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    • CNC Routing
    • CNC Routers

    CNC Routers

    Category image

     CNC machines for small businesses

    For economic and efficient processing of wood, large high-tech CNC processing centres in joineries have long been in use.

    The range of compact and flexible CNC routing machines (CNC = computerized numeric control) is growing and offers not only smaller joineries, but also woodworking enthusiasts some affordable options, a perfect example is the a CNC controlled complete solution, like the SmartBench from YetiTool.

    • YetiTool SmartBench
      YetiTool SmartBench
    • Mekanika
      Mekanika
    • Shaper Origin
      Shaper Origin
    Product image for Shaper Up-spiral Router Bit D3 mm
    Shaper Up-spiral Router Bit D3 mm
    D: 3 mm | GL: 45 mm | NL: 10 mm | Z: 2 | S: 8 mm
    Delivery time 2-3 days
    32,13 €
    incl. VAT
    Art.-Nr: ST-SF1-8-3U
    Product image for Shaper recessed grip cutter HW (HM) 22x16mm
    Shaper recessed grip cutter HW (HM) 22x16mm
    D: 22 mm | NL: 16 mm | GL: 60 mm | S: 8 mm | Z: 2
    Delivery time 2-3 days
    95,20 €
    incl. VAT
    Art.-Nr: ST-SF1-8-FPC
    Product image for Shaper 4mm x 15mm Up-Spiral Flat Router Bit
    Shaper 4mm x 15mm Up-Spiral Flat Router Bit
    D: 4 mm | GL: 80 mm | NL: 15 mm | Z: 2 | S: 8 mm
    Delivery time 2-3 days
    83,30 €
    incl. VAT
    Art.-Nr: ST-SF1-8-4F2
    Product image for Shaper Engraving Router Bit 60°
    Shaper Engraving Router Bit 60°
    E: 60° | GL: 54.5 mm | NL: 7.1 mm | Z: 1 | S: 8 mm
    Delivery time 2-3 days
    32,13 €
    incl. VAT
    Art.-Nr: ST-SF1-8-V60E
    Product image for Shaper Engraving Router Bit 90°
    Shaper Engraving Router Bit 90°
    E: 90° | GL: 38 mm mm | NL: 3.175 mm | Z: 2 | S: 6.35 mm
    Delivery time 2-3 days
    29,75 €
    incl. VAT
    Art.-Nr: ST-SE1-2500-V90E
    Product image for Shaper T-Slot Router Bit D10,5 mm
    Shaper T-Slot Router Bit D10,5 mm
    D: 10.5 mm | GL: 50 mm | NL: 12 mm | GSL: 5 mm | Z: 2 | S: 8 m
    Delivery time 2-3 days
    58,31 €
    incl. VAT
    Art.-Nr: ST-SF1-8-TSC
    Product image for Shaper 15º Dovetail Router Bit
    Shaper 15º Dovetail Router Bit
    E 15 ° | D 13.8 mm | NL 13.5 mm | S 8 mm | SL 46 mm | Ideal for creating dovetail joints
    Delivery time 2-3 days
    45,22 €
    incl. VAT
    Art.-Nr: ST-SF1-8-DC15
    Product image for Keilverbinder dovetail connector sample - Shaper
    Keilverbinder dovetail connector sample - Shaper
    Pattern: Shaper, posibilities with a CNC | Material: MDF 12 & 19 mm
    Delivery time 2-3 days
    3,00 €
    incl. VAT
    Art.-Nr: KV-M-SHAPER
    Product image for Vectric Vcarve Pro CAD & CAM-Software
    Vectric Vcarve Pro CAD & CAM-Software
    CAD & CAM from a single source | Supports DXF, DWG, SVG,...
    Delivery time 2-3 days
    799,00 €
    incl. VAT
    Art.-Nr: VE-VCARVE-PRO
    Product image for Low tension clamp for sauter profile rail
    Low tension clamp for sauter profile rail
    for clamping and fastening of workpieces and stops | fits perfectly in sauter profile rails | strong hold
    Delivery time 2-3 days
    11,71 €
    incl. VAT
    Art.-Nr: FO-HTD-01A
    Product image for Shaper collet with nut Ø 6mm
    Shaper collet with nut Ø 6mm
    Compatible with the Shaper Origin (Gen1, Gen2)
    Delivery time 2-3 days
    51,17 €
    incl. VAT
    Art.-Nr: ST-SD1-6
    Product image for Shaper collet with nut Ø 3mm
    Shaper collet with nut Ø 3mm
    Compatible with the Shaper Origin (Gen1, Gen2)
    Delivery time 2-3 days
    51,17 €
    incl. VAT
