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The maximum achievable weld strength depends on the material grade.
The study will consider panel sizing and local material grade optimization.
Steel pipes with D/t ratio and material grade typical for oil and gas pipelines are considered.
Effect of different parameters such as pressure, diameter, and material grade can be investigated by developed model.
The material grade selection of pipe concerns about the following factors: cost, resistance to corrosion effects, weight requirement and weld ability.
The influence of tooth size and shape, pipeline diameter and wall thickness, internal pressure, material grade, and tooth position and orientation on the puncture load are investigated.
Similar(42)
This approach is applicable for different material grades.
The chapter also discusses the selection of material grades for rigid pipelines and risers.
Material grading above and below the cut-off is directed to different destinations.
The introduction of material grading does, in some cases, improve the aeroelastic performance.
The influences of material grades, material thickness, piercing direction and the use of structural adhesive on the rivet samples' fatigue behaviors were investigated.
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