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Brazilian researcher expands industrial use of advanced high-strength steel alloys-The 19th China (Guangzhou) Int’l Spring Industry Exhibition
12/21/2017  Spring Industry Exhibition-Spring expo
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    Brazilian researcher develops innovative method of laser welding at high temperatures that enhances properties of AHS steel for applications in automotive and aerospace industries. The automotive industry''s demand for high-performance alloys known as advanced high-strength steels has increased in recent years owing to increasingly tough passenger safety, vehicle performance and fuel economy requirements.

Characterized by improved formability and collision resilience compared to conventional steel grades, high-strength steels have been used in critical safety locations in car body structures to absorb energy from impacts.

However, some of these high-strength alloys tend to become brittle as a result of welding and may break when submitted to the hot stamping and forming required by many manufacturing processes.

Milton Sergio Fernandes de Lima, a researcher at the Brazilian Air Force Command''s Institute for Advanced Studies said that "This problem makes it impossible to use AHS steel not only in the automotive industry but also in other industries such as aerospace.”

To address this issue, Mr Lima has developed an innovative method of high-temperature laser welding for AHS steel appropriate for aerospace applications.

The results, obtained while Lima was a visiting fellow at the Colorado School of Mines in the United States with support from the Sao Paulo Research Foundation - FAPESP, have now been published in Welding Journal.

The technique developed by Lima consists of heating sheets of 22MnB5 steel the most promising AHS grade for hot stamping and forming to approximately 450 °C ten minutes before laser welding to equalize the temperatures.

The sheets are kept at a high temperature for another ten minutes after welding to produce a bainitic structure. Metallurgists have discovered that bainite, a microconstituent that forms in steel under certain conditions, is the best candidate to produce tough and reliable weld joints. In particular, it displays high values for yield and tensile strengths.

Analysis showed that sheets welded at this high temperature contained bainite and were far tougher than sheets welded at room temperature, which contained martensite, a microconstituent with lower yield and tensile strengths than bainite.

Stress tests also demonstrated the resilience of sheets welded at high temperature. Mr Lima said that "We succeeded in producing tough weldments directly in the bainitic band without any need for additional heat treatment.”

According to Lima, the technique can easily be applied in manufacturing to improve laser welding of high-strength and ultra-high-strength steel.

The automotive industry uses laser welding to join steel blanks and stamped structural body parts such as pillars, beams, rails, frames, tunnels and bars faster and more reliably than with conventional welding.

In the aerospace industry, laser welding is used by aircraft manufacturers such as Boeing and Airbus, as well as some smaller European firms, to enhance weldment reliability in structures for aircraft, rockets, missiles, satellites, re-entry vehicles, antennas, onboard systems and drones.

Mr Lima said that "Laser-welded structures in this industry have to be able to withstand high temperature and external pressure. Hence the need for very high levels of reliability."

He added that although the studies are in the early stages, bainitic steel is expected to be an excellent material for shielding and armoring because of its high capacity to absorb mechanical energy. -The 19th China (Guangzhou) Int’l Spring Industry Exhibition -Spring Industry Exhibition, spring expo, 2018 Spring exhibition, 2018 Spring expo, China Spring exhibition, China Spring expo, steel spring exhibition, steel spring expo 
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