日本語

BMW uses WAAM 3D printing to optimize derivative designs

155
2024-04-13 13:45:50
翻訳を見る

BMW explained how to use WAAM (Arc Additive Manufacturing) starting from 2025 to manufacture lighter and stronger automotive components and reduce waste generation, in order to optimize the use of generative design tools.

The demonstrated WAAM process uses aluminum wire raw materials directly deposited through laser welding heads, enabling automotive companies to manufacture lighter and more robust parts than similar large parts.

BMW stated that in order to optimize the parts manufactured using this technology, the combination of manufacturing processes and general new component design is crucial. To this end, BMW is accelerating the use of generative design and working closely with interdisciplinary teams to develop its own algorithms, partially inspired by the natural evolution process.

Karol Virsik, Head of Vehicle Research at BMW Group, said, "What is impressive is how WAAM technology has evolved from research to a flexible tool that can be used not only for testing components, but also for mass production of components." "The use of generative design methods allows us to fully utilize design freedom, thus fully utilizing the potential of technology. Just a few years ago, this was unimaginable."

Although these components have wide welds, BMW engineers have proven that WAAM components can still be used for high loads without the need for precision machining of surfaces.

Since 2021, BMW has been testing this DED process at its additive manufacturing park in Oberschlei ß heim, Germany, where the first batch of components will be produced. BMW expects to increase production in other locations by using existing assembly lines with new software.

BMW stated that the adoption of WAAM technology will not replace SLS technology for more refined parts, but arc additive manufacturing technology is "superior" in terms of possible size and deposition rate of parts.

The company is even considering using WAAM technology to directly produce individual components on assembly lines, as this technology does not require new tools and only requires software changes to manufacture different components.

Source: NetEase Network

関連のおすすめ
  • RAISE3D launches its innovative 3D printer series and filament series

    3D printer manufacturer Raise3D has launched a new Fused Manufacturing (FFF) 3D printer series called Pro3 HS and a supercore filament series.The Pro3 HS series is equipped with a motion control system, which improves speed, accuracy, and simplifies the manufacturing of large composite components. Raise3D's Hyper Core filament has a dense fiber core and well arranged carbon fibers, which can enha...

    2024-06-11
    翻訳を見る
  • Germany has developed a fast, accurate, and wear-resistant laser drilling CFRP process

    Recently, scientists from the Hanover Laser Center (LZH) in Germany announced the successful development of an automated laser drilling process that can promote the processing of carbon fiber reinforced plastics (CFRP). They stated that this is particularly valuable in applications such as lightweight structures and sound insulation.Composite materials such as carbon fiber reinforced plastics (CFR...

    2024-03-06
    翻訳を見る
  • New nanophotonic circuits demonstrate the potential of quantum networks

    The Purdue University team in the United States has captured alkali metal atoms (cesium) in integrated photonic circuits, which can serve as transistors for photons (the smallest energy unit of light). These captured atoms demonstrate for the first time the potential of cold atom integrated nanophotonic circuits to construct quantum networks. The research results were published in the latest issue...

    2024-08-14
    翻訳を見る
  • Romania Center launches the world's most powerful laser

    Are you ready? The signal is out! "In the control room of a research center in Romania, engineer Antonio Toma has activated the world's most powerful laser, which is expected to make revolutionary progress in various fields from the health sector to space. The laser located in the center near the Romanian capital Bucharest is operated by the French company Thales and utilizes the invention of Nobe...

    2024-04-01
    翻訳を見る
  • High performance optoelectronic device developer "Micro Source Photon" completes B+round financing

    Recently, Weiyuan Photon (Shenzhen) Technology Co., Ltd. (hereinafter referred to as "Weiyuan Photon") announced the completion of a B+round of financing, with investors including Yicun Capital, Chenfeng Capital, and Beijing Guoqian Investment. The specific amount has not been disclosed. According to its official website, MicroSource Photonics was founded in November 2018, with the main members...

    2024-07-23
    翻訳を見る