Precipitation of polyether block amide and thermoplastic polyethylene to enhance operational window for three dimensional printing
A polymer material suitable for three-dimensional printing that may include at least one of polyether block amide, thermoplastic polyurethane, and thermoplastic olefin. The polymer is formed through chemical precipitation forming a precipitated pulverulent polymer which possesses increased operating window characteristics selected from the group consisting at least one of a wider than typical range between and among the melting and recrystallization temperatures, a larger enthalpy upon melting, and a low volumetric change during recrystallization.
1. A polymer material suitable for three-dimensional printing, comprising a precipitated thermoplastic polyurethane, formed by a precipitation process comprising:
mixing a base thermoplastic polyurethane with laurolactam, 1,12-dodecanedioic acid, water, and aqueous hypophosphorous acid to form a composition;
heating the composition in an autoclave;
maintaining autogenic pressure from the composition in the autoclave;
stirring the composition in the autoclave;
depressurizing the autoclave to atmospheric pressure; and
passing nitrogen over the composition to complete the precipitation, wherein the precipitated thermoplastic polyurethane has a larger enthalpy upon melting compared to a baseline thermoplastic polyurethane.
2. A precipitation process for forming a polymer material suitable for three-dimensional printing comprising a precipitated thermoplastic polyurethane comprising:
mixing a base thermoplastic polyurethane with laurolactam, 1,12-dodecanedioic acid, water, and aqueous hypophosphorous acid to form a composition;
heating the composition in an autoclave;
maintaining autogenic pressure from the composition in the autoclave;
stirring the composition in the autoclave;
depressurizing the autoclave to atmospheric pressure; and
passing nitrogen over the composition to complete the precipitation, wherein the precipitated thermoplastic polyurethane has a larger enthalpy upon melting compared to a baseline thermoplastic polyurethane.
3. The precipitation process of claim 2 , further comprising precipitating in a distinct solvent and allowing the polymer to form crystallites.
4. The precipitation process of claim 2 , wherein the precipitated polymer produced has a particle size range from about 25 microns to about 75 microns.