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What are the main advantages and characteristics of ultrasonic wire harness welding machine

  • 2021-11-22

Ultrasonic harness welding machine is a mechanical process, no current flows through the workpiece, so the conductivity of the metal has no effect. Contaminants and oxide layers are generally attached to the metal surface. Using an ultrasonic wire beam welding machine, there is no need to pre-treat the metal surface. Ultrasonic vibration can directly shake the attachment and remove it. Another important advantage of ultrasonic welding is the long life of the workpiece.


advantage:

An important advantage of ultrasonic welding is the low temperature. The generation of temperature is inevitable, it is only caused by friction, which is only equivalent to 1/3 or 1/2 of the melting point of the metal. At the low temperature generated by the welding process, the metal wire retains its original performance due to annealing and the low temperature does not damage the insulation of the wire; in addition, the lower temperature also means that thin metal can be welded to thick metal Without causing damage to thin metal. These are very important in wire harness production.

Most of the metals used in electrical products have good thermal conductivity, which makes it difficult to weld by melting. Because the heat is quickly dissipated from the metal surface, it is necessary to apply more heat to complete the welding. Ultrasonic welding has not encountered these problems. In fact, since no melting occurs, the energy of ultrasonic welding is only 1/30 of that of resistance welding. In other words, the ultrasonic welding machine with a power of 3KW can complete the work that the resistance welding needs 90KVA to complete, so the cost of the work is also obvious.

Features:

There is no need for flux and external heating, no deformation due to heating, no residual stress, and low requirements for pre-welding treatment on the surface of the weldment. Not only the same kind of metal, but also dissimilar metals can also be welded. It is possible to weld thin sheets or filaments to thick plates. Ultrasonic welding of electrical conductors has much less energy than current welding, and is often used for welding transistors or integrated circuit leads.

When used for sealing welding of medicines and explosive materials, it can prevent general welding from contaminating medicines due to dissolved objects, and will not explode due to heat. It uses ultrasonic waves to weld metal wires. It consists of a power box, a transducer, a pneumatic host and a tool head. In addition, it also includes control components such as hubs, wire measuring devices, and microprocessors.

The power box can convert the usual external voltage (220V, 1Φ, 50 or 60Hz) into 20000Hz (20KHz), 1000V voltage, and then output after being adjusted and controlled by the power box to act on the transducer. The transducer is an efficient electrical component that can convert electrical energy into mechanical energy.

Compared with ordinary motors, the transducer has two main differences: First, the transducer converts electrical energy into linear vibration instead of rotation; secondly, it has a very high working efficiency and can convert 95% of the electrical energy. After being converted by the transducer, the mechanical energy is applied to the welding head. The ultrasonic welding head is made of titanium alloy and processed into a specific shape according to the principle of acoustics, thus ensuring the maximum transmission of energy.

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