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Item No.: 14910003190 Construction: Axial Coolant: ICS & ECS Tool Clamping: Capto C5
Item No.: 14910001650 Construction: Axial Coolant: ICS & ECS Tool Clamping: ø 40
In the milling machining process, based on the difference between the milling cutter rotation direction and the workpiece feed direction, is generally defined as down-milling and up-milling.Down-milling, also known as climb milling, is a machining process, when the cutter cuts into the workpiece, the direction of cutting speed is the same as the feed direction of the workpiece. Up-milling, also known as conventional milling, stands for another milling machining process, when the milling cutter cuts into the workpiece, the cutter rotation direction at the point of engagement is opposite to the workpiece feed direction.
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Item No.: 14910002450 Construction: Axial Coolant: ICS & ECS Tool Clamping: Capto C6
2. The workpiece is with superficial hardened layer, like casting parts or forging parts, it is better to adopt up-milling because, in the down-milling process, the cutting edge starts the cutting from the workpiece surface which has a superficial hardened layer, it will easy to damage the cutting edge.
In up milling, the vertical cutting force is upward, it tends to lift off the workpiece, in order to mount the workpiece firmly, a more rigid fixture is needed. And the horizontal cutting force is the opposite of the workpiece feed direction, it tends to push the cutter away from the workpiece, and ensure better engagement between the lead screws and nuts, so it is not required a backlash eliminator in this milling process.
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Item No.: 14101002120 Construction: Radial Gear Ratio: 1:1 Coolant: ICS & ECS Tool Clamping: Capto C4 Bearing: Spindle Bearing
In down milling, the vertical cutting force is downward, which will help to press the workpiece tighter, and the horizontal cutting force is in the same direction as the workpiece feed direction, it tends to pull the workpiece into the cutter, and there is the clearance between the lead screws and nuts. If the machine is without a backlash eliminator, the feed rate is increased inadvertently, the working table will vibrate, and it will lead to excessive chip thickness and cutting edge broken.
In down milling, the average cutting thickness is bigger, and cutting deformation is smaller, so it consumes less power compared to up milling process, for example, if cutting the carbon steel, the power consumption of down milling is 5% lower than that of the up milling, but for the difficult-to-machine material, the saver can be up to 14%.
Item No.: 14910002680 Construction: Axial Coolant: ICS & ECS Tool Clamping: Capto C4
Carbide-tipped jobber-length drill bits have carbide cutting edges that provide excellent hardness, wear resistance, and heat resistance.
Item No.: 14800004110 Construction: Axial Gear Ratio: 1:1 Coolant: ICS & ECS Tool Clamping: ERC 32 Bearing: Spindle Bearing
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Item No.: 14800003280 Construction: Axial Gear Ratio: 1:1 Coolant: ICS & ECS Tool Clamping: Capto C4 Bearing: Spindle Bearing
Item No.: 14101003060 Construction: Radial Gear Ratio: 1:1 Coolant: ICS & ECS Tool Clamping: ERC 32 Bearing: Spindle Bearing
Item No.: 14910002071 Construction: Radial Coolant: ECS Tool Clamping: 4x32
Item No.: 14910001960 Construction: Axial Coolant: ICS & ECS Tool Clamping: Capto C4
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In up-milling, the uncut chip thickness gradually increases from zero to maximum at the point of disengagement. The cutting edge will rub with the machined surface before starting a real cutting process, it will lead to high temperature and work hardening on the machined surface. Also, the thick chips at the end of the cut will cause high tensile stresses which will result in rapid cutting-edge failure and shorter tool life. Also, the chips may stick or be welded to the cutting edge, which will be carried to the start of the next cut.
Item No.: 14101003070 Construction: Radial Gear Ratio: 1:1 Coolant: ECS Tool Clamping: ER 32 Bearing: Spindle Bearing
Item No.: 14910001691 Construction: Radial Coolant: ECS Tool Clamping: 4x32
Item No.: 14910002690 Construction: Axial Coolant: ICS & ECS Tool Clamping: Capto C4
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In down-milling, the chip thickness gradually decreases from the maximum at the start of the cut to zero, the cutting tool is easy to cut into the workpiece. Avoid the cutting edge rubbing against the surface before engaging in the cut. Thus less heat was generated, and minimal work-hardening.
Item No.: 14910003880 Construction: Radial Coolant: ICS & ECS Tool Clamping: Capto C5
Item No.: 14910001670 Construction: Radial Coolant: ECS Tool Clamping: 25x25
Item No.: 14910002460 Construction: Radial Coolant: ICS & ECS Tool Clamping: Capto C6
Item No.: 14910001680 Construction: Axial Coolant: ECS Tool Clamping: 25x25
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Item No.: 14910003810 Construction: Radial Coolant: ECS Tool Clamping: 4x32
Item No.: 14101003140 Construction: Radial Gear Ratio: 1:1 Coolant: ECS Tool Clamping: ERAX 25 Bearing: Spindle Bearing
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Item No.: 14430001220 Coolant: ECS Bearing: Spindle Bearing
Item No.: 14910002670 Construction: Radial Coolant: ICS & ECS Tool Clamping: Capto C4
Item No.: 14826000260 Construction: Adjustable Gear Ratio: 1:1 Coolant: ECS Tool Clamping: ERAX 16 Bearing: Spindle Bearing
Item No.: 14910001660 Construction: Radial Coolant: ECS Tool Clamping: 25x25
Item No.: 14800004120 Construction: Axial Gear Ratio: 1:1 Coolant: ECS Tool Clamping: ER 32 Bearing: Spindle Bearing
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Item No.: 14910002660 Construction: Radial Coolant: ICS & ECS Tool Clamping: Capto C4
Item No.: 14430001230 Coolant: ICS Bearing: Spindle Bearing
Item No.: 14101003230 Construction: Radial Gear Ratio: 1:1 Coolant: ICS & ECS Tool Clamping: Capto C4 Bearing: Spindle Bearing
Item No.: 14101003130 Construction: Radial Gear Ratio: 1:1 Coolant: ICS & ECS Tool Clamping: ERAXC 25 Bearing: Spindle Bearing
Item No.: 14910000581 Construction: Radial Coolant: ECS Tool Clamping: 4x32
Item No.: 14910003870 Construction: Radial Coolant: ICS Tool Clamping: Capto C5
A comprehensive table for metric, fractional wire and tapping sizes can be found at the drill and tap size chart.
Item No.: 14910001640 Construction: Axial Coolant: ICS & ECS Tool Clamping: ø 40
5. When using a solid carbide end mill for side milling (finishing), especially in hardened materials, up-milling is preferred. This makes it easier to obtain wall straightness with smallertolerances and better 90-degree angles.
Item No.: 14826000270 Construction: Adjustable Gear Ratio: 1:1 Coolant: ECS Tool Clamping: ERAX 20 Bearing: Spindle Bearing
Milling is a machining process using rotary cutters to remove material from the workpiece. It has high machining productivity, it is used for a variety of complicated cutting operations, such as slot cutting, threading, drilling, and so on.The machining accuracy can reach to IT9-IT7 generally, and the surface roughness Ra value can be 12.5-1.6um normally.
Item No.: 14800003490 Construction: Axial Gear Ratio: 3:1 Coolant: ECS Tool Clamping: ø 15.875 Bearing: Spindle Bearing
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4. When using ceramic inserts in the heat-resistant alloy, up-milling is recommended, because the impact force may damage the ceramics cutter when cutting into the workpiece.
Especially for milling the difficult-to-machine materials, using down milling can not only reduce cutting deformation but also reduce cutting force, as well as power consumption.