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Effect of PWHT on the dissolution of δ-ferrite in the welded joint of 12Cr–1Mo steels for steam turbines

机译:PWHT对蒸汽涡轮机12Cr-1Mo钢焊接接头溶液溶解的影响

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In this research work, the optimal parameters of post welding heat treatment (PWHT) for 12Cr–1Mo Steel in the welding condition are determined. The PWHT aims to decrease δ-ferrite percentage in the interface of the heat-affected zone (HAZ) and partially melted zone (PMZ). The parameters of post welding heat treatment (time, temperature, and cooling media) are determined through statistical analysis of a full factorial design. These considered δ-ferrite percentage in the HAZ-PMZ interface as the response variable, as well as microhardness in the critical welding regions. Subsequently, a predictive equation of δ-ferrite percentage in the HAZ-PMZ interface was obtained after the post welding heat treatment using non-linear regression coefficients given by full factorial design. The interaction between time and cooling media was essential to improve the PWHT. Also, a high temperature in the PWHT produced a total decrease of δ-ferrite. These mechanisms were associated with the dissolution of forming elements of the primary δ -ferrite, such as Cr and Mo. The PWHT optimal parameters to eliminate δ-ferrite were the temperature of 860?°C with the following combinations of treatment time and cooling media: 1?h-air and 2?h-oil.
机译:在该研究工作中,确定了焊接条件下12Cr-1Mo钢的焊接热处理(PWHT)的最佳参数。 PWHT旨在降低热影响区域(HAZ)和部分熔化区(PMZ)的界面中的δ-铁氧体百分比。通过完整的因子设计的统计分析确定焊接后热处理(时间,温度和冷却介质)的参数。这些被认为是HAZ-PMZ接口中的Δ-铁氧体百分比作为响应变量,以及关键焊接区域中的微硬度。随后,在使用完整阶乘设计给出的非线性回归系数后,获得了HAZ-PMZ接口中Δ-铁氧体百分比的预测方程。时间和冷却介质之间的相互作用对于改善PWHT至关重要。而且,PWHT中的高温产生了δ-铁素体的总减少。这些机制与初级δ- - 异位的形成元素的溶解有关,例如Cr和Mo。消除δ-铁氧体的PWHT最佳参数是860Ω°C的温度,具有以下处理时间和冷却介质的组合:1?H-AIR和2?H-油。

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