16.8级螺栓用中碳Cr–Mo钢的热变形行为和动态再结晶

IF 3.3 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY Metals and Materials International Pub Date : 2023-08-09 DOI:10.1007/s12540-023-01492-w
Huiju Lee, YongDeok Jo, ByoungLok Jang
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引用次数: 0

摘要

本研究调查了用于制造超高强度螺栓的中碳铬钼钢的热加工性能。研究的主要目的是为工业应用建立材料动态再结晶的构成方程和动力学模型。热扭转试验在 1173、1273 和 1373 K 的温度和 0.1、0.5、1.0 和 2.0/s 的应变速率下进行。利用菲尔兹-巴科芬方程计算了材料在不同应变速率和温度下的应变速率敏感性和加工硬化系数。结果表明,材料的应变速率敏感性和加工硬化系数通常随温度升高而增加。应力-应变曲线显示了应变速率和变形温度的总体变化,应变速率越高、温度越低,流动应力越大。然而,由于材料中含有铌,因此无法清楚地观察到峰值应力。根据 238.57 kJ/mol 的变形热活化能推导出了流动应力的构成方程。利用齐纳-霍洛蒙参数分析了峰值应变和临界应变之间的关系,发现临界应变约为峰值应变的 0.17 倍。使用动力学方程的阿夫拉米形式估算了动态再结晶的体积分数,阿夫拉米常数(k/)和(m/)分别为0.84和6.89。我们建立的动态再结晶动力学模型可应用于任意变形条件,从而优化了该材料的热轧工艺。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Hot Deformation Behavior and Dynamic Recrystallization of a Medium Carbon Cr–Mo Steel for Class 16.8 Bolts

This study investigates the hot workability of medium carbon Cr–Mo steels for manufacturing ultra-high strength bolts. The main purpose of this research is to establish a constitutive equation and a kinetic model of dynamic recrystallization of the material for industrial applications. Hot torsion tests were conducted at temperatures of 1173, 1273, and 1373 K and strain rates of 0.1, 0.5, 1.0, and 2.0/s. Strain rate sensitivities and work-hardening coefficients of the material were calculated at various strain rates and temperatures using the Fields–Backofen equation. Results indicated that the material’s strain rate sensitivities and work-hardening coefficients generally increased with temperature. Stress–strain curves showed a general variation depending on the strain rates and the deformation temperatures, with higher strain rates and lower temperatures resulting in increased flow stresses. However, peak stresses were not clearly observed due to the presence of Nb in the material. A constitutive equation for flow stresses was derived, with a thermal activation energy for deformation of 238.57 kJ/mol. Zener–Hollomon parameter was used to analyze the relationship between peak strains and critical strains, finding that the critical strains being about 0.17 times the peak strains. The volume fractions of dynamic recrystallization were estimated using an Avrami form of the kinetic equation, and the Avrami constants \(k\) and \(m\) were 0.84 and 6.89, respectively. The kinetic model of dynamic recrystallization that we developed can be applied to arbitrary deformation conditions, enabling the optimization of the hot rolling process for this material.

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来源期刊
Metals and Materials International
Metals and Materials International 工程技术-材料科学:综合
CiteScore
7.10
自引率
8.60%
发文量
197
审稿时长
3.7 months
期刊介绍: Metals and Materials International publishes original papers and occasional critical reviews on all aspects of research and technology in materials engineering: physical metallurgy, materials science, and processing of metals and other materials. Emphasis is placed on those aspects of the science of materials that are concerned with the relationships among the processing, structure and properties (mechanical, chemical, electrical, electrochemical, magnetic and optical) of materials. Aspects of processing include the melting, casting, and fabrication with the thermodynamics, kinetics and modeling.
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