Best Practices for Brazing Connections - Private...
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To schedule private education for your group, contact:

Dale Shuter, CMP
Meetings & Expositions Manager

+1 314 993 2220, ext. 3335
dshuter@easa.com

1 hour of training

$500 for EASA Chapters/Regions
$800 for member companies
$1000 for non-members

How a webinar works

All EASA private webinars are live events in which the audio and video are streamed to your computer over the Internet. Prior to the program, you will receive a web link to join the meeting. 

The presentation portion of the webinar will last about 45 minutes, followed by about 15 minutes of questions and answers.

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Private Webinars

EASA's private webinars are an inexpensive way to bring an EASA engineer into your service center, place of business or group meeting without incurring travel expenses or lost production time.

The list below is a sampling of topics that could be made available to your group. Any webinar previously presented by EASA staff could potentially be made available for your meeting!
See other topics presented previously.

Article

Best Practices for Brazing Connections

  • September 2026
  • Number of views: 255
  • Article rating:

Chase Fell
Jay Industrial Repair
Docena, Alabama 

Brazing is the most common joining process used in electric motor and generator connections for AC machines. Whether reconnecting stator coils, joining rotor conductors, or repairing hydro generator windings, a properly executed braze will provide excellent electrical integrity and mechanical strength. Brazing is the process of joining two or more metals by melting a filler metal that flows into the joint by means of capillary action. The braze filler metal has a lower melting point than the adjoining metal. Brazing does not melt the work piece. Soldering is similar to brazing, but with soldering, the melting point is much lower than with brazing materials. And the soldered joint is mechanically not as strong as it is with braze. 

Many brazing failures can be traced to a short list of preventable mistakes. Poor cleaning, improper heating, excessive joint gaps and incorrect use of flux are among the most common causes of weak or unreliable braze connections.

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