Microalloyed spring
View Patent ↗The systems and methods described herein include innerspring assemblies or innerspring cores for use with cushioning articles such as mattresses. The innerspring core may have one or more coil springs formed from a high-carbon steel wire alloyed with one or more suitable alloying elements such as titanium and copper and capable of imparting greater strength and durability to the innerspring core.
1. An innerspring assembly, comprising:
a plurality of coil springs, wherein at least one of the coil springs comprises a high carbon steel spring wire having a diameter of 0.04 to 0.11 inches (1.016 to 2.794 millimeters) coiled into a helical spring and alloyed with at least one alloying element;
wherein the alloying element includes titanium in an amount from 0.001 to 0.1 weight percent of the spring, and
wherein a total amount of the alloying element is from 0.001 to 2.0 weight percent of the spring.
2. The innerspring assembly of claim 1 , wherein the steel wire comprises more than one strand.
3. The innerspring assembly of claim 1 , wherein the plurality of coil springs are open coils.
4. The innerspring assembly of claim 1 , wherein the plurality of coil springs are encased coils.
5. The innerspring assembly of claim 1 , wherein the alloying element further comprises at least one of manganese, vanadium, chromium, nickel, molybdenum, and copper.
6. The innerspring assembly of claim 1 , wherein the alloying element further comprises copper in an amount of 0.1 to 0.3 weight percent of the spring.
7. The innerspring assembly of claim 6 , wherein the copper alloying element is 10 to 20 times more than titanium alloying element.
8. The innerspring assembly of claim 1 , wherein the helical spring includes a frustoconical upper spring coil portion and a lower cylindrical portion disposed below the upper portion.
9. The innerspring assembly of claim 1 , wherein the alloying element further comprises silicon in an amount from 0.001 to 0.55 weight percent of the spring and copper in an amount from 0.1 to 0.3 weight percent of the spring.
10. The innerspring assembly of claim 1 , wherein the high carbon steel includes carbon in an amount of 0.55 to 0.99 weight percent of the steel.
11. An innerspring assembly, comprising:
a plurality of coil springs, wherein at least one of the coil springs comprises a high carbon steel spring wire having a diameter of 0.04 to 0.11 inches (1.016 to 2.794 millimeters) coiled into a helical spring having an uncompressed height of 3.5 inches to 13.5 inches and alloyed with at least one alloying element comprising titanium in an amount from 0.001 to 0.1 weight percent of the spring and copper in an amount of 0.1 to 0.3 weight percent of the spring, and
wherein a total amount of the alloying element is from 0.001 to 2.0 weight percent of the spring.
12. The innerspring assembly of claim 11 , wherein the helical spring includes a frustoconical upper spring coil portion and a lower cylindrical portion disposed below the upper portion.
13. The innerspring assembly of claim 11 , herein the steel wire comprises more than one strand.
14. The innerspring assembly of claim 11 , wherein the plurality of coil springs are open coils.
15. The innerspring assembly of claim 11 , wherein the plurality of coil springs are encased coils.
16. The innerspring assembly of claim 11 , wherein the alloying element further comprises at least one of manganese, vanadium, chromium, nickel, and molybdenum.
17. The innerspring assembly of claim 11 , wherein the copper alloying element is 10 to 20 times more than titanium alloying element.
18. The innerspring assembly of claim 11 , wherein the alloying element further comprises silicon in an amount from 0.001 to 0.55 weight percent of the spring.
19. The innerspring assembly of claim 11 , wherein the high carbon steel includes carbon that is from 0.55 to 0.99 weight percent of the steel.