This UV curing equipment combines mercury lamps and LED lamps as two light sources, which can meet the curing requirements of different materials within a broader spectral range. The UV drying machine can complete high-quality curing in a relatively shorter time, effectively enhancing production efficiency and quality.
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Description
Technical Parameters
Parameters
● Equipment name: UV curing machine
● Equipment model: LY6020-2F39-DZ8K-P
● Total power: 16KW
● Power-regulating range: 20~100%
● Operating voltage: 380V 50Hz, three-phase five-wire system
● Cooling fan: 1 set, 0.75KW; 1 set, 0..37KW
● LED lamp
Wavelength: 395nm
Luminous area: L600mm × W200mm
Quantity: 2 groups
● Mercury lamp
Lamp power: 8KW
Lamp quantity: 1pc
Lamp wavelength: 200nm-450nm (peak value: 365nm)
Details
This dual-light source UV curing equipment combines mercury lamps with LED lamps. The UV drying machine becomes an efficient choice for multiple material curing with its broader spectral coverage capability. The two light sources work together, not only precisely matching the curing characteristics of different materials, but also achieving high-intensity curing effect in a short time. This fundamentally improves the production efficiency and product quality, and injects stable and reliable curing power into the production line.
The equipment dimensions are L2500mm × W850mm × H1760mm, and the 600mm wide conveyor belt can smoothly convey various work pieces. The adjustable inlet height ranging from 30mm to 200mm flexibly adapts to materials of different thicknesses, significantly reducing operational restrictions.
In terms of core configuration, one single 8KW mercury lamp outputs strong energy, and the UV curing equipment is equipped with 2 sets of 395nm wavelength LED lamps to form a composite light source system which can meet various curing requirements. The 20%-100% power-adjusting function can precisely control the energy output based on material characteristics, avoiding problems such as excessive or insufficient curing defect. An efficient air-cooling system is adopted to ensure that the equipment maintains a stable temperature during long time and high intensity operation, thereby extending the service life of the core components.
The detailed design highlights the humanization, the lampshade height and angle can be adjusted manually, which can specifically optimize the light-focusing effect and further improve the curing uniformity. The UV curing equipment is compatible with 380V 50Hz industrial power supply and can be quickly integrated into various production environments, which is a professional UV drying machine that combines adaptability, accuracy and durability.
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FAQ
Q: Is your company a trading company or a manufacturer?
A: We are a manufacturer. Ergu Optoelectronics is a production-oriented enterprise specializing in the field of light curing.
Q: Will a quality certificate of equipment inspection be provided before shipment?
A: Yes.We promise that each delivered equipment will be accompanied by a written test report and a complete inspection video, and will only be shipped after the customer's confirmation.
Q: What advantages does ultraviolet light curing equipment have over traditional curing methods?
A: Rapid curing, can be completed in a few seconds to a few minutes, can significantly improve the production efficiency. Low-temperature curing can reduce thermal damage to heat-sensitive materials. No volatile organic compounds (VOCs) are produced during the curing process, making it more environmentally friendly. It can achieve high-precision control and meet the requirements of micron-level coating uniformity. The equipment occupies a small area and saves space.
Q: What are the common spectral bands of ultraviolet curing equipment?
A: Common bands include UVA (315-400nm), UVB (280-315nm), and UVC (200-280nm), among which the UVA band is the most commonly used in light curing applications.
Q: How does the irradiation distance of UV curing equipment affect the curing effect?
A: Generally speaking, if the irradiation distance is too close and the light intensity is too high, it may cause local overheating and excessive curing on the material surface. If the irradiation distance is too far and the light intensity weakens, it may cause incomplete curing. The appropriate irradiation distance should be determined based on the equipment power, light intensity distribution and material properties to ensure that the material surface uniformly receives sufficient and appropriate intensity of ultraviolet rays, thereby achieving a good curing effect.
Q: How often should the UV lamps of UV curing equipment be replaced?
A: There is no fixed standard for the replacement time of lamps, which depends on various factors. Lamps with high usage frequency lose energy more quickly. If the curing strength requirement is high, the lamp will also age more quickly. Generally, UV mercury lamps may need to be replaced after being used for 1,000 to 2,000 hours.When the lamp can not be turned on, can not reach the "ready" state, can not cure, obvious color change, tube expansion, etc., also need to be replaced. At the same time, 99% of the faults are often misdiagnosed as lamp faults, which may actually be the problem of other components in the system (such as capacitors, ballast, reflectors or igniters) and need to be identified.