INCREASING THE MECHANICAL PROPERTIES OF LOW-CARBON LOW-ALLOY STEELS BY NORMALIZING AND QUENCHING WITH A STANDBY IN THE INTERCRITICAL INTERVAL OF TEMPERATURES

L. Malinov, V. Malinov, D. Burova
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Abstract

Purpose. The possibility of increasing the mechanical properties of the investigated structural steels by using technologies including holding in ICIT, as well as heating to a typical temperature of austenitization before or after holding in ICIT is shown. Methods of research. Durometric, metallographic and X-ray research methods were used. The tensile properties and impact strength were determined. These properties were compared with those obtained for the studied steels after a typical heat treatment. Results. It is shown that the technologies of normalization and quenching with holding in ICIT, as well as heating before or after it to a typical austenitizing temperature increasing of the mechanical properties of the studied steels in comparison with theirs level after a typical heat treatment. Scientific novelty. Innovative technologies of normalization and quenching, which includs holding in ICIT, as well as heating before or after it to a typical austenitizing temperature, were used and showed their effectiveness. Practical value. The technologies of normalization and quenching, which includs holding in ICIT, as well as heating before or after it to the typical temperature of austenitization are proposed for practical application
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通过正火和临界温度间隔待机淬火来提高低碳低合金钢的力学性能
目的。研究表明,通过使用包括高温保温在内的技术,以及在高温保温之前或之后加热到典型的奥氏体化温度,可以提高所研究结构钢的机械性能。研究方法。采用了硬度学、金相学和x射线研究方法。测定了材料的拉伸性能和冲击强度。这些性能与经典型热处理后的钢的性能进行了比较。结果。结果表明,正火淬火和保温淬火以及前后加热至典型奥氏体化温度的工艺,使所研究钢的力学性能比典型热处理后的水平有所提高。科学的新奇。采用了正火和淬火的创新技术,包括在高温下保温,以及在加热之前或之后加热到典型的奥氏体化温度,并显示了它们的有效性。实用价值。提出了实际应用的正火和淬火技术,包括在高温下保温,以及前后加热至典型奥氏体化温度
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