Principle of Oscillating Knife Automatic Cutting Machine
Understand the principle of oscillating knife automatic cutting machine
The vibrating knife cutting machine is a mechanical device used for precision processing. It uses two mutually offset vibrating knives for cutting. The most important component of the vibrating knife cutting machine is the vibrating knife, which is a vibrating knife with adjustable frequency and amplitude and flexible/flexible performance. It has a stirring and crushing function, which can effectively solve the problem that traditional cutting machines cannot ideally cut high-hardness materials.
The principle of the vibrating knife cutting machine is to use the packing walker assembled on the main shaft through rigid turns, use the packing walker to generate vibration, convert the vibration into three-dimensional vibration, and make it act on the vibrating knife. Due to the flexibility and elasticity of the vibrating knife, the vibrating knife has almost no phenomenon of scraping away the material. When the material is stirred and crushed, the material is pushed and dispersed by the power. When the vibrating knife acts on the material, the phenomenon of general tool cutting pulling the material out of the depth radius will not occur, which enables the vibrating knife cutting machine to process high-precision parts with a certain depth and diameter.
The working mode of the vibrating knife cutting machine is manual mode and automatic mode. In manual mode, the operator needs to control the precise position of the vibration knife and the time required for vibration when cutting the substrate, but the handle is too large and the operator’s skills are insufficient, which may affect the quality of the project. Therefore, the automatic mode uses electrical automatic drive control to control the precise position and vibration time, which can improve the quality of the project.
In addition, the vibration knife cutting machine also has the advantages of reducing material adhesion and saving materials. It can reduce material adhesion, improve material mixing accuracy, reduce processing time, and reduce energy consumption. It can also save materials because the displacement between the cutting surface and the material is uniform, thereby reducing the processing tolerance and reducing the polishing process, thereby saving the consumption of industrial raw materials and reducing cost expenses.
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