E. Stoian, V. Bratu, Cristiana Maria Enescu, D. Ungureanu
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引用次数: 2

摘要

摘要介绍了用层状石墨制备汽缸套用铸铁的工艺流程,确定了主要合金元素,并跟踪了它们对层状石墨铸铁力学性能的影响。本文还对20批汽缸套用片状石墨铸铁进行了化学成分和力学性能分析。通过对20个fc250铸铁铸件的分析发现:随着碳含量的增加,灰铸铁的抗拉强度和硬度降低;硅含量的增加导致硬度和抗拉强度的降低。减少石墨的用量,特别是硅铁合金的用量,使硬度提高(1%的硅使硬度提高50 HB)。对所获得的数据进行了统计分析,以说明合金添加量的变化。根据碳、硅和锰的含量对材料的力学性能(抗拉强度和硬度)进行建模和优化。数学建模发现,随着碳、硅、锰含量的增加,铸铁的硬度和抗牵引性能下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Researches Regarding the Influence of Alloying Elements on the Mechanical Properties of Lamellar Graphite Cast Iron
Abstract Aim of the study is to present the technological process of obtaining cast iron with lamellar graphite for use in the manufacture of cylinder liners, and to identify the main alloying elements and track their influence on the mechanical properties of cast iron with lamellar graphite. Also paper presents analysis of 20 batches of cast iron with lamellar graphite, which are made of cylinder liners, in terms of chemical composition and the mechanical properties. After the analysis of the 20 castings of cast iron Fc 250 it is observed that: the increase in the carbon content shows a decrease of the tensile strength and hardness of the gray cast iron; the increase in silicon content shows a decrease in hardness and tensile strength. Decreasing the amount of graphite and especially the alloy of silicon iron lead to hardness increase 1% Si increases hardness by 50 HB). A statistical analysis has been performed on the data obtained that accounts for changes in alloying additions. A modeling and optimization of mechanical properties (tensile strength and hardness) was performed according to the percentages of carbon, silicon and manganese. Mathematical modeling found that the hardness and traction resistance of the cast iron decreased with the increase in carbon, silicon and manganese content.
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