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How to choose the right machine tool high hardness end mills

(Summary description)For CNC lathes, the selected high hardness end mills not only require high wear resistance, sufficient toughness and strength, but also high hardness, high heat resistance and good process performance, but also require dimensional stability.

How to choose the right machine tool high hardness end mills

(Summary description)For CNC lathes, the selected high hardness end mills not only require high wear resistance, sufficient toughness and strength, but also high hardness, high heat resistance and good process performance, but also require dimensional stability.

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For CNC lathes, the selected high hardness end mills not only require high wear resistance, sufficient toughness and strength, but also high hardness, high heat resistance and good process performance, but also require dimensional stability. Adjustment and installation are convenient and trouble-free, so new and high-quality materials should be used to manufacture CNC machining tools, and the parameters of the tools should be optimized, mainly to adapt the size of the tool to the size and shape of the workpiece surface to be processed.

good price and quality high hardness end mills

In the process of selecting high hardness end mills, we should choose a tool with a larger diameter as much as possible under the premise of meeting the processing requirements of the part, which has better strength and toughness. In the same process, the number of selected tools is as small as possible to reduce the number of tool changes. When selecting tools, choose general standard tools as much as possible, and do not choose or use special non-standard tools.

The selection of tool setting points needs to strictly comply with the following points: it is convenient to use digital processing and simplify programming; it needs to be easy to find on the lathe, and the processing is convenient for inspection; the resulting machining error needs to be extremely small. The position of the tool setting point can be selected on the workpiece, of course, it can also be selected outside the workpiece, such as a fixture or a lathe, but it must have a certain dimensional relationship with the positioning datum of the part. The tool setting point should be selected as much as possible on the design basis or process basis of the part. For example, for a workpiece positioned by a hole, the center of the hole can be selected as the tool setting point.
 

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