Heating element for inflation and sealing system
A protective packaging formation device is disclosed herein. The device includes an inflation assembly that directs fluid between first and second overlapping plies of a web material. The device also includes a sealing mechanism. The sealing mechanism includes a heating zone and a cooling zone. The sealing mechanism also includes a heating element that extends along both the heating zone and the cooling zone, with the heating element having a first profile in the heating zone and a second profile in the cooling zone.
1. A protective packaging formation device, comprising:
an inflation assembly having a fluid conduit that directs fluid between first and second overlapping plies of a web material;
a driving mechanism that drives the overlapping plies in a downstream direction through a path that includes a pinch zone; and
a sealing mechanism that includes a heating element, the heating element including a foil that includes a wide cross-section portion and a reduced cross-section portion, the size of the cross-sections selected such that the reduced cross-section portion produces a high temperature zone that outputs sufficient heat to heat seal the plies to create a longitudinal seal that seals the first and second plies of film together, trapping the fluid therebetween as the driving mechanism drives the web past the high temperature zone in the downstream direction, wherein the wide cross-section portion and the reduced cross-section portion are disposed in the pinch zone.
2. The protective packaging formation device of claim 1 , wherein the drive mechanism includes a belt, and the web is separated from the heating element by the belt.
3. The protective packaging formation device of claim 1 , wherein the drive mechanism includes a first belt and a second belt that advances the web through the pinch zone.
4. The protective packaging formation device of claim 1 , wherein the wide cross-section portion has a heat output that is insufficient to heat seal the plies together.
5. The protective packaging formation device of claim 4 , wherein the sealing mechanism includes an electrical supply connected to the heating element configured to deliver an electrical current across the heating element, wherein the supply and the widths are selected such that the heat output of the wide cross-section is insufficient to heat seal the plies together when the electrical supply applies a current across the foil.
6. The protective packaging formation device of claim 1 , wherein the wide cross-section portion extends into a cooling zone disposed downstream of the high temperature zone and having a heat output that is sufficiently low to allow the longitudinal seal to cool, the drive mechanism operably associated with the sealing mechanism to compress the plies against the wide cross-section portion as the driving mechanism drives the plies along the cooling zone in the downstream direction.
7. The protective packaging formation device of claim 1 , wherein the driving mechanism is configured to drive the plies along the path over an arcuate pinch zone, such that the overlapping plies have an arcuate shape of at least 15°.
8. A protective packaging formation device, comprising:
an inflation assembly having a fluid conduit that directs fluid between first and second overlapping plies of a web material;
a driving mechanism that drives the overlapping plies in a downstream direction through a path that includes an elongated arcuate pinch zone, such that the overlapping plies have an arcuate shape in the arcuate pinch zone; and
a sealing mechanism that includes a heating element that includes a wide cross-section portion and a reduced cross-section portion, the size of the cross-sections selected such that the reduced cross-section portion produces a high temperature zone that outputs sufficient heat to heat seal the plies to create a longitudinal seal that seals the first and second plies of film together, trapping the fluid therebetween as the driving mechanism drives the web past the heating element in the downstream direction, wherein the wide cross-section portion and the reduced cross-section portion are disposed in the arcuate pinch zone,
wherein the sealing mechanism includes an arcuate heater support structure that has an arcuate support surface that supports the heating element and defines an arcuate profile of the arcuate pinch zone, which arcuate support surface applies pressure to the web against an opposing compression-element.
9. The protective packaging formation device of claim 8 , wherein the heater support structure includes an insulating member that includes at least a portion of the arcuate support surface, along which the support surface has the arcuate profile.
10. The protective packaging formation device of claim 9 , wherein the heater support structure includes a first conducting member and a second conducting member that is separated from the first conducting member, and the heating element has a first end and a second end, with each end mounted to the separate conducting members, wherein the heating element is laid over the insulating member with the reduced cross-section laid across the insulating member.
11. The protective packaging formation device of claim 10 , wherein the heating element is laid over portions of the conducting members with wide cross-section portion of the heating element being laid across the portions of the conducting members.
12. The protective packaging formation device of claim 11 , wherein the reduced cross-section portion of the heating element occupies more of the first half of the pinch zone than the second half.
13. The protective packaging formation device of claim 12 , wherein the wide cross-section portion includes a cooling zone downstream of the high temperature zone, the cooling zone having a heat output that is sufficiently low to allow the longitudinal seal to cool.
14. A protective packaging formation device, comprising:
an inflation assembly that directs fluid between first and second overlapping plies of a web material;
a sealing mechanism that includes:
a heating zone and a cooling zone, wherein the heating zone is operable to heat the plies to create a longitudinal heat seal that seals the first and second plies together as the plies are driven over the heating zone in a downstream direction, and the cooling zone disposed downstream of the heating zone is operable to allow the heated plies to cool at the longitudinal heat seal as the web is driven over the heating zone in the downstream direction, such that the cooled longitudinal heat seal retains the fluid between the plies; and
a heating element that extends along both the heating zone and the cooling zone, with the heating element having a first profile in the heating zone, for heating the heating zone, and a second profile in the cooling zone, providing less heat in the cooling zone than in the heating zone; and
a driving mechanism that drives the overlapping plies in a downstream direction along a path that extends over the heating and cooling zones.
15. The protective packaging formation device of claim 14 , wherein the sealing mechanism includes a heater support structure that defines an arcuate web-support surface that supports the heating element and defines the path, such that the path is arcuate over the heating and cooling zones.
16. The protective packaging formation device of claim 15 , wherein the heating element is a nichrome foil heater that follows the arcuate web-support surface through the pinch zone.
17. The protective packaging formation device of claim 14 , wherein the sealing mechanism includes a pinch zone that overlaps longitudinally with the heating zone and cooling zone, the pinch zone being defined between opposing compression elements in which the compression elements pinch the plies against the heating element in the heating zone and cooling zone.
18. The protective packaging formation device of claim 17 , wherein the heating element extends the entire length of the pinch zone.
19. The protective packaging formation device of claim 14 , wherein:
the sealing mechanism includes an electric insulating member and electrically conductive supports that provide electrical current to the heating element; and
the heating element is laid over the insulating member in the heating zone and is located along at least one of the electrically conductive supports in the cooling zone.
20. The protective packaging formation device of claim 19 , wherein the heating zone is defined by a length of the heating element with a reduced cross section.
21. The protective packaging formation device of claim 19 , wherein the heating zone is between about ¼ and ½ the length of the heating element.
22. The protective packaging formation device of claim 19 , wherein the heating zone is between about ½ and % the length of the pinch zone.
23. The protective packaging formation device of claim 19 , wherein the cooling zone is between about ¼ and ½ the length of the pinch zone.
24. The protective packaging formation device of claim 19 , wherein the difference between the first profile and the second profile is a change in cross-section of the heating element.