...
首页> 外文期刊>Rapid prototyping journal >Development of nickel-titanium graded composition components
【24h】

Development of nickel-titanium graded composition components

机译:镍钛梯度成分成分的开发

获取原文
获取原文并翻译 | 示例
           

摘要

Purpose - Three layer-additive manufacturing methods were evaluated to producing nickel-titanium graded composition material. One potential application is fabrication of attachment clips that join thermal protection systems to launch vehicle structure. Thermal gradients during flight generate excessive bending and shear loads that limit the service lifetime of the Inconel clips currently used. It is envisioned that a graded composition component could be tailored to reduce the stress concentrations. Design/methodology/approach - Deposits with nearly continuous composition grade were built from Ti-6-4 and Inconel 718 powder using laser direct metal deposition. Layered deposits were produced by flat wire welding from Ti-6-4 and Inconel 718 wire. Ultrasonic consolidation was used to produce layered deposits from pure nickel and commercially pure titanium foils. Microstructure, bond line morphology, chemical composition, and reaction phases were characterized. Findings - All three manufacturing methods require further development before graded composition material can be reliably produced. Laser direct metal deposition samples exhibited coarse dendritic microstructures and significant elemental segregation. Chemistries varied from calculated targets by up to 20 percent and macroscopic cracking occurred for chemistries greater than 60 percent Inconel 718. Flat wire welded deposits exhibited good mixing between the wire layers, however brittle cracking occurred adjacent to a 5μm thick reaction layer. Ultrasonically-consolidated samples demonstrated metallurgical bonding between pure Ni and commercially pure (CP) Ti foils, with material reaction limited to a 1μm layer. Originality/value - Producing nickel-titanium graded composition materials had not been attempted by the selected manufacturing methods. A refined experimental program is needed to resolve the remaining technical issues.
机译:目的-评估了三种添加层的制造方法,以生产镍钛梯度成分材料。一种潜在的应用是制造连接热保护系统以发射飞行器结构的固定夹。飞行过程中的热梯度会产生过度的弯曲和剪切载荷,从而限制了当前使用的Inconel卡箍的使用寿命。可以预见的是,可以定制渐变的组成成分以减少应力集中。设计/方法/方法-使用激光直接金属沉积法,由Ti-6-4和Inconel 718粉末构建几乎连续的组成等级的沉积物。通过Ti-6-4和Inconel 718焊丝的扁平焊丝产生分层的沉积物。超声波固结用于从纯镍箔和商业纯钛箔生产层状沉积物。表征了微观结构,键合线形态,化学组成和反应相。调查结果-在可靠地生产分级成分材料之前,所有三种制造方法都需要进一步开发。激光直接金属沉积样品表现出粗大的树枝状微观结构和明显的元素偏析。化学成分与计算目标之间的差异最大为20%,Inconel 718大于60%的化学成分发生宏观开裂。扁平丝焊接熔敷层之间存在良好的混合,但是在5μm厚的反应层附近发生脆性开裂。超声固结的样品证明了纯Ni和商业纯(CP)Ti箔之间的冶金结合,材料反应限于1μm的层。原创性/价值-所选制造方法尚未尝试生产镍-钛分级成分材料。需要完善的实验程序来解决其余的技术问题。

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