Peripheral milling is good for you if you have to mill grooves, shoulders, or any other complex shapes since it provides the precision you require.

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The cutter is cylindrical in shape, which enables deeper cuts; for this reason, peripheral milling is best for applications where precise vertical cutting is required.

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In face milling process, cutting tool will remove the unwanted material from top section of the workpiece. You apply this method when machining flat and horizontal surfaces. It is ideal for the final pass and the sealing of large flat surfaces in a single staging.

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The wide contact between the cutter and workpiece is ideal for removing large volumes of material on wide flat surfaces. This makes it appropriate for both roughing and finishing big, flat surfaces.

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However, if you are working on a workpiece that needs a flat surface on a large area, face milling is preferable. For instance, you apply face milling in the last steps of machining massive components like engine blocks or metal plates.

These cutters are intended for cutting material from the side of the workpiece; therefore, they are fit to use when profile milling, slotting, or cutting grooves.

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Peripheral milling is also known as slab milling. Here, the cutting takes place within the periphery of the tooling system.

Face milling cutters work best in cases where large surfaces need to be covered with limited number of passes. Due to this, they are very useful in machining flat surfaces of the parts.

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This makes this method suitable for detailed practices since it offers the precision and control required in machining work.

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You will usually utilize peripheral milling when fine surface finish and accuracy of vertical surfaces are of high importance. That is in Mold manufacturing or higher accuracy levels of milling.

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At times, deciding to choose the right milling process can be an uphill task. To make the entire process easier for you, let’s look at the difference between these milling processes:

Due to the fact that the cutting action takes place along the edge of the cutter, you can get intricate shapes and forms with great accuracy.

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Further, peripheral milling needs more precision where you require placing the cutter and the workpiece correctly in order to make the profile cuts.

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There can also be reduced tool changes. Hence you can maintain efficiency especially when using tools for large production lines where uniformity in tool performance is desirable.

Peripheral milling is best applied in cases where the depth of cut or the shape of the cut required has to be tightly controlled.

But if you require to machine large flat surfaces, then face milling is the option that can be taken. Face milling is excellent in covering large areas in limited number of passes, making it suitable for finishing and roughing large parts.

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You employ this technique when cutting material from the sides of the workpiece. This is most suitable for cutting slots and shoulders as well as making profiles.

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Some of the few things that should be taken into consideration before choosing include the orientation of the cutter and surface finish requirements. Also, tool condition or wear and your particular application.

Such an orientation makes face milling perfect for large flat horizontal surface machining. Compared to peripheral milling, you can cover a specified wider area in fewer passes.

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The basis for the difference between peripheral milling and face milling is the orientation of the cutter, application, and the kind of surface that you need to produce.

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For instance, if your main aim is to produce accurate profiles, slots or deep grooves, or even vertical cuts you should go for peripheral milling.

Understanding these differences allows you to choose the right milling processes that will fit your needs. This is so that you don’t compromise the performance of your machining exercises.

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When you cut, the sides of the tool come into contact with the material. Thus, perfect for such operations as machining vertical planes, contours, and edges. Due to this orientation, peripheral milling enables you to achieve deeper cuts into the material.

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