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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Development of wear resistant carbidic austempered ductile iron (CADI)
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Development of wear resistant carbidic austempered ductile iron (CADI)

机译:耐磨碳化奥氏体球墨铸铁(CADI)的开发

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The abrasion wear resistance of irons may be improved by the incorporation of an extra phase to the matrix, typically consistent of carbides. Nevertheless, the improvement in wear resistance is generally accompanied by a decrease in the impact toughness. The aim of this work is to study the methodology to obtain a controlled precipitation of carbides in a ductile cast iron that is subsequently austempered, obtaining the so-called carbidic austempered ductile iron (CADI). This material is expected to offer high abrasion resistance but still retaining higher impact toughness than other reinforced irons, thanks to the particular characteristics of the matrix. A plate model with a copper chill allowed to evaluate both, the influence of a high cooling rate and the effect of alloying elements on carbide precipitation. Four different alloys with equivalent carbon close to the eutectic composition were used in order to evaluate the effect of chromium contents ranging from 1 to 2.5%. A detailed microstructural characterisation of the material was made, studying particularly carbide content and composition, besides their stability during the heat treatment. The abrasion wear resistance was evaluated by testing under the ASTM G 65 standard, obtaining relative wear resistance values ranging between 1.02 and 1.95 with respect to conventional ADI samples taken as reference material. The impact toughness decreased from about 138-101J for ADI to about 26-7 J for CADI.
机译:铁的耐磨性可以通过将额外的相(通常与碳化物保持一致)结合到基体中来改善。然而,耐磨性的改善通常伴随着冲击韧性的降低。这项工作的目的是研究在球墨铸铁中控制碳化物沉淀的方法,然后将球墨铸铁进行奥氏体淬火,以得到所谓的碳化奥氏体球墨铸铁(CADI)。由于基体的特殊特性,该材料有望提供高耐磨性,但仍比其他增强铁杆保留更高的冲击韧性。带有铜冷却的板模型可以评估高冷却速率的影响以及合金元素对碳化物沉淀的影响。为了评估铬含量在1%到2.5%之间的影响,使用了四种碳含量接近共晶组成的不同合金。对该材料进行了详细的微观结构表征,特别是研究了碳化物的含量和组成以及热处理过程中的稳定性。耐磨性通过在ASTM G 65标准下进行测试进行评估,相对于作为参考材料的常规ADI样品,其相对耐磨性值在1.02至1.95之间。冲击韧性从ADI的约138-101J降低到CADI的约26-7J。

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