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May 28, 2026Materials Today Communications0 citationsOpen Access

Enhancement of Tubesheet Integrity and Longevity via GTAW Cladding: Experimental Assessment and Inspection Methods

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MSMohamed Fayas SaffiudeenSVS. VasanthFMFasil T. Mohammed

Key Points

  • The study investigates the effectiveness of Gas Tungsten Arc Welding cladding in enhancing tubesheet joint integrity against corrosion and mechanical stresses.
  • Cladding applied using GTAW on carbon steel tubesheets with stainless steel tubes.
  • Ten samples prepared and evaluated through visual, liquid penetrant, and macroscopic inspections.
  • Assessments included hardness measurements and chemical composition analysis.
  • GTAW cladding significantly improved joint quality and mechanical integrity of TTS welds.
  • Clad joints exhibited enhanced corrosion resistance compared to uncoated joints.
  • Demonstrated leak tightness and reliable operational performance for industrial applications.

Abstract

Shell and tube heat exchanger’s reliability and operational safety rely much more on the integrity of the tube to tubesheet (TTS) joint that can be ruined by different factors likes corrosion, erosion, and mechanical stresses. To counter such failures, cladding techniques are employed to deposit a metallic layer protective improving in corrosion resistance of the joint performance at reduced cost. Therefore, this study aimed at investigating the application of Gas Tungsten Arc Welding (GTAW) 10 mm cladding on 50 mm thickness carbon steel (CS) tubesheet (SA 516 Gr.70 N) with outer diameter stainless steel tubes (SA 213 TP 304 L) of 19.05 mm. A total of ten samples were then prepared and the resulting joint quality was evaluated using multiple methods of inspection with reference to ASME Section IX QW 193.1-191.3 standards. These included visual inspection, liquid penetrant testing, macroscopic examination. Additionally, hardness measurements, ferrite testing, and chemical composition analysis were carried out to ensure the quality and integrity of the TTS joints. It is seen from this experimental evidence that cladding achieved via GTAW replicates better joint quality, mechanical integrity, and corrosion resistance for the TTS welds. These findings suggest that using GTAW cladding tends to improve the performance improvement and leak tightness of the tubesheet joints, which ensures their reliable operation and extended joint integrity in various industrial applications. This study reiterates the need for proper cladding techniques and thorough inspection protocols for optimal performances and longevity in keeping critical heat exchanger components well.

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Cite This Study

Saffiudeen et al. (2026) studied this question.

synapsesocial.com/papers/6a17daca3fad632b0f9d7b7fhttps://doi.org/10.1016/j.mtcomm.2026.115433
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Experimental Analysis of Multi-Pass GTAW Techniques for Tube-to-Tubesheet Welding in Heat Exchangers2025 · 1 citations
  2. 2Combined Gas Tungsten Arc Welding and Shielded Metal Arc Welding Processes for Joining Tube to Tubesheet in Shell and Tube Heat Exchangers2024 · 1 citations
  3. 3Hot-Wire Gas Tungsten Arc Welding Cladding of Super Austenitic Stainless Steel on Low Carbon Steel2026
  4. 4Characterization of Macro/Microstructure and Corrosion Resistance of Austenitic Gas Tungsten Arc Welding Cladding2026
  5. 5PREPARATION OF COMPONENTS FOR ORBITAL WELDING OF TITANIUM TUBES WITH TITANIUM CLAD STEEL SIEVE BOTTOM2024