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IMPROVING ROOM TEMPERATURE-STRETCH FORMABILITY OF MAGNESIUM ALLOYS BY LASER SHOCK PEENING

机译:激光冲击法改善镁合金的室温温度-应变性能

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The applications of magnesium (Mg) and their alloys are often restricted by their poor formability at room temperature. Several strategies have been developed in recent years to enhance the formability of Mg alloys, such as grain refinement and texture weakening, either by alloying or processing. Laser shock peening (LSP) is an advanced laser-based surface processing method which has been utilized improve the surface hardness, fatigue performance, and corrosion resistance of Mg alloys. Recent studies show that LSP can bring significant texture weakening and grain refinement effect in Mg alloy, indicating its potential capability of enhancing the formability of Mg alloys. This research is to explore the applicability of LSP to improve the room temperature-stretch formability of Mg alloys. LSP experiments are carried out on an AZ31B Mg alloys. The microstructure before and after LSP are characterized by optical microscopy (OM) and electron backscattered diffraction (EBSD) microscopy. Erichsen tests are carried out to evaluate the stretch formability of Mg alloys. The results show that LSP can bring texture weakening and grain refinement effect simultaneously, resulting in the improved room temperature-stretch formability of Mg alloys.
机译:镁(Mg)及其合金的应用通常会因其在室温下较差的可成型性而受到限制。近年来,已经开发了几种策略来增强镁合金的可成形性,例如通过合金化或加工来改善晶粒细化和降低织构。激光冲击喷丸(LSP)是一种先进的基于激光的表面处理方法,已被用来改善Mg合金的表面硬度,疲劳性能和耐腐蚀性。最近的研究表明,LSP可以在Mg合金中带来显着的织构减弱和晶粒细化效果,表明其具有增强Mg合金可成形性的潜在能力。本研究旨在探讨LSP的适用性,以提高Mg合金的室温拉伸可成形性。 LSP实验是在AZ31B镁合金上进行的。 LSP之前和之后的微观结构通过光学显微镜(OM)和电子背散射衍射(EBSD)显微镜进行表征。进行Erichsen测试以评估Mg合金的拉伸成形性。结果表明,LSP可以同时带来组织弱化和晶粒细化效果,从而改善了Mg合金的室温拉伸成形性。

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