Warewasher and associated spray arm assembly
11000174 · 2021-05-11
Assignee
Inventors
- Alexander R. Anim-Mensah (Miamisburg, OH, US)
- Mary E. Paulus (Sidney, OH, US)
- Michael T. James (Vandalia, OH, US)
- Shawn D. Waterman (Troy, OH, US)
- Cody Topp (Nashville, TN, US)
- Robert Petrick (Carnegie, PA, US)
- Vincenzo Violi (Cincinnati, OH, US)
- Philip Stone (Cincinnati, OH, US)
Cpc classification
A47L15/0076
HUMAN NECESSITIES
A47L15/4259
HUMAN NECESSITIES
International classification
Abstract
A warewash machine includes a chamber for receiving wares, the chamber having at least one spray zone in which a liquid is recirculated from a tank to a spray tube assembly having a plurality of spray nozzles. The spray tube assembly includes a plurality of spray tubes, each including an input end and a distal end connected to a tube support, which has a fixed part and a cover movable between a closed and open positions. Each distal end has an opening that is covered in the closed position and uncovered, perhaps fully, in the open position. The tube support may include at least one latching assembly for holding the cover in the closed position. The cover and the access door may be cooperatively configured such that, when the cover is in the open position, the cover prevents the access door from moving to the closed operating position.
Claims
1. A warewash machine for washing wares, comprising: a chamber for receiving wares, the chamber having at least one spray zone in which a liquid is recirculated from a tank to a spray tube assembly, the spray tube assembly having a plurality of spray nozzles for spraying the liquid on wares; wherein the spray tube assembly includes a plurality of spray tubes, each spray tube including an input end fed by a liquid flow path and a distal end, each distal end being connected to a tube support having a fixed part and a single cover movable between a closed position and an open position, each distal end having an opening that is covered by the single cover in the closed position and uncovered in the open position; and wherein the tube support includes at least one latching assembly for holding the single cover in the closed position.
2. The warewash machine of claim 1, wherein the single cover includes at least one resilient member configured to engage and at least partially seal the distal ends when the single cover is in the closed position.
3. The warewash machine of claim 2, wherein the at least one latching assembly causes the at least one resilient member to be pressed against the distal ends when the single cover is in the closed position.
4. The warewash machine of claim 1, wherein the single cover is pivotably connected to the fixed part.
5. The warewash machine of claim 1, wherein the at least one latching assembly comprises a sliding bar latch system having at least one post and at least one L-catch.
6. The warewash machine of claim 1, wherein the at least one latching assembly comprises at least one over-center latch.
7. The warewash machine of claim 1, wherein the at least one latching assembly comprises at least one flex latch having at least one fixed part and at least one catch part configured to engage the at least one fixed part.
8. The warewash machine of claim 1, wherein the opening of each distal end is fully exposed when the single cover is in the open position.
9. The warewash machine of claim 1, wherein the warewash machine further comprises an access door movable between an open access position and a closed operating position, the single cover positioned proximate the access door, wherein the single cover and the access door are cooperatively configured such that, when the single cover is in the open position, the single cover physically interferes with the access door moving from the open access position to the closed operating position.
10. The warewash machine of claim 9, further comprising a door sensor to detect if the access door is in the closed operating position.
11. A warewash machine for washing wares, comprising: a chamber for receiving wares and an access door movable between an open access position and a closed operating position, the chamber having at least one spray zone in which a liquid is recirculated from a tank to a spray tube assembly, the spray tube assembly having a plurality of spray nozzles for spraying the liquid on wares; wherein the spray tube assembly includes a plurality of spray tubes, each spray tube including an input end fed by a liquid flow path and a distal end, each distal end being connected to a tube support having a fixed part and a cover movable between a closed position and an open position, each distal end having an opening that is covered in the closed position and uncovered in the open position; and wherein the cover and the access door are cooperatively configured such that, when the cover is in the open position, the cover physically interferes with the access door moving from the open access position to the closed operating position.
