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Wear-Resistant Aluminum and Chromonickel Coatings at the Narrow Mold Walls in Continuous-Casting Machines

机译:连续铸造机狭窄模具壁处的耐磨铝和铬镍铁合金涂层

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摘要

To extend the working life of molds in continuous-casting machines, a heat- and wear-resistant layer is formed on the narrow M1 copper walls prior to final repair, by spraying on aluminum and chromonickel coatings. The first step is to determine the coating structure, phase composition, and the hardness and microhardness of the surface layers. A chromonickel coating (thickness 0.5-0.6 mm) is sprayed on the surface of the pair of narrow walls of the thick-walled mold. To obtain the required surface purity, the walls must be ground. Efforts are required to increase the thickness of the chromonickel coating. With a coating thickness greater than 0.8 mm, peeling is possible. Therefore, to increase the strength with which the chromonickel coating is bound to the copper base, we consider the possibility of using an aluminum substrate. Thus, to extend the life of the narrow mold walls in a continuous-casting machine, a chromonickel coating with an aluminum substrate may be applied if bonding of the porous layer with the a phase is ensured or the porosity of the layer is reduced.
机译:为了延长连铸机中模具的使用寿命,在最终维修之前,先在铝M1窄铜壁上喷涂铝和发色克涂料,以形成耐热和耐磨层。第一步是确定涂层结构,相组成以及表面层的硬度和显微硬度。在厚壁模具的一对窄壁表面上喷涂发色团涂层(厚度0.5-0.6 mm)。为了获得所需的表面纯度,必须对壁进行研磨。需要努力增加发色酮涂层的厚度。涂层厚度大于0.8毫米时,可能会剥离。因此,为了提高发色团涂层与铜基结合的强度,我们考虑了使用铝基板的可能性。因此,为了延长窄铸模壁在连续铸造机中的寿命,如果确保了多孔层与α相的粘结或降低了该层的孔隙率,则可以施加具有铝基板的发色团涂层。

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