Transformer oil serves as a critical insulating medium for power transformers. During long‑term equipment operation, it undergoes oxidative aging under the combined effects of temperature, oxygen, moisture and other factors, generating organic acids known as water‑soluble acids. Increased content of water‑soluble acids in oil degrades the insulating performance of transformer oil, corrodes internal metal components and insulating paper of transformers, accelerates aging of insulating materials, and poses direct risks to the safe operation of power transformers. Therefore, water‑soluble acid is a key testing indicator in power equipment maintenance. This test is carried out in accordance with GB/T7598‑2008 Determination of Water‑Soluble Acids in In‑Service Transformer Oil, and analysis of samples is completed using the SH259B Automatic Water‑Soluble Acid Tester.
Determine the pH value of water‑soluble acids in in‑service transformer oil, assess the aging and deterioration degree of transformer oil, monitor the condition of insulating medium in power transformers, and provide data support for transformer maintenance and oil replacement.
Oil samples collected from field‑operated transformers
Note: Bromocresol purple is used as the primary indicator. In case of test failure, the instrument triggers an audible alarm. Replace with an empty beaker as prompted by the instrument and confirm; the instrument will automatically switch to bromocresol green indicator and resume measurement.
According to GB/T7598‑2008, the SH259B water‑soluble acid tester features a pH measuring range of 3.6‑7.0 with measuring error ≤ ±0.1 pH, which meets national‑standard requirements. The extracted pH value of new transformer oil is mostly within 5.4‑6.2. For normally operating transformer oil, pH generally stays between 4.5‑5.4. A pH drop to 4.2‑4.5 indicates onset of oil oxidation and requires increased testing frequency. If pH ≤4.2, severe oil aging occurs; organic acids will accelerate degradation of insulating paper and corrosion of metal parts. Oil regeneration or replacement should be implemented promptly. The instrument supports simultaneous testing of 1‑3 samples with favorable repeatability. The pH deviation of repeated measurements for the identical sample can be controlled within 0.1. With functions for data storage and printing, it is suitable for batch screening of oil samples in electric power laboratories.