Stabilizer for polyamides
The present invention relates to a thermoplastic composition that provides improved thermal aging stability. The thermoplastic composition includes a polyamide resin, glass fibers, tin(II) oxalate, and a functional additive. It has been found that a combination of a polyamide resin with tin(II) oxalate and a functional additive produces a superior product demonstrating greater thermal stability than the polyamide resin alone.
1. A thermoplastic composition, comprising, based on a total weight of the composition;
a) 30 to 90 wt % of a polyamide resin;
b) 5 to 65 wt % of reinforcing fibers;
c) 2 to 10 wt % of tin(II) oxalate; and
d) 0.1 to 20 wt % of a functional additive,
wherein the functional additive is polyalkenylene, and
wherein the contents sum up to 100 wt %.
2. The thermoplastic composition of claim 1 , comprising, based on the total weight of the composition:
a) 40 to 70 wt % of the polyamide resin;
b) 20 to 50 wt % of reinforcing fibers;
c) 2 to 5 wt % of tin(II) oxalate; and
d) 1 to 15 wt % of the functional additive which is polyalkenylene,
wherein the contents sum up to 100 wt %.
3. The thermoplastic composition of claim 1 , wherein the polyamide resin is at least one selected from the group consisting of Nylon 6, Nylon 6,6, Nylon 6,12, Nylon 4,6, Nylon 6,10, Nylon 7, Nylon 10, Nylon 10, 10, Nylon 12, Nylon 12, 12, Nylon 9T, Nylon 10 T, Nylon 6T, Nylon 6T/6I, Nylon 6T/DT, and Nylon MXD-6.
4. The thermoplastic composition of claim 1 , wherein the polyamide resin is semicrystalline polyphthalamide.
5. The thermoplastic composition of claim 1 , wherein the reinforcing fibers is glass fibers.
6. The thermoplastic composition of claim 1 , wherein the functional additive is polyalkenylene comprising repeat units of the following formula:
[CH═CH—(CH 2 ) n ],
wherein n=from 3 to 10.
7. The thermoplastic composition of claim 1 , further comprising at least one additive selected from the group consisting of lubricants, glass fillers, mineral fillers, impact modifiers, plasticizers, pigments, dyes, antioxidants, heat stabilizers, hydrolysis stabilizers, nucleating agents, flame retardants, synergists, drip suppressants, and blowing agents.
8. The thermoplastic composition of claim 1 , wherein, after 1000 hours of hot air testing at 230° C., the thermoplastic composition is capable of retaining greater than 60% of its tensile strength compared to a tensile strength before the hot air testing.