conventional water detection, interface is three-core socket, no temperature compensation function.

$ 99.00

Measurement range 0-14.00 pH, temperature adaptability 0-80 ℃, bulb sensitive film with filling design, suitable for organic sample analysis.

$ 202.00

Stability is maintained with 3.0 mol/L KCl filling solution, Glass bubble sensitive membrane ensures Measurement accuracy, and polycarbonic acid ester shell provides durable protection.

$ 125.00

Articles

Salt spray aging test chamber for cyclic corrosion evaluation of coating weatherability.
This article introduces the method of using a salt spray aging test chamber to conduct cyclic corrosion tests for evaluating the weather resistance of coatings.
Salt spray test chamber for testing the corrosion resistance of plastic coatings.
The salt spray test chamber accelerates the testing of the corrosion resistance of plastic surface coatings by simulating a salt spray environment containing chloride ions. The test is conducted in accordance with international standards such as ASTM B117 or ISO 9227, and the process includes sample preparation, salt spray exposure, and result evaluation.
Salt spray test chamber detects the corrosion resistance of coatings.
The salt spray test chamber accelerates the testing of coating corrosion resistance by simulating a salty and humid environment. It uses atomized sodium chloride solution to form salt spray, which settles inside the constant temperature chamber, and conducts tests under neutral or acidic conditions in accordance with standards.
Applicable Scenarios for Neutral Salt Spray and Copper-Accelerated Acetic Acid Salt Spray Tests
Neutral salt spray testing and copper-accelerated acetic acid salt spray testing are both accelerated methods used to evaluate the corrosion resistance of materials, simulating saline environments to predict long-term performance. The neutral salt spray test uses a neutral sodium chloride solution, which causes relatively mild corrosion and is suitable for general metals and coatings, such as automotive parts.
Salt spray test chamber evaluates the protective performance of powder coatings
The salt spray test chamber accelerates the evaluation of the corrosion resistance of powder coatings by simulating a salty and humid environment. The test is based on electrochemical principles, where salt spray penetrates coating defects and initiates corrosion of the metal substrate. During operation, parameters such as temperature and sedimentation rate must be strictly controlled, and standards such as ISO and ASTM must be followed.
Application of Salt Spray Test Chambers in Corrosion Resistance Testing of Automotive Components
The salt spray test chamber simulates a salty and humid environment to accelerate the testing of the corrosion resistance of automotive components. Its principle is based on electrochemical corrosion, allowing for the control of key parameters such as salt concentration and temperature.