Enoukidze Nodar A, 连金江, 钟伟珍, 戎豫. Some Factors Affecting on the Structure-formation and Mechanical Properties of As-Cast High Toughness Nodular Cast Iron[J]. 工程科学学报, 1989, 11(6): 544-550. DOI: 10.13374/j.issn1001-053x.1989.06.026
引用本文: Enoukidze Nodar A, 连金江, 钟伟珍, 戎豫. Some Factors Affecting on the Structure-formation and Mechanical Properties of As-Cast High Toughness Nodular Cast Iron[J]. 工程科学学报, 1989, 11(6): 544-550. DOI: 10.13374/j.issn1001-053x.1989.06.026
Enoukidze Nodar A, Lian Jinjiang, Zhong Weizhen, Rong Yu. Some Factors Affecting on the Structure-formation and Mechanical Properties of As-Cast High Toughness Nodular Cast Iron[J]. Chinese Journal of Engineering, 1989, 11(6): 544-550. DOI: 10.13374/j.issn1001-053x.1989.06.026
Citation: Enoukidze Nodar A, Lian Jinjiang, Zhong Weizhen, Rong Yu. Some Factors Affecting on the Structure-formation and Mechanical Properties of As-Cast High Toughness Nodular Cast Iron[J]. Chinese Journal of Engineering, 1989, 11(6): 544-550. DOI: 10.13374/j.issn1001-053x.1989.06.026

Some Factors Affecting on the Structure-formation and Mechanical Properties of As-Cast High Toughness Nodular Cast Iron

Some Factors Affecting on the Structure-formation and Mechanical Properties of As-Cast High Toughness Nodular Cast Iron

  • 摘要: Using sand moulds for step-shape casting tests and different silicon percentage of nodular cast iron it was possible to separate structural variations produced during freezing from those occurring at Ac1 transformation temperature. The results show that an increase in silicon content leading to different variation in the matrix structure> leads to a changing mechanical properties of nodular cast irons. Tensile strength and elongation of obtained as-cast nodular cast iron with the composition of 3.9%C, 3.2%Si, 0.5%Mn are maximum of about 524.5N/mm2 and 19.8% accordingly. In the same nodular cast iron, but only with 0.1% Mn the silicon addition first increases after decreases elongation, impact toughness and hardness. But tensile strength changes to the opposite side.

     

    Abstract: Using sand moulds for step-shape casting tests and different silicon percentage of nodular cast iron it was possible to separate structural variations produced during freezing from those occurring at Ac1 transformation temperature. The results show that an increase in silicon content leading to different variation in the matrix structure> leads to a changing mechanical properties of nodular cast irons. Tensile strength and elongation of obtained as-cast nodular cast iron with the composition of 3.9%C, 3.2%Si, 0.5%Mn are maximum of about 524.5N/mm2 and 19.8% accordingly. In the same nodular cast iron, but only with 0.1% Mn the silicon addition first increases after decreases elongation, impact toughness and hardness. But tensile strength changes to the opposite side.

     

/

返回文章
返回