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Mechanical Evaluation of Mixed As-Cast and Friction Stir Processed Zones in Nickel Aluminum Bronze

机译:镍铝青铜中混合浇铸摩擦搅拌加工区的机械评价

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The performance of nickel aluminum bronze (NAB) propellers can be limited by the resistance of the alloy to fatigue. Friction stir processing (FSP) is a potential method for improving the fatigue life and fracture toughness of this material through grain structure refinement. As friction stir processing is a surface treatment, as-cast, thermo-mechanically affected zone (TMAZ), and FSP zone microstructures can all occur in components with thick cross sections and when FSP is performed on only selected areas of the component surface. The boundary between modified and unmodified microstructures produced by traditional processing techniques (i.e., heat affected zones produced by welding) are often the source of in-service failures as they can contain defects, residual stresses, deleterious microstructures or any combination thereof. In this paper, the mechanical behavior of FSP nickel aluminum bronze specimens containing as-cast, TMAZ, and FSP microstructures are evaluated using monotonic tensile tests and rotating bending fatigue tests. Analysis of the fatigue specimen fracture surfaces indicate that fatigue cracks initiated and propagated through the as-cast microstruc-ture before penetrating the TMAZ and the FSP microstructures. The tensile specimens failed in the as-cast structure away from the FSP zone and the TMAZ. These results indicate that the as-cast material is weaker than both the FSP and the TMAZ, implying that localized friction stir processing is not detrimental to the mechanical behavior of a NAB component, even in the boundary region.
机译:镍铝青铜(NAB)螺旋桨的性能可受到合金对疲劳的电阻的限制。摩擦搅拌加工(FSP)是通过晶粒结构细化改善该材料的疲劳寿命和断裂韧性的潜在方法。由于摩擦搅拌处理是进行表面处理,如铸态,都可以用厚的横截面发生在部件的热机械影响区(TMAZ),以及FSP区的微观结构,并且当被FSP在部件表面的选定区域上执行。由传统加工技术产生的改性和未改进的微结构之间的边界(即,通过焊接产生的热影响区域)通常是在缺陷,残余应力,有害微观结构或其任何组合中的缺陷。在本文中,FSP镍铝青铜的机械性能标本含铸态,TMAZ,和FSP微结构被使用单调拉伸试验和旋转弯曲疲劳试验来评价。疲劳试样骨折表面的分析表明在穿透TMAZ和FSP微结构之前通过AS浇注微带作用引发和传播的疲劳裂缝。拉伸标本在远离FSP区和TMAZ的铸造结构中失效。这些结果表明,铸造材料比FSP和TMAZ较弱,暗示局部摩擦搅拌加工对于甚至在边界区域中的NAB组分的机械行为不利。

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