Difference between revisions of "Main Page"

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Information not yet available. :)
Information not yet available. :)


=Cold Flow=
=The Cold Flow Process=


Cold Flow is our term for fluid or emulsified (non-filament-based) materials which are deposited at room temperature, with or without UV Crosslinking.
Cold Flow is our term for fluid or emulsified (non-filament-based) materials which are deposited at room temperature, with or without UV Crosslinking.


==Materials, Cold Flow==
==Materials for Cold Flow==


The following materials can be printed from Cold Flow heads. Note that more viscous materials may not be suitable for plastic syringes or smaller luer tips.
The following materials can be printed from Cold Flow heads. Note that more viscous materials may not be suitable for plastic syringes or smaller luer tips.
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</div>
</div>


==Heads, Cold Flow==
==Heads for Cold Flow==


The following table compares the properties of the various Cold Flow heads:
The following table compares the properties of the various Cold Flow heads:
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*[http://hyrel3d.net/papers/3D_Printed_Scaffolds_to_Repair_Large_Bone_Deficits.pdf Design and Fabrication of 3D Printed Scaffolds with a Mechanical Strength Comparable to Cortical Bone to Repair Large Bone Defects] in [http://www.nature.com/index.html Nature.com's] [http://www.nature.com/srep/ Scientific Reports]
*[http://hyrel3d.net/papers/3D_Printed_Scaffolds_to_Repair_Large_Bone_Deficits.pdf Design and Fabrication of 3D Printed Scaffolds with a Mechanical Strength Comparable to Cortical Bone to Repair Large Bone Defects] in [http://www.nature.com/index.html Nature.com's] [http://www.nature.com/srep/ Scientific Reports]


=Warm Flow=
=The Warm Flow Process=


Warm Flow is our term for fluid or emulsified (non-filament-based) materials which are deposited at up to 150°C, with or without UV Crosslinking, depending on the head.
Warm Flow is our term for fluid or emulsified (non-filament-based) materials which are deposited at up to 150°C, with or without UV Crosslinking, depending on the head.
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PCL and other medium temperature material can be printed directly from Pellets the size of small peas. If you pulverize or powder your polymer, it is possible to pre-mix the material dry and test different alloys of plastics.
PCL and other medium temperature material can be printed directly from Pellets the size of small peas. If you pulverize or powder your polymer, it is possible to pre-mix the material dry and test different alloys of plastics.


==Materials, Warm Flow==
==Materials for Warm Flow==


The following materials can be printed from Warm Flow heads. Note that more viscous materials may not be suitable for plastic syringes or smaller luer tips, or may print more easily at higher temperatures.
The following materials can be printed from Warm Flow heads. Note that more viscous materials may not be suitable for plastic syringes or smaller luer tips, or may print more easily at higher temperatures.
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</div>
</div>


==Heads, Warm Flow==
==Heads for Warm Flow==


The following table compares the properties of the various Warm Flow heads:
The following table compares the properties of the various Warm Flow heads:
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=Hot Flow=
=The Hot Flow Process=


Hot Flow is our term for filament-based materials which are deposited at up to 450°C, depending on the head. As of January, 2016, our Hot Flow heads are only for 1.75mm filaments.  
Hot Flow is our term for filament-based materials which are deposited at up to 450°C, depending on the head. As of January, 2016, our Hot Flow heads are only for 1.75mm filaments.  


==Materials, Hot Flow==
==Materials for Hot Flow==


The following materials can be printed from Hot Flow heads. Note that depending on the characteristics of your material, one head will be a better match than the others. See the "Recommended For" column in the table below.
The following materials can be printed from Hot Flow heads. Note that depending on the characteristics of your material, one head will be a better match than the others. See the "Recommended For" column in the table below.
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</div>
</div>


==Heads, Hot Flow==
==Heads for Hot Flow==


The following table compares the properties of the various Hot Flow heads, including which heads are recommended for which materials:
The following table compares the properties of the various Hot Flow heads, including which heads are recommended for which materials:

Revision as of 15:47, 29 January 2016

Welcome to Hyrel!

With literally thousands of materials to print on the Hyrel Printer, we have broken down the list of materials into logical groups based on their printing temperature and type of head used to print them.

If you are planning on using the heads which photoinitiate crosslinking, make sure you specify the correct wavelength of LED for your material.

A standard material printing data sheet has been created for materials that have been internally tested; you can access this data by clicking on the material name below.

Always be sure of what material you are using, and what will be off-gassed.

Printers

As of Jan, 2016, Hyrel Printers are available in two models: Engines and Systems.

Engines and Systems

Engines are open-air models. Detailed information is on the Engines page. Systems are enclosed models. Detailed information is on the Systems page. Both models feature over 200x200x200mm of build volume. Each model can take up to four of our modular heads detailed below. Build plates will get to between 70°C and 85°C, depending on ambient temperature.

