Uploaded July 2026 | Updated September 2026, 2 weeks ago
Polymaker ABS Pro and ABS Max are marketed as high-performance ABS filaments with exceptional temperature resistance. According to the specifications, these are the most temperature-resistant ABS filaments I have tested so far.
In this video, I test their printability, dimensional accuracy, and mechanical properties, including tensile strength, layer adhesion, shear strength, torsion resistance, bending strength, impact resistance, creep behavior, and temperature resistance.
I also compare them with Polymaker PolyLite ABS from a previous video to see how these materials fit into the engineering filament landscape. Since temperature resistance is the main focus, I include PC specimens as reference points in the temperature tests.
Product affiliate links:
Polymaker ABS Pro:
shop.polymaker.com/IGORGASPAR?q=polymaker-abs-pro
Polymaker ABS Max:
shop.polymaker.com/IGORGASPAR?q=polymaker-abs-max
Polymaker PolyLite ABS:
shop.polymaker.com/IGORGASPAR?q=polylite-abs
Support MyTechFun:
If you enjoy my independent filament and 3D printer testing, please consider supporting the channel on Patreon:
patreon.com/mytechfun
Patreon supporters get early access to videos, can vote on future tests, and have access to my growing filament test spreadsheet containing results from hundreds of filaments.
Mentioned in this video:
Stratasys vs Bambu Lab ABS:
youtu.be/n0kpiVpkZlI
Stratasys vs Prusament ASA:
youtu.be/hk-vLBadP84
Chapters:
0:00 Introduction
1:12 Specifications
3:08 Unboxing
4:43 Preparing for 3D printing
5:03 Slicer settings (ABS Pro)
5:43 3D printing (ABS Pro)
7:01 Slicer settings (ABS Max)
7:36 3D printing (ABS Max)
8:52 PolyLite ABS + PC
9:17 Shrinking
9:50 First impressions
10:32 Hooks (vertical)
11:09 S-Hooks (horizontal)
11:26 Tensile test
12:00 Layer adhesion
12:28 Shear test
13:01 Torsion test
13:40 Bending test (span 64 mm)
14:31 Bending test (span 50 mm)
15:15 Impact test (Izod)
15:37 Impact test (Charpy)
16:03 Creep test
16:40 Temperature test (own weight)
17:28 Temperature test (0.5 MPa)
18:13 Temperature test (M10 nut)
18:55 All results
19:40 Conclusions
#3dprinting #filament #polymaker #abs #engineeringfilament #3dprinter #mytechfun #materialtesting #temperatureresistance #mechanicaltesting #abspro #absmax #polyliteabspc
Polymaker ABS Pro and ABS Max are marketed as high-performance ABS filaments with exceptional temperature resistance. According to the specifications, these are the most temperature-resistant ABS filaments I have tested so far.
In this video, I test their printability, dimensional accuracy, and mechanical properties, including tensile strength, layer adhesion, shear strength, torsion resistance, bending strength, impact resistance, creep behavior, and temperature resistance.
I also compare them with Polymaker PolyLite ABS from a previous video to see how these materials fit into the engineering filament landscape. Since temperature resistance is the main focus, I include PC specimens as reference points in the temperature tests.
Product affiliate links:
Polymaker ABS Pro:
shop.polymaker.com/IGORGASPAR?q=polymaker-abs-pro
Polymaker ABS Max:
shop.polymaker.com/IGORGASPAR?q=polymaker-abs-max
Polymaker PolyLite ABS:
shop.polymaker.com/IGORGASPAR?q=polylite-abs
Support MyTechFun:
If you enjoy my independent filament and 3D printer testing, please consider supporting the channel on Patreon:
patreon.com/mytechfun
Patreon supporters get early access to videos, can vote on future tests, and have access to my growing filament test spreadsheet containing results from hundreds of filaments.
Mentioned in this video:
Stratasys vs Bambu Lab ABS:
youtu.be/n0kpiVpkZlI
Stratasys vs Prusament ASA:
youtu.be/hk-vLBadP84
Chapters:
0:00 Introduction
1:12 Specifications
3:08 Unboxing
4:43 Preparing for 3D printing
5:03 Slicer settings (ABS Pro)
5:43 3D printing (ABS Pro)
7:01 Slicer settings (ABS Max)
7:36 3D printing (ABS Max)
8:52 PolyLite ABS + PC
9:17 Shrinking
9:50 First impressions
10:32 Hooks (vertical)
11:09 S-Hooks (horizontal)
11:26 Tensile test
12:00 Layer adhesion
12:28 Shear test
13:01 Torsion test
13:40 Bending test (span 64 mm)
14:31 Bending test (span 50 mm)
15:15 Impact test (Izod)
15:37 Impact test (Charpy)
16:03 Creep test
16:40 Temperature test (own weight)
17:28 Temperature test (0.5 MPa)
18:13 Temperature test (M10 nut)
18:55 All results
19:40 Conclusions
#3dprinting #filament #polymaker #abs #engineeringfilament #3dprinter #mytechfun #materialtesting #temperatureresistance #mechanicaltesting #abspro #absmax #polyliteabspc










