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Microstructure and Properties of Isothermally Quenched High Boron White Cast Iron

机译:等温淬火高硼白铸铁的微观结构与性能

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Microstructure and properties of isothermally quenched high boron white cast iron were investigated in this paper. The results show that the microstructure of high boron white cast iron is mainly composed of many continuous and netlike eutectic borides, pearlite and ferrite under as-cast condition. The microhardness of Fe_2B ranges in 1200-1600HV whose value seems to approximate that of (Fe,Cr)_7C_3-type carbide (HV1200-1800) in high chromium white cast iron. After isothermal quenching, the matrix transforms into lower bainite in which carbide precipitations are arranged in parallel rows at an angle of 60 deg to the long axis of the plates, but the morphology of boride remains nearly unchanged compared with its as-cast condition. Moreover, precipitation particles with the size of about 1-4 ìm can be found in the matrix of isothermally quenched high boron white cast iron. Impact fracture morphology of isothermally quenched high boron white cast iron indicates that fracture propagated more easily through boride/matrix interface than through matrix.
机译:本文研究了等温淬火高硼白铸铁的微观结构和性能。结果表明,高硼白铸铁的微观结构主要由许多连续和网状共晶硼化物,珠光体和铁氧体的浇铸条件组成。 Fe_2b的微硬度在1200-1600HV中的范围,其值似乎是高铬白色铸铁中(Fe,Cr)_7C_3型碳化物(HV1200-1800)的价值。在等温淬火之后,将基质变成低贝氏体,其中碳化物沉淀以60°的长轴以60°的角度排列到平板的角度,但与其铸造的条件相比,硼化物的形态仍然几乎不变。此外,可以在等温淬料的高硼白铸铁基质中找到尺寸为约1-4μm的沉淀颗粒。等温淬火高硼白铸铁的冲击断裂形态表明骨折通过硼化物/矩阵界面比通过基质更容易地传播。

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