A full built and functioning heated syringe printer.
The high-temperature syringe printer represents the functions of both a regular, filament 3D printer and a syringe printer. This combination is essential in order to print with material that may not properly work through a normal filament printer, such as plastic bags or water bottles. Similarly with a normal syringe printer, the high-temperature syringe printer does not require filament to be inserted, but instead, small particles of material can be directly inserted into the syringe. The temperature is controlled by a temperature controller that is wired to the syringe. Due to the versatility of this syringe, it creates a list of endless possibilities for 3D printing.

Introduction

Filament 3D printers can do a wide variety of tasks and projects that come appealing to many people. However, the type of material that can be used in these printers are limited to the type of head that is attached, as well as the material's properties. If the filament is not completely uniform in diameter, the print will have a high possibility of failure. Thus the heated syringe printer is a perfect resource for being able to print in multiple different materials, such as plastic bags or water bottles. The syringe was made from multiple pieces of 316 Stainless Steel that were welded together. A pipe heater was then inserted over the shaft, wrapped in a total of four layers of insulation and heat resistant tape, and secured with a 3D-printed "belt" to secure the insulation on the syringe (Figure 01).

Materials used.

The syringe is heated by a temperature controller.

The temperature controller used to heat the syringe in Celsius.

In regards to the nozzle, the injector accessories were cut using a hacksaw.

The accessory that was cut to create a functioning nozzle where the red line represents where the cut was made.

Safety

Equipment or Bill of Materials

3D-printed Parts

TBA

Mechanical Parts

  1. Stainless Steel Injector
  2. 316 Stainless Steel Rod (dimensions: TBA)
  3. 316 Stainless Steel Rod (dimensions: TBA)
  4. 316 Stainless Steel Tube (dimensions: TBA)
  5. x2 DC Brushless Fan
  6. Temperature Controller
  7. Insulation

Wiring Components

  1. Male-to-female Connections

Calibration & Tolerances

Calibrating the target temperature of the syringe during operation requires a material melting point verification step. Use a hot plate and ramp the temperature from ambient conditions to the expected melting point of the material. Polymeric materials typically have a melting range, so its a good idea to take multiple samplings from your material source and make sure they melt at similar temperatures. Once the melting range has been identified and measured(a surface thermometer or infared thermometer work well) begin running a material extrusion calibration test. TBF(To be finished)

PET material premelt at room temp.
PET at melting point on hot plate.

MSDS's

  1. PET
  2. LDPE

Operation & Procedure

Syringe Assembly

NOTE: Machine shop equipment (i.e drill press and band saw) are required.

File:Syringeref rings.jpg
The rings that come with the seasoning injector.
File:Heatedsyringe nozzle edit2.jpg
The syringe accessory that will be used as the nozzle for the printer.
File:Syringe rodwrings.jpg
The rod with the rings for the plunger.
File:Syringe shaft.jpg
Cut shaft for the syringe
Figure 12: Red line represents where the cut was made.
The pipe heater used to heat the syringe.
Two layers of basic insulation and heat resistant tape.
Two layers of heat resistant foil.
3D-printed belt to secure the insulation in place (printed out of PETG).

Printer Assembly

Printing Procedure

  1. Turn on the fume hood.
  2. Turn on the printer. Make sure the fans are operational. If they are not, check wiring.
  3. Heat up the syringe to the desired temperature by using the temperature controller.

NOTE: The temperature will vary based on placement of the temperature sensor. A normal range is anywhere between 205C and 260C.

  1. Wait until the syringe is heated and material is flowing steadily out the nozzle.
  2. Start the desired print. Make sure that the nozzle comes in contact with the metal probe plate. If not, turn off the printer and adjust syringe, or print bed, as needed.
  3. Wait until the print is completed.
  4. After print is complete, unplug the temperature controller and wait for the print to cool.
  5. Once cool, remove from the print bed.

Tips and Tricks

TBA

Shutdown

To shutdown, turn off the printer and confirm that the temperature controller is unplugged and the fume hood is off.

References

[1]Michigan Tech Open Sustainability Technology Lab, "Open source low cost syringe printer", 2019. https://www.appropedia.org/Open_source_low_cost_syringe_printer

[2] Michigan Tech Open Sustainability Technology Lab, "Franklin", 2017. https://www.appropedia.org/Franklin

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    Created October 21, 2019 by Adam Pringle
    Last edit November 28, 2025 by Maintenance script