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  • By 2034, The 3D Printed Medical Device Market Will Soar To $16.5 Billion


    On May 29, 2024, Antarctic Bear learned that according to the market Research report "Market Trends and Opportunities for Medical Devices" recently released by Additive Manufacturing Research: Prosthetics, dentistry, Hearing, by 2034, the 3D printed medical device market is expected to expand from $ Read More
  • NREL Presents Sustainable Ocean Energy Technology: The Feasibility of 3D Printing Metal Tidal Wind Wing Beams


    Marine energy is a promising part of the renewable energy industry. It harnesses the kinetic energy of natural phenomena such as currents and tides and converts it into clean energy to power coastal communities. According to the U.S. Office of Energy Efficiency and Renewable Energy, Marine energy re Read More
  • Renault Develops Innovative 3D Printing Materials To Create Seats That Are 30% Lighter And 30% Thinner


    In April 2024, the 120-year-old car brand Renault (RNO) teamed up with the French Alternative Energy and Atomic Energy Commission (CEA) to develop a new type of 3D printing material. The goal of the collaboration is to create components with adaptive mechanical behavior and enhanced performance, whi Read More
  • Effect of ultra-high speed laser melting scanning speed on the properties of Al-Mg-Sc high strength aluminum alloy


    Since the 21st century, with the rapid development of high-speed trains and aerospace technology, high-strength aluminum alloy components have gradually developed in the direction of large-scale, integration and complexity. The traditional aluminum alloy preparation method has some problems, such as long processing cycle, high cost and easy defects. As a kind of additive manufacturing process, laser melting deposition technology has the advantages of short preparation period, low cost and high forming quality, and has become one of the important means for the preparation of high-strength aluminum alloy components. The traditional laser melting deposition technology uses laser beam to form a molten pool on the surface of the matrix, and the powder enters the molten pool and is heated to melt. However, in the process of ultra-high speed laser melting deposition, the powder melts above the molten pool under laser heating, and only a small amount of powder melts in the molten poo Read More

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