首页> 外文会议>Internaional conference on aluminium alloys >Orientation Dependence of the High Cycle Fatigue Properties in a Hot-cross Rolled Al-Li 8090 Alloy Plate
【24h】

Orientation Dependence of the High Cycle Fatigue Properties in a Hot-cross Rolled Al-Li 8090 Alloy Plate

机译:热交叉轧辊8090合金板中高循环疲劳性能的取向依赖性

获取原文

摘要

High cycle fatigue properties were studied in different directions within the rolling plane and in the short transverse direction of a hot-cross rolled Al-Li 8090 alloy plate (45 mm thick). The fatigue tests were conducted at constant stress amplitudes ranging from 30% to 100% of the yield strength σ_y in the rolling direction, R = 0.1, a frequency of 20 Hz, room temperature in air using a self-aligning four-point bend rig. It was found that the fatigue life of a sample loaded in the rolling direction was about ten times longer than that of a sample loaded in the short transverse direction at the same stress amplitude. The fatigue limit for the short transverse samples was measured to be about 30% σ_y, while it was about 40% σ_y for the longitudinal samples. Growth of fatigue cracks in the short transverse samples was predominantly intergranular, whereas it was markedly crystallographic (along a 111 plane in each grain) in the samples cut from the plate center when loading axis was parallel to the rolling plane. The inferior high cycle fatigue property of the short transverse samples is believed to be due to the combination of planar grain boundaries (parallel to {110} plane) being perpendicular to the load axis and the existence of trace elements, Na and K, in the alloy. Within the rolling plane, the fatigue behavior was relatively isotropic in the surface region of the plate, while in the plate center it was significantly inferior in the direction of about 35°relative to the rolling direction. Strong texture (mainly {110}<111> and {110}<112>) in the center of this alloy was the main factor that contributed to the in-plane anisotropy.
机译:高周疲劳性能的影响在不同的方向轧制平面内,并在热交的短横向轧制铝锂合金8090板(45毫米厚)。疲劳试验在恒定应力幅值范围从30%至在轧制方向的屈服强度σ_y的100%,R = 0.1,20Hz的频率,采用自对准四点弯曲钻机在空气中室温下进行。结果发现,在轧制方向加载的样品的疲劳寿命为约10倍以上,在相同的应力振幅的短横向方向加载的样品的长。对于短横向样品的疲劳极限经测定为约30%σ_y,而这是约40%σ_y为纵样品。短横向样品中的疲劳裂纹的增长主要是沿晶的,而它在从该板中心的样品切割为明显的结晶(沿每个晶粒一个111平面)时加载轴平行于与轧制平面。短横向的样品的下高周疲劳性能被认为是由于平面晶粒边界的组合(平行于{110}面)垂直于所述负载轴和微量元素,Na和K,在存在合金。轧制平面内,则疲劳特性是在该板的表面区域相对各向同性的,而在该板中心是在约35°相对于轧制方向的方向显著差。强纹理(主要是{110} <111>和{110} <112>)在该合金的中心是主要因素即促成了面内各向异性。

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