Zhang Zhao

Professor   Supervisor of Doctorate Candidates   Supervisor of Master's Candidates

Main positions:Professor in Process Mechanics

Gender:Male

Alma Mater:Dalian University of Technology

Degree:Doctoral Degree

School/Department:Department of Engineering Mechanics, Dalian University of Technology

Discipline:mechanics of manufacturing process. Engineering Mechanics. Computational Mechanics

Business Address:Room 619,Integrated Laboratory building (1#)

Contact Information:+86-411-84708432 zhangz@dlut.edu.cn

E-Mail:zhangz@dlut.edu.cn


Paper Publications

搅拌摩擦增材制造的微观结构-力学性能一体化数值模拟

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Indexed by:期刊论文

Date of Publication:2019-01-15

Journal:航空制造技术

Volume:62

Issue:1

Page Number:14-18

ISSN No.:1671-833X

Key Words:增材制造;搅拌摩擦增材制造;Monte Carlo法;析出相;力学性能;重搅拌;重加热

Abstract:搅拌摩擦增材制造技术是在搅拌摩擦焊接的基础上发展起来的一种新型固态增材制造技术.针对搅拌摩擦增材制造技术中的重新搅拌和重新加热问题,采用试验和数据方法进行分析,通过Monte Carlo模型计算微观结构演化,通过析出相演化模型计算析出相分布,并进一步计算不同增材层之间的硬度分布,通过与试验测量数据的比较验证了模型的正确性.结果显示,不同增材层之间的晶粒大小和形貌由于重搅拌和重加热的作用而存在差异,同时,温度曲线的变化使粒子数和平均半径发生变化,进而导致力学性能出现差异.在试验验证的基础上,通过数值模拟解释了差异产生的具体机理.

Pre One:A Multi Scale Strategy for Simulation of Microstructural Evolutions in Friction Stir Welding of Duplex Titanium Alloy

Next One:An integrated modeling of process-structure-property relationship in laser additive manufacturing of duplex titanium alloy

Profile

Zhang Zhao, Ph.D., Professor in Process Mechanics.

Editorial member in Coatings (IF:2.881) from 2020 to 2022.

Editorial member in Crystals (IF:2.589) from 2020 to 2022.

Younth editorial member in Journal of Central South University(IF:1.716) from 2020 to 2022.

Professor Zhang has published more than 60 SCI publications with over 1100 citations. He served as reviewers for more than 30 international journals. His main pulications can be found:

https://orcid.org/0000-0001-7181-8617

https://publons.com/researcher/1987190/zhao-zhang/

The scientific research focuses on experimental and numerical works on friction stir welding/processing/additive manufacturing, numerical modelling and simulation of additive manufacuring, topological design of phononic crystals, locomotive and high speed train design.