首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Characterization of the Microstructure, Fracture, and Mechanical Properties of Aluminum Alloys 7085-O and 7175-T7452 Hollow Cylinder Extrusions
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Characterization of the Microstructure, Fracture, and Mechanical Properties of Aluminum Alloys 7085-O and 7175-T7452 Hollow Cylinder Extrusions

机译:铝合金7085-O和7175-T7452空心圆筒形挤压件的组织,断裂和力学性能的表征

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Microstructural, tensile, and fracture characterizations of cylindrically forged forms of aluminum alloys AA7085-O and AA7175-T7452 were performed. Mechanical and fracture properties were investigated along radial, circumferential, and longitudinal directions to determine directional dependency. American Society for Testing and Materials (ASTM) test methods (ASTM E8-04 and ASTM E1820) were employed for both the tensile and fracture characterizations, respectively. The tensile and fracture properties were related to microstructure in each direction. The strength, elongation at break, and ultimate tensile strength of AA7085-O were higher than those of AA7175-T7452. AA7175-T7452 alloy failed in a brittle manner during fracture studies. AA7085-O outperformed AA7175-T7452 on fracture energy in all of the orientations studied. Smaller grain sizes on the planes normal to circumferential and longitudinal directions showed improvement in both elongation at break and fracture energy values compared to those of radial direction. Scanning electron microscopy images demonstrated cleavage fracture in AA7175-T7452 and transgranular fracture in AA7085-O.
机译:对铝合金AA7085-O和AA7175-T7452的圆柱锻造形式进行了显微组织,拉伸和断裂表征。沿径向,圆周和纵向方向研究了机械和断裂性能,以确定方向依赖性。分别采用美国材料试验学会(ASTM)的测试方法(ASTM E8-04和ASTM E1820)进行拉伸和断裂表征。拉伸和断裂性能与每个方向的微观结构有关。 AA7085-O的强度,断裂伸长率和极限拉伸强度高于AA7175-T7452。 AA7175-T7452合金在断裂研究期间以脆性方式失效。在所研究的所有方向上,AA7085-O的断裂能均优于AA7175-T7452。与径向方向相比,在垂直于圆周方向和纵向方向的平面上较小的晶粒尺寸显示出断裂伸长率和断裂能值均得到改善。扫描电子显微镜图像显示AA7175-T7452中的裂解断裂和AA7085-O中的经颗粒断裂。

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