igus® provides even more flexibility in the form of 3D filaments. Designing custom parts and manufacturing prototypes is easy.
Choose between 3 wear-resistant igus® materials: iglidur® I170-PF, iglidur® I180-PF and iglidur® J260-PF.
Starter kits containing 25 g of each of the materials iglidur® I170-PF (in 1.75 mm), iglidur® I180-PF (in 1.75 mm and 3 mm) and iglidur® J260-PF (in 1.75 mm and 3 mm) are available for initial trials.
Typical applications:Prototype construction, small batches, test installations
igus® presents the first tribo filament for 3D printers The new 3D printing materials are up to 50 times more abrasion-resistant than conventional 3D print materials.
For your tribo part printsyou can select from the whole igus® CAD library. Simply choose the filetype STL.
You want to start with your print immediately? Here you´ll find a small selection of igus® dry-tech® parts for download.
3D printing service: we use iglidur® I180-PF to print your desired component for you. Click here to send us your enquiry.
3D printing materials such as iglidur® tribo filaments can be processed on any 3D printer that is equipped with a heated print bed on which temperatures are adjustable. Accordingly, any method to ensure the adhesion of ABS filaments to the printer bed can then also be used for iglidur® 3D printer filaments, examples: glass taped with blue tape or Kapton tape at a bed temperature of 90 – 110 °C. iglidur® I170-PF is harder to process than iglidur® I180-PF. The complete processing instructions are accessible as follows:
Düsentemperatur: 250 - 260 °C
Bett-Temperatur: 90 - 110 °C
Sehr gutes Verschleißverhalten
Farbe | weiß |
Max. Feuchtigkeitsaufnahme bei +23 °C/50 % r. F. | 0,3 Gew.-% |
Max. Wasseraufnahme | 0,9 Gew.-% |
Obere langzeitige Anwendungstemperatur | +80 °C |
Obere kurzzeitige Anwendungstemperatur | +90 °C |
Untere Anwendungstemperatur | -40 °C |
Part No.: |
|
Part Number | Diameter filament [mm] |
Outer diameter spool [mm] |
Inner diameter spool [mm] |
Width spool [mm] |
Net weight
[g] |
||
---|---|---|---|---|---|---|---|
I180-PF-0175-0025 (1) | 1.75 | 0 | 0 | 0 | 25 | Upon request | ![]() |
I180-PF-0300-0025 (1) | 3 | 0 | 0 | 0 | 25 | Upon request | ![]() |
I180-PF-0175-0250 | 1.75 | 205 | 55 | 55 | 250 | Upon request | ![]() |
I180-PF-0175-0750 | 1.75 | 205 | 55 | 67 | 750 | Upon request | ![]() |
I180-PF-0300-0250 | 3 | 205 | 55 | 55 | 250 | Upon request | ![]() |
I180-PF-0300-0750 | 3 | 205 | 55 | 67 | 750 | Upon request | ![]() |
More about selected part: | |||||||
3D-CAD![]() ![]() ![]() ![]() |
Düsentemperatur: 250 - 260 °C
Bett-Temperatur: 90 - 110 °C
Sehr gutes Verschleißverhalten
Farbe | weiß |
Max. Feuchtigkeitsaufnahme bei +23 °C/50 % r. F. | 0,3 Gew.-% |
Max. Wasseraufnahme | 0,9 Gew.-% |
Obere langzeitige Anwendungstemperatur | +80 °C |
Obere kurzzeitige Anwendungstemperatur | +90 °C |
Untere Anwendungstemperatur | -40 °C |
Bestellnummer | Durchmesser Filament [mm] |
Außendurchmesser Rolle [mm] |
Innendurchmesser Rolle [mm] |
Breite Spule [mm] |
Nettogewicht [g] |
||
---|---|---|---|---|---|---|---|
I180-BL-PF-0175-0025 (1) | 1.75 | 0 | 0 | 0 | Upon request | ![]() |
|
I180-BL-PF-0300-0025 (1) | 3 | 0 | 0 | 0 | Upon request | ![]() |
|
I180-BL-PF-0175-0250 | 1.75 | 0 | 55 | 55 | Upon request | ![]() |
