Polski

Scientists have conducted a series of studies on the mechanical properties and flame retardancy of laser formed Ti40 flame-retardant titanium alloy

329
2023-08-15 15:25:44
Zobacz tłumaczenie

Recently, Professor Huang Chunping's team from Nanchang University of Aeronautics and Astronautics conducted a series of studies on the mechanical and flame retardant properties of laser formed Ti40 flame retardant titanium alloy. The research team used typical Ti40 flame-retardant titanium alloy as the research object and prepared Ti40 flame-retardant titanium alloy using LSF technology. The microstructure, mechanical properties, and flame retardancy of laser formed specimens and traditional forged specimens were studied. 

At the same time, the superior flame retardancy and mechanical properties of laser formed specimens compared to traditional forged specimens were studied and discussed. The relevant research results are published in the Journal of Manufacturing Processes under the title of "Achieving superior burn resistance and mechanical properties of Ti40 alloy by laser solid forming". The author of the paper is Huang Qimin, a master's student, and the corresponding authors are Dr. Liu Fenggang and Professor Huang Chunping.

Ti40 (Ti-15V-25Cr) flame-retardant titanium alloy is a new type of highly stable β Titanium alloy has excellent comprehensive mechanical properties and flame retardancy, and is widely used in high bypass ratio large engine fan compressor components and other structures. However, its high temperature plasticity and flowability are poor, resulting in high processing costs, long cycles, and low material utilization in traditional mechanical processing. 

Therefore, there is an urgent need to find a new manufacturing technology to improve these issues. With the development of additive manufacturing technology, laser solid forming (LSF) technology based on laser cladding and rapid prototyping has also been widely applied. It can directly manufacture parts from CAD models and repair damaged parts, bringing new ideas and methods for the processing and manufacturing of flame retardant titanium alloys.

Based on the above research, the LSF process has improved the problems of high processing cost, long cycle time, and low material utilization brought about by traditional mechanical processing of Ti40. Ti40 alloy prepared by laser stereoforming technology has better mechanical properties compared to forged parts. At the same time, due to the special tempering effect during the laser stereoforming process, the Ti40 alloy β The precipitation of Ti5Si3 with high melting point can not only improve the oxidation efficiency of V and Cr elements by retaining pores, but also slow down the peeling of the oxide layer by strengthening the bonding between the matrix and the oxide layer, improving the flame retardancy of Ti40. The study of the mechanical properties and flame retardancy of Ti40 alloy prepared by LSF technology provides a new technical means for achieving high-performance, fast, and low-cost preparation of complex structural components of flame retardant titanium alloy.

Source: Laser Manufacturing Network

Powiązane rekomendacje
  • Trumpf 3D printing technology innovation: zero support structure, low waste, unlimited possibilities

    Ditzingen, Germany, September 8, 2023) - TRUMPF, the world's leading provider of machine tools and laser technology solutions, has improved its 3D printing software TruTops Print to print parts with suspension angles as low as 15 degrees with little need for support structures. Trumpf will present its new technology at the European International Machine Tool Show (EMO 2023) in Hannover, Germany.Fi...

    2023-09-13
    Zobacz tłumaczenie
  • Massachusetts University team achieves new breakthrough in photolithography chip

    Recently, a research team from the University of Massachusetts Amherst has pioneered a new technology that uses laser irradiation on concentric superlenses on chips to generate holograms, thereby achieving precise alignment of 3D semiconductor chips.This research result, published in the journal Nature Communications, is expected to not only reduce the production cost of 2D semiconductor chips, bu...

    2024-11-06
    Zobacz tłumaczenie
  • SEI and Matik showcase the latest laser technology at a joint printing exhibition

    SEI Laser, a leading manufacturer of laser cutting systems, and its North American distributor Matik, Inc. will showcase SEI Laser's three most popular machines at the upcoming Joint Printing Expo. Visit booth C2811 on the C floor of the Joint Printing Expo to watch live demonstrations of MERCURY, X-TYPE, and Labelmaster.MERCURY is the ideal choice for cutting everything from paper and cardboard t...

    2023-10-17
    Zobacz tłumaczenie
  • MIT research enables 3D printers to recognize new materials

    According to scientists at MIT, mathematical formulas developed by MIT researchers and other institutions can significantly improve the sustainability of 3D printing.Issues with 3D printing of plastics3D printers typically use mass-produced polymer powders to print parts, which are consistent and predictable, but also difficult to recycle.Other more environmentally friendly options also exist and ...

    2024-04-18
    Zobacz tłumaczenie
  • Laserline introduces the first blue 4 kW laser

    Laserline will once again showcase its latest laser systems for joining and deposition welding at this year's Welding & Cutting show in Hall 5. This time the focus is on the world's first blue diode laser with an output power of 4 kW, which is said to have been developed for processing copper components.Its 445 nanometer wavelength is absorbed by copper and copper alloys, which is five t...

    2023-09-06
    Zobacz tłumaczenie