首页> 外文会议>SAE AeroTech Congress Exhibition >A Fastener Analysis Addressing Various Types of Misfit and Its Damage Life Calculations
【24h】

A Fastener Analysis Addressing Various Types of Misfit and Its Damage Life Calculations

机译:紧固件分析解决了各种类型的错效及其损害寿命计算

获取原文

摘要

In a fastening system when there is a small misalignment of the holes, the holes are enlarged to align the axes and a next size fastener is used to fit the joint. But when the misalignment is large then the enlargement need to be proportionally large. In this case a bushing is press fit onto the hole to handle the fastening. If we press fit a bushing, it generates residual stresses in the panel. These residual stresses reduce the damage life of the components on which the bushings were press fit. In the aircraft engine nacelle components the damage life is very critical in various failure conditions such as fan blade out condition, wind milling and bird strike. It increases the flight time in these events. Here four different case studies were considered to study the damage life of the aircraft components made of Aluminum or composite material. Case-study 1 (Aluminum panel and full ring bushing): A knock down factor to the damage life for the component material (Aluminum - in this case) is tabulated in this paper to account for the pre stresses added to the nacelle components due to the press fit of the bushing, which is added due to the misalignment of the holes. Case-study II (Aluminum panel and split ring bushing): An attempt is made to reduce the residual stresses on the Aluminum panel containing the fastening system for the non critical components. Here a split ring is used to press fit into the enlarged hole [1] in place of the bushing used in the Case-study I. The split ring reduces the tolerance requirements and decreases the manufacturing cost & time. This also reduces the stress on the panel and contains the fastening system. Case-study III (Composite panel and full ring): In this case- study the bushing is press fit into composite sandwich panel instead of the Aluminum panel that is used in previous Case-studies for a treatment on the misalignment. The residual stresses developed are used to recalculate the damage life of the composite panel. Also a knock down factor chart is developed for the fiber with +45. -45, 0 and 90 degree ply orientations. Case-study IV (Composite panel and split ring): In this case-study the split ring is used instead of full ring bushing on to the composite panel. These studies can be used to modify the damage number for the given material of any part subjected to a peak pre stresses between 4 to 12 Ksi. By computing the modified damage number, the RUL (Rest of Useful life) number can be computed. This helps in accessing the health of the part as well as can decide in reusing a part in non critical system as a carry over part. The split ring bushing is studied only to be used in the non-critical parts or in other systems such as automotive or consumer industrial components. For the critical aircraft components the added residual stresses will necessitate to compute the modified margin of safety as well as the modified damage life for the part.
机译:在紧固系统中,当存在孔的小错位时,孔被扩大以对准轴并且使用下一个尺寸紧固件来配合接头。但是当未对准很大时,扩大需要比例大。在这种情况下,衬套压配合到孔上以处理紧固。如果我们按搭配衬套,它会在面板中产生残余应力。这些残留应力减少了衬套压力件的部件的损伤寿命。在飞机发动机机舱组件中,损伤寿命在风扇刀片出现条件下的各种故障条件下非常重要,风铣和鸟击。它增加了这些事件中的飞行时间。这里考虑了四种不同的案例研究研究了由铝或复合材料制成的飞机部件的损伤寿命。案例研究1(铝板和全环衬套):在本文中制定了组件材料(铝 - 在这种情况下的损伤寿命的因子,以解释由于由于造成的预应力添加到机舱组分中由于孔的未对准而添加的衬套的压配合。案例研究II(铝板和分开环衬套):尝试减少包含用于非关键部件的紧固系统的铝板上的残余应力。这里使用分流环将配合压入放大孔[1]代替壳体研究I中使用的衬套。分流环降低了公差要求并降低了制造成本和时间。这也降低了面板上的应力并包含紧固系统。案例研究III(复合板和全环):在本例中,研究衬套压配成复合夹层板,而不是在先前的病例研究中用于治疗的铝面板。开发的残余应力用于重新计算复合板的损伤寿命。此外,爆震因子图是为具有+45的纤维开发的。 -45,0和90度帘布层方向。案例研究IV(复合板和分体环):在这种情况下,研究分流环代替复合面板上的全环衬套。这些研究可用于修饰对在4至12ksi之间的峰的任何部分的给定材料的损伤数。通过计算修改后的损伤号,可以计算RUL(有用的剩余生命)数。这有助于访问零件的健康以及可以决定将非关键系统中的部分重用为携带部分。研究了分流环衬套,仅用于非关键部件或其他系统,例如汽车或消费工业部件。对于关键的飞机组分,添加的残余应力将需要计算安全的改进的安全余量以及部分的改进的损伤寿命。

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