    Art.-Nr: ST-SD1-3
    Product image for Shaper collet with nut Ø 8mm
    Shaper collet with nut Ø 8mm
    Compatible with the Shaper Origin (Gen1, Gen2)
    Delivery time 2-3 days
    51,17 €
    incl. VAT
    Art.-Nr: ST-SD1-8
    Product image for Keilverbinder Aluminium Dovetail Channel 1490
    Keilverbinder Aluminium Dovetail Channel 1490
    Stable hold for the Dovetail connector | Easy mounting | Common dimensions | Individually adaptable
    Delivery time 2-3 days
    15,46 €
    incl. VAT
    Art.-Nr: KV-S-1490-0
    Product image for Shaper 1/8” Collet With Nut (3,175 mm)
    Shaper 1/8” Collet With Nut (3,175 mm)
    1/8” | 3.175 mm | for Shaper Origin
    Delivery time 2-3 days
    51,17 €
    incl. VAT
    Art.-Nr: ST-SC1-1250
    Product image for Shaper 1/4” (6,35 mm) Collet + Nut
    Shaper 1/4” (6,35 mm) Collet + Nut
    Compatible with the Shaper SM1 spindle | Accepts speciality bits with 1/4” shanks (6,35 mm)
    Delivery time 2-3 days
    51,17 €
    incl. VAT
    Art.-Nr: ST-SC1-2500
    Product image for CNC cutter set  Basic 3-pcs. S8
    CNC cutter set Basic 3-pcs. S8
    Set of 3 CNC cutters: Ø 5 mm | Ø 8 mm | Ø 12.7 mm | E14° For milling all materials and dovetail joints
    Delivery time 2-3 days
    109,00 €
    incl. VAT
    Art.-Nr: SA-ST-5-8-GR
    Product image for Shaper Up-Spiral O-flute Router Bit 1/8" x 1/2"
    Shaper Up-Spiral O-flute Router Bit 1/8" x 1/2"
    L: 63.5mm | D: 6.35mm | CD: 3.175mm | CL: 12.7mm
    Delivery time 2-3 days
    45,22 €
    incl. VAT
    Art.-Nr: ST-SE1-2500-5000C
    Product image for Shaper Up-Spiral Flat Router Bit 1/4" x 1"
    Shaper Up-Spiral Flat Router Bit 1/4" x 1"
    L: 63.5mm | D: 6.35mm | CD: 6.35mm | CL: 25.4mm
    Delivery time 2-3 days
    32,13 €
    incl. VAT
    Art.-Nr: ST-SE1-2500-1000C
    Product image for Shaper Up-Spiral O-flute Router Bit 1/4" x 11/2"
    Shaper Up-Spiral O-flute Router Bit 1/4" x 11/2"
    L: 76.2mm | D: 6.35mm | CD: 6.35mm | CL: 38mm
    Delivery time 2-3 days
    58,31 €
    incl. VAT
    Art.-Nr: ST-SE1-2500-1500C
    Product image for Shaper Up-Spiral O-flute Router Bit 1/8" x 1/4"
    Shaper Up-Spiral O-flute Router Bit 1/8" x 1/4"
    L: 63.5mm | D: 6.35mm | CD: 3.175mm | CL: 6.35mm
    Delivery time 2-3 days
    38,08 €
    incl. VAT
    Art.-Nr: ST-SE1-2500-2500C
    Product image for Shaper Up-Spiral Ball Nose Router Bit 1/4" x 3/4"
    Shaper Up-Spiral Ball Nose Router Bit 1/4" x 3/4"
    L: 63.5mm | D: 6.35mm | CD: 6.35mm | CL: 19.05mm
    Delivery time 2-3 days
    35,70 €
    incl. VAT
    Art.-Nr: ST-SE1-2500-BNUS
    Product image for SmartBench PRECISION PRO PLUS  (V1.3)
    SmartBench PRECISION PRO PLUS (V1.3)
    Autonomous speed control | v1.3 | PRECISION PRO PLUS | machining up to 2500 x 1250 mm At present shipping is only possible to the EU, Switzerland and Norway
    Not available at the moment
    Art.-Nr: YT-21327
    Product image for Shaper Origin Screen Protector (Gen 1)
    Shaper Origin Screen Protector (Gen 1)
    Protects the Origins (Gen 1) screen from scratches, dirt and dust.
    Delivery time 2-3 days
    41,65 €
    incl. VAT
    Art.-Nr: ST-SU1-CSP1
    PreviousShow more products

    Computer controlled woodworking with a CNC routing machine 

    The uncomplicated data transmission and connection to the CNC portal and to the routing unit is important for the CNC control. The workpiece is designed in the CAD/CAM software, with SmartBench, the G code can be simply transferred to the CNC machine via WLAN or USB. The rest is done by the driven routing motor and the routing tool used.

