Copper alloy sliding bearing repairing technology
A sliding bearing and copper alloy technology, applied in the field of bearing repair, can solve problems such as high requirements for the environment and operators, impact on health, and large material loss, and achieve the effects of improving the working environment, large linear expansion coefficient, and stable combustion
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Embodiment 1
[0025] In this embodiment, the chemical composition of the copper alloy sliding bearing is as follows: Sn3.93, Pb16.06, and Cu; the repair process includes the following steps:
[0026] (1) Determine the bearing damage location;
[0027] (2) Grinding the cavitation part;
[0028] (3) welding repair;
[0029] (4) Finishing.
[0030] In step (1), inspect the surface defects, determine the cavitation location, and make a mark.
[0031] In step (2), the sliding bearing is fixed on the vise, and the cavitation part is ground with a grinder, wherein the undamaged contact surface remains.
[0032] In step (3), the process of precision pulse welding is used to repair the copper alloy sliding bearing. The process parameters are: adopt tungsten non-melting electrode, welding current is 30A, welding time is 35ms, wire feeding speed is 4.0r / min, welding wire and The distance between the workpieces is 3mm, the diameter of the welding wire is 1.2mm, the welding pool is protected by argo...
Embodiment 2
[0036] In this embodiment, the chemical composition of the copper alloy sliding bearing is as follows: Sn3.56, Pb16.73, and Cu; the repair process includes the following steps:
[0037] (1) Determine the bearing damage location;
[0038] (2) Grinding the cavitation part;
[0039] (3) welding repair;
[0040] (4) Finishing.
[0041] In step (1), inspect the surface defects, determine the cavitation location, and make a mark.
[0042] In step (2), the sliding bearing is fixed on the vise, and the cavitation part is ground with a grinder, wherein the undamaged contact surface remains.
[0043] In step (3), the process of precision pulse welding is used to repair the copper alloy sliding bearing. The process parameters are: adopt tungsten non-melting electrode, welding current is 25A, welding time is 30ms, wire feeding speed is 3.5r / min, welding wire and The distance between the workpieces is 3mm, the diameter of the welding wire is 1.0mm, the welding pool is protected by argo...
Embodiment 3
[0047] In this embodiment, the chemical composition of the copper alloy sliding bearing is as follows: Sn6.28, Pb11.79, and Cu; the repair process includes the following steps:
[0048] (1) Determine the bearing damage location;
[0049] (2) Grinding the cavitation part;
[0050] (3) welding repair;
[0051] (4) Finishing.
[0052] In step (1), inspect the surface defects, determine the cavitation location, and make a mark.
[0053] In step (2), the sliding bearing is fixed on the vise, and the cavitation part is ground with a grinder, wherein the undamaged contact surface remains.
[0054] In step (3), the process of precision pulse welding is used to repair the copper alloy sliding bearing. The process parameters are: adopt tungsten non-melting electrode, welding current is 35A, welding time is 40ms, wire feeding speed is 3.5r / min, welding wire and The distance between the workpieces is 3mm, the diameter of the welding wire is 1.4mm, the welding pool is protected by argo...
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