Holdown Process and System for Platen
20200384783 ยท 2020-12-10
Assignee
Inventors
- Robert Swartz (Highland Park, IL)
- Eugene Gore (Des Plaines, IL, US)
- Drew Marchner (Northbrook, IL, US)
Cpc classification
B41J11/06
PERFORMING OPERATIONS; TRANSPORTING
B25B5/062
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A method/system of mechanical holdowns allows a substrate sheet in a CBAM (composite-based additive manufacturing technology) process to lie flat during printing. The invention includes a process of mechanically clamping sheets to be printed by a print head to a flat platen using a set of barrel cam driven clamping fingers. The finger supports are attached to the platen and the fingers can be raised and lowered with respect to the platen. Each finger can rotate while swinging downward toward a sheet at the edge of the platen. To clamp the sheet, the fingers are rotated to the perpendicular position and swung lower down to pinch the sheet to the platen. The process can include additional steps that release some, but not all, of the fingers to allow the sheet to relax before re-clamping them.
Claims
1. A process of holding a flat sheet on a platen having at least two clamping fingers comprising: (a) raising the clamping fingers to an unclamped configuration; (b) depositing a substrate sheet onto the platen; (c) lowering the clamping fingers to a clamped configuration holding down the substrate sheet; (d) raising at least one clamping finger to the unclamped configuration allowing the substrate sheet to relax with at least one other clamping finger remaining in the clamped configuration; (e) lowering the clamping finger to the clamped configuration; (f) printing a pattern onto the substrate sheet; (g) raising clamping fingers to the unclamped configuration; (h) removing the substrate sheet from the platen.
2. The process of claim 1 further comprising repeating steps (a)-(h) for a plurality of substrate sheets.
3. The process of claim 1 further comprising within steps (c), (d) and (e) rotating the respective clamping finger at the same time as it is raised or lowered.
4. The process of claim 3 wherein the rotation between a raised and a lowered position is substantially 90 degrees.
5. The process of claim 1 wherein step (e) also includes (d)(2) raising a different at least one clamping finger to the unclamped configuration after lowering the at least one clamping finger previously raised in step (d) to a new clamping position, such that different fingers alternately remain in the clamped configuration.
6. The process of claim 1 wherein each clamping finger includes a pneumatically driven barrel cam actuator with a gripping finger attached.
7. The process of claim 6 wherein each clamping finger also includes a pneumatic cylinder and rotary clamp.
8. The process of claim 7 wherein the pneumatic cylinder and rotary cam is a SMC MK series rotary clamp cylinder manufactured by SMC Corporation Tokyo, Japan.
9. A print platen comprising: a flat substantially platen bed with a plurality of edge regions; a plurality of finger clamps supported at the edge regions of the platen bed; wherein, each finger clamp is constructed to move vertically with respect to the platen bed and to rotate horizontally with respect to the platen bed; the finger clamps having an unclamped configuration when rotated away from the platen bed and raised above the platen bed, and a clamped configuration when rotated over the platen bed and lowered against the platen bed.
10. The print platen of claim 9 wherein the platen bed is substantially rectangular, and there are two edge regions with at least one finger clamp in each edge region.
11. The print platen of claim 10 wherein there are four finger clamps, two at each edge region.
Description
DESCRIPTION OF THE FIGURES
[0005] Attention is directed to the following figures that illustrate features of the present invention.
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[0015] Several figures have been presented to aid in understanding the present invention. The scope of the present invention is not limited to what is shown in the figures.
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0016] The foregoing summary, as well as the following detailed description of the preferred embodiments of the invention, will be better understood when read in conjunction with the appended drawings. For the purpose of illustrating the invention, there are shown in the drawings embodiments that are presently preferred. It should be understood, however, that the invention is not limited to the precise arrangements and instrumentalities shown.
[0017] The invention includes the process of mechanically clamping sheets to be printed by a print head to a flat platen using a set of barrel cam driven clamping fingers. The fingers are attached to the platen and can be raised and lowered with respect to the platen. In addition during such raising or lowering, each finger can rotate at least ninety degrees to either face perpendicularly into the edge of the platen or to be parallel to the edge of the platen. To clamp the sheet, the fingers are rotated to the perpendicular position and lowered down to pinch the sheet to the platen. The process can include additional steps that release some, but not all, of the fingers to allow the sheet to relax.
Process Description
[0018] 1. Before a sheet is deposited onto the printing surface (platen), the clamping fingers are raised to the unclamped configuration (
[0026] The sheets so-printed are then subject to the rest of the CBAM process that follows after printed sheets get collected and layered. This can be done using any of the variety of methods described in the CBAM patents and applications incorporated herein by reference. The end result is a composite-based 3D-printed part.
Finger Clamp Description
[0027] Turning to
[0028] Several descriptions and illustrations have been presented to aid in understanding the present invention. One with skill in the art will realize that numerous changes and variations may be made without departing from the spirit of the invention. Each of these changes and variations is within the scope of the present invention.