Tehnologia de placare cu laser: O soluție extrem de practică pentru întreținerea și repararea motoarelor

aprilie 1, 2025

In the maintenance and repair of motors, it is common to encounter situations where certain components do not meet their required dimensions, such as a reduction in the bearing seat size on the motor shaft or an increase in the bearing journal size. Particularly for maintenance and repair units without the ability to process or replace components, localized repair techniques become essential.

Common repair methods such as brushing, welding, and cold welding are frequently used in motor component repairs. Today, we will discuss another repair technology—placare cu laser.

Placare cu laser is a metal material repair technology that adds external materials to the substrate by either synchronously or pre-placing the material. The added materials are irradiated by a laser, causing them to rapidly solidify in conjunction with the substrate material, forming a cladding layer on the substrate surface.

This method allows for metallurgical bonding between the added material and the substrate. The two materials bond securely and exhibit excellent corrosion resistance, oxidation resistance, heat resistance, and wear resistance. These features make placare cu laser highly suitable for component repairs and surface modifications, especially for the repair of thin-layer structures, such as the mating surfaces of motor bearing systems. Currently, placare cu laser is widely used in motor repair units with excellent results.

There are both standard and high-speed placare cu laser systems available on the market. When compared to standard-speed systems, high-speed placare cu laser processes the material at much faster rates, causing the powder to mostly melt in the space under the laser. The laser melts the substrate material in such a way that the resulting molten pool is shallower and smaller, with an ultra-fast cooling rate. As the cladding rate increases, the overlap between cladding passes increases, allowing for the creation of a multi-layered cladding structure. This results in a more uniform coating with less residual stress on the substrate, effectively preventing deformation of the base material.

In real-world production processes, when components do not meet dimensional requirements, many motor manufacturers opt for welding and re-machining methods. However, welding can cause severe deformation of the base material, while machining becomes significantly more difficult. The introduction of automated and intelligent equipment has effectively prevented such issues, making placare cu laser an even more practical repair method. While placare cu laser is primarily a repair technology, its application in maintenance is becoming increasingly common.

Sheldon Li

Dr. Sheldon Li - Inginer șef, Dezvoltarea echipamentelor de producție aditivă Dr. Sheldon Li este un inginer de top și un lider tehnic specializat în cercetarea și dezvoltarea echipamentelor de producție aditivă. Ca expert cu un doctorat în metale neferoase, înțelegerea sa profundă a proprietăților materialelor oferă un avantaj unic în domeniul dezvoltării echipamentelor. Expertiza sa se concentrează pe proiectarea și dezvoltarea echipamentelor de ultimă generație pentru fabricarea aditivă, cu o specializare deosebită în echipamentele de depunere pentru acoperiri metalice funcționale speciale. Aceasta include tehnologii precum depunerea laser a metalelor (LMD), pulverizarea la rece sau depunerea fizică în vapori (PVD) pentru a crea acoperiri pentru rezistență la uzură,...

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