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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Initial Microstructure on Impact Toughness of 1200 MPa-Class High Strength Steel with Ultrafine Elongated Grain Structure
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Effect of Initial Microstructure on Impact Toughness of 1200 MPa-Class High Strength Steel with Ultrafine Elongated Grain Structure

机译:初始组织对1200 MPa级超细晶粒组织高强度钢冲击韧性的影响

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摘要

A medium-carbon low-alloy steel was prepared with initial structures of either martensite or bainite. For both initial structures, warm caliber-rolling was conducted at 773 K (500 °C) to obtain ultranne elongated grain (UFEG) structures with strong (110)//rolling direction (RD) fiber deformation textures. The UFEG structures consisted of spheroidal cementite particles distributed uniformly in a ferrite matrix of a transverse grain size of about 331 and 311 nm in samples with initial martensite and bainite structures, respectively. For both initial structures, the UFEG materials had similar tensile properties, upper shelf energy (145 J), and ductile-to-brittle transition temperatures 98 K (500 °C). Obtaining the martensitic structure requires more rapid cooling than is needed to obtain the bainitic structure and this more rapid cooling promote cracking. As the UFEG structures obtained from initial martensitic and bainitic structures have almost identical properties, but obtaining the bainitic structure does not require a rapid cooling which promotes cracking suggests the use of a bainitic structure in obtaining UFEG structures should be examined further.
机译:制备了具有马氏体或贝氏体初始结构的中碳低合金钢。对于两种初始结构,均在773 K(500°C)下进行热口径轧制,以获得具有强(110)///轧制方向(RD)纤维变形织构的超细拉长晶粒(UFEG)结构。 UFEG结构由球状渗碳体颗粒组成,分别分布在具有初始马氏体和贝氏体结构的样品中,其横向晶粒尺寸分别约为331 nm和311 nm。对于这两种初始结构,UFEG材料都具有相似的拉伸性能,上架能量(145 J)和韧性至脆性转变温度98 K(500°C)。与获得贝氏体组织相比,获得马氏体结构需要更快的冷却,并且这种更快的冷却促进了裂纹。由于从初始马氏体和贝氏体结构获得的UFEG结构具有几乎相同的特性,但是获得贝氏体结构不需要快速冷却,这会促进裂纹,这表明应进一步研究在获得UFEG结构中使用贝氏体结构。

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