    FAQ - Frequently asked questions about CNC Routers

    Which materials can be rmachined with a SmartBench?

    Machining of wood materials, e.g. softwood, hardwood and sheet materials, aluminium, as well as plastics is possible with the CNC router.

    Which routing method is used to achieve clean cut edges?

    This depends on the used. For a clean top edge, we recommend with left-hand twist. The pressure on the material produces absolutely tear-free cutting edges. For the bottom side, a router with right-hand twist is used. If both cutting edges are to be machined in one process, so-called compression routers or dual-cut routers can be used, which have an opposite twist in different areas of the cutting edges. The left-hand twist at the end of the shaft ensures a tear-free top side, while the right-hand twist at the tip of the router ensures a tear-free bottom side.

    When should edges be reworked?

    For example, with whirling, the offset cut often results in unclean edges, which then have to be machined either manually or by a further CNC work step. s also do not leave a high surface quality. Here, too, reworking is necessary, either manually or with a final finishing pass. In most , it is possible to perform a final finishing pass, which is usually performed over the entire thickness of the material. Here the material is delivered to the area of the uniform cut edge.

    What should be considered when routing the different materials?

    One of the main factors for a successful routing result is the interaction of feed and speed. If the tool rotates too fast compared to the feed rate, no real chip is removed and the tool rubs more against the workpiece and generates dust. With wood, this leads to burns on the material and the router bit also wears out very quickly. With plastics and aluminium, this can quickly cause major problems.

    • Plastic: gets too hot and melts instead of being cut.
    • Aluminium: it can cause the aluminium to weld itself to the router bit, destroying both the workpiece and the router bit.

    If, on the contrary, the speed is too low, this means too high cutting forces for the router bit, which often leads either to breakage of the router bit or to step losses at the stepper motors. This then leads to incorrectly converted routing paths and a destroyed workpiece.

    What should be considered when choosing tools?

    In principle, there are also special tools designed for different materials and cutting types. These differ both in the material (HSS, carbide, etc.) and in the cutting geometries.

    , for example, have a rather aggressive cutting angle in order to remove a lot of material quickly without attaching great importance to the quality of the cut.

    remove little material and leave a clean cutting edge. Accordingly, flatter cutting angles are used here.

    Routers with carbide cutting edges are suitable for wood and aluminium. These are either soldered to a steel shank (classic end mills for routers) or consist entirely of a carbide mixture. The number of cutting edges also plays a role in the tool life and the milling result. For aluminium, for example, single-edged cutters are often used to give the machine more time and to be able to remove the cut chips cleanly.

    What settings should be considered when routing?

    The most important key figures in routing are: Feed rate, speed and infeed

    When routing pockets with many parallel toolpaths, a transverse infeed of <50% is often used. This means that each milling path overlaps only half of the previous path. The additional milling time required can then be compensated by a higher feed rate. The decision "climb milling or up-cut milling" can also have a decisive influence on the milling result. The correct cutting speed cannot be answered in a blanket manner. The best results are achieved when the CNC router is used to carry out some test routing in scrap stock.

    How can intricate details also be achieved during routing?

    If possible, it should be plunged outside the contours to be routed in order to then approach the contour to be routed from the side. In addition, a final finishing pass often leads to a cleaner, better result, as only a little material is removed and the router is also only loaded with 10-20% cross feed. When routing very delicate details (e.g. 0.5 mm cutter), patience is a virtue. Even if router and machine would manage higher feeds and speeds without any problems, with wood materials more defensive cutting values often lead to less tear-out on intricate routed parts.

    When to choose a down cutting or up-cut milling?

    When machining manually, e.g. at the router table with a router, only up-cut routing is permitted. When routing in the same direction, the material is drawn towards the cutter, which entails some safety risks and dangers. When machining on the CNC, the situation is different. The overall rigidity and the backlash of the machine determine whether down cutting is possible or useful.

    If the machine allows it, however, down cuttingis preferred in the CNC area, as it has a number of advantages:

    • Longer routing cutter service life
    • Lower cutting forces
    • Chip ejection behind the router and thus less "multiple machining" of chips
    • Better surface quality
    CNC router cutter
    CNC spiral flute cutters VHM
    Rough milling cutter
    CAM programs
    Roughing cutters
    Finishing cutters