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- Product Details19050040-- Stocks: Immediate Availability **Regular shipments throughout the country
Data sheet
- Product type
- Extruder
- Model
- BMG-X2-M
- Filament diameter
- 1.75mm
Specific References
- EAN13
- 7350011410668
- DescriptionBondtech BMG-X2-M is based on the BMG design that uses a 3:1 internal gear ratio along with precision CNC machined hardened steel drive gears to give you a compact power plant for all your multi extrusion applications. Whether you need high resolution prints with small nozzles or high flow prints with large nozzles the optimized gear ratio combined with our industry leading drive gears provides unprecedented pushing power and lightning fast retractions in a lightweight and compact dual extrusion package.
Suitable for Slice Engineering Hotends
The new version is dedicated for use with Mosquito hotends.
Connect Slice Engineering high-performance hotends to our high-performance extruders and enjoy the best filament extrusion solution on the market.
NOTICE The
following parts are NOT included in this product: aluminum stands, Hotends, cartridges, thermistors and related cables.
Included Stepper Motors
The included high-power Nema17 pancake motors provide high torque and low weight.
The following stepper motor is recommended for use with this extruder:
25mm NEMA17 pancake stepper motor
Bondtech Dual-Drive
The unique Dual-Drive technology provides uninterrupted material flow even under the most demanding conditions
Multi-material capability
The new BMG extruder feeds all materials with high reliability, from slippery nylons and soft TPU / TPE filaments to high-strength carbon-filled materials that are highly rigid and sometimes brittle.
The extruder is designed for 1.75 mm filaments, but has been tested to ensure filament performance from 1.5 mm up to 2.0 mm allowing for high reliability regardless of the tolerance of the filament used. The filament path is fully guided throughout the extruder housing and the housing maintains tight tolerances for the drive gears mitigating the possibility of filament jams when the hotend experiences increased back pressure or highly flexible filaments are used.
Adjustable Tension
Screw tensioners allow the user to fine-tune the pressure exerted by the drive gears on the filament.
This gives you the ability to adjust according to your preferences and optimize for the type of material you're using.
Quick Release
To be able to make material changes in a snap, simply activate the Quick-Release lever to release the tension and pull the material to be changed out of the extruder, keep it activated and insert the new material.
Flexible Mounting Options
The standard CNC machined aluminum mounting bracket can be used to mount the extruder as pictured or a simple 3d printed bracket can be used.
Additional information
Total weight when installed (including aluminum brackets, hotend Mosquito, thermistors, cartridges, cables, nozzles): 660 g
E-step value: 415 - Read moreFor technical specifications please visit the support page dedicated to products Bondtech: https://support.bondtech.se
The item you will receive may differ in some features from the one represented in the photo, depending on the production batch. Nevertheless, the functionality is maintained. - Questions(FAQs)
L'estrusore Single Drive utilizza un solo ingranaggio motorizzato e un cuscinetto a pressione. Il sistema Dual Drive utilizza due ingranaggi controrotanti che afferrano il filamento da entrambi i lati, garantendo una forza di spinta doppia e riducendo drasticamente lo slittamento, specialmente con filamenti tecnici o velocità elevate.
L'ugello va sostituito quando si notano problemi di stampa, specialmente superficiali, o se il diametro del foro si è allargato a causa dell'usura (comune con materiali abrasivi). Un ugello in ottone usato con fibra di carbonio può rovinarsi in poche ore di stampa, mentre uno in acciaio temprato può durare mesi.
Il rumore di scatto indica che il motore non riesce a spingere il filamento. Le cause, tra le altre, possono essere un ugello parzialmente ostruito, una temperatura di stampa troppo bassa, o una velocità di estrusione eccessiva per le capacità termiche del tuo hotend, un meccanismo non adeguato al tipo di filamento utilizzato.
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