In the machining process of Fully Automatic CNC Machine, the relationship between cutting force and surface quality is a very important problem. Hard rail Fully Automatic CNC Machine has been widely used in modern manufacturing industry because of its high precision, high efficiency and high stability. In this paper, the relationship between the cutting force and the surface quality of the hard rail machine tool is discussed, and how to optimize the surface quality of the hard rail machine tool is discussed.
Cutting force: In the processing of Fully Automatic CNC Machine, cutting force is a very key parameter. The cutting force directly affects the machining efficiency and machining quality. In the process of cutting, the hard rail machine tool is mainly affected by four forces: cutting force, tangential force, radial force and wear force. The size and mode of action of these forces are completely different, but their combined effect determines the processing efficiency and processing quality of hard rail machine tools.
Second, surface quality: The surface quality of Fully Automatic CNC Machine refers to the flatness, smoothness and roughness of the surface of the workpiece machined by the Machine tool in the process of Fully Automatic CNC Machine processing. The quality of the surface directly affects the quality and service life of the parts processed by the machine tool. Therefore, the surface quality of the hard rail Fully Automatic CNC Machine is a very important issue in the manufacturing industry.
Third, the relationship between cutting force and surface quality: In the processing of hard rail machine tools, there is a certain relationship between cutting force and surface quality. The size and direction of the cutting force will affect the surface quality of the machined workpiece. Sometimes, the cutting force is too large to cause the deformation of the machine tool structure or the surface quality of the workpiece obvious defects, and sometimes the cutting force is too small and will lead to low processing efficiency or surface quality roughness is too high.
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