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Impact of composition on the heat treatment response of additively manufactured 17-4 PH grade stainless steel

机译:成分对增材制造的17-4 PH级不锈钢的热处理响应的影响

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摘要

Precipitation hardened (PH) martensitic grade stainless steels are commonly used in additive manufacturing (AM) processes, but the heat treatment response can vary depending upon the powder feedstock composition. As-built AM 17-4 PH grade stainless steel fabricated using argon and nitrogen atomized feedstocks in separate powder bed fusion systems responded differently to standard heat treatment cycles. Materials fabricated from argon atomized feedstocks, containing low levels of nitrogen (0.01 wt%) and retained austenite ( 1%), responded as expected to standard solutionizing and aging heat treatment cycles. In contrast, materials fabricated from nitrogen atomized feedstocks, containing between 0.06 and 0.12 wt% nitrogen and up to 81% retained austenite, did not display peak aging with standard heat treatments and deviated from the expected overaging response with increasing aging temperatures. At the highest nitrogen and retained austenite levels, peak aging is found to occur at temperatures in excess of 680 degrees C, even though the material still contains retained austenite levels in the 20% range. These unexpected changes in the heat treat response are closely linked to differences in the nitrogen composition of the powder feedstock. Changes in the Ni and Cr equivalent values determined by other primary alloying elements also impact the heat treat response, even though the alloy compositions still fall within standard alloy element composition ranges.
机译:沉淀硬化(PH)马氏体级不锈钢通常用于增材制造(AM)工艺中,但是热处理响应会根据粉末原料的组成而变化。使用氩气和氮气雾化原料在单独的粉末床熔融系统中制造的AM 17-4 PH级建成不锈钢对标准热处理周期的响应不同。由氩气雾化的原料制成的材料,其中含有少量的氮(0.01 wt%)和残留的奥氏体(<1%),对标准固溶和时效热处理周期产生了预期的响应。相比之下,由氮雾化原料制成的材料(其中包含0.06至0.12 wt%的氮和高达81%的残留奥氏体)在标准热处理下未显示出峰值时效,并且随着时效温度的升高而偏离了预期的过时效响应。在最高的氮含量和残余奥氏体含量的情况下,发现峰值时效会在超过680摄氏度的温度下发生,即使该材料仍含有20%范围内的残余奥氏体含量。热处理响应中的这些意想不到的变化与粉末原料中氮成分的差异密切相关。即使合金成分仍落在标准合金元素成分范围内,其他初级合金元素确定的Ni和Cr当量值的变化也会影响热处理响应。

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