首页|Nonlinear Impact Damage Evolution of Charpy Type and Analysis of Its Key Influencing Factors

Nonlinear Impact Damage Evolution of Charpy Type and Analysis of Its Key Influencing Factors

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The current research of Charpy impact mainly focuses on obtaining the ductile brittle transition temperature of mate-rials by experiments.Compared with experiments,numerical simulation can study many problems with harsh conditions.However,there are still few studies on the influence of geometric factors such as side grooves.In this paper,the geometry of standard Charpy impact test is designed.Specimens with different widths and side grooves are tested.The finite element model of Charpy impact was established by ABAQUS software.Use test results and simulation results to verify each other.The effects of sample width,side groove depth and side groove bot-tom fillet on the impact fracture resistance of the sample were studied.The results show that the specimen width is positively correlated with the impact toughness of the specimen.The side groove greatly reduces the impact toughness of the material;the toughness of side groove decreases with the increase of depth;the fracture toughness of side groove decreases with the increase of fillet at the bottom of side groove.The proportion of toughness energy to impact energy of samples was analyzed.The results show that the toughness energy accounts for about 70%of the impact energy of the sample,which has little to do with the geometric characteristics of the sample.This study presents a reliable method for studying Charpy impact tests.The influence of geometric parameters is obtained,which provides a reference method for the study of impact toughness of high toughness materials.

Johnson-Cook modelImpact toughnessCharpy impact

Jianfeng Mao、Qian Xu、Jiadong Yang、Chi Cao、Dasheng Wang、Fengping Zhong、Mingya Chen

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Institute of Process Equipment and Control Engineering,Zhejiang University of Technology,Hangzhou 310032,China

Taizhou Key Laboratory of Advanced Manufacturing Technology,Taizhou Institute,Zhejiang University of Technology,Taizhou 318014,China

State Key Laboratory of Nuclear Power Safety Monitoring Technology and Equipment,Shenzhen 518172,China

Zhejiang Academy of Special Equipment Science,Hangzhou 310020,China

Suzhou Nuclear Power Research Institute,Suzhou 215004,China

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国家自然科学基金国家自然科学基金国家重点研发计划Open Project of Key Laboratory of MEM of ChinaTechnical Service ProjectsTechnical Service Projects

51975526515054252018YFC08088002020XFZB10HZFS-XZ-2022-07-02XJBY-20211221

2024

中国机械工程学报
中国机械工程学会

中国机械工程学报

CSTPCD
影响因子:0.765
ISSN:1000-9345
年,卷(期):2024.37(1)