Flying Ink, Offset, Component Damage? Ultimate Solution to Winter Static for Fedar Digital Printing Machine


Release time:

2025-11-26

In winter with low temperature and low humidity, static electricity problems have become the 'number one hidden danger' affecting the stable operation of Feidie Digital Printing Machine. Winter's low-temperature and low-humidity environment is a high-risk period for static electricity issues in digital printing machines. Static electricity can cause inkjetting from the print head, dust adhesion, pattern offset, and even damage electronic components (such as the mainboard and print head driver board), significantly impacting the printing accuracy and service life of the Feidie Digital Printing Machine.

 

1.Grounding is the most core method to solve static electricity. It must be operated strictly according to the grounding plate equipped with the machine. At the same time, regularly check if the grounding wire is aged or loose; if there is any damage, replace it in time to prevent static accumulation from damaging the motherboard and print head.

2. Dry environments are a major cause of static electricity generation. The working workshop of the Feidie Digital Printing Machine should maintain a temperature of 18-30°C and a humidity of 35%-60%, especially during the dry autumn and winter seasons. Humidifiers should be used continuously to supplement air humidity and reduce static electricity. At the same time, avoid excessive air flow speed in the workshop to minimize static electricity generated by material friction caused by airflow.
3. Regarding ink: Original factory-adapted ink must be used. Such ink formulations have been adjusted to reduce static electricity generated during printing due to ink properties. Avoid selecting inks with excessively high viscosity, as high-viscosity inks are prone to residue at the print head and generate more static electricity when rubbed against components.
4. In terms of printing materials and parts: Prioritize printing materials with inherent anti-static properties. When storing, avoid stacking too tightly to reduce static electricity generated by friction between materials. For equipment parts that frequently contact materials, such as paper feed rollers, replace them promptly if wear occurs to prevent issues like ink splatter and ragged edges.
5. Before operating personnel touch the equipment, they can first touch grounded metal objects in the workshop to discharge their own static electricity, preventing human static electricity from being conducted to the equipment.
6. Regularly clean parts of the equipment such as the printing panel and areas around the print head. Static electricity easily attracts dust and impurities, and accumulated dust exacerbates static electricity problems and clogs the print head. When cleaning, use anti-static cleaning agents and avoid wiping with dry cloths to prevent generating new static electricity through friction.

 

Additionally, it should be noted that different printing materials do not necessarily mean the faster the printing speed, the better. The higher the printing speed, the higher the probability of static electricity generation in the digital printing machine. Therefore, when printing, everyone should choose a suitable printing mode to prevent excessive static electricity.

 

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