首页> 外文会议>Symposium on Advanced Materials and Processes for Gas Turbines >Initial Assessment of the Effects of Non-metallic Inclusions on Fatigue Life of Powder Metallurgy Processed Udimet Alloy 720
【24h】

Initial Assessment of the Effects of Non-metallic Inclusions on Fatigue Life of Powder Metallurgy Processed Udimet Alloy 720

机译:初步评估非金属夹杂物对粉末冶金加工Udimet合金疲劳寿命的影响720

获取原文

摘要

The fatigue lives of modern powder metallurgy (PM) disk alloys are influenced by variabilities in alloy microstructure and mechanical properties. These properties can vary due to the different steps of materials/component processing and machining. One of these variables, the presence of non-metallic inclusions, has been shown to significantly degrade low cycle fatigue (LCF) life (ref 5-8). Non-metallic inclusions are inherent defects in powder alloys that are a by-product of powder processing techniques. Contamination of the powder can occur in the melt, during powder atomization, or during any of the various handling processes through consolidation. In modern nickel disk powder processing facilities, the levels of inclusion contamination have been reduced to less than 1 part per million by weight. Despite the efforts of manufacturers to ensure the cleanliness of their powder production processes, the presence of inclusions remains a source of great concern for the designer. The objective of this study was to investigate the effects on fatigue life of these inclusions. Since natural inclusions occur so infrequently, elevated levels of inclusions were carefully introduced in a nickel-base disk superalloy, Udimet alloy 720, produced using PM processing. Multiple strain-controlled fatigue tests were then performed on this material at 650°C. Analyses were performed to compare the LCF lives and failure initiation sites as functions of inclusion content and fatigue conditions. A large majority of the failures in specimens with introduced inclusions occurred at cracks initiating from inclusions at the specimen surface. The inclusions could reduce fatigue life by up to 100X. These effects were found to be dependent on strain range and strain ratio. Tests at lower strain ranges and higher strain ratios produced larger effects of inclusions on life.
机译:现代粉末冶金(PM)盘合金的疲劳寿命受合金微观结构和机械性能的可变性的影响。由于材料/元件加工和加工的不同步骤,这些性能可以不同。这些变量之一,存在非金属夹杂物的存在,已经显示出显着降低低循环疲劳(LCF)寿命(REF 5-8)。非金属夹杂物是粉末合金中的固有缺陷,其是粉末加工技术的副产物。粉末的污染可以在熔体期间发生在粉末雾化期间,或通过固结过程中的任何各种处理过程中。在现代镍盘加工设施中,含有污染水平已减少到百万分之一的重量百倍。尽管制造商努力确保其粉末生产过程的清洁度,但夹杂物的存在仍然是设计师非常关注的源泉。本研究的目的是探讨这些夹杂物的疲劳寿命的影响。由于天然夹杂物如此不经常出现,因此在使用PM加工生产的镍基盘超合金中仔细地引入了镍基盘超合金,Udimet合金720的升高水平。然后在650℃下对该材料进行多种应变控制的疲劳试验。进行分析以将LCF生命和失效引发位点与包含含量和疲劳条件的函数进行比较。具有引入的夹杂物的标本中的大部分失败发生在样本表面上的夹杂物中发起的裂缝。夹杂物可以将疲劳寿命降低到100倍。发现这些效果依赖于应变范围和应变比。在较低的应变范围和更高的应变比的测试产生了含有含量的较大影响。

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