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DOI will be assigned to every published paper at no additional charge. 📢 Call for Papers — Volume 13, Issue 9 (September 2026) | Submission Deadline: September 30, 2026 | Rapid peer review: 2–3 days | Impact Factor: 7.37 (SJIF 2026)

Paper Details

📄 IJAERD-OJS-1373

Effect of Boron carbide and Silicon carbide reinforced particles on the mechanical and metallurgical properties of friction stir welded joints of AA-6063 alloy

Author(s):Inderjeet singh, Tavinder pal Singh, Bharat Kalia
Institution:Assistant Professor in Dept. of Mechanical Engineering Chandigarh Engineering College, Landran, India
Published In:Vol. 3, Issue 4 — April 2016
Page No.:379-384
Domain:Engineering
Type:Research Paper
ISSN (Online):2348-4470
ISSN (Print):2348-6406
Abstract

Friction Stir Welding (FSW) is a solid state joining process. It is used worldwide, especially in automobiledefense and aerospace industries. Welding of similar and dissimilar aluminium alloy exhibits poor weld ability by fusionprocess. Friction stir welding is a technique in which the material that is being welded does not melt and recast. The weldingparameters such as tool rotational speed, welding speed and tool pin profile plays an important role in deciding the weldquality. In the present study, an attempt is made to weld the AA6063 plates by doping SiC and B4C reinforced particles inwelding zone during FSW. The selected material was Friction stir welded at constant tool rotational and welding speed of1600 rpm and 60 mm/min respectively. High chrome high carbon non-consumable cylindrical left handed thread pin profiletool with 4.8 mm pin length and 6 mm pin diameter was used to generate frictional heat and plastic deformation. B4C andSiC particles are doped in a series of holes at the interfaces of plates to be joined to modify the properties of joint. Themechanical and metallurgical properties of welded joint were investigated. From results it was observed that by dopingreinforced particles tensile strength and micro hardness improved as compare to joint welded without using reinforcedparticles. Boron carbide provides better results as compare to silicon carbide. Doping of B4C and SiC particles deterioratesthe impact strength. Dispersion of B4C and SiC particles during Friction Stir welding causes grain refinement in weldedjoints.

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🕮 How to Cite

Inderjeet singh, Tavinder pal Singh, Bharat Kalia, “Effect of Boron carbide and Silicon carbide reinforced particles on the mechanical and metallurgical properties of friction stir welded joints of AA-6063 alloy”, International Journal of Advance Engineering and Research Development (IJAERD), Vol. 3, Issue 4, pp. 379-384, April 2016.

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