...
首页> 外文期刊>Calphad: Computer Coupling of Phase Diagrams and Thermochemistry >'Invited Paper' Computer-aided alloy designs of grade 600 MPa reinforced steel bars for seismic safety based on thermodynamic and kinetic calculations: Overview
【24h】

'Invited Paper' Computer-aided alloy designs of grade 600 MPa reinforced steel bars for seismic safety based on thermodynamic and kinetic calculations: Overview

机译:“邀请纸”计算机辅助合金设计600 MPa增强钢筋,用于基于热力学和动力学计算的地震安全性:概述

获取原文
获取原文并翻译 | 示例
           

摘要

In order to satisfy the demands for both safety and global warming reduction, a high-strength seismic reinforced steel bar is required in the structural steel market. Recent developments in computational thermodynamics and related application software have made it possible to design a suitable material as well as support engineers of steel manufacturing companies in the production of the designed material with minimum benchmarks in practical operations. This paper reports our recent success in developing grade 600 MPa reinforced steel bars for seismic safety in South Korea. First, conventional alloy design based on CALPHAD-type computational thermodynamics was carried out. For this purpose, a typical alloy system of Fe-0.30C-0.23Si-1.37Mn-0.14V-0.22Cu (in wt%) was selected, and thermodynamic and kinetic calculations were carried out using MatCalc and JMatPro software. Second, in order to reduce V content in the steel for economic reasons, a cooling process designed using finite element (FE) simulation based on the thermodynamic database was performed. For this application, Fe0.34C-0.22Si-1.34Mn-0.04 V (in wt%) alloy was chosen, and the FE software ABAQUS was applied for modeling the TempCore process. The mechanical properties of the steel products with a diameter of 32 mm produced based on the simulated results satisfy the required properties for grade 600 MPa seismic reinforced steel bars.
机译:为了满足安全性和全球变暖的需求,结构钢铁市场需要一种高强度地震钢筋。最近的计算热力学和相关应用软件的发展使得能够设计合适的材料以及钢铁制造公司的支持工程师,在生产设计的材料中具有最低实际操作的基准。本文报告了我们最近在韩国抗震安全开发600级MPA钢筋的成功。首先,进行了基于Calphad型计算热力学的常规合金设计。为此目的,选择了Fe-0.30℃-0.23Si-1.37mN-0.14V-0.22Cu(WT%)的典型合金系统,使用MATCALC和JMATPRO软件进行热力学和动力学计算。其次,为了减少钢中的V含量以进行经济原因,执行使用基于热力学数据库的有限元(FE)模拟的冷却过程。对于该应用,选择Fe0.34C-0.22SI-1.34Mn-0.04V(在重量%)合金中,并施加Fe软件ABAQUS以对临时过程进行建模。基于模拟结果的直径为32mm的钢制品的机械性能满足了600级MPA地震增强钢筋所需的特性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号