Nederlands

Tongkuai will participate in the laser fusion energy research program

211
2024-02-01 18:05:32
Bekijk vertaling

The US Department of Energy recently allocated $42 million to support the development of laser fusion technology and designated three new research and innovation centers. This strategic investment aims to promote laser based nuclear fusion to play an important role as a clean and sustainable energy source in the future. Trumpf is one of the main participants known for its laser expertise and actively participates in this project.

Trumpf is one of the pioneering forces in the field of production technology, committed to promoting and digitizing connected manufacturing processes to improve efficiency, accuracy, and future readiness. As one of the market and technology leaders in the industrial manufacturing of machine tools and lasers, Trumpf's innovation spans multiple fields. Their mission is rooted in making manufacturing and its upstream and downstream processes more streamlined and effective, contributing to the creation of the future industrial world.

Trumpf's software solutions play a crucial role in realizing the vision of smart factories, promoting the integration of high-tech processes and industrial electronic products. The company's commitment goes beyond the present and focuses on unlocking technological possibilities for future generations. Trumpf's product portfolio covers a wide range of technologies, including lasers, machine tools, EUVs, and electronic products. These technologies serve as catalysts to inspire people to bring their creativity into life, turning once unimaginable things into tangible realities of the present and future.
The Lawrence Livermore National Laboratory located in California plays a crucial role in contributing to the global forefront of laser based fusion technology. One year ago, on December 5, 2022, LLNL successfully achieved nuclear fusion at the national ignition facility, achieving a net energy gain and achieving a breakthrough. Subsequently, researchers replicated this success three times, achieving higher energy production and making LLNL a key institution for promoting fusion energy.

In order to recognize the potential of laser fusion, the US Department of Energy has committed $42 million to three new laser fusion centers. These centers, collaborative enterprises involving academic institutions, national laboratories, and industrial companies will utilize their collective expertise to address fundamental challenges that hinder the economic feasibility and environmental sustainability of fusion energy.

Trumpf will contribute its professional knowledge to this project. Stewart McDougall, R&D director of TRUMPF Photonics located in Cranbury, New Jersey, emphasized the crucial role of modernizing diode lasers in achieving the goal of inertial fusion energy power plants. The goal is to replace outdated pump sources in the 1980s with modern diode lasers, thus requiring a significant increase in the global production capacity of semiconductor laser tubes. The role of TRUMPF is not limited to technological progress; It extends to collaboration with alliance partners to address key issues such as expansion, cost reduction, and standardization of diode pump sources.

Mr. McDougall emphasized the importance of a comprehensive approach, stating, "We will collaborate with alliance partners to address key issues such as scaling, cost reduction, and standardization of diode pump sources. We will also help develop a roadmap for the community. This four-year project aims to leverage Trumpf's over 20 years of experience in developing and commercializing industrial solid-state laser diode pump sources.".

Trumpf's professional knowledge covers the entire value chain, from materials to environment and reliability testing, as well as integration with laser systems. Mr. McDougall acknowledges that the development and profitability of nuclear fusion power plants have a long history, and it is estimated that they may take several decades to be operational and financially viable. As a consultant involved in this future oriented project, Trumpf demonstrated their expertise and emphasized the company's commitment to providing valuable insights in this pioneering field.

It is worth noting that although Trumpf is an indispensable partner in promoting laser fusion technology, it has not received direct funding for the project. The funding of the US government is consistent with the national goals set by the US President, aimed at showcasing the validation concept of various nuclear fusion power plants by 2032.

Source: Laser Net

Gerelateerde aanbevelingen
  • Progress in the research and development of high-performance electrically pumped topology lasers in semiconductor manufacturing

    Topological laser (TL) is an ideal light source for future new optoelectronic integrated chips, designed and manufactured using topological optics principles to obtain robust single-mode lasers. Electrically pumped topology lasers have become a research hotspot due to their small size and ease of integration, but topology lasers based on electrical injection are still in the early stages of resear...

    2024-07-11
    Bekijk vertaling
  • Feasibility Study on Composite Manufacturing of Laser Powder Bed Melting and Cold Casting

    It is reported that researchers from the Technical University of Munich in Germany have reported a feasibility study on the composite manufacturing of EN AC-42000 alloy by combining laser powder bed melting and cold casting. The related research titled "Feasibility study on hybrid manufacturing combining laser based powder bed fusion and chill casting on the example of EN AC-42000 alloy" was publi...

    2024-06-06
    Bekijk vertaling
  • Meltio launches a new blue laser 3D printer M600

    Recently, metal 3D printing manufacturer Meltio launched its latest metal 3D printer - M600. This M600 has shown significant progress in integrating into industrial manufacturing processes, no longer limited to niche applications. Like most of Meltio's product lines, the design of M600 was originally intended to address common manufacturing issues such as long delivery times, high inventory cost...

    2024-07-06
    Bekijk vertaling
  • Nanjing University of Science and Technology has made new progress in the field of programmable lensless holographic cameras

    Recently, Professor Chen Qian and Professor Zuo Chao's research group from the School of Electronic Engineering and Optoelectronic Technology at Nanjing University of Science and Technology proposed a minimalist optical imaging method based on programmable masks - programmable Fresnel zone aperture lensless imaging technology. The related achievement, titled "Lensless Imaging with a Programmable F...

    04-14
    Bekijk vertaling
  • Free space nanoprinting beyond optical limitations can create 4D functional structures

    Two photon polymerization is a potential method for nanofabrication of integrated nanomaterials based on femtosecond laser technology. The challenges faced in the field of 3D nanoprinting include slow layer by layer printing speed and limited material selection due to laser material interactions.In a new report in Progress in Science, Chenqi Yi and a team of scientists in the fields of technical s...

    2023-10-09
    Bekijk vertaling