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Effects of alloying elements on hardness improvement and damping capacity of low thermal expansion cast irons

机译:合金元素对低热膨胀铸铁硬度提高和阻尼能力的影响

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The effects of alloying elements vanadium and molybdenum on hardness and the linear thermal expansion coefficient of the Invar-type austenitic cast irons were investigated. A combined addition of vanadium and molybdenum was found to be the most effective for the improvement of hardness without causing an increase in the thermal expansion coefficient. Without heat treatment, the hardness value increased up to 180 HB, and the thermal expansion coefficient was kept at a relatively low value of 4.6 x 10(-6) K-1 with a combined addition of 4.6 wt % V and 3.8 wt % Mo. The effects on the damping capacity of graphite morphology, the magnetic domain, and the combined addition of vanadium and molybdenum were also investigated. The good damping capacity of Invar-type cast irons was mainly the result of stress absorption in graphite. As the amounts of vanadium and molybdenum increased, the damping capacity decreased. This is caused by an increase in the amount of carbides. (C) 1998 Kluwer Academic Publishers. [References: 7]
机译:研究了钒和钼合金元素对殷钢型奥氏体铸铁的硬度和线性热膨胀系数的影响。发现钒和钼的组合添加对于提高硬度而不引起热膨胀系数的增加是最有效的。在不进行热处理的情况下,硬度值增加到180 HB,并且结合添加4.6 wt%的V和3.8 wt%的Mo将热膨胀系数保持在4.6 x 10(-6)K-1的相对较低值。还研究了石墨形态,磁畴以及钒和钼的组合添加对阻尼性能的影响。 Invar型铸铁的良好阻尼能力主要是石墨中应力吸收的结果。随着钒和钼含量的增加,阻尼能力下降。这是由于碳化物数量增加引起的。 (C)1998 Kluwer学术出版社。 [参考:7]

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