【24h】

Cold Gas Dynamic Spraying Integration Complexity

机译:冷气动态喷涂整合复杂性

获取原文
获取外文期刊封面目录资料

摘要

Studies show that aerospace products operate in very aggressive environments characterized by high temperature, high pressure, large stresses on individual components, the presence of oxidizing and corroding atmosphere, as well as internally created or externally ingested particulate materials that induce erosion and impact damage. Consequently, during operation, the materials of individual components degrade. In addition, the impact of maintenance costs for both civil and military aircraft was estimated at least two to three times greater than initial purchase values, and this trend is expected to increase. As a result, for viable product realisation and maintenance, a spectrum of issues regarding novel processing technologies, innovation of new materials, performance, costs, and environmental impact must constantly be addressed. One of these technologies, namely the cold-gas dynamic-spray process has enabled a broad range of coatings and applications, including many that have not been previously possible or commercially practical, hence its potential for new aerospace applications. Therefore, the purpose of this paper is to summarise the state of the art of this technology alongside its theoretical and experimental studies, and explore how the cold-gas dynamic-spray process could be integrated within a framework that finally could lead to more efficient aircraft maintenance. Based on the paper's qualitative findings supported by authorities, evidence, and logic essentially it is argued that the cold-gas dynamic-spray manufacturing process should not be viewed in isolation, but should be viewed as a component of a broad framework that finally leads to more efficient aerospace operations.
机译:研究表明,航空航天产品在非常激进的环境中运行,其特征在于,具有高温,高压,各个组件的大应力,氧化和腐蚀气氛的存在,以及内部创造或外部摄取的颗粒材料,诱导侵蚀和冲击损伤。因此,在操作期间,各个组分的材料降低。此外,估计民事和军用飞机的维护成本对初始购买价值至少估计至少两到三倍,预计这一趋势将增加。因此,对于可行的产品实现和维护,必须不断解决关于新型加工技术,新材料,性能,成本和环境影响的创新的一系列问题。这些技术之一,即冷气动态喷涂工艺使得具有广泛的涂料和应用,包括许多未以前可能或商业实用的涂层和应用,因此它可能对新的航空航天应用的潜力。因此,本文的目的是与理论和实验研究一起总结本技术的技术,并探讨了冷气动态喷涂过程如何集成在最终可能导致更高效的飞机的框架内维护。基于当局,证据和逻辑支持的论文的定性调查结果基本上,应当认为冷气动态喷涂制造过程不应被隔离地观察,但应被视为最终导致的广泛框架的组成部分更高效的航空航天业务。

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