GME 17400-2015 Welding of Rear Seat Metal Structures (Issue 1 English).pdf
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1、EUROPEENGINEERINGSTANDARDSGeneral Specification GME17400Welding of Rear Seat Metal Structures Copyright 2015 General Motors Company All Rights ReservedOctober 2015 Page 1 of 171 IntroductionNote: Nothing in this standard supercedes applicable laws and regulations.Note: In the event of conflict betwe
2、en the English and domestic language, the English language shall takeprecedence.1.1 Purpose. This standard describes the general requirements, designs and tests concerning laser-weldedjoints where 2- and 3- pieces of sheet metal are joined and contains general information to the design of a laser-we
3、lded joint in case where detailed information is not stated on the drawings.Metallurgical aspects, e.g. grain size and hard-ness, are not considered.The criteria established in this standard become mandatory when referenced on a weld design document.Deviations from any weld criteria provided in this
4、 standard shall be identified on a weld design document.1.2 Applicability. This standard is applicable to laser stainless steels and high strength low alloy (HSLA) steelswith a carbon content of 25 % of the Welded Seam Length LsFigure 7: Stiffness CalculationGM EUROPE ENGINEERING STANDARDS GME17400
5、Copyright 2015 General Motors Company All Rights ReservedOctober 2015 Page 6 of 17Figure 8: Measurement of Seam Widtha Seam width4.4.3.1.1 With Material Thicknesses at the Ratio of 1:3. In welded joints the minimum penetration depth ise 1 x t1. “t1” represents the thickness of the thinner piece of s
6、heet metal (see Figure 9).Figure 9: Ratio of Material Thicknesses 1:34.4.3.1.2 With Material Thicknesses at the Ratio of 1:3. It is advisable that the welding seam go throughthe welding components completely (Weld through). With a following visual check the complete penetration ofthe welding seam sh
7、all be optically checked on the opposite side of the welding direction (see Figure 10).Figure 10: Ratio of Material Thicknesses 1:34.4.3.2 Seam Length.4.4.3.2.1 Length of the Weld Surface LS. The length of the weld which is measured on the surface of the sheetmetal is designated the seam length LS.
8、The measure LS shall be within the dimension specified on the drawing(see Figure 11).GM EUROPE ENGINEERING STANDARDS GME17400 Copyright 2015 General Motors Company All Rights ReservedOctober 2015 Page 7 of 17Figure 11: Length of Weld Surface LS / Fusion Length LF4.4.3.2.2 Fusion Length LF. Length of
9、 seam measured on the contact surface less all the internal seam faultsis designated the LF (see Figure 11).4.4.3.3 Weld Seam Position. The position of the weld seam shall correspond to drawing specifications.The following values shall be considered as position and dimensional tolerances. Unless oth
10、erwise specified onthe drawing the weld position of measures X and/or Y can vary 1.5 mm from the table (see Figure 13). Thisvalue does not cover the tolerance of the components (see Figure 12).Figure 12: Weld Seam PositionFigure 13: Example for the Table of Drawing4.4.4 Irregularities in the Welded
11、Seam. If not otherwise specified on the drawing, over a length of:30 % of the sheet metalthickness, edge notches, surface porosity and weld overfill 20 % of the sheet metal thickness are designatedexternal welded seam irregularities.Figure 18: Example of Sum for External Faults4.4.6.1 Root Concavity
12、 (Weld Surface Concavity). In root concavity the weld underbead has a concave shape(see Figure 19).Limit values:h3/4 0.5 x tmint 0,7mmh3/4 0.35 x tmint = 0.7 mm to 1.0 mmh3/4 0.3 x tmint 1.0 mmGM EUROPE ENGINEERING STANDARDS GME17400 Copyright 2015 General Motors Company All Rights ReservedOctober 2
13、015 Page 10 of 17Figure 19: Weld Surface Concavity; Root Concavityh3 Weld surface concavityh4 Root concavity4.4.6.2 Edge Notches. The transition between the weld surface and the workpiece surface is interrupted bylongitudinal grooves at the side (see Figure 20).GM EUROPE ENGINEERING STANDARDS GME174
14、00 Copyright 2015 General Motors Company All Rights ReservedOctober 2015 Page 11 of 17Figure 20: Edge Notches and Example of Sum for Internal and External FaultsA UnderfillingB Edge notch4.4.6.3 Weld Spatter. Melt can be thrown out, e.g. as a consequence of a too small joint gap. The extent towhich
15、weld spatter shall be removed is dependent on the position of the component. Corresponding modes ofprocedure shall be regulated in a work instruction (see Figure 21).GM EUROPE ENGINEERING STANDARDS GME17400 Copyright 2015 General Motors Company All Rights ReservedOctober 2015 Page 12 of 17Figure 21:
16、 Schematic Diagram of Weld Spatter4.4.6.4 Weld Overfill, Root Overfill. In weld overfill the top bead of the weld has a convex shape. In root overfillthe weld root has a convex shape.The maximum permissible limit values for weld overfill and root overfill (see Figure 22) are:h1/2 0.5 x tmint 0.7 mmh
17、1/2 0.35 x tmint = 0.7 mm to 1.0 mmh1/2 0.2 x tmint 1.0 mmFigure 22: Weld Overfill, Root Overfillh1 Weld overfillh2 Root overfill4.4.6.5 Holes. If holes are present, the reference in paragraph 1 about the requirements regardingwatertightness shall be noted.4.4.6.6 Surface Porosity. Discontinuous dep
18、ressions are designated surface porosity (see Figure 23).These defects require the welding parameters to be optimised. Whether porosities are generally permitted canbe specified on the drawing.GM EUROPE ENGINEERING STANDARDS GME17400 Copyright 2015 General Motors Company All Rights ReservedOctober 2
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