首页> 外文会议>ASME turbo expo: turbomachinery technical conference and exposition >CHARACTERIZING STATIC AND DYNAMIC MECHANICAL PROPERTIES FOR ADDITIVE MANUFACTURED ULTEM 9085 USED TO CONSTRUCT FLOW CONTROL DEVICES FOR TURBOMACHINERY APPLICATIONS
【24h】

CHARACTERIZING STATIC AND DYNAMIC MECHANICAL PROPERTIES FOR ADDITIVE MANUFACTURED ULTEM 9085 USED TO CONSTRUCT FLOW CONTROL DEVICES FOR TURBOMACHINERY APPLICATIONS

机译:制造用于涡轮机械的流量控制设备的增材制造的Ultem 9085的静态和动态力学性能

获取原文

摘要

Extrusion additive manufacturing technologies may be utilized to fabricate complex geometry devices to control the flow distortions at the inlets of gas turbine engines. However, the success of these devices depends upon their ability to withstand the dynamic mechanical loads experienced in service. One such device is a Stream Vane®. A current candidate material for StreamVane fabrication is ULTEM 9085-a thermoplastic polymer material. ULTEM 9085 was selected as the material of choice for StreamVane production because of its high strength-to-weight ratio. In this study, quasi-static and cyclic fatigue tests were performed on ULTEM 9085 samples fabricated by fused deposition modeling. First, ASTM D638 tensile-tensile material tests were conducted on three different build orientations to verify the mechanical strength of ULTEM 9085 listed by Stratasys. The three different orientations that were tested were Orientation XZZ, Orientation XYZ, and Orientation ZXY with measured ultimate tensile strengths of 69.6 MPa, 56.3 MPa, and 37.6 MPa, respectively. Fatigue properties were investigated utilizing the procedure outlined in ASTM D7791. S-N curves were generated using data collected at stress levels of 80%, 60%, 30% and 20% of the ultimate tensile stress with an R-ratio of 0.1 for the build orientation XZY. Next, the modified Goodman approach was used to estimate the fully reversed (R=-1) fatigue life. The initial data suggested that the modified Goodman approach was very conservative. Therefore, four different stress levels of 25%, 20%, 15% and 10% of ultimate tensile stress were used to characterize the fully reversed fatigue properties. Because of the extreme conservatism of the modified Goodman model for this material, a simple phenomenological model was developed to estimate the fatigue life of ULTEM 9085 subjected to fatigue at different R-ratios. The calculated fatigue life using the model and the data collected for the fully reversed test correlated very well. The data from this investigation demonstrated that StreamVane designs using ULTEM 9085 are more than capable of withstanding the static and dynamic loads in currently planned turbomachinery applications.
机译:挤出增材制造技术可以用于制造复杂的几何形状的装置,以控制燃气涡轮发动机的入口处的流动变形。但是,这些设备的成功取决于它们承受服务中遇到的动态机械负载的能力。一种这样的设备是StreamVane®。用于StreamVane制造的当前候选材料是ULTEM 9085-一种热塑性聚合物材料。由于其高的重量重量比,ULTEM 9085被选作StreamVane生产的首选材料。在这项研究中,对通过熔融沉积建模制造的ULTEM 9085样品进行了准静态和循环疲劳测试。首先,在三种不同的构造方向上进行了ASTM D638拉伸材料测试,以验证Stratasys列出的ULTEM 9085的机械强度。测试的三个不同方向是方向XZZ,方向XYZ和方向ZXY,测得的极限抗拉强度分别为69.6 MPa,56.3 MPa和37.6 MPa。使用ASTM D7791中概述的程序研究了疲劳性能。使用在最终拉伸应力的80%,60%,30%和20%的应力水平下收集的数据生成S-N曲线,对于构造方向XZY,R值为0.1。接下来,使用改进的Goodman方法估计完全反转(R = -1)的疲劳寿命。初始数据表明,改良的Goodman方法非常保守。因此,使用四种不同的应力水平,即极限拉伸应力的25%,20%,15%和10%来表征完全反向的疲劳特性。由于这种材料的改良Goodman模型具有极高的保守性,因此开发了一种简单的现象学模型来估计ULTEM 9085在不同R比率下承受疲劳的疲劳寿命。使用该模型计算出的疲劳寿命与为完全反向测试收集的数据具有很好的相关性。这项调查的数据表明,使用ULTEM 9085进行StreamVane设计的能力远远超过了目前计划中的涡轮机械应用中的静态和动态负载。

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