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What are the advantages of femtosecond laser micro-hole forming technology in filter manufacturing?

Release time:2024-01-13 Source: Monochrome Technology

Femtosecond laser microporous forming equipment offers some significant advantages in the field of filters, making it ideal for manufacturing high-performance filters:


1. High accuracy and precision: Femtosecond laser microporous forming is capable of creating precise holes and structures on a micron scale, providing highly accurate filtration and ensuring better filter performance.


2. No thermal effect: Due to the extremely short pulse duration of the femtosecond laser, it produces very little thermal effect during processing. This means that there is almost no heat-affected area around the material, avoiding heat-induced deformation or thermal damage to the material and ensuring the quality of the filter.


3. Applicable to a wide range of materials: Femtosecond laser microporous moulding is applicable to a wide range of materials, including metals, plastics, ceramics and so on. This allows different materials to be selected in filter manufacturing to meet the needs of different environments and applications.


4. No additional tooling required: Femtosecond laser microporous forming requires no additional tooling or moulds compared to traditional processing methods. This simplifies the manufacturing process and reduces production costs and time.


5. Flexibility: Femtosecond laser technology can be used to fabricate microporous structures with a variety of pore sizes and shapes, providing flexible design options to accommodate different filtration needs.


6. No surface contact: Since the laser is processed by non-contact, femtosecond laser microporous moulding avoids direct contact with the surface of the material, reducing the risk of possible contamination.


7. Fast processing speeds: the high energy density and extremely short pulse times of femtosecond lasers allow for fast processing speeds and increased productivity.


8. Controllable hole size and shape: With femtosecond laser microporous moulding technology, the size and shape of the holes can be controlled to meet specific filtration requirements.

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Monochrome Technology Multi-axis Femtosecond Laser Microporous Forming Equipment


Femtosecond laser microporous forming in filter manufacturing provides advanced manufacturing solutions for high efficiency and high precision filters. The main application areas are as follows:


1. Microfilter manufacturing: Femtosecond laser perforation can be used to manufacture microfilters for filtering tiny particles and impurities in air, liquid or gas.


2. Medical device filtration: In the medical field, this technology can be applied to the manufacture of micro-filters for the filtration of liquids in medical devices to ensure the normal operation of medical equipment.


3. Optical devices: Femtosecond laser micro-hole forming can also be used to manufacture tiny structures in optical devices, such as optical filters, to regulate the propagation characteristics of light.


4. Sensor applications: Fabrication of microfilters can be used in sensors to help filter out unwanted impurities and improve the sensitivity and reliability of sensors.


5. micro and nanotechnology research: the technology has a wide range of applications in the field of micro and nanotechnology and can be used to study the preparation and properties of tiny structures.


6. Electronic devices: In the electronics industry, femtosecond laser micro-hole forming can be used to manufacture micro-filters to ensure the normal operation of electronic devices and prevent the entry of dust and impurities.


Monochrome technology processing effect show





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