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Multi-functional Extrusion-based 3D Bio printer
首 頁 >> Instruments/Equipment >> Extrusion-based 3D Bioprinter

Product advantages

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Fully automatic multi-material printing

Automatic forming of multi-material structures.

Multiple nozzles for fully automatic printing, supporting the combination of various materials (metal powder, ceramic powder, polymer, hydrogel, micro-nano, etc.) and different structures (porous scaffolds, biomimetic structures, microneedles, microspheres, etc.)

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High-precision manufacturing

Reproducing biological characteristics.

The highest filament extrusion accuracy is less than 10um, supporting multiple biomimetic paths and customized paths of different shapes.

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Independently developed 3D printing software

Simple and stable, easy to master even for those from different fields.

Rich organization model library and printing parameters, multiple parametric printing paths generated with one click, 3D model editing and slicing printing, self-developed 3D printing software, supporting multiple customization functions.

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Multiple printing modules

One machine supports multiple processes, meeting customized demands.

EFL customizes detachable multi-process modules, supporting various forming processes such as high-temperature printing, coaxial printing, near-field direct writing printing, low-temperature printing, and rotational printing.

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Real-time printing monitoring

The printing process is clear and traceable.

High-definition cameras capture the entire process of model formation in real time, making it clearly visible.

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Fully automatic multi-axis calibration

The position deviation of the nozzle is precisely controllable.

High-precision laser sensor calibration, automatic alignment of multiple nozzle errors, worry-free printing on multiple materials.


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Product application cases

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Printing at room temperature

Food printing: By extruding food slurry through air pressure, three-dimensional models of different shapes can be flexibly formed

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Printing at room temperature

Flexible circuit printing:Through the cross-linking reaction between Ga3+ and alginate molecular chains, a layer of gallium alginate shell is formed on the surface of liquid metal micro-particles, which has excellent printability and can use various materials as printing substrates

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High-temperature printing

Bone scaffold printing:hydroxyapatite, bioceramics, etc. Effects: Through the combination of mechanical extrusion nozzles and high-temperature platforms, bone scaffolds can be printed, achieving the replication of different hard bone tissues

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High-temperature printing

High-strength chitosan printing:By combining high-temperature nozzles and high-temperature platforms, chitosan can be printed using the embedded high-temperature solidification bath method

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Low-temperature printing

Hydrogel low-temperature printing:By combining low-temperature nozzles and low-temperature platforms, it is possible to print complex structures of commonly used hydrogels such as GelMA and gelatin

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Low-temperature printing

Tubular stent rotary printing:Through rotary printing technology, rapid printing of tubular stents (such as trachea, blood vessels, urethra, etc.) can be achieved

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Coaxial printing

Coaxial printing of large-sized vascularized tissues:Coaxial printing of GelMA(outer layer) and gelatin carrying endothelial cells (inner layer). After the gelatin dissolves, endothelial cells deposit and adhere, effectively constructing the vascularized tissue structure

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Coaxial printing

Coaxial printing crawling robot:Multi-material ink direct writing coaxial 3D printing manufactures coin-type dielectric elastomers, creating soft robots capable of ultra-fast movement

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Near-field direct writing and printing

High-precision scaffolds for directional induction of cell growth:By improving the near-field direct writing process, high-precision heterogeneous biological scaffolds with controllable pore size and fiber diameter were fabricated to induce directional cell growth through structural differences

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Near-field direct writing and printing

Macro and micro cross-scale scaffold printing:Through the switching of electrostatic fields, macro and micro cross-scale scaffold printing can be achieved. Among them, ultrafine fibers enhance biocompatibility, and phase fibers provide stronger mechanical properties of the scaffolds

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Near-field direct writing and printing

High-precision gel chip printing:Based on high-precision 3D printing, the idea of micro-wireframe molds was proposed to achieve micro-nano scale manufacturing of complex structures of brittle hydrogels and applied to organ chips

Product parameters

BP6606 Parameter

Equipment dimensions

808mm×662mm×572mm

Effective print size

170mm×170mm×80mm

Maximum moving speed

100mm/s

Minimum floor height

10μm

Repeat positioning accuracy

40μm

Air pressure

0~700 kPa

Print monitoring system1080p, 60 frames, HDR compensation

Power supply, power

100~240V,50~60HZ,1000W


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