IP Library Granted Patent US 8,697,814
Granted Patent B2
US 8,697,814 · App. 13/063,134 · Granted Apr 15, 2014

Process for producing a molding composition or a molding with an increase in the melt stiffness

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Quick Facts
Patent No.
US 8,697,814
App. No.
13/063,134
Granted
Apr 15, 2014
Kind
B2
Abstract

A polyamide molding composition is condensed up in the melt by means of a masterbatch containing a compound having at least two carbonate units and also a polyetheramide in which at least 50% of the end groups are present as amino end groups, whereupon the melt mixture is discharged and solidified to give a molding composition or a molding. The product obtained has an increased amino end group content and consequently an improved hydrolysis resistance.

Claims (31)

1. A process for producing a molding composition or a molding, the process comprising:

a) mixing

(i) a polyamide molding composition, comprising a polyamide with at least 50% of its end groups being present as amino end groups and a proportion of the polyamide being from 10 to 99 parts by weight, and

(ii) a masterbatch comprising a compound having at least two carbonate units and also a polyetheramide, with a proportion of polyetheramide in the masterbatch being from 1 to 90 parts by weight, to obtain a mixture

wherein a sum of parts by weight of the polyamide and the polyetheramide is 100 and at least 50% of polyetheramide end groups are present as amino end groups;

b) optionally, storing, transporting, or storing and transporting the mixture;

c) mixing the mixture as a melt and introducing shear, to obtain a melt mixture; and

d) discharging the melt mixture, to obtain a discharged melt mixture, and

e) solidifying the discharged melt mixture, to obtain the molding composition or molding,

wherein the polyamide molding composition e) comprises 0.005 to 10% by weight, based on the polyamide, of the compound having at least two carbonate units.

2. The process of claim 1 , wherein

the polyamide molding composition e) further comprises from 0.1 to 90 parts by weight of the polyetheramide, where a sum of the parts by weight of the polyamide and the polyetheramide of the polyamide molding composition and the polyetheramide of the masterbatch is 100 and at least 50% of polyetheramide end groups are present as amino end groups.

3. The process of claim 1 , wherein

the molding composition or molding e) comprises from 10 to 99 parts by weight of the polyamide and from 1 to 90 parts by weight of the polyetheramide, and the sum of the parts by weight of the polyamide and polyetheramide is 100.

4. The process of claim 1 , wherein, in the case of a multicomponent molding, a component comprising the molding composition e) produced by the method of claim 1 comprises from 10 to 99 parts by weight of the polyamide and from 1 to 90 parts by weight of the polyetheramide, and the sum of the parts by weight of the polyamide and polyetheramide is 100.

5. The process of claim 1 , wherein the molding composition or molding e) comprises at least 50% by weight of the mixture of the polyamide and polyetheramide.

6. The process of claim 1 , wherein a polyetherdiamine present as comonomer in the polyetheramide has a weight average molar mass of from 200 to 5000 g/mol and its proportion in the polyetheramide is from 4 to 60% by weight.

7. The process of claim 1 , wherein a concentration of the compound having at least two carbonate units in the masterbatch is from 0.15 to 50% by weight.

8. A molding composition, produced by the process of claim 1 .

9. A molding produced, by the process of claim 1 .

10. The molding of claim 9 , in the form of a profile, a plate, or a film.

11. A molding of claim 9 , in the form of a liner, a gas pipe, a layer of an offshore pipeline, a layer of a subsea pipeline, a layer of a supply line, a refinery line, a hydraulic line, a line for at least one chemical, a cable conduit, a filling station supply line, a ventilation line, an air intake pipe, a tank filling port, a storage container, or a fuel tank.

12. The process of claim 2 , wherein the molding composition or molding e) comprises from 10 to 99 parts by weight of the polyamide and from 1 to 90 parts by weight of the polyetheramide, and the sum of the parts by weight of the polyamide and polyetheramide is 100.

13. The process of claim 2 , wherein, in the case of a multicomponent molding, a the component comprising the molding composition e) produced by the method of claim 2 comprises from 10 to 99 parts by weight of the polyamide and from 1 to 90 parts by weight of the polyetheramide, and the sum of the parts by weight of polyamide and polyetheramide is 100.

14. The process of claim 3 , wherein, in the case of a multicomponent molding, a the component comprising the molding composition e) produced by the method of claim 3 comprises from 10 to 99 parts by weight of the polyamide and from 1 to 90 parts by weight of the polyetheramide, and the sum of the parts by weight of polyamide and polyetheramide is 100.

15. The process of claim 2 , wherein the molding composition or molding e) comprises at least 50% by weight of the mixture of the polyamide and polyetheramide.

16. The process of claim 3 , wherein the molding composition or molding e) comprises at least 50% by weight of the mixture of the polyamide and polyetheramide.

17. The process of claim 4 , wherein the molding composition or molding e) comprises at least 50% by weight of the mixture of the polyamide and polyetheramide.

18. The process of claim 2 , wherein a polyetherdiamine present as comonomer in the polyetheramide has a weight average molar mass of from 200 to 5000 g/mol and its proportion in the polyetheramide is from 4 to 60% by weight.

19. The process of claim 3 , wherein a polyetherdiamine present as comonomer in the polyetheramide has a weight average molar mass of from 200 to 5000 g/mol and its proportion in the polyetheramide is from 4 to 60% by weight.

20. The process of claim 4 , wherein a polyetherdiamine present as comonomer in the polyetheramide has a weight average molar mass of from 200 to 5000 g/mol and its proportion in the polyetheramide is from 4 to 60% by weight.

Assignments (2)
CHANGE OF NAME Recorded Jan 31, 2020
From: EVONIK DEGUSSA GMBH
To: EVONIK OPERATIONS GMBH
Reel/Frame 051765/0166 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2011
From: DOWE, ANDREAS; BEUTH, REINHARD; BAUMANN, FRANZ-ERICH
To: EVONIK DEGUSSA GMBH
Reel/Frame 026002/0823 →