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Hot Isostatic Pressing of Hardfacing and Stainless Steel Powders for PWR Components- Materials Manufacturing Benefits

机译:PWR部件的热等静压堆焊和不锈钢粉末的压制-材料和制造优势

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Hot Isostatic Pressing (HIP) has been used for many years to consolidate porosity in cast metal shapes to improve mechanical properties. When applied to fine metal powders, it is possible to produce Near Net Shape (NNS) items and more complex geometry components that are fully dense and offer an attractive set of properties at reduced cost.NNS items from powder deliver cost savings by reducing initial material usage and subsequent machining costs. Powder production and HIP processing are automated methods, which provide protection against forging route obsolescence. Setup costs are lower and batch sizes smaller, particularly well suited to small numbers of high integrity components.HIPped powder microstructures are isotropic and equiaxed, with uniformly fine grain sizes not normally achieved in heavy section components, which facilitates ultrasonic NDE examination. Improved features to facilitate NDE are readily incorporated into the HIP assembly. Inclusion contents are lower and of more benign geometry, easing fracture assessment.Use of the technology has grown, particularly in the off-shore oil industry where it is already established in high integrity applications, particularly in place of welded joints. Take-up in the more conservative nuclear industry has been slow. The quality of HIPped powder items can provide through life cost savings since there is greater assurance of structural integrity compared to welded or wrought components.This paper presents a materials perspective on the way in which Rolls-Royce has gained experience with HIPped powders since the 1990s, initially with hardfacing materials to minimise welding defects and provide a robust manufacturing route. Building on this database, we have now established that HIPped powder 316L/304L components, in items up to several tons in weight, have equivalent or slightly better strength, toughness and corrosion resistance to their forged or cast counterparts. This data is now part of a submission to ASME for inclusion in the Pressure Vessel Code.Rolls-Royce now has a robust methodology in place to develop safety cases and is extending the number of applications in pressure boundary components on current and future classes of equipment. A strength-in-depth argument has been endorsed by external approval organisations and is supporting current submarine build programmes. Other applications in the growing civil nuclear market are now under consideration.
机译:热等静压(HIP)已被使用多年来巩固铸件金属中的孔隙率,以改善机械性能。当应用于细金属粉末时,可以生产近净形(NNS)的零件和更复杂的几何形状的零件,这些零件完全致密并以降低的成本提供有吸引力的性能。粉末中的NNS零件可通过减少初始材料来节省成本使用量和后续加工成本。粉末生产和HIP加工是自动化的方法,可以防止锻造路线过时。设置成本较低,批量较小,特别适合于少量的高完整性组件。HIP粉末粉末具有各向同性和等轴性,在重截面组件中通常无法实现均匀的细小晶粒尺寸,这有利于超声NDE检查。方便NDE的改进功能很容易合并到HIP组件中。夹杂物含量较低,几何形状更佳,易于进行断裂评估。该技术的使用在不断增长,特别是在已经在高完整性应用中建立的海上石油工业中,尤其是在焊接接头的应用中。较为保守的核工业的吸收缓慢。 HIPped粉末产品的质量可通过节省生命成本来提供,因为与焊接或锻造部件相比,结构完整性得到了更大的保证。本文介绍了自1990年代以来劳斯莱斯在HIPped粉末上获得经验的方式的材料观点。最初使用表面堆焊材料来最大程度地减少焊接缺陷并提供可靠的制造路线。在此数据库的基础上,我们现在已经确定,重达几吨的HIPped 316L / 304L粉末部件的强度,韧性和耐蚀性与锻造或铸造同类产品相当或稍好。这些数据现在是提交给ASME并纳入压力容器规范的一部分.Rolls-Royce现在拥有开发安全案例的可靠方法,并且正在扩展当前和未来设备类别的压力边界组件的应用数量。深入的论点已得到外部批准组织的认可,并且正在支持当前的潜艇建造计划。现在正在考虑在不断发展的民用核市场中的其他应用。

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