Deutsch

BOFA launches the latest generation of high-temperature 3D printing filtration technology

198
2024-04-15 17:06:21
Übersetzung anzeigen

BOFA has consolidated its position as a market leader in additive manufacturing of portable smoke and particle filtration systems with the latest generation of 3D PrintPRO technology designed specifically for high-temperature processes.

3D PrintPRO HT focuses on the 230V market and can filter high-temperature particles, gases, and nanoparticles emitted during polymer processing in the printing room. Its working temperature can reach up to 100 ° C, allowing manufacturers to process high-performance functional materials while protecting the print head and working environment from the impact of air pollutants. It is particularly suitable for melt deposition modeling, stereo lithography, and digital light processing.

This performance is achieved through the application of advanced electronic devices, insulated and highly insulated connection kits, intelligent airflow management, and advanced filtering architecture, ensuring energy-saving and low heat loss emissions in higher temperature chamber environments.
The modular design method of BOFA makes 3D PrintPRO HT an ideal choice for closed-loop continuous operation, providing a maximum airflow of up to 100 cubic meters per hour to filter particles during the printing process. There is also one at 30 meters ³ The open loop intermittent operation (purification cycle) carried out with a fixed airflow can filter out particulate matter and gas. Both of these requirements can be met through pairing kits. This technology also features a filter replacement indicator and integrates filter status communication with the host.

"Our latest generation of 3D PrintPRO HT system showcases how BOFA reflects the evolving additive manufacturing market. This means that manufacturers can benefit from high-performance polymers that require higher chamber temperatures, while helping to protect workplace atmosphere and expensive equipment investments through portable extraction," commented Arran Morgan, Senior Product Manager at BOFA.

Source: Laser Net

Ähnliche Empfehlungen
  • Micro devices output powerful lasers at room temperature, reducing power consumption by 7 times

    Recently, researchers at the Rensselaer Polytechnic Institute in the United States have invented a miniature device thinner than human hair, which can help scientists explore the essence of light and matter and unravel the mysteries of the quantum field. The most important advantage of this technology is that it can work at room temperature without the need for complex infrastructure. The resea...

    2024-05-29
    Übersetzung anzeigen
  • The largest ultra fast laser production base in the northwest has been completed and put into operation

    As a representative enterprise in the field of ultrafast lasers, Zhuolai Laser has always performed outstandingly in the market, not only possessing dual technologies of "ultrafast+ultra strong", but also covering a remarkable range of technical routes in China. In 2022, the company completed a financing of 200 million yuan.Recently, Zhuolai Laser announced to the public that its Xi'an subsidiary ...

    2024-04-28
    Übersetzung anzeigen
  • Scientists have conducted a series of studies on the mechanical properties and flame retardancy of laser formed Ti40 flame-retardant titanium alloy

    Recently, Professor Huang Chunping's team from Nanchang University of Aeronautics and Astronautics conducted a series of studies on the mechanical and flame retardant properties of laser formed Ti40 flame retardant titanium alloy. The research team used typical Ti40 flame-retardant titanium alloy as the research object and prepared Ti40 flame-retardant titanium alloy using LSF technology. The micr...

    2023-08-15
    Übersetzung anzeigen
  • Scientists develop high-power fiber lasers to power nanosatellites

    The use of lasers in space is a reality. Although radio waves have been the backbone of space communication for many years, the demand for faster transmission of more data has made these lighter, more flexible, and safer infrared rays the future of space communication.Recently, WipThermal is a European project dedicated to developing groundbreaking solutions for wireless energy transmission in the...

    2024-01-18
    Übersetzung anzeigen
  • Ultra fast laser tracking the "ballistic" motion of electrons in graphene

    Figure 1. The setup of Hui Zhao and his team at the University of Kansas Ultra Fast Laser Laboratory.A team of researchers from the University of Kansas's ultrafast laser laboratory recently managed to capture real-time ballistic transmission of electrons in graphene, which could lead to faster, more powerful, and more energy-efficient electronic devices in the future.The motion of electrons is of...

    2024-01-09
    Übersetzung anzeigen