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The Impact of Isothermal Treatment on the Microstructural Evolution and the Precipitation Behavior in High Strength Linepipe Steel

机译:等温处理对高强度管线钢的组织演变和析出行为的影响

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摘要

Isothermal treatment affects the microstructural evolution and the precipitation behavior of high-strength low alloy (HSLA) steels. In this regard, thermal simulation of different isothermal treatment temperatures was adopted by using a thermomechanical simulator. The results showed that hardness reached the maximum value at 600 °C holding temperature, which was related to a finer grain structure and granular bainite. The strengthening effect of precipitates was remarkable due to the combination of small particle size and small interparticle spacing. It is presumed that the precipitation started after 600 s at 600 °C. Precipitation strengthening continued to exist, even though coarsening of ferrite grains led to softening phenomena when the specimen was isothermally held at 750 °C, which led to relatively high hardness. The precipitates were fcc (Ti, Nb) (N, C) particles, and belonged to MX-type precipitates. Average size of precipitates increased from 3.14 to 4.83 nm when the specimens were isothermally held between 600 °C and 800 °C. Interparticle spacing of precipitates also increased with increasing isothermal treatment temperatures. These led to a reduction in precipitation strengthening. At the same time the polygonal ferrite content increased and ferrite grain size got larger, such that the hardness decreased continuously.
机译:等温处理影响高强度低合金(HSLA)钢的组织演变和析出行为。在这方面,通过使用热机械模拟器采用了不同等温处理温度的热模拟。结果表明,硬度在保持温度为600°C时达到最大值,这与晶粒结构细化和贝氏体颗粒化有关。由于小粒径和小颗粒间距的结合,析出物的强化效果显着。据推测,在600℃下600秒后开始沉淀。即使将试样等温保持在750°C时,铁素体晶粒的粗化会导致软化现象,但析出强化仍然存在,从而导致相对较高的硬度。沉淀物是fcc(Ti,Nb)(N,C)颗粒,属于MX型沉淀物。当样品在600°C和800°C等温保持时,沉淀物的平均大小从3.14 nm增加到4.83 nm。随着等温处理温度的升高,沉淀物的颗粒间间距也增加。这些导致减少降水增加。同时,多边形铁素体含量增加,铁素体晶粒尺寸变大,硬度不断降低。

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