Español

Additive Manufacturing Software Market 2025: Analysis, Data, and Forecasting

836
2025-03-17 15:03:37
Ver traducción

In March 2025, Additive Manufacturing Research (AMR) released its latest 3D printing market research report, "AM Software Markets 2025: Analysis, Data, and Forecast," which provides a comprehensive and in-depth analysis of the 3D printing software industry. The latest research findings indicate that global revenue from additive manufacturing (AM) software is expected to grow from $2.44 billion in 2024 to $6.78 billion in 2033. This significant growth is mainly driven by the following factors:

 



The transformation of market segmentation: Traditional broad and overlapping solutions are gradually transitioning towards clearer segmented markets.

The application of artificial intelligence technology: The integration of AI in AM software is increasing, optimizing and automating multiple processes.

Significant changes in market structure
AMR points out that the AM software market is undergoing a significant structural change:
Core workflow market: including basic tools for design, preparation, monitoring, and production management.
Application and Process Market: Specialized software focused on specific industries and material applications.
This change has prompted suppliers to innovate beyond traditional CAD and PLM platforms, developing new tools that can meet the needs of advanced manufacturing ecosystems.

 


Artificial Intelligence Driven Innovation and Corporate Strategy
With the advancement of AI technology, many previously state-of-the-art features have become mainstream. This transformation not only affects the strategic direction of enterprises, but also promotes the innovative development of the entire industry. The main participants mentioned in the report include:
Famous large enterprises such as 3D Systems, Autodesk, Stratasys, Materialise, Siemens, Colibrium Additive, etc.
Emerging niche developers: such as Authentise, Markforged, Hexagon, Altair, Aibuild, 1000 Kelvin, etc.
These companies are actively promoting the development of end-to-end manufacturing platforms while expanding the functionality of AM software to improve automation, efficiency, and scalability.

Detailed dataset and predictive model
This report provides a wide range of market datasets and predictive models to help readers gain a deeper understanding of:
Software tool types: process monitoring, machining, MES/production management, design optimization, simulation, and print preparation.
End user adoption trends in vertical fields: Detailed analysis of application situations in different industries.
Technology segmentation opportunities: especially software opportunities for polymer and metal AM technologies.

Future prospects and adaptation strategies
As the industry becomes increasingly reliant on software drivers, businesses and stakeholders must adapt to the rapidly evolving landscape. The market report of AM Research is an important tool for senior management and investors to evaluate the future development of AM software. By understanding the importance of AI solutions and integrated workflows, enterprises can better determine their competitive advantage and ensure a favorable position in future competition. This report not only provides a clear perspective on the current market situation, but also points out the direction for future strategic planning, emphasizing the importance of adapting to new technologies and market demands.

Source: Yangtze River Delta Laser Alliance

Recomendaciones relacionadas
  • Dutch satellite instruments have achieved milestone achievements in transmitting laser data to Earth

    TNO wrote that this is the first time Dutch technology has been used to send data from a satellite to a ground station press release on Earth. This technology uses invisible laser signals to achieve faster and safer data flow compared to ubiquitous communication radio frequencies.Kees Buijsrogge, Director of TNO Space, said, "This critical milestone marks a significant achievement for the Netherla...

    2024-01-25
    Ver traducción
  • GF Machining Solutions will showcase the latest members of its laser tradition on EPHJ

    At the EPHJ exhibition, GF Machining Solutions will showcase its latest laser solutions for microfabrication and 3D surface texture processing. Inspired by 70 years of innovation in the machine tool industry and 15 years of mastery of laser technology, GF Machining Solutions' latest innovations enable manufacturers to take speed and accuracy to new levels - they can experience it firsthand at EP...

    2024-06-06
    Ver traducción
  • IPG Photonics announces 2024 financial loss of $162 million

    On February 11th, global industrial fiber laser giant IPG Photonics announced its financial performance for the fourth quarter and full year of 2024. Annual sales have fallen below the $1 billion mark for the first time, with a year-on-year decline of 24% and a pre tax loss of up to $162 million. As an industry leader, IPG's financial report not only reflects the deep adjustment faced by the ind...

    02-13
    Ver traducción
  • Latest breakthrough! 3500W free output blue semiconductor laser

    The 3500W free output blue semiconductor laser beam is output in a free space manner, with a rectangular spot directly acting on the material surface without the need for fiber optics or laser processing heads. This laser has a wavelength of 455 ± 10nm, with continuously adjustable power and a maximum output power of over 3500W. It is mainly used for non-ferrous metal cladding, quenching, etc., to...

    2024-09-03
    Ver traducción
  • The team of researcher Wei Chaoyang of Shanghai Optical Machinery Institute has realized the manufacture of fused quartz components with high resistance to UV laser damage

    Recently, a team led by researcher Zhaoyang Wei of the Precision Optics Manufacturing and Testing Center of the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, has realized the manufacture of fused quartz components with high resistance to UV laser damage based on the defect characterization and removal process of CO2 laser. The research is published in Light: Advance...

    2023-09-11
    Ver traducción