Measured results of oil resistance and chemical resistance of tri color lamps for machine tools

Mondo Technology Updated on 2024-01-31

Measuring the oil resistance and chemical resistance of machine tool tri-color lamps usually requires a series of experiments and tests. The following are test methods that may be used to evaluate oil resistance and chemical resistance:

Oil Resistance Test:

Coating Material Testing: If the machine lamp has an external coating, perform an oil resistance test and place the coating in an oil pool to observe how it behaves at different oil qualities and concentrations.

Seal Performance Testing: Check the connectors, interfaces, and switches of the lamp to ensure that they are effective in preventing oil from penetrating.

Material Oil Absorption Testing: The oil absorption of materials, especially the outer sealing sections, is tested to determine its stability in an oily environment.

Chemical Resistance Test:

Material Corrosion Resistance Testing: Machine tool lamps are exposed to simulated chemical corrosion, such as acid and alkali liquids, to evaluate the corrosion resistance of materials.

Corrosion Resistance Testing of Connecting Components: Testing of connecting components, such as threads, connectors, and switches, to ensure that they are not damaged by chemical corrosion.

Surface Coating Corrosion Resistance Testing: If there is a coating, perform a corrosion resistance test to observe how the coating behaves in different chemical environments.

Temperature and humidity cycle test:

The tri-color light of the machine is placed in a temperature and humidity cycle that simulates the working environment of the machine to evaluate its performance under changing conditions.

Actual working environment test:

Install and use the machine tricolor light in a real machine operating environment and observe its performance in real-world operation over a long period of time, including resistance to oil mist, liquid splashing and chemical corrosion.

Cleanliness Test:

Cleanability tests are carried out to test the resistance of materials and coatings to cleaning agents using solvents or detergents commonly used for machine tool cleaning.

When performing these tests, the various conditions of the working environment of the machine should be simulated to ensure that the test results can truly reflect the performance of the tri-color light of the machine tool in actual use. Based on the test results, the design, material selection or coating process can be further improved to improve the oil resistance and chemical resistance of the tri-color lamps of the machine tool.

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