首页> 外文会议>Aerospace Materials and Manufacturing: Emerging Materials, Processes, and Repair Techniques Conference >EVALUATION OF FRACTURE RESISTANCE OF HIGH STRENGTH 7075 AND 7050 ALUMINUM ALLOYS
【24h】

EVALUATION OF FRACTURE RESISTANCE OF HIGH STRENGTH 7075 AND 7050 ALUMINUM ALLOYS

机译:高强度7075和7050铝合金的裂缝电阻评价

获取原文

摘要

In present work, the comparative measurement of aluminum alloys' resistance to the unstable fracture was provided. Besides, the rupture mechanisms of high strength 7075 and 7050 aluminum alloys were investigated. The specimens were used as solution treated, quenched and aged condition. The elastic-plastic behavior of specimens was determined by carrying out tensile test on cylindrical specimens. The small sized specimen with 6.35 mm thickness and V-notched radius less than 60 mu m was used for evaluation of damage properties, in accordance with ASTM B871-96 standard test method. All tear specimens were machined in L-T orientation. The mechanical tests were conducted at RT on an universal Instron machine under cross head speed of 0.1 mm/min. The results of mechanical tests made the evaluation of tear strength to 0.2 percent tensile yield strength ratio, as a measure of notch toughness, available. The comparison of specimens' resistance to crack propagation and unstable fracture due to the presence of crack-like strain concentrator was provided using tear test data. The microstructure of specimens was studied under optical microscopy. The rupture micro-mechanisms were analyzed by examination of specimens fracture surfaces using SEM. The microstructure examination indicated almost equiaxed grains on the transverse directions and elongated grains on rolling direction. Moreover, intermetallic particles were evident at microstructure. Considering the SEM fractographs, it seems that the intermetallic particles act as void nucleation and damage initiation sites. However, the damage mechanism of tensile specimens and severely notched specimens, especially near the notched root differs due to stress and strain states.
机译:在目前的工作中,提供了铝合金对不稳定骨折的抗性的对比测量。此外,研究了高强度7075和7050铝合金的破裂机制。样本用作处理过的溶液,淬火和老化条件。通过在圆柱形样品上进行拉伸试验来确定标本的弹性塑性行为。根据ASTM B871-96标准测试方法,使用厚度为6.35mm厚度和V型缺口半径的小尺寸标本,用于评估损伤性能。所有撕裂标本都以L-T取向加工。机械试验在室温下在通用Instron机器上进行0.1mm / min。机械测试的结果使撕裂强度评价为0.2%的拉伸屈服强度比,作为缺口韧性的量度,可用。使用撕裂试验数据提供了由于存在裂纹状应变浓缩器而导致的样品对裂纹繁殖和不稳定断裂的比较。在光学显微镜下研究了样本的微观结构。通过使用SEM检查样品断裂表面进行分析破裂微机制。微观结构检查在横向上表明了几乎等式的晶粒和滚动方向上的细长晶粒。此外,金属间颗粒在微观结构下是明显的。考虑到SEM特征,似乎金属间颗粒似乎充当核心成核和损伤引发位点。然而,拉伸试样和严重缺口样品的损伤机理,尤其是在缺口根部附近因应力和应变状态而异。

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