A cup thermoforming machine includes a frame, a movable upper platen, a clamping grid and a movable lower platen. The movable upper platen is supported for vertical reciprocation by the frame, and carries a male die. The clamping grid is carried by the frame above a sheet of thermoformable material
A cup thermoforming machine includes a frame, a movable upper platen, a clamping grid and a movable lower platen. The movable upper platen is supported for vertical reciprocation by the frame, and carries a male die. The clamping grid is carried by the frame above a sheet of thermoformable material and has a clearance aperture for the male die. The lower platen is supported for vertical reciprocation by the frame beneath the clamping grid and carries a female die.
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1. A cup thermoforming machine, comprising: a frame;a movable upper platen supported for vertical reciprocation by the frame and carrying a plurality of male dies each configured to interact with a horizontally extending heated web of thermoformable material;a stationary clamping grid carried by the
1. A cup thermoforming machine, comprising: a frame;a movable upper platen supported for vertical reciprocation by the frame and carrying a plurality of male dies each configured to interact with a horizontally extending heated web of thermoformable material;a stationary clamping grid carried by the frame above the heated web and having a respective clearance aperture for each of the male dies;a movable lower platen supported for vertical reciprocation by the frame beneath the clamping grid and carrying a plurality of female dies; anda web sag clearance zone provided between the clamping grid and a top-most surface of the lower platen that extends across and above an entirety of the plurality of female dies on the lower platen with a depth greater than a depth of the female dies when the lower platen is vertically reciprocated to a lowered position to provide clearance for a downwardly sagging portion of the heated web relative to the plurality of female dies;wherein positioning of the clamping grid above the heated web in combination with an upward movement of the plurality of female dies for clamping the heated web is configured to eliminate a contact between the heated web and the clamping grid which results in preventing damage to a surface finish of the heated web. 2. The cup thermoforming machine of claim 1, further comprising a pair of laterally spaced apart conveyor rails provided outboard of the clamping grid and defining a web delivery plane provided beneath a bottom surface of the clamping grid. 3. The cup thermoforming machine of claim 2, wherein the lower platen has a top surface, when lowered to a bottom position, spaced from the web delivery plane greater than a height of the male die. 4. The cup thermoforming machine of claim 3, wherein a web sag gap provided between the web delivery plane and the lower platen is greater than a height of the male die when the lower platen is at the bottom position. 5. The cup thermoforming machine of claim 2, further comprising a first kinematic linkage and a first drive motor coupled together to drive the upper platen in vertical reciprocation between raised and lowered positions relative to the clamping grid, wherein the lowered position corresponds with a bottom surface of the upper platen engaging with a top surface of the clamping grid. 6. The cup thermoforming machine of claim 5, further comprising a second kinematic linkage and a second drive motor coupled together to drive the lower platen in vertical reciprocation between raised and lowered positions relative to the clamping grid, wherein the raised position corresponds with a top surface of the lower platen engaging with a bottom surface of the clamping grid. 7. The cup thermoforming machine of claim 2, wherein the clamping grid and the conveyor rails are supported by the frame in stationary locations, and the upper platen and the lower platen are moved vertically relative to the clamping grid. 8. The cup thermoforming machine of claim 7, wherein the lower platen is raised into engagement with the clamping grid before the upper platen is lowered into engagement with the clamping grid. 9. The cup thermoforming machine of claim 1, wherein a plurality of rows of male dies are provided on the upper platen and a plurality of complementary female dies are provided on the lower platen. 10. A thermoforming machine, comprising: a frame;a movable upper platen supported by the frame for vertical reciprocation and carrying a plurality of male dies configured to interact with a heated web of thermoformable material supported in a horizontally extending configuration;a stationary clamping grid carried by the frame above the horizontally extending heated web of thermoformable material and having a respective clearance aperture for each of the male dies;a movable lower platen supported by the frame for vertical reciprocation beneath the clamping grid and carrying a plurality of female dies configured to interact with the horizontally extending heated web of thermoformable material; anda web sag clearance zone provided between the clamping grid and a top-most surface of all of the female dies having a depth at least 16 percent of a width of the top-most surface of all the female dies being spanned when the lower platen is vertically reciprocated to a lowered position to provide clearance for a downwardly sagging portion of the heated web relative to the plurality of female dies;wherein positioning of the clamping grid above the heated web in combination with an upward movement of the plurality of female dies for clamping the heated web is configured to eliminate a contact between the heated web and the clamping grid which results in preventing damage to a surface finish of the heated web. 11. The horizontal thermoforming machine of claim 10, further comprising a pair of laterally spaced apart conveyor rails provided outboard of the clamping grid and defining a web delivery plane provided beneath a bottom surface of the clamping grid. 12. The horizontal thermoforming machine of claim 11, wherein the conveyor rails are horizontal, and further comprising an oven having the pair of horizontal conveyor rails configured to move a web of thermoformable material through the oven while heating the web. 13. The horizontal thermoforming machine of claim 11, wherein the female die on the lower platen has a top surface, when lowered to a bottom position, spaced from the web delivery plane greater than a height of the male die. 14. The horizontal thermoforming machine of claim 11, wherein a web sag gap provided between the web delivery plane and the plurality of female dies on the lower platen is greater than a height of the male die when the lower platen is at the bottom position. 15. The horizontal thermoforming machine of claim 11, wherein the clamping grid and the conveyor rails are supported by the frame in stationary locations, and the upper platen and the lower platen are moved vertically relative to the clamping grid. 16. A thermoforming machine, comprising: a frame;a movable upper platen supported by the frame for vertical reciprocation and carrying a plurality of male dies configured to interact with a heated web of thermoformable material supported in a horizontally extending configuration;a stationary clamping grid carried by the frame above the horizontally extending heated web of thermoformable material and having a respective clearance aperture for each of the male dies;a movable lower platen supported by the frame for vertical reciprocation beneath the clamping grid and carrying a plurality of female dies configured to interact with the horizontally extending heated web of thermoformable material;a pair of laterally spaced apart and horizontally extending conveyor rails provided outboard of the clamping grid and defining a web delivery plane provided beneath a bottom surface of the clamping grid; anda web sag clearance zone provided between a bottom-most surface of the clamping grid and a top-most surface of all of the female dies having a depth at least 16 percent of a width of the top-most surface of all the female dies being spanned when the lower platen is vertically reciprocated to a lowered position to provide clearance for a downwardly sagging portion of the heated web relative to the plurality of female dies;wherein positioning of the clamping grid above the heated web in combination with an upward movement of the plurality of female dies for clamping the heated web is configured to eliminate a contact between the heated web and the clamping grid which results in preventing damage to a surface finish of the heated web. 17. The thermoforming machine of claim 16, further comprising a horizontally extending oven encompassing an upstream portion of the conveyor rails configured to heat the web of thermoformable material. 18. The thermoforming machine of claim 16, wherein the web sag clearance zone is absent of any interfering structures between the bottom-most surface of the clamping grid and the top-most surface of the female die on the lower platen, when the lower platen is vertically reciprocated to a lowered position to provide clearance for a downwardly sagging portion of the heated web. 19. The thermoforming machine of claim 18, wherein a plurality of rows of male dies are provided on the upper platen and a plurality of rows of complementary female dies are provided on the lower platen. 20. The thermoforming machine of claim 19, wherein the plurality of female dies comprise a rectangular array of female dies.
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