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Introduction to the Mold of Ultrasonic Metal Fusion Splicing Machine

Introduction to the Mold of Ultrasonic Metal Fusion Splicing Machine


The process of completing the ultrasonic metal welding machine mold is complex, and it is a representative aspect of the depth of ultrasonic technology. Even though ultrasonic metal fusion splicers have several years of design and development experience, only ultrasonic metal fusion splicers can produce good welding heads through strict testing and quality control. Ultrasonic metal fusion splicers must perfectly combine the acoustic and mechanical characteristics of the welding heads to ensure that the welding heads of ultrasonic metal fusion splicers can effectively transmit the mechanical vibration converted by ultrasonic transducers to the workpiece, so as to continuously and stably weld and make ultrasonic molds that meet customer products.

2. The shape of the product

What welding/fusion process is used for the ultrasonic metal fusion splicer, and the size of the ultrasonic mold.

3. Plastic properties of ultrasonic metal fusion splicer

The working amplitude of the ultrasonic mold is determined, and the ultrasonic metal fusion machine should receive ultrasonic energy during operation, including the form, position, and size of the energy conducting line.

A brief introduction to ultrasonic fusion splicer

To understand what ultrasonic welding machines are, it is necessary to first understand what sound waves are and what ultrasound waves are. These two concepts are very important for us to understand the working principle of ultrasonic welding machines.

Regarding sound waves, it is a concept in physics and a well-known term in the field of acoustics. Its generation is a type of sound produced by fluctuations caused by elasticity or inertia. If we use graphics to describe sound waves, it is a downward curve, and as time goes on, the frequency and amplitude of the fluctuations will decrease until they eventually disappear. During this process, the changes in sound waves are tortuous. For elasticity, the definition given by physics is that objects have a strong desire to return to their original state when twisted or deformed. This is the nature of objects, and this property is called elasticity. And inertia is related to the mass of physics.

Regarding ultrasound, it is beyond the normal range of sound waves. Because we all know that in order to hear a sound, the frequency of the sound wave must be between 6 Hz and 20 kHz. If it is below 6 Hz or above 20 Hz, we humans cannot hear this sound. And sound waves with frequencies higher than 20 kHz are named ultrasonic waves.

And the ultrasonic welding machine also uses these principles to complete the work. Although it may not seem easy to understand, it has shown very good results in practical use.


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