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Solidification Cracking of Alloy Allvac 718Plus and Alloy 718 at Transvarestraint Testing

机译:合金Allvac 718Plus和合金718在横向测试中的凝固裂化

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Allvac 718Plus is a newly developed superalloy with a good potential for use in fabricated aircraft engine structures when service temperatures exceed 650°C; the limit for standard alloy 718. Fabrication involves welding, where cracking usually is a prohibitive factor. Comparison of the solidification cracking behavior between these two alloys was made by Transvarestraint testing. It was shown that the total amount of cracking was significantly lower for 718Plus alloy, which was associated with a lower amount of γ/Laves or γ/NbC eutectic-type constituents. This in turn is believed to be due to the lower iron content of the Allvac 718Plus material. The analysis of alloying element segregation both within primary dendrite and interdendritic constituents clearly indicates that the segregation of Nb is the controlling factor in determining the final solidification microstructure in these alloys. The Nb concentrations of these constituents are significantly higher compared to the bulk alloy concentration. This was confirmed by the SEM-EDS analysis and calculations assessed with JMatPro, the latter also indicated that alloy 718 is more prone to form Laves and NbC eutectic-type constituents compared to Allvac 718Plus material.
机译:AllVac 718Plus是一种新开发的高级合金,当服务温度超过650°C时,在制造的飞机发动机结构中使用良好的潜力;标准合金718的极限。制造涉及焊接,其中裂缝通常是令人满意的因子。通过横向测试进行这两种合金之间的凝固裂化行为的比较。结果表明,718Plus合金的裂化总量显着降低,其与较低量的γ/ Laves或γ/ Nbc共晶类成分相关。这反过来据信是由于ALLVAC 718plus材料的较低的铁含量。在原发性树突和宁氏霉菌组分内的合金元素偏析的分析清楚地表明Nb的偏析是确定这些合金中最终凝固微观结构的控制因子。与本体合金浓度相比,这些成分的Nb浓度显着提高。通过JMATPRO评估的SEM-EDS分析和计算证实了这一点,后者还表明,与ALLVAC 718PLUS材料相比,合金718更容易发生熔融和NBC共晶类成分。

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