中碳、碳锰钢单次淬火+回火与双次淬火+回火的组织与性能比较

Yurianto Yurianto, S. Sulardjaka, Susilo Adi Widyanto, Padang Yanuar
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引用次数: 1

摘要

军用和非军事装备的高应力结构都需要调质钢。本文研究了中碳和碳锰钢在淬火+回火和双淬火+回火前后的组织性能(硬度和冲击吸收能)。由于水便宜且易于控制,因此被用作淬火介质。对淬火加回火钢和双淬火加回火钢的硬度和冲击吸收能进行了比较。结果表明,双调质加回火钢的硬度高于调质加回火钢。晶粒组织也比调质后的钢细。奥氏体温度和保温时间的确定对淬火后期的硬度至关重要。研究的目的是通过对中碳钢和碳锰钢进行淬火+回火和双淬火+回火,获得装甲钢的硬度和冲击能。第一步,5个试样在900℃下加热(保持30分钟),在淡水中冷却,得到q900钢。然后分别在750℃、800℃、850℃和900℃下加热30分钟,并提供q900 +750 Steel、q900 +800、q900 +850 Steel和q900 +900 Steel。这些试样在150℃下回火(保持30分钟),产生q900 +750 & &T钢,q900 +800 & &T钢,q900 +850 & &T钢,q900 +900 & &T钢。马氏体冷却期357 ~ 182℃,150℃回火(保温30分钟)。双淬火回火的硬度比常规的高。q900 + 850&t钢双淬火回火热处理的最大冲击能量适用于装甲用钢
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of the Structure and Properties Between Single Quench+temper and Double Quench+temper of Medium Carbon and Carbon Manganese Steel
Quenched and tempered steels are needed for highly-stressed structures in military and non-military equipment. This paper was written for studying the structure and properties (hardness and impact energy absorbed) of medium-carbon and carbon-manganese steels before and after Quench+Temper and Double Quenched+Tempered. Because water is cheap and easy to control, it was used as a quenching medium. This study compares the hardness and impact energy absorbed of quenched plus tempered and double quenched plus tempered steels. The results showed that double quenched plus tempered steel hardness was higher than in quenched plus tempered steels. Besides, the grain structure is refiner than that of quenched plus tempered steel. The taking of the austenite temperature and holding time is essential because of the hardness at the end of the quenching process. The study aims to obtain hardness and impact energy from quenching+tempering and double quenching+tempering of medium-carbon and carbon-manganese steel for armor steel. In the first step, five specimens were heated at 900 ℃ (held for 30 minutes), cooled in freshwater and produced Q 900 Steel. Then, these specimens were heated at 750 ℃, 800 ℃, 850 ℃, and 900 ℃, held for 30 minutes and provided Q 900+750 Steel, Q 900+800 , Q 900+850 Steel, and Q 900+900 Steel. These specimens were tempered at 150 ℃ (held for 30 minutes) and produced Q 900+750 &T Steel, Q 900+800 &T Steel, Q 900+850 &T Steel, Q 900+900 &T Steel. Martensite reached the cooling period 357 ℃ to 182 ℃, tempered at 150 ℃ (held for 30 minutes). Hardness for double-quenching and tempering is higher than for conventional. The maximum impact energy of double-quenching and tempering heat treatment of Q 900+850 &T steel is suitable for armor steel used
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