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Features |
Advantages |
Disadvantages |
![Radial Infeed](../../../../../../../common/images2/product_img/product/turning/neji_infeed_1.gif)
Radial Infeed |
- Easiest to use. (Standard programme for threading)
- Wide application. (Cutting conditions easy to change.)
- Uniform wear of the right and left sides of the cutting edge.
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- Difficult chip control.
- Subject to vibration in the later in stages of cutting.
- Ineffective for large pitch threading.
- Heavy load on the nose radius.
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![Flank Infeed](../../../../../../../common/images2/product_img/product/turning/neji_infeed_2.gif)
Flank Infeed |
- Relatively easy to use. (Semi-standard programme for threading.)
- Reduced cutting force.
- Suitable for large pitch threads or materials that peel easily.
- Good chip discharge.
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- Large flank wear on the right side of the cutting edge.
- Relatively difficult to change cutting depth. (Re-programming necessary)
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![Modified Flank Infeed](../../../../../../../common/images2/product_img/product/turning/neji_infeed_3.gif)
Modified Flank Infeed |
- Preventing flank wear on the right side of the cutting edge.
- Reduced cutting force.
- Suitable for large pitch threads or materials that peel easily.
- Good chip discharge.
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- Complex machining programming.
- Difficult to change cutting depth. (Re-programming necessary)
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![Incremental Infeed](../../../../../../../common/images2/product_img/product/turning/neji_infeed_4.gif)
Incremental Infeed |
- Uniform flank wear of the right and left sides of the cutting edge.
- Reduced cutting force.
- Suitable for large pitch threads or materials that peel easily.
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- Complex machining programming.
- Difficult to change cutting depth. (Re-programming necessary)
- Difficult chip control.
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