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Deformation and Fatigue Behaviour of A356-T7 Cast Aluminium Alloys Used in High Specific Power IC Engines

机译:高特定功率IC发动机用A356-T7铸铝合金的变形及疲劳行为

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摘要

The continuous drive towards higher specific power and lower displacement engines in recent years place increasingly higher loads on the internal combustion engine materials. This necessitates a more robust collection of reliable material data for computational fatigue life prediction to develop reliable engines and reduce developmental costs. Monotonic tensile testing and cyclic stress and strain-controlled testing of A356-T7 + 0.5 wt.% Cu cast aluminium alloys have been performed. The uniaxial tests were performed on polished test bars extracted from highly loaded areas of cast cylinder heads. The monotonic deformation tests indicate that the material has an elastic-plastic monotonic response with plastic hardening. The strain controlled uniaxial low cycle fatigue tests were run at multiple load levels to capture the cyclic deformation behaviour and the corresponding fatigue lives. The equivalent stress-controlled fatigue tests were performed to study the influence of the loading mode on the cyclic deformation and fatigue lives. The two types of tests exhibit similar fatigue lives and stress-strain responses indicating minimal influence of the mode of loading in fatigue testing of A356 + T7 alloys. The material exhibits a non-linear deformation behaviour with a mixed isotropic and kinematic hardening behaviour that saturates after the initial few cycles. There exists significant scatter in the tested replicas for both monotonic and cyclic loading.
机译:近年来,近年来朝着更高的特定功率和更低位移发动机的连续驱动越来越高的内燃机材料负载。这需要更强大地收集用于计算疲劳寿命预测的可靠材料数据,以开发可靠的发动机并降低发育成本。单调的拉伸试验和循环应力和应变控制的A356-T7 + 0.5重量%。已经进行了%Cu铸造铝合金。在从高负荷的铸缸盖区域提取的抛光测试条上进行单轴测试。单调变形试验表明该材料具有弹性塑料单调应答,具有塑料硬化。应变控制的单轴低循环疲劳试验以多重载荷水平进行,以捕获循环变形行为和相应的疲劳寿命。进行等效应激控制的疲劳试验以研究装载模式对循环变形和疲劳寿命的影响。这两种类型的试验表现出类似的疲劳寿命和应力 - 应变响应,表明疲劳疲劳试验的疲劳试验模式的最小影响是对A356 + T7合金的疲劳试验的影响。该材料表现出具有混合各向同性和运动硬化行为的非线性变形行为,其在初始几个循环后饱和。用于单调和循环载荷的测试复制品中存在显着的散射。

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