研究了钇改性对ЖС6У-ВІ合金回炉铸件组织和性能的影响

D. Tоmkin, V. Klochikhin, S. Danylov, О. Pedash, О. Naymyk, V. Naymyk
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引用次数: 0

摘要

目的。研究添加剂对镍钇结扎物的改性对ЖС6У-ВІ合金组织和物理力学性能的影响,该合金采用自己的工艺回炉在炉料中熔炼。研究方法。在УППФ-3М底座坩埚上,采用高温熔体工艺对ЖС6У-ВІ合金的标准工艺坯进行了试验熔化。采用陶瓷模具等轴结晶法,将获得的钢锭浇铸成用于力学试验和应力-断裂强度测定的实验样品,切割成测量的批坯,并在抛丸鼓中进行清理。浇注一个陶瓷模具时,1540℃温度下的金属熔体用ІтН1品牌的镍钇结扎剂(晶粒尺寸为2…在坩埚中保温时间为1分钟15秒,量为装料质量的0.136%。1分钟。第二块浇筑,不加修改。在正常的环境温度下,在熔化现场对浇注砌块进行冷却。样品按照ОСТ 1 90126-85进行热处理:加热至1210±10℃,保温4小时,在空气中冷却。用计算和分析的方法对实验合金的化学成分平衡进行了评价。测定了实验变异体合金的化学成分。研究了合金的室温显微组织和力学性能。在975℃下进行230 MPa载荷下的应力断裂强度试验。结果。进行了装料的实验熔化,其中完全包括我们自己的技术回收ЖС6У-ВІ合金,使用高温处理熔体和镍钇结扎改性。研究了实验合金的化学成分、显微组织、室温力学性能和耐热性指标。提出了一种根据合金元素群总含量测定现代高温合金化学成分平衡度的方法。科学的新奇。根据所提出的确定合金化学成分平衡程度的方法进行的计算表明,对于实验变异体,可能沿着晶界形成相分离。微观结构的研究证实了在ЖС6У-ВІ合金样品中沿增厚的晶界以“白色”边界的形式分离γ-γ′共晶相。根据实验熔体的金属合金化体系平衡计算,不仅晶界变厚,γ-γ′共晶相分离,而且力学性能和应力-断裂强度下降。在重熔过程中应用0.136%的镍钇结扎剂对ЖС6У-ВІ合金回炉熔体进行高温处理,保证了晶界的形成,没有明显的排放物(污染)。结果表明,在镍钇系结改性的实验熔炼金属中,碳化物具有球状和片层的形态。γ-γ′共晶相没有分离。采用高温处理条件还原ЖС6У-ВІ合金熔体的实验熔体,无论有无镍钇系结改性,其金属力学性能和应力-断裂强度均满足OST 1 90126-85的要求,但同时也低于充能还原铸造的合金的性能。实用价值。提出了一种根据某些合金元素群的总含量来确定现代耐热合金化学成分平衡度的计算和分析方法。结果表明,添加剂对镍钇结合力的改性,显著改善了ЖС6У-ВІ合金工艺回收所得铸件的显微组织,为铸件材料质量的全面提高创造了条件。研究表明,在镍基高温合金中使用0.136%的镍钇结合力可以清洁晶界,改变非金属夹杂物的形态,抵消共晶夹杂物的偏析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THEINFLUENCE OF MODIFICATION WITH YTTRIUM ON THE STRUCTURE AND PROPERTIES OF CASTINGS OBTAINED FROM THE ЖС6У-ВІ ALLOY RETURN
Purpose. To study the effect of modification of nickel-yttrium ligature with additives on the structure and physical and mechanical properties of ЖС6У-ВІ alloy, smelted using its own technological return in the charge. Research methods. On the УППФ-3М installation with the base crucible, experimental melting of standart technological return of the ЖС6У-ВІ alloy was carried out using high-temperature melt processing. Experimental samples for mechanical tests and determination of stress-rupture strength were cast from the obtained ingots, cut into measured batch blanks and cleaned in a shot blasting drum, using the method of equiaxial crystallization in ceramic molds. When pouring one ceramic mold, the metal melt at a temperature of 1540 °C was modified with a nickel-yttrium ligature of the ІтН1 brand (grain size 2...5 mm) in the amount of 0.136 % of the mass of the charge in a crucible with a holding time of 1 min 15 s ... 1 min. The second block was poured without modification. Cooling of the poured blocks was carried out at the melting site at normal ambient temperature. The samples underwent heat treatment according to ОСТ 1 90126-85: heating to a temperature of 1210 ± 10 °C, holding for 4 hours, cooling in air. The balance of the chemical composition of the experimental alloys was evaluated by the computational and analytical method. The chemical composition of the alloy of experimental variants was determined. The microstructure and mechanical properties at room temperature were studied. Stress-rupture strength tests were performed at 975 °C under a load of 230 MPa. Results. Experimental melting of the charge was carried out, which consisted exclusively of our own technological return of the ЖС6У-ВІ alloy with the use of high-temperature processing of the melt and modification with a nickel-yttrium ligature. The chemical composition, microstructure of the experimental alloy, its mechanical properties at room temperature, and heat resistance indicators were studied. A method of determining the degree of balance of the chemical composition of modern superalloys based on the total content of groups of alloying elements is proposed. Scientific novelty. Calculations carried out in accordance with the proposed method of determining the degree of balance of the chemical composition of the alloy show that for the experimental variants, phase separations may form along the grain boundaries. Studies of the microstructure confirmed the separation of the γ-γ' eutectic phase in the form of a “white” border along the thickened grain boundaries in the metal of the ЖС6У-ВІ alloy sample. According to the calculations of the metal alloying system balance for experimental melts, not only the thickening of the grain boundaries and the separation of the γ-γ' eutectic phase, but also a decrease in mechanical properties and stress-rupture strength can be observed. The application of modification with nickel-yttrium ligature in the amount of 0.136 % in the remelting process with the use of high-temperature processing of the ЖС6У-ВІ alloy return melt allows to ensure the formation of grain boundaries without visible discharges (pollution). It was established that in the metal of the experimental melting with the application of modification with nickel-yttrium ligature, carbides have globular and lamellar morphology. There is no separation of the γ-γ' eutectic phase. The mechanical properties and stress-rupture strength of the metal of the experimental melts with the use of high-temperature processing of the melt of the conditioned return of the ЖС6У-ВІ alloy, both with and without modification by nickel-yttrium ligature, meet the requirements of OST 1 90126-85, but at the same time, they are lower than the properties of the alloy cast with charge refreshment. Practical value. A computational and analytical method of determining the degree of balance of the chemical composition of modern heat-resistant alloys based on the total content of certain groups of alloying elements is proposed. It was established that the modification of nickel-yttrium ligature with additives significantly improves the microstructure of castings obtained from the technological return of the ЖС6У-ВІ alloy and creates conditions for a general improvement in the quality of the material of the responsible castings. The conducted studies show that the use of 0.136 % nickel-yttrium ligature allows to clean grain boundaries, change the morphology of non-metallic inclusions and counteract the segregation of eutectic inclusions in nickel-based superalloys alloys.
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