Impact of Patch Welding Repair on the Compressive Strength of Thickness-reduced Steel Members
Jiang, Feng
Cheng, Yuxuan
Hirohata, Mikihito
Jármai, Károly
2025-09-10T08:12:56Z
2025-09-10T08:12:56Z
2024
1785-8860
hu_HU
http://hdl.handle.net/20.500.14044/33408
This study explores the efficacy of patch welding repair in restoring the
compressive strength of steel structural members affected by corrosion-induced thickness
reduction. Traditionally, high-strength bolts are the preferred method for patch-repairing
such damages. However, patch welding presents a viable alternative, offering benefits like
light weight and ease of workability. Compression tests were conducted on steel plates with
varied degrees of thickness reduction to assess the effects of patch plate dimensions on the
compressive behavior of the repaired plates. Additionally, elastic-plastic analysis
simulations were performed to scrutinize the behavior of specimens with varying parameters.
The findings suggest that to match the compressive strength of undamaged steel plates, the
thicknesses of the weld throat and patch plates must be increased by a factor of 1.1 relative
to the thickness loss. Moreover, for optimal effectiveness, the length of the patch plate should
exceed the affected area by at least 30 mm. This study illuminates the potential of patch
welding as a repair technique for corrosion-compromised steel structures.
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Impact of Patch Welding Repair on the Compressive Strength of Thickness-reduced Steel Members
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Óbudai Egyetem
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Budapest
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Óbudai Egyetem
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