Effect of temperature and strain rate on the compressive deformation response of closed-cell aluminium hybrid foams

被引:10
作者
Muchhala, Dilip [1 ,2 ]
Yadav, B. N. [1 ]
Pandey, Ashutosh [1 ]
Kumar, Rajeev [1 ,2 ]
Rudra, Amitava [2 ]
Chilla, Venkat [1 ,2 ]
Mondal, D. P. [1 ,2 ]
机构
[1] Acad Sci & Innovat Res AcSIR, Ghaziabad 201002, India
[2] CSIR Adv Mat & Proc Res Inst, Bhopal 462026, India
关键词
Carbon nanotubes; Hot-deformation; Activation energy; Microstructure; Crashworthiness; CARBON NANOTUBES; METAL FOAM; ELEVATED-TEMPERATURES; MECHANICAL-PROPERTIES; DISLOCATION CLIMB; MATRIX COMPOSITES; HOT DEFORMATION; PARTICLE-SIZE; BEHAVIOR; DENSITY;
D O I
10.1016/j.jallcom.2021.162814
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The hot deformation behaviour of Al-Si12CulMg1 alloy foam, Al-Si12CulMg1 alloy-single-wall carbon nanotubes (SWNTs), Al-Sil2CulMg1-cenospheres, and Al-Si12CulMg1-cenosphere-SWNTs hybrid foams (HFs) were investigated at different test temperatures (25-400 degrees C) and strain rates (10(-3)-1 s(-1)) conditions. It is observed that the energy absorption capacity of all the foams decreased with an increased test temperature (TT) whereas it increased with an increase in strain rate. The hybrid foam in which the cenosphere and SWNTs were added together exhibited the highest plateau stress and energy absorption amongst all investigated foams. The strain rate sensitivity and activation energy for each kind of foam was calculated as a function of temperature and strain rate. The activation energy data tells that the deformation mechanism is dominated by vacancy and dislocation diffusion at TT <= 200 degrees C regardless of the type of foam, strain rate and relative density. On the other hand, the deformation mechanism is dominated by dynamic recovery and recrystallization when the TT increase beyond 200 degrees C (TT > 200 degrees C). This study further demonstrates the synergistic effect of cenosphere and SWNTs on enhancing the plateau stress and energy absorption of HFs. (C) 2021 Elsevier B.V. All rights reserved.
引用
收藏
页数:17
相关论文
共 50 条
  • [31] Strain Rate Sensitivity and Constitutive Law of Closed-Cell PVC Foams under Shock
    Xue, Bin
    Zhou, Yong
    MATERIALS, 2023, 16 (14)
  • [32] Compressive properties of closed-cell polyvinyl chloride foams at low and high strain rates: Experimental investigation and critical review of state of the art
    Luong, Dung D.
    Pinisetty, Dinesh
    Gupta, Nikhil
    COMPOSITES PART B-ENGINEERING, 2013, 44 (01) : 403 - 416
  • [33] Investigation of strain-rate effect on the compressive behaviour of closed-cell aluminium foam by 3D image-based modelling
    Sun, Yongle
    Li, Q. M.
    Lowe, T.
    McDonald, S. A.
    Withers, P. J.
    MATERIALS & DESIGN, 2016, 89 : 215 - 224
  • [34] The deformation and failure response of closed-cell PMDI foams subjected to dynamic impact loading
    Koohbor, Behrad
    Mallon, Silas
    Kidane, Addis
    Lu, Wei-Yang
    POLYMER TESTING, 2015, 44 : 112 - 124
  • [35] Micro-macro investigation of deformation and failure in closed-cell aluminum foams
    Kadkhodapour, J.
    Raeisi, S.
    COMPUTATIONAL MATERIALS SCIENCE, 2014, 83 : 137 - 148
  • [36] The compressive properties of closed-cell Zn-22Al foams
    Liu, Jiaan
    Yu, Sirong
    Zhu, Xianyong
    Wei, Ming
    Luo, Yanru
    Liu, Yaohui
    MATERIALS LETTERS, 2008, 62 (4-5) : 683 - 685
  • [37] Initial yield behaviour of closed-cell aluminium foams in biaxial loading
    Vengatachalam, Balaji
    Huang, Rong
    Poh, Leong Hien
    Liu, Zishun
    Qin, Qinghua
    Swaddiwudhipong, Somsak
    INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2021, 191
  • [38] DYNAMIC AND QUASI-STATIC COMPRESSION TESTS OF CLOSED-CELL ALUMINIUM ALLOY FOAMS
    Linul, Emanoil
    Marsavina, Liviu
    Kovacik, Jaroslav
    Sadowski, Tomasz
    PROCEEDINGS OF THE ROMANIAN ACADEMY SERIES A-MATHEMATICS PHYSICS TECHNICAL SCIENCES INFORMATION SCIENCE, 2017, 18 (04): : 361 - 369
  • [39] Improved energy absorption capacity of closed-cell aluminium foams by electroplating
    Liu, Dao-Zhang
    Cheng, Xu
    Liu, Huan
    Shen, Hao-Tian
    Hua, Zhong-Sheng
    He, Shi-Wei
    SURFACE ENGINEERING, 2022, 38 (02) : 166 - 173
  • [40] A constitutive model for the compressive response of metallic closed-cell foams including micro-inertia effects
    Barthelemy, Romain
    Jacques, Nicolas
    Vermeersch, Francois
    Kerampran, Steven
    DYMAT 2015 - 11TH INTERNATIONAL CONFERENCE ON THE MECHANICAL AND PHYSICAL BEHAVIOUR OF MATERIALS UNDER DYNAMIC LOADING, 2015, 94