The Next Big Thing

Information not yet available. :)

The Cold Flow Process

Cold Flow is our term for fluid or emulsified (non-filament-based) materials which are deposited at room temperature, with or without UV Crosslinking.

Materials for Cold Flow

The following materials can be printed from Cold Flow heads. Note that more viscous materials may not be suitable for plastic syringes or smaller luer tips.

Heads for Cold Flow

The following table compares the properties of the various Cold Flow heads:

Cold Flow Head Properties
Head Container Capacity Nozzle UV Crosslinking
EMO-25 Aluminum 25cc 1.5mm, 2.0mm, Luer No
COD-25 Aluminum 25cc Luer Yes
SDS-5 Syringe 05cc Luer No
CSD-5 Syringe 05cc Luer Yes
SDS-10 Syringe 10cc Luer No
CSD-10 Syringe 10cc Luer Yes
SDS-30 Syringe 30cc Luer No
CSD-30 Syringe 30cc Luer Yes
SDS-60 Syringe 60cc Luer No
CSD-60 Syringe 60cc Luer Yes

Research Papers Citing Hyrel Cold Flow

The Warm Flow Process

Warm Flow is our term for fluid or emulsified (non-filament-based) materials which are deposited at up to 150°C, with or without UV Crosslinking, depending on the head.

PCL and other medium temperature material can be printed directly from Pellets the size of small peas. If you pulverize or powder your polymer, it is possible to pre-mix the material dry and test different alloys of plastics.

Materials for Warm Flow

The following materials can be printed from Warm Flow heads. Note that more viscous materials may not be suitable for plastic syringes or smaller luer tips, or may print more easily at higher temperatures.

Heads for Warm Flow

The following table compares the properties of the various Warm Flow heads:

Warm Flow Head Properties
Head Max Temp Container Capacity Nozzle UV Crosslinking
VOL-25 100°C Aluminum 25cc 1.5mm, 2.0mm, Luer No
VCD-25 100°C Aluminum 25cc Luer Yes
KRA-15 150°C Stainless 15cc 1.5mm, 2mm, Luer No
KCD-15 150°C Stainless 15cc Luer Yes

The Hot Flow Process

Hot Flow is our term for filament-based materials which are deposited at up to 450°C, depending on the head. As of January, 2016, our Hot Flow heads are only for 1.75mm filaments.

Materials for Hot Flow

The following materials can be printed from Hot Flow heads. Note that depending on the characteristics of your material, one head will be a better match than the others. See the "Recommended For" column in the table below.

Heads for Hot Flow

The following table compares the properties of the various Hot Flow heads, including which heads are recommended for which materials:

Hot Flow Head Properties
Head Min Temp Max Temp Filament Type Nozzle Recommended For
MK1-250 150°C 250°C Standard .35mm, .50mm, .75mm, 1.0mm ABS, LayBrick, LayWood, Nylon PC, PET, PETG, PETT, PLA, PP, PVA, T-Glase
MK2-250 150°C 250°C Flexible .35mm, .50mm, .75mm, 1.0mm BendLay, FilaFlex, Flex45, NinjaFlex, PlastInk Rubber
MK1-450 250°C 450°C Engineering .50mm PC, PEEK

Research Papers Citing Hyrel Hot Flow

Lasers

Hot-swappable Lasers are available in the following configurations:

  • The LA5-808 is 5W at 808nm, and due to its wavelength, it is best suited for darker material.
  • The LA6-450 is 6W at 450nm, and performs well on opaque material of any color.

The Reflectivity and Transparency or Translucency of your material will have a great impact on the effectiveness of the laser. Safety glasses are included with each laser.

Spindle Tools

Intended for light drilling and routing operations (especially circuit board work), the ST1 provides between 500 and 5000 RMP (depending on load) to a 1/8" chuck. Our Repetrel software can process Gerber and DRL files for the Spindle Tool and/or the Lasers.

Other Heads

The following accessories each take up a tool position while performing more passive functions:

  • The Inspector microscope provides magnification.
  • The Quiet Storm fan provides additional cooling.
  • The Digitram, provided with every printer, is used to level the build surface.

Non-Head Accessories

The following non-head accessories are also available:

  • The Feed Chamber Cooling Fan mounts on Hot Flow heads to provide additional cooling to the feed chamber. This is desirable with low temperature filaments like PLA.
  • The Printer Support Kit is included with every printer, and includes a build plate, blue tape, and a variety of handy tools like tweezers, razors, and a spatula.
  • The Software Developer's Kit provides hardware, software, and the source code for developing your own firmware for your own compatible heads.
  • The Luer Tip Kit provides an EMO to Luer adapter and a variety of luer lock needles.
  • The Syringe Kit provides syringes in quantity.
  • The Drill Bit Kit provides an assortment of drilling bits and end mills for the Spindle Tool.
  • The Filament Kit provides...