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The effects of boro-tempering heat treatment on microstructural properties of ductile iron

机译:硼回火热处理对球墨铸铁组织性能的影响

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In this study, the effects of boro-tempering heat treatment on microstructural properties of ductile iron were investigated. Test samples with dimensions of 10 × 10 × 55 mm were boronized at 900 ℃ for 1, 3 and 5 h and then tempered at four different temperatures (250,300, 350 and 450 ℃) for 1 h. Both optical microscopy and scanning electron microscopy were used to reveal the microstructural details of coating and matrix of boro-tempered ductile iron. X-ray diffraction was used to determine the constituents of the coating layer. The boride layer formed on the surface of boro-tempered ductile cast iron is tooth shape form and consisted of FeB and Fe2B phases. The thickness of boride layer increases as the boronizing time increases and tempering temperature decreases. Tempering temperature is more effective than boronizing time on the matrix structure. Boro-tempering heat treatment reduces the formation of lower and upper ausferritic matrix temperature according to classical austempering. This causes formation of upper ausferritic matrix in the sample when tempered at 300 ℃. This is in contrast to general case which is the formation of lower ausferritic matrix via austempering at this temperature.
机译:在这项研究中,研究了回火处理对球墨铸铁组织性能的影响。将尺寸为10×10×55 mm的试样在900℃硼化1、3和5 h,然后在四个不同温度(250,300、350和450℃)回火1 h。光学显微镜和扫描电子显微镜均用于揭示硼球墨铸铁的涂层和基体的微观结构细节。 X射线衍射用于确定涂层的成分。硼回火球墨铸铁表面形成的硼化物层为齿形,由FeB和Fe2B相组成。硼化物层的厚度随着渗硼时间的增加和回火温度的降低而增加。在基体结构上,回火温度比硼化时间更有效。根据经典奥氏体回火,硼回火热处理可降低上下奥氏体基体温度的形成。在300℃回火后,会在样品中形成上奥氏体基体。这与一般情况相反,一般情况是在该温度下通过回火形成较低的奥氏体基体。

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