Optimizing Friction Stir Spot Welding Parameters for Enhanced Mechanical, Thermal, and Microstructural Properties of PA6. [PDF]
Danış Bekdemir A, Karagöz İ.
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Tool Geometries and Design of Friction Stir Spot Welding (FSSW) Tools and Effect on Weld Properties-A Comprehensive Review. [PDF]
Arumugam A +3 more
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Friction Stir Spot Welding of Aluminum and Copper: A Review. [PDF]
Li M +5 more
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Optimization and Analysis of Refill Friction Stir Spot Welding (RFSSW) Parameters of Dissimilar Aluminum Alloy Joints by FE and ANN Methods. [PDF]
Bîrsan DC, Susac F, Teodor VG.
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Investigation of Friction Stir Spot Welding Method
Sürtünme Karıştırma Nokta Kaynağı (SKNK) yöntemi, Sürtünme Karıştırma Kaynağı (SKK) yönteminden türetilmiş ve son zamanlarda sadece otomobil sektöründe değil aynı zamanda diğer endüstri kollarında da oldukça dikkat çeken yeni bir kaynak yöntemdir. Her iki yöntemde de birleştirme mekanizması aynıdır. Ancak aralarında uygulama farklılıkları vardır.
MERT, Şenol, MERT, Sevda
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ALE Formulation for the Numerical Simulation of Friction Stir Welding
http://congress.cimne.com/complas05/admin/Files/FilePaper/p50.pdfAn Arbitrary Lagrangian Eulerian approach is used to simulate the Friction Stir Process.
Fourment, Lionel, Guerdoux, Simon
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Corrigendum to "The effect of pin diameter, tool penetration depth and plate arrangement on mechanical and metallurgical properties of 6061-T6 and 5052-T32 aluminum dissimilar joints in friction stir spot welding (FSSW)" [Heliyon Volume 10, Issue 17, September 2024, Article e36962]. [PDF]
Feizollahi V +6 more
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Design of Friction Stir Spot Welding Tools by Using a Novel Thermal-Mechanical Approach. [PDF]
Su ZM, Qiu QH, Lin PC.
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The effect of pin diameter, tool penetration depth and plate arrangement on mechanical and metallurgical properties of 6061-T6 and 5052-T32 aluminum dissimilar joints in friction stir spot welding (FSSW). [PDF]
Feizollahi V +6 more
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Research on the Surface-State Parameterization of a Refill Friction Stir Spot Welding Joint Made of Aluminum Alloy and Its Connection to the Fracture Mode. [PDF]
Zhong H, Xu G, Dong J, Gu X, Fan Q.
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