Method and apparatus for making a gypsum board
US-2024033972-A1 · Feb 1, 2024 · US
US9296124B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9296124-B2 |
| Application number | US-201313844364-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 15, 2013 |
| Priority date | Dec 30, 2010 |
| Publication date | Mar 29, 2016 |
| Grant date | Mar 29, 2016 |
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A slurry distributor can include a distribution conduit and a slurry wiping mechanism. The distribution conduit extends generally along a longitudinal axis and includes an entry portion, a distribution outlet in fluid communication with the entry portion, and a bottom surface extending between the entry portion and the distribution outlet. The distribution outlet extends a predetermined distance along a transverse axis, which is substantially perpendicular to the longitudinal axis. The slurry wiping mechanism includes a movable wiper blade in contacting relationship with the bottom surface of the distribution conduit. The wiper blade is reciprocally movable between a first position and a second position over a clearing path, which is disposed adjacent the distribution outlet.
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What is claimed is: 1. A slurry distributor comprising: a distribution conduit extending generally along a longitudinal axis and including an entry portion, a distribution outlet in fluid communication with the entry portion, and a bottom surface extending between the entry portion and the distribution outlet, the distribution outlet extending a predetermined distance along a transverse axis, the transverse axis being substantially perpendicular to the longitudinal axis; a slurry wiping mechanism including a movable wiper blade in contacting relationship with the bottom surface of the distribution conduit, the wiper blade reciprocally movable over a clearing path between a first position and a second position, the clearing path disposed adjacent the distribution outlet. 2. The slurry distributor of claim 1 , wherein the distribution outlet includes an outlet opening having a width, along the transverse axis, and a height, along a vertical axis mutually perpendicular to the longitudinal axis and the transverse axis, wherein the width-to-height ratio of the outlet opening is about 4 or more. 3. The slurry distributor of claim 1 , wherein the distribution outlet includes an outlet opening having a width, along the transverse axis, the wiper blade extending a predetermined second distance along the transverse axis, the width of the outlet opening being smaller than the second distance along the transverse axis such that the wiper blade is wider than the outlet opening. 4. The slurry distributor of claim 1 , wherein the wiper blade reciprocally moves longitudinally along the clearing path, and the first position of the wiper blade is longitudinally upstream of the distribution outlet, and the second position is longitudinally downstream of the distribution outlet. 5. The slurry distributor of claim 1 , wherein the slurry wiping mechanism includes an actuator operably arranged with the wiper blade to selectively reciprocally move the wiper blade. 6. The slurry distributor of claim 5 , wherein the actuator comprises a pneumatic cylinder having a reciprocally movable piston, the piston connected to the wiper blade. 7. The slurry distributor of claim 5 , wherein the slurry wiping mechanism includes a controller, the controller being adapted to selectively control the actuator to reciprocally move the wiper blade. 8. The slurry distributor of claim 7 , wherein the controller is adapted to move the wiper blade in a clearing direction from the first position to the second position over a wiping stroke, and the controller is adapted to move the wiper blade in an opposing, return direction from the second position to the first position over a return stroke, and wherein the controller is adapted to move the wiper blade such that the time to move over the wiping stroke is substantially the same as the time to move over the return stroke. 9. The slurry distributor of claim 1 , wherein the controller is adapted to move the wiper blade in a clearing direction from the first position to the second position over a wiping stroke, and the controller is adapted to move the wiper blade in an opposing, return direction from the second position to the first position over a return stroke, and wherein the controller is adapted to move the wiper blade reciprocally between the first position and the second position in a cycle having a sweep period, the sweep period including a wiping portion comprising the time to move over the wiping stroke, a returning portion comprising the time to move over the return stroke, and an accumulation delay portion comprising a predetermined period of time in which the wiper blade remains in the first position. 10. The slurry distributor of claim 9 , wherein the wiping portion is substantially the same as the returning portion. 11. The slurry distributor of claim 9 , wherein the accumulation delay portion is adjustable. 12. The slurry distributor of claim 1 , further comprising: a feed conduit including a first entry segment with a first feed inlet and a second entry segment with a second feed inlet disposed in spaced relationship to the first feed inlet; wherein the entry portion is in fluid communication with the first and second feed inlets of the feed conduit. 13. The slurry distributor of claim 12 , wherein the first and second feed inlets and the first and second entry segments are disposed at a respective feed angle in a range up to about 135° with respect to the longitudinal axis. 14. A cementitious slurry mixing and dispensing assembly comprising: a mixer adapted to agitate water and a cementitious material to form an aqueous cementitious slurry; a slurry distributor in fluid communication with the mixer, the slurry distributor including: a distribution conduit extending generally along a longitudinal axis and including an entry portion, a distribution outlet in fluid communication with the entry portion, and a bottom surface extending between the entry portion and the distribution outlet, the distribution outlet extending a predetermined distance along a transverse axis, the transverse axis being substantially perpendicular to the longitudinal axis, and a slurry wiping mechanism including a movable wiper blade in contacting relationship with the bottom surface of the distribution conduit, the wiper blade reciprocally movable over a clearing path between a first position and a second position, the clearing path disposed adjacent the distribution outlet. 15. The cementitious slurry mixing and dispensing assembly of claim 14 , wherein the distribution outlet includes an outlet opening having a width, along the transverse axis, the wiper blade extending a predetermined second distance along the transverse axis, and wherein the wiper blade reciprocally moves longitudinally along the clearing path. 16. The cementitious slurry mixing and dispensing assembly of claim 15 , further comprising: a bottom support member supporting the bottom surface of the distribution conduit, the bottom support member having a perimeter, the distribution outlet longitudinally offset from the bottom support member such that a distal outlet portion of the distribution conduit extends from the perimeter of the bottom support member; wherein the wiper blade supports the distal outlet portion of the slurry distributor when the wiper blade is in the first position. 17. The cementitious slurry mixing and dispensing assembly of claim 14 , further comprising: a delivery conduit disposed between and in fluid communication with the mixer and the slurry distributor; a flow-modifying element associated with the delivery conduit and adapted to control a flow of the aqueous cementitious slurry from the mixer; an aqueous foam supply conduit in fluid communication with at least one of the mixer and the delivery conduit. 18. The cementitious slurry mixing and dispensing assembly of claim 14 , wherein the slurry distributor includes a feed conduit including a first entry segment with a first feed inlet and a second entry segment with a second feed inlet disposed in spaced relationship to the first feed inlet, the entry portion of the distribution conduit being in fluid communication with the first and second feed inlets of the feed conduit, the first feed inlet adapted to receive a first flow of aqueous cementitious slurry from the mixer, the second feed inlet adapted to receive a second flow of aqueous cementitious slurry from the mixer, and the distribution outlet in fluid communication with both the first and the second feed inlets and adapted such that the first and second flows of aqu
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