Exploring the Influence of SiC Particles on Temperature Variations, Microstructural Evolution, and Mechanical Characteristics in the Friction Stir Processing of AA6061-T6 Plates

被引:1
作者
Suman, Setu [1 ]
Sethi, Durjyodhan [2 ]
Acharya, Uttam [3 ]
Roy, Barnik Saha [4 ]
机构
[1] Indian Inst Technol Indore, Discipline Mech Engn, Indore 453552, India
[2] Gandhi Inst Educ & Technol, Dept Mech Engn, Khurja 752060, India
[3] Amity Univ Kolkata, Mech & Automat Engn Dept, ASETK, Rajarhat 700135, West Bengal, India
[4] Natl Inst Technol Agartala, Dept Mech Engn, Jirania 799046, West Tripura, India
关键词
Friction stir processing; Volume fraction; Microstructure; Mechanical properties; Particle reinforcement; Temperature distribution; THERMAL-CONDUCTIVITY; PROCESS PARAMETERS; COMPOSITES; NANOCOMPOSITE; WEAR; SIZE; FSW; CU;
D O I
10.1007/s12633-023-02827-3
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
This study investigates the temperature distribution behavior during friction stir Processing (FSP) of AA6061-T6 plates with varying SiC particle volume fractions (Vf). FSP have been conducted under consistent parameters: a tool rotational speed of 1100 rpm, tool traverse speed of 1.5 mm/s, and tool tilt angle of 2 degrees. Temperature was monitored using K-type thermocouples inserted into the plates, providing a temperature distribution profile for variation in SiCp. Scanning electron microscopy and optical imaging was employed for surface morphology analysis. Mechanical properties such as ultimate tensile strength, yield stress, % elongation, microhardness, and fractography were examined. The findings revealed a continuous increase in temperature with Vf, peaking at 0.25% Vf (353.45 degrees C) and then decreasing at 0.3% Vf (295.66 degrees C). Microstructure analysis showed uniform SiCp distribution at 0.25% Vf. Similar trends were observed for ultimate tensile strength, yield strength, and microhardness, with maximum values of 341 MPa, 233 MPa, and 127 HV0.1, respectively, at 0.25% Vf. % elongation decreased with increasing Vf. These results contribute to the understanding of how SiCp reinforcement affects the FSW process and the resultant material properties.
引用
收藏
页码:2219 / 2231
页数:13
相关论文
共 58 条
  • [1] Microstructure and mechanical properties of Cu/SiC metal matrix composite fabricated via friction stir processing
    Akramifard, H. R.
    Shamanian, M.
    Sabbaghian, M.
    Esmailzadeh, M.
    [J]. MATERIALS & DESIGN, 2014, 54 : 838 - 844
  • [2] Investigation of SiC Nanoparticle Size and Distribution Effects on Microstructure and Mechanical Properties of Al/SiC/Cu Composite during the FSSW Process: Experimental and Simulation
    Bagheri, Behrouz
    Shamsipur, Ali
    Abdollahzadeh, Amin
    Mirsalehi, Seyyed Ehsan
    [J]. METALS AND MATERIALS INTERNATIONAL, 2023, 29 (04) : 1095 - 1112
  • [3] Exploring the effects of SiC reinforcement incorporation on mechanical properties of friction stir welded 7075 aluminum alloy: Fatigue life, impact energy, tensile strength
    Bahrami, Mohsen
    Helmi, Nader
    Dehghani, Kamran
    Givi, Mohammad Kazem Besharati
    [J]. MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2014, 595 : 173 - 178
  • [4] An experimental investigation of torque and force generation for varying tool tilt angles and their effects on microstructure and mechanical properties: Friction stir welding of AA 6061-T6
    Banik, Abhijit
    Roy, Barnik Saha
    Barma, John Deb
    Saha, Subhash C.
    [J]. JOURNAL OF MANUFACTURING PROCESSES, 2018, 31 : 395 - 404
  • [5] Investigation of mechanical properties of Cu/SiC composite fabricated by FSP: Effect of SiC particles' size and volume fraction
    Barmouz, M.
    Asadi, P.
    Givi, M. K. Besharati
    Taherishargh, M.
    [J]. MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2011, 528 (03): : 1740 - 1749
  • [6] Friction stir welding of AA5052: the effects of SiC nano-particles addition
    Bodaghi, Mohsen
    Dehghani, Kamran
    [J]. INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2017, 88 (9-12) : 2651 - 2660
  • [7] Brown ER., 2012, MAT INNOV, V18, P45
  • [8] Temperature Distribution During Friction Stir Welding of AA2014 Aluminum Alloy: Experimental and Statistical Analysis
    Chaudhary, Bhavesh
    Patel, Vivek
    Ramkumar, P. L.
    Vora, Jay
    [J]. TRANSACTIONS OF THE INDIAN INSTITUTE OF METALS, 2019, 72 (04) : 969 - 981
  • [9] Chu K, 2010, RARE METALS, V29, P86, DOI [10.1007/S12598-010-0015-5, 10.1007/s12598-010-0015-5]
  • [10] The thermal conductivity of pressure infiltrated SiCp/Al composites with various size distributions: Experimental study and modeling
    Chu, Ke
    Jia, Chengchang
    Liang, Xuebing
    Chen, Hui
    Guo, Hong
    [J]. MATERIALS & DESIGN, 2009, 30 (09) : 3497 - 3503