By means of ionizing radiation sterilizable moulded parts made from polycarbonate
The invention relates to a thermoplastic composition comprising A) aromatic polycarbonate, B) 0.1 to 5 wt.-% one or more polyether polyols and C) 0.01 to 0.30 wt.-% 3,3′-thiodipropionic acid. The invention also relates to medical technology products or parts of medical technology products consisting of such compositions as well as to a process for sterilization of such moulded parts by means of irradiation. The polycarbonate compositions according to the invention show significantly less yellowing after irradiation than known compositions and still have good mechanical properties.
1. A thermoplastic composition consisting of
A) aromatic polycarbonate,
B) 0.1 to 5 wt.-% one or more polyether polyols,
C) 0.01 to 0.30 wt.-% 3,3′-thiodipropionic acid, and
D) up to 30 wt.-% one or more further additives selected from the group consisting of flame retardants, antidripping agents, impact modifiers, fillers, antistats, colouring agents, pigments, thermal stabilizers different from components B and C, lubricants and/or demoulding agents, UV absorbers, IR absorbers, hydrolysis stabilizers and/or compatibilizer.
2. The thermoplastic composition according to claim 1 , wherein the composition comprises 0.05 to 0.30 wt.-% 3,3′-thiodipropionic acid.
3. The thermoplastic composition according to claim 1 , wherein the aromatic polycarbonate comprises bisphenol A-based polycarbonate.
4. The thermoplastic composition according to claim 3 , wherein the composition does not comprise any other polycarbonate than bisphenol A-based polycarbonate.
5. Thermoplastic composition according to claim 1 , comprising at least 95 wt.-% aromatic polycarbonate.
6. The thermoplastic composition according to claim 1 , wherein the amount of polyether polyol is 0.1 to 2 wt.-%.
7. The thermoplastic composition according to claim 1 , wherein the amount of 3,3′-thiodipropionic acid is 0.05 to 0.25 wt.-%.
8. The thermoplastic composition according to claim 1 , consisting of
A) 69.85 wt.-% to 98.5 wt.-% aromatic polycarbonate,
B) 0.1 wt.-% to 2 wt.-% polyether polyol,
C) 0.05 wt.-% to 0.25 wt.-% 3,3 ‘-thiodipropionic acid and
D) up to 30 wt.-% one or more further additives selected from the group consisting of flame retardants, antidripping agents, impact modifiers, fillers, antistats, colouring agents, pigments, thermal stabilizers different from components B and C, lubricants, demoulding agents, UV absorbers, IR absorbers, hydrolysis stabilizers and/or compatibilizer.
9. The thermoplastic composition according to claim 1 , wherein the polyether polyol is formed from repeating propylene oxide units with propylene glycol as starter molecule and has an OH number within a range of from 50 to 70 mg KOH/g determined according to DIN 53240-3:2016-03.
10. A process for sterilization of moulded parts, wherein a moulded part consisting of or comprising an area consisting of a thermoplastic composition according to claim 1 is exposed to β-radiation and/or γ-radiation with a dose of at least 20 kGy.
11. The process according to claim 10 , wherein the irradiation is conducted in an oxygen atmosphere or in oxygen reduced atmosphere.
12. The process according to claim 10 , wherein the moulded part is contained in a closed pouch during irradiation.
13. A medical technology product or part of a medical technology product comprising a composition according to claim 1 .
14. The medical technology product according to claim 13 , wherein the part is a part of a dialyzer, a part of an oxygenator, a tubing connector, a miscellaneous connector, an element for a blood pump, an infusion valve connector, an injection syringe, an intravenous access component, a surgical instrument, or a two-way valve or selector valve.