Cushion apparatus having a resilient spring member
Embodiments of the invention relate to a cushion apparatus comprising a resilient spring member. Typically, the cushion apparatus in configured to provide flexible support to a user, allow air circulation through and within the cushion apparatus and allow ventilation of excess heat. In some embodiments, the cushion apparatus comprises a resilient spring member and a cushion cover member at least partially enclosing the spring member. In some embodiments, the cushion cover member is structured to be removable attached to the resilient spring member.
1. A cushion apparatus, comprising:
a resilient spring member, the resilient spring member having first and second edges and further comprising:
a first surface, a second surface, and a left-lateral surface, wherein the first surface, second surface, and left-lateral surface define an interior hollow and a medial plane extending through the interior hollow and midway between the first and second surfaces of the resilient spring member, wherein the first surface and second surface define contoured indentations that are generally symmetrical about the medial plane, wherein the contoured indentations extend into the interior hollow, and wherein the first edge and the second edge of the resilient spring member each form a contoured indented opening into the interior hollow; and
a cushion cover member at least partially enclosing the first surface, the second surface and the left-lateral surface of the spring member.
2. A cushion apparatus according to claim 1 , further comprising a right-lateral surface, and wherein the first surface, second surface, left-lateral surface and right-lateral surface define the interior hollow.
3. A cushion apparatus according to claim 1 , wherein at least one of the first surface, second surface, and left-lateral surface define at least one aperture.
4. A cushion apparatus according to claim 1 , wherein the resilient spring member is formed of plastic.
5. A cushion apparatus according to claim 1 , wherein the resilient spring member is formed of metal.
6. A cushion apparatus according to claim 1 , wherein the cushion apparatus further comprises one or more reinforcing members positioned within the interior hollow.
7. A cushion apparatus according to claim 1 , wherein the resilient spring member defines a cushion height between the first surface and the second surface, wherein the cushion height varies along a length of the resilient spring member.
8. A cushion apparatus according to claim 1 , wherein the cushion cover member comprises at least one cover aperture configured to allow access to the interior hollow of the resilient spring member.
9. A cushion apparatus according to claim 1 , wherein the cushion cover member comprises spacer fabric.
10. A cushion apparatus according to claim 1 , wherein the cushion cover member comprises high-resilient urethane foam.
11. A cushion apparatus according to claim 1 , wherein the cushion apparatus further comprises a cover at least partially enclosing the cushion cover member and the resilient spring member.
12. A cushion apparatus according to claim 1 , wherein the cushion apparatus is configured to allow heat transfer from an exterior of the cushion apparatus to the interior hollow.
13. A cushion apparatus according to claim 1 , wherein the cushion apparatus is configured to allow circulation of air within the cushion apparatus and ventilation of heat away from the cushion apparatus.