1) Always double-check every connection to make sure they’re secure and functioning properly. If anything seems off or damaged, contact maintenance right away to avoid bigger problems down the line.
2) Bearings and piston rods need regular inspections to ensure everything moves smoothly. Keeping these parts clean and properly lubricated will help maintain their functionality.
3) Test the electrical control system periodically for insulation and reliability. If electrical components start showing signs of wear, like reduced accuracy or stiffness, repair or replace them without delay to prevent failures.
4) The hydraulic system requires regular checks to ensure seals are intact and functioning correctly. Any leaks or issues with seals could lead to inefficiencies or breakdowns.
5) Inspect the filter plate’s sealing surface often to keep it smooth and debris-free. Before pressing, ensure the filter cloth is free of folds, tears, or foreign materials. A clean and undamaged filter cloth ensures optimal filtering performance, and regular rinsing helps maintain its efficiency.
6) When not in use for extended periods, store the filter plates by cleaning them thoroughly and arranging them neatly within the filter press frame. Apply 1-5 MP pressure to press them firmly together. Clean the filter cloths and let them dry completely. Coat any exposed piston parts with butter to protect them from corrosion.
7) Use HM46 or HM68 hydraulic oil, ensuring it remains free of contaminants. For new machines, change the oil weekly during initial operation. When changing oil, drain all used oil from the tank and cylinders. Replace the hydraulic oil after one month of continuous use, then every three months thereafter. This routine helps prolong the lifespan of your equipment.
When operating an oil filter, the oil to be treated is drawn into a powerful magnetic filter under atmospheric and vacuum pressure. Larger impurities are removed first. The oil is then heated and sent through a multi-stage coalescing water separator. Thanks to advanced oil-loving and water-hating technology, the separator improves the interaction between oil and water, causing tiny water droplets to merge into larger ones that separate and settle in a dedicated water reservoir. The now-cleaned oil moves to a three-dimensional vacuum flash tower where, after being sprayed, it undergoes extensive oil-gas separation. This process removes residual traces of water and gas.
The evaporated water vapor, light hydrocarbons, and other gases travel through a strong air condensation unit. After condensing, these substances, along with non-condensable gases, move into a vacuum buffer chamber. Cooled water exits via a drainage system, while non-condensable gases are expelled using a vacuum pump. The purified oil, now free of moisture, gas, and mechanical impurities, passes through a precision filter to produce clean, filtered oil, completing the filtration process.
Hyperspectral Measurement System
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