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截面厚度对用于柴油发动机的蠕墨铸铁微观结构和力学性能的影响。

Effect of section thickness on microstructure and mechanical properties of compacted graphite iron for diesel engine applications.

作者信息

Essam Mahmoud A, Shash Ahmed Y, Megahed Hassan, El-Kashif Emad

机构信息

Mechanical Engineering Dept., Higher Technological Institute (H.T.I), 10th of Ramadan City, Egypt.

Faculty of Engineering and Materials Science, German University in Cairo, Cairo, Egypt.

出版信息

Heliyon. 2021 Jan 29;7(1):e05930. doi: 10.1016/j.heliyon.2021.e05930. eCollection 2021 Jan.

Abstract

Compacted (vermicular) graphite iron (CGI) is used in many substantial applications because its vermicular microstructure has superior mechanical properties at higher temperatures. Production of vermicular graphite cast iron diesel engine cylinder block with various sections' thicknesses is a great challenge especially, if compacted graphite iron is made by controlling the pouring duration. Investigations on microstructure and hardness have been conducted on four different thicknesses (5, 10, 15, and 20 mm) of compacted graphite iron. Results demonstrated that pouring duration affects both cooling rate, and Mg/S content. These two parameters to decide the nodularity percentage and the matrix microstructure. Longer pouring duration lowers Mg/S content and decreases the cooling rate for the similar section thickness, however shorter pouring duration acts in the opposite direction. Microstructure and hardness are also affected by casting sections with the same pouring duration through different cooling rates. An increase in the cross-sectional thickness for the same pouring duration decreases the rate of cooling that encourages the formation of compacted graphite with pearlitic rather than martensitic a matrix in addition to lowers the nodular graphite count. Magnesium fading and compacted graphite ratio increased with longer pouring duration. Hardness decreased with larger section thickness and longer pouring duration due to the elimination of the martensite phase in the matrix.

摘要

致密(蠕虫状)石墨铸铁(CGI)因其蠕虫状微观结构在较高温度下具有优异的机械性能而被用于许多重要应用中。生产具有不同壁厚的蠕虫状石墨铸铁柴油发动机缸体是一项巨大的挑战,特别是当通过控制浇注时间来制造致密石墨铁时。对四种不同厚度(5、10、15和20毫米)的致密石墨铁进行了微观结构和硬度研究。结果表明,浇注时间会影响冷却速度和镁/硫含量。这两个参数决定了球化率和基体微观结构。对于相同的截面厚度,较长的浇注时间会降低镁/硫含量并降低冷却速度,而较短的浇注时间则作用相反。在相同的浇注时间下,不同的冷却速度会使铸件截面的微观结构和硬度也受到影响。对于相同的浇注时间,横截面厚度的增加会降低冷却速度,这有利于形成以珠光体而非马氏体为基体的致密石墨,此外还会减少球墨数量。镁的烧损和致密石墨比例会随着浇注时间的延长而增加。由于基体中马氏体相的消除,硬度会随着截面厚度的增加和浇注时间的延长而降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a4c/7851785/bd5232d97d5e/gr1.jpg

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