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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Effect of starting microstructure on austenite grain sizes developed after reheating of HSLA steel
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Effect of starting microstructure on austenite grain sizes developed after reheating of HSLA steel

机译:初生组织对HSLA钢再加热后奥氏体晶粒尺寸的影响

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Austenite grain structure has been studied over a wide range of soaking temperatures (950-1250℃) in a high strength low alloy steel containing Nb, Ti and V for different starting conditions, namely as cast, hot rolled and thermomechanical controlled rolled. Mixed (or bimodal) austenite grain structures were developed as a result of abnormal grain growth at different soaking temperatures in as cast slab (~1200℃) and in rolled plates (~1000℃), which has hardly been reported earlier. Higher fraction of finer precipitates, such as NbC and VC (<200 nm in size), were present in the rolled plate as compared to as cast slab, where the precipitates were coarser and complex in nature. Rapid dissolution of fine VC precipitates was primarily responsible for the observed abnormal grain growth in rolled plates at lower soaking temperature (~1000℃). Coarse precipitates of complex nature, such as (Nb,Ti,V)(C,N) and (Nb,Ti)(C,N), remained stable up to ~1150℃ and restricted the formation of abnormal grain growth in as cast steel.
机译:在包含Nb,Ti和V的高强度低合金钢中,在不同的起始条件下(例如铸造,热轧和热机械控制轧制),已在较宽的均热温度(950-1250℃)范围内研究了奥氏体晶粒结构。混合(或双峰)奥氏体晶粒结构是由于铸坯(〜1200℃)和轧制板(〜1000℃)在不同的浸泡温度下晶粒生长异常而形成的,这鲜有报道。与浇铸板相比,轧制板中存在较高比例的较细的析出物,例如NbC和VC(尺寸小于200 nm),后者的析出物性质较粗糙且复杂。 VC细小沉淀物的快速溶解主要是由于在较低的均热温度(约1000℃)下观察到的轧制板中晶粒的异常生长。诸如(Nb,Ti,V)(C,N)和(Nb,Ti)(C,N)等复杂性质的粗大析出物在高达〜1150℃的温度下仍保持稳定,并限制了铸态晶粒的异常生长。钢。

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