How To Control The Roughness Of The Machining Surface Of Automated Parts?

Oct 30, 2019

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For the processing of parts, precision is a major requirement. Of course, in addition to this, there is also the surface roughness of the workpieces of automated parts processing, which can also be called smoothness. Generally, the surface roughness requirements of precision machining parts are relatively high. In the process, how can we control the roughness of the surface of automated parts? Today I will teach you a few tricks:


1.Different raw material selection: Mechanical equipment parts are composed of many different raw materials. Depending on the density of the raw materials, the selection of tools and machine tools in the process of automated parts is directly related to the appearance roughness.


2. Select reasonable processing technology: In the process of automated parts processing, the processing process is also very important. If the process flow is not reasonable, it may affect the processing quality and output power. Many automated parts require that the finished finish finish after roughing.


3. Control the oscillation of the machine tool: You can start by reducing the conflict between the tool and the workpiece, squeezing, sharpening the cutting edge of the tool, filling the cutting fluid and performing appropriate heat treatment on some tough workpiece materials.


4. Choosing the parameters of the tool: From the parameters of the processing tool, the declination angle can be appropriately reduced and the arc radius of the tool tip can be increased. If necessary, the smoothing edge can be ground. Makes cutting simple and reduces appearance roughness.


5, cutting processing consumption: refers to the amount of cutting feed can be appropriately reduced appearance processing. Under normal circumstances, the smaller the official service requirements of mechanical parts, the smaller the appearance roughness of mechanical parts, but there is no fixed functional relationship between them. There is sufficient reference material to use the analogy method, and a variety of materials and literature are provided in various existing mechanical design manuals.

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