首页> 外文会议>Advances in powder metallurgy particulate materials - 2008 >Selective Net-Shape (SNS) Powder Metallurgy for Complex-Geometry Rocket Engine Components
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Selective Net-Shape (SNS) Powder Metallurgy for Complex-Geometry Rocket Engine Components

机译:复杂几何火箭发动机零件的选择性网状(SNS)粉末冶金

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True net shape consolidation of powder metal (PM) by hot isostatic pressing (HIP) provides opportunities for many cost, performance and life benefits over conventional fabrication processes for large rocket engine structures. Various forms of selectively net-shape PM have been around for thirty years or so. However, it is only recently that major applications have been pursued for rocket engine hardware fabricated in the United States. The method employs sacrificial metallic tooling (HIP capsule and shaped inserts), which is removed from the part after HIP consolidation of the powder, by selective acid dissolution. Full exploitation of net-shape PM requires innovative approaches in both component design and materials and processing details. The benefits include: uniform and homogeneous microstructure with no porosity, irrespective of component shape and size; elimination of welds and the associated quality and life limitations; removal of traditional producibility constraints on design freedom, such as forgeability and machinability, and scale-up to very large, monolithic parts, limited only by the size of existing HIP furnaces. Net-shape PM HIP also enables fabrication of complex configurations providing additional, unique functionalities. The progress made in these areas will be described. Then critical aspects of the technology that still require significant further development and maturation will be discussed from the perspective of an engine systems builder and end-user of the technology.
机译:通过热等静压(HIP)进行粉末金属(PM)的真正净形固结,比大型火箭发动机结构的常规制造工艺提供了许多成本,性能和寿命优势的机会。各种形式的选择性网状粉末冶金已经存在了三十年左右。但是,直到最近,在美国制造的火箭发动机硬件才开始寻求主要应用。该方法采用牺牲性金属工具(HIP胶囊和成型插件),在粉末HIP固结后通过选择性酸溶解将其从零件上去除。充分利用网状粉末冶金需要在组件设计,材料和加工细节上采用创新方法。好处包括:均匀且均匀的微观结构,无孔隙,无论部件的形状和大小如何;消除焊缝以及相关的质量和寿命限制;消除了对设计自由度的传统可生产性限制,例如可锻性和可加工性,以及按比例放大到非常大的整体式零件,仅受现有HIP熔炉尺寸的限制。净形PM HIP还可以制造复杂的配置,从而提供额外的独特功能。将描述在这些领域中取得的进展。然后,将从发动机系统制造商和该技术的最终用户的角度讨论仍需要大量进一步开发和成熟的该技术的关键方面。

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