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Influence of elevated temperatures on the cyclic deformation behaviour of the magnesium die-cast alloys AZ91D and MRI 230D

机译:高温对压铸镁合金AZ91D和MRI 230D的循环变形行为的影响

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The magnesium alloys AZ91D and MRI 230D were investigated in form of die-cast specimens with a cast skin. The fine-grained microstructure consists of a dendritic magnesium solid solution and interdentritic precipitates. The cyclic deformation behaviour was characterised in stress-controlled load increase tests,and constant amplitude tests by means of mechanical stress-strain hysteresis measurements at room temperature and at T= 150 ℃. The MRI alloy leads to higher plastic strain amplitudes and nevertheless higher lifetimes for both temperatures. Load increase tests allow a reliable short-time estimation of the endurance limit under both, room and elevated temperatures. With the physically based fatigue life calculation method "PHYBAL" the lifetime of the magnesium alloys can be calculated on the basis of cyclic deformation data determined in one load increase test and two constant amplitude tests in excellent agreement with the conventionally determined S-N curve.
机译:镁合金AZ91D和MRI 230D以具有铸皮的压铸样品形式进行了研究。细晶粒的微观结构由树枝状的镁固溶体和树枝状的析出物组成。通过在应力控制的载荷增加试验中以及在室温和T = 150℃下通过机械应力-应变磁滞测量的恒定振幅试验来表征循环变形行为。 MRI合金可导致较高的塑性应变幅度,并且在两种温度下均具有较高的使用寿命。负载增加测试允许在室温和高温下均能可靠地短时估算耐久性极限。使用基于物理的疲劳寿命计算方法“ PHYBAL”,可以根据在一次载荷增加测试和两次恒定振幅测试中确定的循环变形数据,与常规确定的S-N曲线非常一致,计算镁合金的寿命。

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