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Enhancing mechanical properties and formability of AISI 301LN stainless steel sheet by local laser heat treatment

机译:通过局部激光热处理提高AISI 301LN不锈钢板的机械性能和可成型性

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This study demonstrates applying local laser heat treatment to produce ultrafine-grained austenite (UFGA) structures in an AISI 301LN type commercial austenitic steel. Pieces of 50% cold-rolled sheets containing more than 90% strain-induced martensite were heated locally by a laser beam to various peak temperatures to obtain different degrees of martensite reversion to austenite. Mechanical properties and formability of grain-refined and coarse-grained structures were measured by tensile and Erichsen cup tests. In addition to standard Erichsen cup test, additional interrupted tests were carried out, where cups were first stretched close to the critical strain. Drawn cups were then heated locally by a laser beam to revitalize the structure and thereby enhance the formability in the following cupping test until failure. Results showed that local laser heat treatment is suitable for the reversion treatment to refine the austenite grain size. Various structures were produced: completely reverted microstructures (T > 700 °C) with grain sizes 0.9 - 2 μm in addition to partially reverted structure (T<700 °C) containing nano- and ultrafine-grained austenite (0.6 μm) with some martensite. The grain refinement by local annealing improved the strength properties. The Erichsen cup tests showed that the formability was equal in the completely reverted ultrafine-grained structures to that of the coarse-grained sheets. It was demonstrated that the local laser treatment restored formability of the drawn cups, allowing stretching to be continued. The second forming step after the laser-treatment provided an enhancement of 19 and 14% in the cup depths in coarse-grained and ultrafine-grained steels, respectively, even though the laser-treatment parameters were not optimized yet.
机译:这项研究表明,在AISI 301LN型商用奥氏体钢中,应用局部激光热处理可生产超细晶粒奥氏体(UFGA)结构。包含90%以上的应变诱发马氏体的50%冷轧薄板通过激光束局部加热至各种峰值温度,以获得不同程度的马氏体回复至奥氏体的程度。晶粒细化和粗粒结构的机械性能和可成形性通过拉伸和埃里克森杯测试进行了测量。除了标准的Erichsen杯测试外,还进行了其他间断测试,其中首先将杯拉伸到接近临界应变的程度。然后将拉制的杯子通过激光束局部加热,以使结构恢复活力,从而在随后的拔罐测试中增强可成形性,直到失效。结果表明,局部激光热处理适合于还原处理以细化奥氏体晶粒尺寸。产生了各种结构:晶粒尺寸为0.9-2μm的完全还原的微结构(T> 700°C),以及包含纳米和超细奥氏体(0.6μm)以及一些马氏体的部分还原的结构(T <700°C)。 。通过局部退火使晶粒细化改善了强度性能。埃里克森杯试验表明,完全还原的超细颗粒结构的可成型性与粗颗粒板的可成型性相同。已经证明,局部激光处理恢复了拉制杯的可成形性,从而允许继续拉伸。激光处理后的第二个成型步骤使粗晶粒和超细晶粒钢的杯深分别提高了19%和14%,即使尚未优化激光处理参数也是如此。

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