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首页> 外文期刊>Journal of Materials Processing Technology >Dependences of microstructures and properties on initial tempers of creep aged 7050 aluminum alloy
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Dependences of microstructures and properties on initial tempers of creep aged 7050 aluminum alloy

机译:蠕变时效7050铝合金的组织和性能对初始回火的影响

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摘要

The dependences of microstructures and properties on initial tempers of 7050 aluminum alloy under creep age forming (CAF) conditions are investigated by using transmission electron microscope (TEM), scanning electron microscope (SEM), mechanical property tests and corrosion resistance tests. Three tempers are selected as the initial tempers for CAF, viz., solution, retrogression and re-solution. The constant-stress creep aging tests are conducted under simulated CAF conditions at 165 degrees C and 250 MPa for 18 h. TEM observations show that there are obviously different initial microstructures in the alloy with various initial tempers. After creep aging, a lot of fine and homogeneous transgranular precipitates with continuous grain boundary precipitates are found in the specimen with initial temper of solution; for retrogression temper, the transgranular precipitates grow up and the spacing of discontinuous grain boundary precipitates become wider; the transgranular re-precipitation and the biggest grain boundary precipitates with the widest spacing are observed in the specimen with initial temper of re-solution. Due to the fine transgranular precipitates, the creep aged specimens with initial tempers of solution and re-solution exhibit higher mechanical properties than that of retrogression with coarse transgranular precipitates. Both the creep aged specimens with initial tempers of retrogression and re-solution have lower corrosion susceptibility due to their discontinuous grain boundary structures, while the continuous grain boundary precipitates reduce the corrosion resistance of the creep aged specimen with initial temper of solution. Combining both mechanical properties and corrosion resistances into account, under the given thermal-mechanical conditions, the re-solution temper may be a preferable choice to achieve high performance of the components beyond the precise shape in CAF. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过透射电子显微镜(TEM),扫描电子显微镜(SEM),力学性能测试和耐蚀性测试,研究了7050铝合金在蠕变时效成形(CAF)条件下组织和性能对初始回火的依赖性。选择三种回火作为CAF的初始回火,即固溶,逆行和再溶。恒应力蠕变老化试验是在165°C和250 MPa的模拟CAF条件下进行18 h。 TEM观察表明,在不同初始回火状态下,合金的初始微观结构明显不同。蠕变时效后,在初始溶液温度下,在样品中发现了许多细小且均匀的,具有连续晶界沉淀的跨晶沉淀。在回火过程中,晶间析出物长大,不连续晶界析出物的间距变宽。在初始溶解温度下,在样品中观察到了跨颗粒的再沉淀和最大的晶界沉淀,间距最大。由于存在细小的经晶析出物,因此具有初始固溶和再溶解温度的蠕变时效试样比具有较粗的经穿晶析出物的回退具有更高的机械性能。初始回火和固溶的蠕变时效试样由于其不连续的晶界结构而具有较低的腐蚀敏感性,而连续的晶界沉淀物降低了初始固溶时的蠕变时效试样的耐腐蚀性。在给定的热机械条件下,将机械性能和耐蚀性综合考虑在内,再溶化回火可能是实现CAF中精确形状之外的部件高性能的首选。 (C)2016 Elsevier B.V.保留所有权利。

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