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MOORING BRIDLE PLATE
OR PADEYE DESIGN VERIFICATION
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Padeye Check
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1) GEOMETRY
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Figure : Padeye
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Figure: shackle
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Padeye
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Length of Main Plate, L
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mm
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Thickness of Main Plate,T
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mm
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Height to Pinhole, LA
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mm
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Diameter of Padeye hole, D =
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mm
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Radius of Padeye, R
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mm
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Diameter of Cheek Plate, dcheek
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mm
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Thickness of Cheek Plate, tcheek
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mm
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Stiffener Length, Ls
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mm
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Stiffener Thickness, ts
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mm
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Shackle
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Internal Length, C
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mm
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Internal Width, A
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mm
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Eye Diameter, F
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mm
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Pin Diameter, B
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mm
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2) INPUT FORCES
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Pulling Load on Pullhead (Padeye), Fpull
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MT
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In-plane angle, α
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deg
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Out-of-plane angle, β
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deg
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Padeye Material Yield Stress, Fyield,padeye
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MPa
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Material Young's Modulus, E
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MPa
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3) RESULTS SUMMARY
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Bearing Stress
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Block Shear
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Cheek Plate Weld Stress
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Shear Stress in Section A-A
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Tensile Stress Section B-B
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4) CALCULATIONS
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Bearing Stress
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Allowable Bearing Stress, 0.9Fyield
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MPa
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Bearing Stress
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MPa
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Ratio
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Block Shear
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Ratio
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Cheek Plate Weld Stress
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Min Weld Thickness Required
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mm
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Weld Thickness
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mm
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Effective Weld Thickness, t,weld
effective
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mm
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Weld Stress
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MPa
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Ratio
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Shear Stress in Section A-A
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Allowable Shear Stress, 0.4Fyield
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MPa
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Shear Stress in Section A-A
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MPa
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Ratio
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Tensile Stress in Section B-B
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Allowable Tensile Stress, 0.6Fyield
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MPa
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Tensile Stress in Section B-B =
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MPa
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Ratio
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Combined Stress in Section CC
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Shear Force, F2
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kN
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Shear Stress, σshear
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MPa
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Ratio
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Allowable Bending Stress, 0.6Fyield
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MPa
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In-Plane Bending Stress, σip
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MPa
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Ratio
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Allowable Bending Stress, 0.6Fyield
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MPa
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Out-of-Plane Bending Stress, σop
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MPa
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Ratio
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Unity Check
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Padeye Weld Check
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Thickness of baseplate/ deck, tbase
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mm
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Min Weld Thickness Required
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mm
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Weld Thickness, tweld
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Effective Weld Thickness, t,weld
effective
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mm
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Shear Stress in Weld
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MPa
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Ratio
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