首页> 外文期刊>International Journal of Fatigue >Porosity and the fatigue behavior of hypoeutectic and hypereutectic aluminum-silicon casting alloys
【24h】

Porosity and the fatigue behavior of hypoeutectic and hypereutectic aluminum-silicon casting alloys

机译:亚共晶和过共晶铝硅铸造合金的孔隙率和疲劳行为

获取原文
获取原文并翻译 | 示例
           

摘要

The fatigue behavior of five Al-Si casting alloys under the influence of microstructural heterogeneities was investigated for the present study. The silicon content of these alloys ranged from 7 to 17%, and includes hypoeutectic LP PM319-F, A356-T6 and C354-T6 alloys and hypereutectic AE425 and PM390 alloys, as used extensively in automotive applications. Compression-tension fatigue tests were carried out applying a stress ratio of R = -1, and a sinusoidal waveform, under high cycle (>10~4) fatigue conditions at room temperature (25 ℃) for the hypoeutectic alloys and at a high temperature (300℃) for the hypereutectic alloys. The fracture surfaces of the specimens tested were examined using a scanning electron microscope (SEM) to determine the fatigue crack initiation sites. Quantitative measurements of the defect characteristics associated with the fatigue crack initiation site were carried out using an image analyzer system. A correlation was made between the sample fatigue life and the size of the microstructural defect which initiated the fatigue crack. Porosity was observed to have the greatest propensity for acting as a crack initiation site in these casting alloys. It is, thus, mainly responsible for decreasing the fatigue life of these castings, since 90% of all samples examined tended to fracture as a result of this microstructural defect. As regards the casting alloys examined, it was observed that the fatigue strength decreases as the size of the pore increases, and vice versa. The influence of microstructural characteristics on the fatigue performance of these alloys and the fatigue behavior of defect-free castings, as opposed to that of castings with defects, were presented elsewhere.
机译:本研究研究了五种Al-Si铸造合金在微观结构异质性影响下的疲劳行为。这些合金的硅含量范围为7%至17%,包括亚共晶LP PM319-F,A356-T6和C354-T6合金以及过共晶AE425和PM390合金,广泛用于汽车应用中。在室温(25℃)和高温下,在高循环(> 10〜4)疲劳条件下,采用应力比R = -1和正弦波形进行压缩疲劳试验(300℃)用于过共晶合金。使用扫描电子显微镜(SEM)检查测试样品的断裂表面,以确定疲劳裂纹的起始位置。使用图像分析仪系统对与疲劳裂纹萌生部位相关的缺陷特征进行了定量测量。在样品的疲劳寿命和引发疲劳裂纹的微观结构缺陷的尺寸之间建立了相关性。观察到孔隙率在这些铸造合金中最有可能充当裂纹萌生点。因此,这主要是由于降低了这些铸件的疲劳寿命,因为所有检测到的样品中有90%由于这种微结构缺陷而趋于断裂。关于所检验的铸造合金,观察到疲劳强度随着孔尺寸的增加而降低,反之亦然。与有缺陷的铸件相比,微结构特征对这些合金的疲劳性能和无缺陷铸件的疲劳行为的影响已在其他地方提出。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号