Español

Historic Moment! The 100th TruLaser Cell Series 3D Five-Axis Laser Cutting Machine Successfully Rolls Off the Production Line in China

550
2025-03-14 15:14:47
Ver traducción

Driven by the global trend of lightweighting in new energy vehicles (NEVs), TRUMPF has reached a significant milestone in Taicang, Jiangsu—the successful rollout of the 100th TruLaser Cell series 3D five-axis laser cutting machine. This achievement is more than just a numerical breakthrough; it symbolizes the deep integration of German technology with Chinese manufacturing and underscores TRUMPF's dedication to the Chinese market.

As the NEV market rapidly expands, lightweighting has become a crucial trend in automotive manufacturing. Hot forming technology has seen explosive growth in demand in recent years due to its unique advantages—it significantly reduces vehicle weight and energy consumption while ensuring high material strength and enhanced crash resistance. TRUMPF's TruLaser Cell series 3D five-axis laser cutting machines, renowned for their exceptional precision, stability, and efficiency, have become the preferred choice of many automotive component manufacturers, helping them stand out in an increasingly competitive market.

From the 1st to the 100th machine, each unit embodies the intelligence and dedication of our team. The rollout of the 100th machine is not just a victory for our team but also a testament to our shared growth with our customers. We sincerely appreciate our customers’ trust. Moving forward, we will continue to drive industry transformation through technology, offering more efficient, reliable solutions and faster response times to help our customers achieve even greater success.

Unlike the widely used gantry-style machines in the market, TRUMPF has innovatively adopted a cantilever beam design. This design presents significant technical challenges, but it also showcases TRUMPF’s deep expertise in precision manufacturing. Currently, TRUMPF is the only company that has mastered this core technology, maintaining its leadership position in hot forming laser processing. Compared to traditional gantry-style machines, TRUMPF’s cantilever beam design effectively addresses the synchronization and magnetic issues of linear motor drive systems, ensuring long-term high precision and stability. Since its launch, the TruLaser Cell series 3D five-axis laser cutting machine has set the industry benchmark in the hot forming sector, providing customers with guaranteed processing efficiency and quality.

The successful rollout of the 100th TruLaser Cell series machine is not only a key milestone in TRUMPF’s development in the Chinese market but also a vivid demonstration of its deep integration of technological innovation and localization strategy. As a core process in lightweight manufacturing, hot forming technology is redefining the future of automotive production. TRUMPF will continue to be technology-driven and customer-centric, pushing hot forming technology towards higher precision and efficiency to create greater value for its customers.

Recomendaciones relacionadas
  • The Trends and Challenges of the Metal 3D Printing Industry in 2025

    In the past decade, metal 3D printing technology has experienced rapid development, from the initial production of orthopedic implants to the manufacturing of rocket boosters. This technology has become an indispensable part of multiple key industries. With the advancement of technology and the expansion of the market, we are witnessing the revival of electron beam melting (EBM) technology and the...

    01-21
    Ver traducción
  • GE Additive has been renamed Colibrium Additive, continuing to lead the additive manufacturing industry

    In April 2024, GE Additive was renamed Colibrium Additive. Colibrium Additive (formerly GE Additive) is a subsidiary of GE Aerospace Propulsion and Additive Technology (PAT) and was established at the end of 2016. Nowadays, it is a trusted partner and manufacturer of industrial metal 3D printers and metal powders, as well as a service provider for industrial metal 3D printers and metal powders. It...

    2024-04-30
    Ver traducción
  • Shanghai Institute of Optics and Fine Mechanics has made progress in the field of high-intensity laser cracking of high-density polyethylene

    Recently, a team from the National Key Laboratory of Ultra strong Laser Science and Technology at the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, collaborated with the Arctic University of Norway (UiT) to make progress in the efficient cracking of high-density polyethylene (HDPE) using strong laser molecular bond breaking technology. The research results were publ...

    06-16
    Ver traducción
  • The researchers used ultrafast lasers to create nanoscale photonic crystals

    The optical properties of photonic crystals are closely related to their lattice constants, which are usually required to be in the same order of magnitude as the operating wavelength. In a crystal material, the photonic crystal structure is formed by the periodic arrangement in space of units whose dielectric constant is different from that of the crystal itself, and whose lattice constant depend...

    2023-08-04
    Ver traducción
  • Multi functional materials for solar cells and organic light-emitting diodes to achieve high performance and stability

    Through joint research, a team developed a 4-amino-TEMPO derivative with photocatalytic performance and successfully used it to produce high-performance and stable fiber like dye sensitized solar cells (FDSSCs) and fiber like organic light-emitting diodes (FOLEDs). This paper was published in the journal Materials and Energy Today.The developed 4-amino-TEMPO derivatives have the characteristic of ...

    2024-06-03
    Ver traducción