Relationship of microstructure on the mechanical and splitting fracture properties of a high carbon forging steel for connecting rod

Author:

Li Jin‐Cheng12,Wang Xian‐Wen13,Zhang Chao‐Lei13,Liu Guanglei4,Chen Lie4

Affiliation:

1. Institute for Carbon Neutrality University of Science and Technology Beijing Beijing China

2. School of Materials Science and Engineering University of Science and Technology Beijing Beijing China

3. Institute of Steel Sustainable Technology Liaoning Academy of Materials Shenyang Liaoning China

4. Jianlong Beiman Special Steel Co., Ltd Qiqihaer China

Abstract

AbstractThe influence of austenitizing temperature and isothermal transition temperature on the mechanical properties and splitting characteristics of C70S6 were investigated. The maximum ultimate tensile strength and yield strength were 1032 and 625 MPa, respectively, when the lamellar spacing of sorbite was 0.195 μm. The greatest elongation was 17% when the size of the pearlite colony was 13 μm, which suggested an approach for enhancing the properties of pearlite steel at a low cost. The splitting property performed excellent when the proeutectoid ferrite content is 0.3%, the prior austenite grain is 38.9 μm, and the yield ratio is 0.57 currently. The connection between the process performance and the microstructure parameters was established, allowing process improvement to be guided accurately.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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