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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Microstructure and Mechanical Properties of Heat-Treated B319 Alloy Diesel Cylinder Heads
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Microstructure and Mechanical Properties of Heat-Treated B319 Alloy Diesel Cylinder Heads

机译:热处理的B319合金柴油机缸盖的组织和力学性能

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Microstructure and mechanical properties of B319 alloy diesel cylinder heads were investigated in this study. Cylinder heads were heat treated to T5, T6, and T7 tempers using fluidized bed technology. Three different fluidized beds were used, each to solutionize, quench, and age the castings. For comparative purposes, castings were also aged using conventional forced-air circulation electric-resistance furnace. Effects of processing parameters such as temperature, time, and heating rate on microstructural evolution and mechanical properties namely tensile properties and hardness of B319 alloy castings were studied. The number density and size range of precipitates were measured. Results show that the T5 temper has no effect on eutectic phases such as Si- and Fe-rich intermetallic, and Al2Cu. On contrary, both T6 and T7 tempers result in spherodization of the eutectic Si and partial dissolution of the Al2Cu phase. Prolonged solution heat treatment for 8 hours in fluidized bed results in limited dissolution of the secondary eutectic Al2Cu phase. Aging (T6, T7, and T5) results in precipitation of Al5Cu2Mg8Si6 and Al2Cu phases in B319 alloy. The number density of precipitates in T6 temper is greater than in T7 and T5 tempers. The number density of precipitates is also affected by the duration of solution heat treatment. In general, long solution heat treatment (8 hours) results in greater precipitate density than short solution treatment (2 hours). The distribution of precipitates is inhomogeneous and varied across the dendritic structure. In general, precipitation rate of Al5Cu2Mg8Si6 phase is greater near the periphery of the dendrite as compared to the center. This is because Al5Cu2Mg8Si6 nucleates on Si particle, grain boundaries, and triple junction between recrystallized Al grains and Si particles. Similarly, heterogeneous sites such as grain boundaries and Al/Si interface also act as nucleating sites for the precipitation of Al2Cu phase. In general, the coarsening rate of precipitates near to the periphery of the dendrite is greater than in the center. This is because the Al matrix region close to the eutectic Si particles is subjected to in situ thermal stresses, which is generated due to the thermal mismatch between Al and Si particles. Thermal stress is highest at the Si/Al interface and decreases significantly away from the Al/Si interface. The precipitation and growth rate of the alloy aged in fluidized bed is greater than in conventional furnace. This is because heating rates of casting in fluidized bed (FB) are greater than conventional furnace, which result in greater precipitation rate. This study establishes a correlation between structure, thermal processing, and property of B319 alloy treated to various heat treatments. Reasonably good mechanical properties were obtained in less time using fluidized bed furnace. This work clearly demonstrates the significant potential of FB to save time and energy. (C) The Minerals, Metals & Materials Society and ASM International 2015
机译:研究了B319合金柴油机缸盖的组织和力学性能。使用流化床技术将气缸盖热处理到T5,T6和T7回火。使用了三种不同的流化床,每种流化床用于固溶,淬火和时效铸件。为了比较,还使用常规的强制空气循环电阻炉对铸件进行时效处理。研究了温度,时间和加热速率等工艺参数对B319合金铸件的组织演变和力学性能(即拉伸性能和硬度)的影响。测量沉淀物的数量密度和尺寸范围。结果表明,T5回火对富Si和富Fe金属间化合物以及Al2Cu等共晶相没有影响。相反,T6和T7的回火都导致共晶Si的球化和Al2Cu相的部分溶解。在流化床中长时间进行固溶热处理8小时会导致二次共晶Al2Cu相的溶解受限。时效处理(T6,T7和T5)导致B319合金中Al5Cu2Mg8Si6和Al2Cu相的析出。在T6回火中,析出物的数量密度大于在T7和T5回火中。固溶热处理的持续时间也影响沉淀物的数量密度。通常,长固溶热处理(8小时)比短固溶处理(2小时)产生更大的沉淀密度。沉淀物的分布是不均匀的,并且在整个树枝状结构中变化。通常,与中心相比,在枝晶周围附近的Al5Cu2Mg8Si6相的析出速率更大。这是因为Al5Cu2Mg8Si6在Si颗粒,晶界和再结晶的Al颗粒与Si颗粒之间的三重结上成核。类似地,异质位点(例如晶界和Al / Si界面)也充当Al2Cu相析出的成核位点。通常,靠近枝晶外围的析出物的粗化速率大于其中心。这是因为靠近共晶Si颗粒的Al基体区域受到原位热应力,该应力是由于Al和Si颗粒之间的热失配而产生的。热应力在Si / Al界面处最高,并且在远离Al / Si界面处显着降低。流化床中时效合金的析出和生长速率大于常规炉中。这是因为流化床(FB)中铸件的加热速率比常规炉高,这导致更大的沉淀速率。这项研究建立了B319合金在各种热处理条件下的结构,热处理和性能之间的相关性。使用流化床炉可以在较短的时间内获得合理的良好机械性能。这项工作清楚地证明了FB节省时间和能源的巨大潜力。 (C)矿物,金属和材料学会和ASM International 2015

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