| Literature DB >> 35492040 |
Andi Dine1, Edward Bentley1, Loic A PoulmarcK1, Daniele Dini1, Antonio E Forte2,3, Zhengchu Tan1.
Abstract
Due to their inability to sustain their own weight, 3D printing materials as soft as human tissues is challenging. Hereby we describe the development of an extrusion additive manufacturing (AM) machine able to 3D print super soft hydrogels with micro-scale precision. By designing and integrating new subsystems into a conventional extrusion-based 3D printer, we obtained hardware that encompasses a range of new capabilities. In particular, we integrated a heated dual nozzle extrusion system and a cooling platform in the new system. In addition, we altered the electronics and software of the 3D printer to ensure fully automatized procedures are delivered by the 3D printing device, and super-soft tissue mimicking parts are produced. With regards to the electronics, we added new devices to control the temperature of the extrusion system. As for the software, the firmware of the conventional 3D printer was changed and modified to allow for the flow rate control of the ink, thus eliminating overflows in sections of the printing path where the direction/speed changes sharply.Entities:
Keywords: 3D printing; Additive manufacturing; Flow rate control; Fused deposition; Hydrogels; Tissue scaffold fabrication
Year: 2021 PMID: 35492040 PMCID: PMC9041176 DOI: 10.1016/j.ohx.2021.e00176
Source DB: PubMed Journal: HardwareX ISSN: 2468-0672
Fig. 1Extrusion system (A) designed using SolidWorksTM software and (B) final construction of dual nozzle printing system using 10 ml plastic syringes.
Fig. 2The extruder head (a) a fully assembled view using SolidWorks™ software and (b) after construction and attachment to Ultimaker XY moving stage.
Fig. 3Cooling platform system overview showing polystyrene insulation surrounding printer.
Fig. 4Temperature distribution over the printing platform.
Fig. 5Custom G code a) At the beginning and b) at the end of any program file.
Fig. 6Extruder’s heating system. Close ups of the electrical connections are available in Section 5.4.
Fig. 7Exploded CAD view of all extruder head attachment components, including optional spacer.
Fig. 8Detailed close up images of the electrical connections for the construction of the heating system where (A) shows the how the components are connected on the board and (B) shows the back side of the interface panel.
Fig. 9(A) Assembly of heat sink radiators encased in polypropylene, (B) cooling system construction details showing tubing configuration indicating the flow of the coolant and (C) detailed diagram of construction of build plate layers.
Fig. 10Operation of the VWR Scientific bath/circulator.
Fig. 11Labelled diagram of 3D printer front door flap.
Fig. 12Labelled diagram of the Ultimaker2 control panel.
Fig. 13(A) Same object printed at different speeds, (B) printed object with (i) right angles (ii) sharp angles (iii) obtuse angles, (C) (i-ii) Archimedean chord infill (iii-iv) Honeycomb infill and (D) object with 15 layers, 9.4 mm, in the z direction.
Fig. 14(A) Preparation of 3D printed brain slice from MRI. (i) outlined bitmap trace of the left hemisphere of a human brain MRI [31]; (ii) outlined bitmap trace of white matter areas in the left hemisphere; (iii) output STLs of white and grey matter regions and (iv) extruder path obtained using Slic3r and MATLAB post-processing, and (B) 3D printed brain slice with detailed grey and white matter geometry represented in red and blue, respectively, still frozen just after print completion and (C) final 3D printed brain slice thawed in petri dish after removal from 3D printing platform. Scale bar: (B-C) 10 mm. (For interpretation of the references to colour in this figure legend, the reader is referred to the web version of this article.)