|
I180-BL-PF-0300-0250 | 3 | 205 | 55 | 67 | Upon request | ![]() |
|
More about selected part: | |||||||
3D-CAD![]() ![]() ![]() ![]() |
Düsentemperatur: 240 - 260 °C
Bett-Temperatur: 90 - 110 °C
Bestes Verschleißverhalten der Tribo-Filamente
Höherer Anspruch an die Verarbeitung
Farbe | gelb |
Max. Feuchtigkeitsaufnahme bei +23 °C/50 % r. F. | 0,5 Gew.-% |
Max. Wasseraufnahme | 1,6 Gew.-% |
Obere langzeitige Anwendungstemperatur | +75 °C |
Obere kurzzeitige Anwendungstemperatur | +85 °C |
Untere Anwendungstemperatur | -40 °C |
Part No.: |
|
Part Number | Diameter filament [mm] |
Outer diameter spool [mm] |
Inner diameter spool [mm] |
Width spool [mm] |
Net weight
[g] |
||
---|---|---|---|---|---|---|---|
I170-PF-0175-0025 (1) | 1.75 | 0 | 0 | 0 | 25 | Upon request | ![]() |
I170-PF-0175-0250 | 1.75 | 205 | 55 | 55 | 250 | Upon request | ![]() |
I170-PF-0175-0750 | 1.75 | 205 | 55 | 67 | 750 | Upon request | ![]() |
More about selected part: | |||||||
3D-CAD![]() ![]() ![]() ![]() |
Nozzle temperature: 260 – 280°C
Bed temperature: 100 – 130°C
Wear resistant, especially when combined with plastic shafts
Higher application temperature of 120°C
Good resistance to media
Colour | yellow |
moisture absorption at 23 °C and 50 %r.h. | 0,2 weight-% |
Max. water absorption | 0,4 weight-% |
Max. long term application temperature | +120 °C |
Max. short term application temperature | +140 °C |
Minimum application temperature | -100 °C |
Part No.: |
|
Ordering number | Filament diameter [mm] |
Roll outer diameter [mm] |
Roll inner diameter [mm] |
Spool width [mm] |
Net weight
[g] |
||
---|---|---|---|---|---|---|---|
J260-PF-0175-0025 (1) | 1.75 | 0 | 0 | 0 | 25 | Upon request | ![]() |
J260-PF-0300-0025 (1) | 3 | 0 | 0 | 0 | 25 | Upon request | ![]() |
J260-PF-0175-0250 | 1.75 | 205 | 55 | 55 | 250 | Upon request | ![]() |
J260-PF-0300-0250 | 3 | 205 | 55 | 67 | 250 | Upon request | ![]() |
More about selected part: | |||||||
3D-CAD![]() ![]() ![]() ![]() |
A= ABS gedruckt
B= iglidur® I170 gedruckt
C= iglidur® I180 gedruckt
D= iglidur® J260 gedruckt
E= iglidur® J260 gespritzt
A= ABS gedruckt
B= iglidur® I170 gedruckt
C= iglidur® I180 gedruckt
D= iglidur® J260 gedruckt
E= iglidur® J260 gespritzt
Los radios de flexión los más pequeños
Los cables son probados en las Cadenas durante más de 30 millones de ciclos.
Los radios de flexión los más pequeños
Los cables son probados en las Cadenas durante más de 30 millones de ciclos.
Diferentes materiales de revestimiento
Los cables poseen diferentes homologaciones y responden a varias normas: UL, CE, CSA, Desina
Diferentes materiales de revestimiento
Los cables poseen diferentes homologaciones y responden a varias normas: UL, CE, CSA, Desina
A= ABS gedruckt
B= iglidur® I170 gedruckt
C= iglidur® I180 gedruckt
D= iglidur® J260 gedruckt
E= iglidur® J260 gespritzt
3D printers can print three-dimensional workpieces with computer controls. On the one hand, the advantages include that high tooling costs are avoided to produce parts and no excess material needs to be machined, making 3D printing a cost-effective method. On the other, there are also no limits to shape design, making unusual shapes possible that would otherwise not be possible.
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