Creating of aviation part «Swirler» from Inconel 718 heat-resistant alloy by the technology of selective laser sintering

O. Vodennikova, M. O. Koval, S. Vodennikov
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Abstract

In order to solve the problems of improving the reliability and efficiency of aircraft engines, the paper considers as an alternative to traditional methods of obtaining aviation parts using additive production. According to the three-dimensional digital model (CAD/CAM/CAE-systems), additive technologies allow creating complex structures with high mechanical and operational characteristics. They must be complied with the standard ASTM F2792.1549323-1. The process of additive production is characterized by a sequence of operations: construction of a digital 3D–model → the choice of additive technology and its implementation → obtaining the finished part. In the work it is proposed to consider the possibility of growing the aircraft part «Swirler» from heat-resistant nickel alloy Inconel 718 by selective laser sintering technology in a 3D–printer type EOS M400 under the conditions of JSC «Motor Sich». Spherical nickel-based powders from Sino-Euro Materials Technologies of Xi'an Co., Ltd. were used as starting powder materials. (Sino Euro, China) and LPW Technology, Ltd (LPW, UK). The dependence of the mechanical and heat-resistant properties of the Inconel 718 alloy on the direction of growth of the part (in particular, the horizontal direction XY and the vertical direction Z) was established experimentally. Metallographic studies of Inconel 718 alloy samples before and after the heat treatment process were performed. With the help of Unigraphics NX 7.5, the modeling of an aircraft part was performed, which begins with the construction of a sketch, design of a digital 3D–model of the part and its editing. It is shown that the cultivation of the aviation part «Swirler» by the technology of selective laser sintering is characterized by: a smaller number of technological operations for the manufacture of «complex» in the geometric configuration of the part; reducing up to 6 times the lack of finished parts; reduction of material costs for equipment and additional machining; reduction to 12–17 % of the weight of the part in comparison with its metal analogue obtained by machining. Keywords: additive technologies, selective laser sintering, Inconel 718, 3D–model, aviation part.
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用铬镍铁合金718耐热合金通过选择性激光烧结技术制造航空零件“涡流器”
为了解决提高航空发动机可靠性和效率的问题,本文考虑采用增材生产来替代传统的航空零部件生产方法。根据三维数字模型(CAD/CAM/CAE-系统),附加技术允许创建具有高机械和操作特性的复杂结构。它们必须符合标准ASTM F2792.1549323-1。添加剂生产过程的特点是一系列操作:构建数字3D模型→ 添加剂技术的选择及其实现→ 获得完成的部件。在这项工作中,建议考虑在JSC“Motor Sich”的条件下,在3D打印机型EOS M400中,通过选择性激光烧结技术,从耐热镍合金Inconel 718中生长飞机零件“Swiller”的可能性。以西安有限公司中欧材料科技有限公司球形镍基粉末为起始原料。(中欧,中国)和LPW技术有限公司(LPW,英国)。通过实验建立了Inconel 718合金的机械和耐热性能对零件生长方向(特别是水平方向XY和垂直方向Z)的依赖性。对铬镍铁合金718合金试样在热处理前后进行了金相研究。在Unigraphics NX 7.5的帮助下,对飞机零件进行了建模,首先是草图的构建、零件数字3D模型的设计及其编辑。研究表明,通过选择性激光烧结技术培育航空零件“涡流器”的特点是:在零件的几何构型中,制造“复杂”的技术操作次数较少;减少了多达6倍的成品零件短缺;降低设备和额外机加工的材料成本;与通过机械加工获得的金属类似物相比,减少到零件重量的12-17%。关键词:添加剂技术,选择性激光烧结,铬镍铁合金718,三维模型,航空零件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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8 weeks
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