Joint shape design method for realizing equal bending bearing of low-match butt-joint joint with base metal
A design method and technology of butt joints, applied in metal processing equipment, edge parts of workpieces, manufacturing tools, etc., can solve the problem of low bending bearing capacity of low matching butt joints
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specific Embodiment approach 1
[0055] Specific implementation mode 1: The joint design method in this implementation mode that enables low-matching butt joints to bear the load according to the strength of the base metal is based on the fact that the central stress concentration factor at the bottom of the weld is equal to the matching ratio of the yield strength of the low-matching joint, and the stress of the weld toe is reduced as much as possible Concentration factor to achieve "equal bending load"; such as figure 2 As shown, in order to reduce the stress concentration at the weld toe, the transition form between the reinforcement and the base metal is a circular arc curve. The shape design method of the weld is:
[0056] Step 1. Calculate the matching ratio of yield strength of low matching joints (The ratio of the yield strength of the weld deposited metal to the yield strength of the base metal):
[0057] (1);
[0058] Design round bar tensile specimens according to tensile ...
specific Embodiment approach 2
[0080] Specific implementation mode two: the difference between this implementation mode and specific implementation mode one is:
[0081] Step 3. Determine the half-width of the capping weld bead w :
[0082] Through analysis and calculation, the center of the bottom of the weld is obtained A Point stress concentration factor and weld reinforcement height h 、Half width of cover weld bead w and half plate thickness t The relationship equation between:
[0083] (3);
[0084] According to the equivalent Von Mises stress calculation:
[0085] (7);
[0086] (8);
[0087] (9);
[0088] According to the bending load condition , Substituting formula (2) into formulas (3), (7), (8) and (9), according to the equivalent Von Mises stress calculation to determine the half-width of the capping weld bead that achieves "equal bending load" with the base metal w .
[0089] Step 4. Weld toe radius r The evaluation process of
[0090] We...
specific Embodiment approach 3
[0098] Specific implementation mode three: the difference between this implementation mode and specific implementation modes one and two is:
[0099] Step 4: In actual production and processing, select an appropriate grinding wheel to grind the welding toe to reduce the stress concentration factor of the welding toe; the radius of the grinding wheel mentioned here is the welding toe radius r .
[0100] Other steps are the same as those in Embodiments 1 and 2.
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