Skip to main content
Exclusive Savings: Take 10% OFF All Cenmed Products | Upgrade Your Lab For Less Shop Now
US English

Aladdin Scientific

Flexible Thermoplastic Copolyester (TPC) Printing Filament (C007B-168667)

DescriptionFlexible Thermoplastic Copolyester (TPC) Printing Filament is a rubber-like 3D printer filament with a Shore hardness of 45D that allows for the printing of flexible objects. This flexible filament will not deform or break when stressed

Description
DescriptionFlexible Thermoplastic Copolyester (TPC) Printing Filament is a rubber-like 3D printer filament with a Shore hardness of 45D that allows for the printing of flexible objects. This flexible filament will not deform or break when stressed by bending (Charpy notched impact strength test) and has shown ″flexural memory″which allows materials to return to their original shape after being bent, dented, or folded. In addition to its high flexibility, this filament features many additional beneficial properties such as high temperature resistance, good chemical resistance, high strength, and excellent UV resistance. Due to its ester linkages, this filament is degradable by hydrolysis and is made partially from renewable carbon content (e.g. bio-based oils). When not in use, the filament should be stored at room temperature in dry conditions, such as in a sealed plastic bag or in a closed container with desiccant. Recommended initial printer settings can be found in the ′General Print Settings′ file.Flexible thermoplastic copolyester (TPC) printing filament is a polyester-based material with properties similar to polyurethane-based (TPU) filaments. Due to their flexibility and stability, TPU has been used to synthesize nanoparticles for cartilage tissue engineering, peripheral nerve conduits, and tracheal scaffolds. Due to its ester linkages, thermoplastic copolyesters are able to undergo hydrolytic degradation more readily than polyurethanes, making them more suitable for biomedical applications. Cabrera et al. used thermoplastic copolyesters to print self-expandable polymer stents that can be implanted in a minimally invasive manner. These rapidly prototyped structures were shown to have properties similar to that of nitinol-based stents and to degrade via hydrolysis. Based upon these ideal properties, thermoplastic copolyester filaments have great potential in additional bioengineering applications. Specification: 2.85 mm, blue
Specifications
UPC:
51112503
Condition:
New
Weight:
0.00 Ounces
HazmatClass:
No
WeightUOM:
LB
MPN:
F466431-1EA
Product Size:
1EA
Catalog No. C007B-168667
Price: $189.00
List Price: $210.00
  • Fast shipping — 3-day lead time
  • Guaranteed quality & reliable delivery
  • Shipping Lead-Time: 8-12 weeks
Adding to cart… The item has been added
Request a Quote

Enjoy exclusive benefits, including discounted pricing on bulk orders, by opening a Cenmed Business Account. Learn More.