VARIABLE HEIGHT FILL STATION FOR READY MIXED COMPOSITIONS
20210114857 ยท 2021-04-22
Inventors
- Brent MILLER (Sandusky, OH, US)
- Steven A. Harper (Port Clinton, OH, US)
- Roger Tarolli (Fremont, OH, US)
Cpc classification
B65B59/003
PERFORMING OPERATIONS; TRANSPORTING
B65B39/12
PERFORMING OPERATIONS; TRANSPORTING
B67C2003/2668
PERFORMING OPERATIONS; TRANSPORTING
B67C3/282
PERFORMING OPERATIONS; TRANSPORTING
B65D88/28
PERFORMING OPERATIONS; TRANSPORTING
B65B59/001
PERFORMING OPERATIONS; TRANSPORTING
International classification
B67C3/26
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A variable height fill station for filling containers with ready mixed compositions, includes a hopper, a dispensing nozzle in fluid communication with the hopper, an inner tube having a first inner end, and an opposite second inner end, an outer tube having a first outer end telescopingly receiving the second inner end of the inner tube, and an opposite second outer end, a support frame supporting the second outer end, and providing an actuator mounting point, and a linear actuator connected at a work end to the second inner end, and at an opposite end to the support frame, so that linear reciprocation of the actuator moves the inner tube relative to the outer tube, thus adjusting an operational height of the dispensing nozzle.
Claims
1. A variable height fill station for filling containers with ready mixed compositions, comprising: a hopper; a dispensing nozzle in fluid communication with said hopper; an inner tube connected having a first inner end and an opposite second inner end; an outer tube having a first outer end telescopingly receiving said second inner end of said inner tube, and an opposite second outer end; a support frame supporting said second outer end, and providing an actuator mounting point; and a linear actuator connected at a work end to said second inner end, and at an opposite end to said support frame, so that linear reciprocation of said actuator moves said inner tube relative to said outer tube, thus adjusting an operational height of said dispensing nozzle.
2. The fill station of claim 1, further including a filler head located in operational relationship to said hopper, said filler head including at least one powered auger and a material supply tube.
3. The fill station of claim 2, wherein said hopper is oriented for receiving joint compound from said material supply tube and being in operational range of said at least one auger.
4. The fill station of claim 1, wherein said support frame includes a base plate, a plurality of support rods projecting vertically from said base plate, and an upper plate providing a mounting point for said second outer end of said outer tube.
5. The fill station of claim 1, further including a seal box mounted to a filler head for preventing the entry of joint compound between said outer tube and said inner tube.
6. The fill station of claim 5, wherein said seal box includes a collar secured to said outer tube, and a shield extending from said collar to an underside of said filler head.
7. The fill station of claim 1, wherein said outer tube has a vertical slot, said inner tube has at least one mounting opening in registry with said slot, and a bowl mount is provided that is attachable to said inner tube via said at least one mounting opening.
8. The fill station of claim 7, wherein said bowl mount is connected to said hopper.
9. The fill station of claim 7, wherein said bowl mount is constructed and arranged for being slidable relative to said outer tube.
10. The fill station of claim 1, further including a control interface connected to said linear actuator for controlling linear reciprocation of said actuator and adjusting an operational height of said nozzle.
11. The fill station of claim 1, wherein said control unit has a programmable processor configured with preset a plurality of preset nozzle heights, each said nozzle height associated with a corresponding production package.
12. A variable height fill station for filling containers with ready mixed compositions, comprising: a filler head; a hopper in operational relationship to said filler head; a dispensing nozzle in fluid communication with said hopper; an inner tube having a first inner end connected to said filler head, and an opposite second inner end; an outer tube having a first outer end telescopingly receiving said second inner end of said inner tube, and an opposite second outer end; a support frame supporting said second outer end, and providing an actuator mounting point; a linear actuator connected at a work end to said second inner end, and at an opposite end to said support frame, so that linear reciprocation of said actuator moves said inner tube relative to said outer tube, thus adjusting an operational height of said dispensing nozzle; a seal box associated with said outer tube for preventing the entry of joint compound between said outer tube and said inner tube.
13. The fill station of claim 12, wherein said seal box includes a collar secured to said outer tube, and a shield extending from said collar to an underside of said filler head.
14. The fill station of claim 13, wherein said shield includes three panels forming a U-shape when viewed from above.
15. The fill station of claim 12, wherein said filler head includes at least one powered auger and a material supply tube.
16. The fill station of claim 15, wherein said hopper is oriented for receiving joint compound from said material supply tube and being in operational range of said at least one auger.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018]
[0019]
[0020]
[0021]
[0022]
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[0024]
DETAILED DESCRIPTION
[0025] Referring now to
[0026] Included on the fill station 10 is a box-like filler head 16, having a motor 18 connected to at least one auger 20 (shown hidden). In many embodiments, the at least one auger 20 includes separate and coarse augers, preferably powered by drive systems (not shown). The augers 20 are in operational relation to, and depend vertically into a hopper 22 mounted to the station 10 in operational relationship to the filler head 16. Preferably, the hopper 22 is conically shaped so that it tapers or narrows from an upper open end 24 to an outlet end 26.
[0027] A material feed conduit 28 is connected to a remotely located supply of ready mixed joint compound, which is emptied into the hopper 22. The augers 20 mix the contents of the hopper 22 and push the contents toward the outlet end 26.
[0028] A preferably tubular dispensing nozzle 30 depends from, and is in fluid communication with the hopper 22 and specifically the outlet end 26. It will be understood that more than one nozzle is located at this point 30, in some cases including a fine and a bulk nozzle. The nozzle 30 receives ready mixed joint compound under pressure from the augers 20 and dispenses the compound into the desired containers, 12, 14. In the preferred embodiment, at an outlet end 32 of the dispensing nozzle 30 is located a cutoff assembly 34 including at least one laterally sliding cutoff knife (not shown). In the present embodiment, two of such knives are provided, each of which is powered by a fluid powered, preferably pneumatic actuator 36 mounted to a generally horizontally extending knife mounting plate 38. The actuators 36 are optionally under operator control, or are automatically operated based on volume or weight of dispensed joint compound.
[0029] Referring now to
[0030] Also included on the filler station 10 is an outer tube 50 with a larger diameter than the inner tube 44 and also being made of rigid self-supporting material, similar to the inner tube 44. In addition, the outer tube 50 has a first outer end 52 telescopingly and slidingly receiving the second inner end 48 of the inner tube 44, and an opposite second outer end 54. As is the case with the inner tube 44, the outer tube 50 has a constant diameter from the first outer end 52 to the second outer end 54. In the preferred embodiment, the outer tube 50 is shorter in length than the inner tube 44. As will be described in greater detail below, the inner tube 44 slidingly reciprocates vertically relative to the outer tube 50 for adjusting the working height of the dispensing nozzle 30. Also, the outer tube 50 is provided with a vertical slot 56 preferably axially aligned with a vertical reciprocating travel path of the inner tube 44.
[0031] Referring now to
[0032] Referring now to
[0033] In operation, linear reciprocation of the linear actuator 72 moves the inner tube 44 relative to the outer tube 50, thus adjusting an operational height of the dispensing nozzle 30. Operation of the linear actuator 72 is under operator control.
[0034] Referring now to
[0035] Referring now to
[0036] Referring again to
[0037] While a particular embodiment of the present variable height fill station for ready mixed compositions has been described herein, it will be appreciated by those skilled in the art that changes and modifications may be made thereto without departing from the invention in its broader aspects and as set forth in the following claims.