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Selection of optimal solution heat treatment of the casting cylinder heads

机译:铸造缸盖最佳固溶热处理的选择

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The effect of solution treatment on mechanical properties (UTS, elongation, Brinell hardness) and microstructure (Si-morphology and Si-size) of an aluminium alloy (A356) used for casting cylinder heads was studied. The tests were carried out with specimens machined from the bulkheads of V8 engine blocks cast by the low pressure process. The samples were tested in as-cast and T6 heat treating conditions (solution heat treatment at 530°C with different time - 2, 3, 4, 5, 6, 7 hours, quenching in water at 20°C and precipitation hardened for 4 hour at 160°C). The results show that used heat treatment improves mechanical properties of the cylinder head casts. Tensile strength and hardness of specimens increase with solution treatment time. The hardness is a reflection of solution strengthening and silicon particle distribution in matrix. Solution temperature 530°C and 5 hours solution time is appropriate to obtain better morphology and distribution of Si particles in microstructure. Prolonged solution treatment (more than 5 hours) leads to a coarsening of the Si particles, while the numerical Si density decreases. As the particle density decreases, a fewer number of sites are available for crack nucleation, and hence, the fracture properties are improved. The data obtained from this study will be used to improve process control, and to help the selection of heat treatment of the casting for future products.
机译:研究了固溶处理对铸造缸盖用铝合金(A356)的机械性能(UTS,伸长率,布氏硬度)和微观结构(Si形貌和Si尺寸)的影响。测试是使用从低压工艺铸造的V8发动机机体舱壁上加工的标本进行的。在铸态和T6热处理条件下对样品进行了测试(在530°C进行固溶热处理的时间为2、3、4、5、6、7小时,然后在20°C的水中淬火并沉淀硬化4次)在160°C下保持1小时)。结果表明,使用过的热处理可改善气缸盖铸件的机械性能。样品的拉伸强度和硬度随固溶时间的延长而增加。硬度反映了溶液强化和基质中硅颗粒的分布。固溶温度为530°C,固溶时间为5小时是合适的,以获得更好的组织形态和Si颗粒分布。长时间的固溶处理(超过5小时)会导致Si颗粒粗大化,而Si的数值会降低。随着颗粒密度降低,较少的位置可用于裂纹成核,因此,改善了断裂性能。从这项研究中获得的数据将用于改善过程控制,并帮助选择用于未来产品的铸件的热处理。

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