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Exploring miniaturized HVOF systems for the deposition and near net shape forming of Ti-6Al-4V

机译:探索用于Ti-6Al-4V沉积和近净成形的小型HVOF系统

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摘要

The exceptional properties of Ti-6Al-4V of high strength, lightweight, corrosion resistance and machinability make it one of the most widely used alloys in the aerospace industry. Significant efforts are underway to establish powder bed additive manufacturing (AM) technologies for Ti-6Al-4V. There are also increasing attempts to use thermal and cold spray to build near net shape parts with buildup rates orders of magnitude higher than powder bed. Thermal spraying, such as HVOF, can oxidize and degrade the alloy due to the high processing temperature. Lowering the flame temperature through inert gas addition in full-size HVOF systems is a possible approach to retain solid state deposition of the feedstock particles, thereby limiting oxidation and detrimental α-case formation, while providing sufficient heat input for particle softening and plastic deformation at impact. Novel miniaturized HVOF systems, with spray jets of only a few millimetre in width, may further offer the possibility to improve the spatial resolution of the buildup for near net shape forming. The process parameter range for solid state deposition of Ti-6Al-4V, using the liquid fuelled TAFA Model 825 JPid and the novel hydrogen fuelled Spraywerx ID-NOVA MK-6 with the addition of nitrogen will be discussed. Build-ups at over 80 deposition efficiency generally yield as-sprayed porosities below 3 and hardness above 200 HV_(100gf). Attainable microstructures and oxygen content as a function of spray parameters are delineated. Recrystallization and beta annealing of selected samples lowered the residual porosity and created equiaxed α and intergranular β-phases. Ultimate tensile strengths of up to 1100 MPa were attained, however, at limited elongation.
机译:Ti-6Al-4V具有高强度、轻质、耐腐蚀和可加工性的卓越性能,使其成为航空航天工业中使用最广泛的合金之一。目前正在为Ti-6Al-4V建立粉末床增材制造(AM)技术。越来越多的尝试使用热喷涂和冷喷涂来制造近净形状的零件,其堆积率比粉末床高出几个数量级。热喷涂,如HVOF,由于加工温度高,会氧化和降解合金。在全尺寸HVOF系统中,通过添加惰性气体来降低火焰温度是保持原料颗粒固态沉积的一种可能方法,从而限制氧化和有害的α壳形成,同时为颗粒软化和冲击时的塑性变形提供足够的热量输入。新型小型化HVOF系统,其喷射射流宽度仅为几毫米,可以进一步提高堆积物的空间分辨率,从而形成近净形。将讨论使用液体燃料 TAFA 825 型 JPid 和添加氮气的新型氢燃料 Spraywerx ID-NOVA MK-6 固态沉积 Ti-6Al-4V 的工艺参数范围。沉积效率超过80%的堆积物通常产生低于3%的喷涂孔隙率和高于200 HV_(100gf)的硬度。描述了可达到的微观结构和氧含量与喷雾参数的函数关系。对选定的样品进行重结晶和 β 退火可降低残余孔隙率,并产生等轴α和晶间β相。然而,在有限的伸长率下,极限抗拉强度高达1100 MPa。

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