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Joining technology2 min read

Ultrasonic splice in the wiring harness: structure, applications and quality

Wherever several cables meet electrically, the wiring harness needs a node. Ultrasonic welding creates that node compactly, without solder and without a sleeve.

Ultrasonically welded strand nodes from our production
From our production: Ultrasonically welded strand nodes from our production.

How an ultrasonic splice is made

The stripped strands of several cables are pressed together between a vibrating sonotrode and an anvil. High frequency mechanical vibration rubs the wires against each other, breaks up oxide layers and joins the metals into a metallurgical bond without melting them. The result is a compact, solid node.

What splices are used for in the wiring harness

  • Ground distributions where many cables come together at one point
  • Power distributions for several loads
  • Through nodes where one cable continues and branches off
  • End nodes that combine several cables at one end

Advantages over other connections

  • Compact and light, without added material such as solder or a sleeve
  • Low contact resistance thanks to the metallurgical bond
  • No rigid, solder soaked zone in the stranded conductor
  • Reproducible thanks to a parameterised process

After welding, the node is insulated, usually with heat shrink tubing, and integrated into the wiring harness.

Assuring quality

Quality depends on the parameters for the particular combination of cross sections. Energy, pressure and amplitude are set and monitored accordingly. To approve new combinations, splices are typically tested mechanically, for example with pull or peel tests. In the finished wiring harness, the electrical test proves that all cables of the node are correctly connected.

At Powertune, ultrasonic splices are produced on a Schunk Minic III. For an overview of all joining techniques, see the article Crimping, soldering or ultrasonic welding?

FAQ

Answered briefly.

Does the copper melt during ultrasonic welding?

No. The joint is formed by friction and pressure below the melting temperature. Oxide layers are broken up and the metals form a metallurgical bond.

How many cables can one splice join?

That depends on the cross sections and on the machine. What matters is the total cross section the machine can weld reliably.

How is a splice insulated?

Usually with heat shrink tubing, with an internal adhesive where additional sealing is required. The node is then integrated into the wiring harness and protected.