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High temperature-creep resistant magnesium alloys: Advances in thixomolding automotive components

机译:高温蠕变耐镁合金:Zixomolding汽车部件的进步

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Applications of magnesium-based alloys to transmission and underhood automotive components have been limited by creep and bolt-load relaxation. A further concern is the relative expense of Mg alloys, such as AE42, that contain rare earth elements. These alloys still fall short of the performance of 380 Al. A new family of low-cost Mg alloys (ZAC) containing Zn, Al, and Ca has been developed and reported to approach AE42 and to outperform 380 Al; however, it exhibits castability concerns in die casting. This study was designed to evaluate the performance of semi-solid injection- molded (Thixomolded*) ZAC8506 bolt-load retention samples at temperatures up to 175°C. The Thixomolding process has been reported to markedly improve the creep resistance of AZ91D as the volume fraction of solids is increased. The processing conditions were selected to produce bolt-load retention samples having solid fractions of 6% to 37% primary alpha. The bolt-load retention properties were then studied as a function of time at a torque level of 28 kN and at 150 and 175°C for periods of 100 h. The study also included both Thixomolded and die cast AZ91D bolt-load retention samples for direct comparison, and corroboration of the test methodology for bolt-load retention. Elevated temperature measurements of both tensile and compressive properties were also carried out on the ZAC8506 alloy. The moldability of ZAC was evaluated using a relatively complex Delphi automotive electronics housing.
机译:镁基合金对变速器和底层汽车成分的应用受到蠕变和螺栓载荷松弛的限制。进一步关注的是含有稀土元素的Mg合金(例如AE42)的相对费用。这些合金仍然缺乏380 al的性能。已经开发出并据报道含有Zn,Al和Ca的新的低成本Mg合金(zac)的新系列,以接近AE42并以380 al;然而,它表现出压铸中的可抵抗力问题。本研究旨在评估半固体注塑(Zixomolded *)Zac8506螺栓载荷保留样品的性能,在高达175℃的温度下。据报道,随着固体的体积分数增加,据报道,据报道,以显着提高AZ91D的蠕变电阻。选择加工条件以产生具有6%至37%伯α的固体级分的螺栓载荷保持样品。然后在扭矩水平为28kN和150和175℃的时间内进行螺栓载荷保持性能,以100小时的时间。该研究还包括Zixomolded和Die铸造AZ91D螺栓载荷保留样品,用于直接比较,并证实螺栓载荷保留的试验方法。在ZAC8506合金上也进行拉伸和压缩性能的升高测量。使用相对复杂的Delphi汽车电子壳评估Zac的可模塑性。

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