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Effect of Temperature on Deformation and Fatigue Behaviour of A356–T7 Cast Aluminium Alloys Used in High Specific Power IC Engine Cylinder Heads

机译:温度对高比功率IC发动机缸盖用A356–T7铸造铝合金变形和疲劳行为的影响

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摘要

Aggressive downsizing of the internal combustion engines used as part of electrified powertrains in recent years have resulted in increasing thermal loads on the cylinder heads and consequently, the susceptibility to premature thermo-mechanical fatigue failures. To enable a reliable computer aided engineering (CAE) prediction of the component lives, we need more reliable material deformation and fatigue performance data. Material for testing was extracted from the highly loaded valve bridge area of specially cast cylinder heads to study the monotonic and cyclic deformation behaviour of the A356–T7 + 0.5% Cu alloy at various temperatures. Monotonic tensile tests performed at different temperatures indicate decreasing strength from 211 MPa at room temperature to 73 MPa at 300 °C and a corresponding increase in ductility. Completely reversed, strain controlled, uniaxial fatigue tests were carried out at 150, 200 and 250 °C. A dilatometric study carried out to study the thermal expansion behaviour of the alloy in the temperature range 25–360 °C shows a thermal expansion coefficient of (25–30) × 10 °C . Under cyclic loading, increasing plastic strains are observed with increasing temperatures for similar load levels. The experimental data of the cyclic deformation behaviour are calibrated against a nonlinear combined kinematic–isotropic hardening model with both a linear and non-linear backstress.
机译:近年来,作为电气化动力总成一部分的内燃机的大幅缩小导致气缸盖上的热负荷增加,因此,容易发生过早的热机械疲劳故障。为了实现可靠的计算机辅助工程(CAE)预测部件寿命,我们需要更可靠的材料变形和疲劳性能数据。从特殊铸造的缸盖的高负荷气门桥区域提取了测试材料,以研究A356–T7 + 0.5%Cu合金在不同温度下的单调和循环变形行为。在不同温度下进行的单调拉伸测试表明强度从室温下的211 MPa降低到300°C下的73 MPa,并相应地提高了延展性。在150、200和250℃下进行了完全反向,应变控制的单轴疲劳测试。进行了膨胀计研究,研究了该合金在25–360°C温度范围内的热膨胀行为,显示出(25–30)×10°C的热膨胀系数。在循环载荷下,对于相似的载荷水平,随着温度升高,观察到塑性应变增加。周期性变形行为的实验数据是针对具有线性和非线性背应力的非线性组合运动学-各向同性硬化模型进行校准的。

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