| Hardware name | |
| Subject area | Engineering and Material Science Chemistry and Biochemistry Medical (e.g. Pharmaceutical Science) Biological Sciences (e.g. Microbiology and Biochemistry) |
| Hardware type | Biological sample handling and preparation Electrical engineering and computer science Mechanical engineering and materials science |
| Open Source License | CC BY-NC-SA 4.0 |
| Cost of Hardware | |
| Source File Repository |
| Design file name | File type | Open source license | Location of the file |
|---|---|---|---|
| Designator | Component | Number | Cost per unit -currency | Total cost -currency | Source of materials | Material type |
|---|---|---|---|---|---|---|
| 3D Printer ( | Ultimaker 2+ | 1 | £1790.99 | £1790.99 | Other | |
| Extrusion system ( | Plexiglass | 2 | £9.59 | £19.18 | Acrylic | |
| Extrusion system ( | Set: 400 mm Linear Shaft, Axi Rail Guide Shaft, Optical Bearing, Slide Support | 2 | £17.95 | £35.90 | 45 Steel | |
| Extrusion system ( | M5x16mm Stainless Steel Allen Bolt | 20 | £0.13 | £2.60 (10 pcs) | Stainless Steel | |
| Extrusion system ( | M4x40mm Stainless Steel Allen Bolt | 4 | £0.25 | £1.25 (5 pcs) | Stainless Steel | |
| Extrusion system ( | M4x20mm Stainless Steel Allen Bolt | 16 | £0.135 | £2.16 | Stainless Steel | |
| Extrusion system ( | Syringes Luer Lock 60 ml | 4 | £4.50 | £18.00 | Plastic | |
| Extrusion system ( | Syringe 10ML | 4 | £5.64 | £22.56 | Glass | |
| Extrusion system ( | Flexible Shaft Coupling Coupler | 2 | £3.49 | £6.98 | Aluminium | |
| Extrusion system ( | Tubing | 4 m | £1.50/m | £6.00 | Silicone | |
| Extrusion system ( | Connector Y-Piece 5 mm | 2 | £1.55 | £3.10 | Polypropylene | |
| Extruder Head ( | Needle, Luer Lock 21gauge × 50 mm Stainless Steel | 2 | £2.79 | £5.58 | Stainless Steel | |
| Extruder Head ( | M2 Stainless Steel Allen Bolt | 4 | £0.23 | £1.15 (5 pcs) | Stainless Steel | |
| Extruder Head ( | Aluminium Block 60 mm × 27.5 mm × 15 mm | 1 | £9.00 | £9.00 | Aluminium | |
| Heating System ( | Set: USB RAMPS 1.4 + Mega2560 + 12864 LCD + A4988 Driver For 3D Printer Arduino Reprap | 1 | £26.31 | £26.31 | Other | |
| Heating System ( | Heater Cartridge | 1 | £0.99 | £0.99 | Other | |
| Heating System ( | Thermistor 100Kohm | 1 | £1.38 | £1.38 | Other | |
| Heating System ( | 12 V AC/DC Volt Converter Regulated Switch Power Supply | 1 | £19.48 | £19.48 | Other | |
| Cooling Platform ( | VWR Scientific Bath/Circulator | 1 | £800 | £800 | Other | |
| Cooling Platform ( | 2-Way DIY Liquid Water Cooler Heat Sink Radiator 40*200 mm | 4 | £7.5 | £30 | Aluminium | |
| Cooling Platform ( | XSPC PETG Tubing 14/10 mm | 3 m | £7.68 | £23.04 | Polyethylene Terephthalate Glycol | |
| Cooling Platform ( | Barbed Elbow Tubing Connectors | 6 | £2.69 | £16.14 | Nylon | |
| Cooling Platform ( | Jubilee Type Stainless Steel Hose Clamps Clips 8 mm-16 mm | 10 | £0.507 | £5.07 | Stainless Steel | |
| Cooling Platform ( | Aluminium Sheet 500x250x2mm | 1 | £6.74 | £6.74 | Aluminium | |
| Cooling Platform ( | Grey Foam Pipe Insulation ID: 15 mm Thickness: 20 mm | 4 m | £2.50 | £9.99 | Polyethene | |
| Cooling Platform ( | A3 Clear Acrylic Perspex Sheet | 1 | £6.90 | £6.90 | Acrylic | |
| Cooling Platform ( | M3x40mm Allen Bolt | 3 | £0.38 | £1.89 (5 pcs) | Stainless Steel | |
| Cooling Platform ( | M3 Stainless Steel Nut | 3 | £0.10 | £0.99 (10 pcs) | Stainless Steel |