繁体中文

Siemens will provide Rolls Royce with aerospace additive manufacturing components

937
2024-12-13 11:42:09
查看翻譯

Recently, Siemens Energy's Materials Solutions division (hereinafter referred to as Siemens) officially signed a cooperation agreement with Rolls Royce, a well-known enterprise in the field of aviation engines in the UK, agreeing that Siemens will develop and supply mass-produced additive manufacturing components for Rolls Royce's civil aerospace business.

Rolls Royce and 3D Printing Technology
Rolls Royce has a long history of using additive manufacturing technology.
In 2013, the company had planned to use 3D printing technology to manufacture parts for its jet engines, in order to accelerate production speed and manufacture more lightweight components.

In 2015, the company collaborated with the UK Additive Manufacturing Center to produce the largest civil aviation engine component at the time using 3D printing technology; In the same year, the company used 3D printing technology to manufacture aviation parts, which were already used in the latest Trent XWB-97 engine at the time and made their first test flight on the Airbus A380.

In 2019, the company announced SLM Solutions' SLM ® The 5004 laser equipment is designated for additive manufacturing development by the company.

The history of cooperation between Rolls Royce and Siemens
The new agreement between Siemens and Rolls Royce aims to expand the mass production scale of additive manufacturing, enabling the development of cutting-edge, lightweight, and high-performance components for commercial flight. This collaboration is an important milestone for Siemens' additive manufacturing business, as it further expands the application of the company's additive manufacturing technology in the aerospace industry.

It is worth mentioning that this cooperation is not the first major transaction between Siemens and Rolls Royce. As early as 2014, both parties had already engaged in significant transactions.

In 2014, Siemens Energy acquired Rolls Royce's natural gas turbine and compressor business for £ 785 million. Afterwards, both parties also signed a long-term contract allowing Siemens to continue using Rolls Royce technology to develop more efficient gas turbines. This 25 year technology licensing agreement will give Rolls Royce an additional £ 200 million.

Subsequently, in the transaction between the two parties in June 2019, the acquiring entity was changed to Rolls Royce. In June 2019, Rolls Royce announced an agreement with Siemens to acquire its electric and hybrid electric aviation propulsion business, eAircraft, to accelerate its electrification strategy.

The demand for 3D printing in the aerospace industry is growing rapidly
3D printing technology in the aerospace industry is renowned for its efficiency and ability to produce innovative prototypes, and has been one of the largest demand markets for 3D printing technology due to its alignment with the Green Aviation initiative aimed at reducing the aviation environmental footprint.

According to the research report on the aerospace additive manufacturing market by Research and Markets, the global market size for 3D printing in the aerospace industry is expected to reach approximately $3.26 billion in 2024, with a compound annual growth rate (CAGR) of 18.8% from 2025 to 2033, and a market size of $15.35 billion by 2033.

Write at the end
The cooperation between Siemens and Rolls Royce once again confirms the development prospects of 3D printing technology in the aerospace industry. Whether it is the high-performance requirements for structural components in the lightweight development trend of civil aviation aircraft, or the high-temperature alloy processing difficulties faced in the field of aviation engines, they can all be solved through 3D printing technology. I believe that with the diversification of 3D printing materials and the development of additive manufacturing equipment, additive manufacturing technology will achieve breakthrough applications in a wider range of aviation fields.

Source: Yangtze River Delta Laser Alliance

相關推薦
  • The creator of a computer that uses lasers to perform complex tasks at the speed of light has announced a breakthrough in high-performance computing

    LightSolver's new LPU100 system is powered by 100 lasers and can solve the most challenging problems through up to 120100 combinations.This computer was created by Dr. Ruti Ben Shlomi, CEO of LightSolver and Dr. Chen Tradonsky, CTO, a physicist at the Rehowatt Weizmann Institute for Science.It is not suitable for household use because its high computing power exceeds individual needs, but it is su...

    2024-03-21
    查看翻譯
  • New Method - Observing how materials emit polarized light

    Many materials emit light in ways that encode information in its polarization. According to researchers at École Polytechnique Fédérale de Lausanne (EPFL), Switzerland, polarization is key for future technologies, from quantum computers to secure communication and holographic displays.Among such phenomena is a form known as circularly polarized luminescence (CPL), a special type of light emission ...

    07-04
    查看翻譯
  • Shenzhen Guangfeng Technology may cooperate with well-known German enterprises

    Recently, Shenzhen Guangfeng Technology Co., Ltd. once again disclosed a development fixed-point notice. Unlike other fixed-point notices received this year, this fixed-point notice points to the optical components of the vehicle's dynamic color pixel lights. According to company disclosure, Guangfeng Technology recently received a development notice from a leading international brand car compan...

    2024-11-18
    查看翻譯
  • Developing miniaturized laser technology: This company has secured $5 million in financing

    Recently, high-performance laser supplier Skylark Lasers announced that it has raised $5 million in investment to further advance its efforts in miniaturized laser technology.Skylark Lasers is established at the center of the Scottish Photonics Cluster, focusing on the design and production of compact diode pumped solid-state (C-DPSS) lasers with the purest spectral characteristics, providing high...

    2023-11-02
    查看翻譯
  • The Influence of Laser Beam Intensity Distribution on Lock Hole Geometry and Process Stability under Green Laser Radiation

    Researchers from the University of Aveiro in Portugal and the School of Engineering at Porto Institute of Technology (ISEP) in Portugal reported a study on the influence of laser beam intensity distribution on the geometric shape and process stability of lock holes under green laser radiation. The relevant paper titled "Influence of Laser Beam Intensity Distribution on Keyhole Geometry and Process...

    03-26
    查看翻譯