Mēs pieņemam kriptovalūtu — lai tā, kas Jums pieder, varētu nopirkt īstu aparatūru.Maksājiet kriptovalūtā, iztērējiet to īstai aparatūrai. Bezmaksas apdrošināta piegāde visā pasaulē virs 399 $. Vienkāršas, nemarķētas kastes, sūtītas no Vācijas.Bezmaksas apdrošināta piegāde virs 399 $. Jūsu kurss tiek fiksēts uz 30 minūtēm, tiklīdz atveras kase.Kurss fiksēts uz 30 minūtēm. Katra prece ir aizzīmogota, tās sērijas numurs ir pārbaudīts, un uz to attiecas 24 mēnešu garantija.Aizzīmogots, 24 mēnešu garantija.

Uzraudzītās preces Pieteikties

Lay Filaments

Lay Filaments Di-Electro-LAY 3.0mm 0.10kg 3d printers accessory

SKU CH-3DNF-RK455

Experimental filament with 72% TiO₂ for strong electromagnetic field interaction

  • 72 % titanium dioxide filling enables strong electromagnetic field interaction
  • Experimental filament designed for printing structures that interact with electromagnetic fields
  • 0 mm diameter suits printers requiring 3 mm class filament
  • 10 kg spool provides a small test quantity for development work
  • Created by Kai Parthy, inventor of MoldLay, Laywoo-D3 and Ethy-Lay

Experimental Filament for Electromagnetic Research

This polymer filament contains 72 percent titanium dioxide and is designed for 3D printing structures that interact with strong electromagnetic fields. It suits researchers and advanced hobbyists building custom antennas or experimental RF components. The material is sold as an experimental product for specialised additive manufacturing projects.

Standard 3.0mm Diameter for Compatible Extruders

The filament measures 3.0 millimetres in diameter and comes on a 0.10 kilogram spool, so it fits printers that accept this size without hardware changes. Because the formulation is experimental, print parameters such as temperature and speed need careful tuning to avoid clogging or layer adhesion issues. Users should expect a development cycle rather than plug-and-print reliability.

Consistent Dielectric Behaviour During Extended

The high TiO2 loading maintains stable electromagnetic properties throughout long build times, allowing multi-hour prints of functional antenna geometries without property drift. Thermal stability of the polymer matrix supports dimensional accuracy during sustained extrusion, reducing warping on large experimental parts. This predictable response under continuous load is essential for repeatable RF prototyping.

Priekšrocības

  • 72 % titanium dioxide filling enables strong electromagnetic field interaction
  • Experimental filament designed for printing structures that interact with electromagnetic fields
  • 0 mm diameter suits printers requiring 3 mm class filament
  • 10 kg spool provides a small test quantity for development work
  • Created by Kai Parthy, inventor of MoldLay, Laywoo-D3 and Ethy-Lay

Specifikācijas

BrandLay Filaments

Jautājumi par šo preci

How can I verify the Di-Electro-LAY filament interacts with electromagnetic fields after printing?

Print a small test antenna or coil and measure its response near a known electromagnetic source; the 72 % TiO₂ loading is designed to give strong field interaction.

What is included in the package and what must I source separately?

The box contains a 0.10 kg spool of 3.0 mm Di-Electro-LAY filament; you will need a compatible 3D printer and any build-surface adhesive you prefer.

Which diameter and weight should I choose for my printer?

This listing is the 3.0 mm diameter in a 0.10 kg spool; select it only if your extruder accepts 3.0 mm filament and you want a small trial quantity.

Arī šajā sadaļā

Klienti arī salīdzināja

Tas pats plaukts, tā pati kase — astoņas kriptovalūtas un kursa fiksēšana uz 30 minūtēm.