12. The warewash machine of claim 11, wherein the cover includes at least one resilient member configured to engage and at least partially seal the distal ends when the cover is in the closed position.
13. The warewash machine of claim 11, further comprising a door sensor to detect if the access door is in the closed operating position.
14. The warewash machine of claim 11, wherein the opening of each distal end is fully exposed when the cover is in the open position.
15. The warewash machine of claim 11, wherein the cover is pivotably connected to the fixed part.
16. The warewash machine of claim 11, wherein: the cover includes at least one resilient member configured to engage and at least partially seal the distal ends when the cover is in the closed position; the opening of each distal end is fully exposed when the cover is in the open position.
17. The warewash machine of claim 16, further comprising at least one latching assembly that causes the at least one resilient member to be pressed against the distal ends when the cover is in the closed position.
18. A warewash machine for washing wares, comprising: a chamber for receiving wares, the chamber having at least one spray zone in which a liquid is recirculated from a tank to a spray tube assembly, the spray tube assembly having a plurality of spray nozzles for spraying the liquid on wares; wherein the spray tube assembly includes a plurality of spray tubes, each spray tube including an input end fed by a liquid flow path and a distal end, each distal end being connected to a tube support having a fixed part and a cover movable between a closed position and an open position, each distal end having an opening that is covered in the closed position and uncovered in the open position; wherein the tube support includes at least one latching assembly for holding the cover in the closed position; wherein the movable cover includes at least one resilient member configured to engage and at least partially seal the distal ends when the cover is in the closed position; wherein the at least one latching assembly causes the at least one resilient member to be pressed against the distal ends when the cover is in the closed position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(9) Referring to
(10) The racks proceed to a next curtain 38 into a main wash chamber or zone 40, where the wares are subject to sprays of cleansing wash liquid (e.g., typically water with detergent) from upper and lower wash spray tubes 42 and 44, with respective spray nozzles, these sprays being supplied through a supply conduit 46 by a pump 48, which draws from a main tank 50. A heater 58, such as an electrical immersion heater provided with suitable thermostatic controls (not shown), maintains the temperature of the cleansing liquid in the tank 50 at a suitable level. Not shown, but which may be included, is a device for adding a cleansing detergent to the liquid in tank 50. During normal operation, pumps 32 and 48 are continuously driven, usually by separate motors, once the warewash system 10 is started for a period of time.
(11) The warewash system 10 may optionally include a power rinse (also known as post-wash) chamber or zone (not shown) that is substantially identical to main wash chamber 40. In such an instance, racks of wares proceed from the wash chamber 40 into the power rinse chamber, within which heated rinse water is sprayed onto the wares from upper and lower spray tubes.
(12) The racks 12 of wares 14 exit the main wash chamber 40 through a curtain 52 into a final rinse chamber or zone 54. The final rinse chamber 54 is provided with upper and lower spray heads 56, 57 that are supplied with a flow of fresh hot water via pipe 62 running from a hot water booster 70 under the control of a solenoid valve (or alternatively any other suitable valve capable of automatic control). A rack detector 64 may be actuated when a rack 12 of wares 14 is positioned in the final rinse chamber 54 and through suitable electrical controls (e.g., the controller mentioned below), the detector causes actuation of, for instance, a solenoid valve to open and admit the hot rinse water to the spray heads 56, 57. The water then drains from the wares and is directed into the tank 50 by gravity flow. The rinsed rack 12 of wares 14 then exits the final rinse chamber 54 through curtain 66, moving into dryer unit 18, before exiting the outlet end 17 of the machine.
(13) An exhaust system 80 for pulling hot moist air from the machine (e.g., via operation of a blower 81) may be provided. As shown, a cold water input of flow path 72 (flow controlled by pump 114 or a valve) may run through a waste heat recovery unit 82 (e.g., a fin-and-tube heat exchanger through which the incoming water flows, though other variations are possible) to recover heat from the exhaust air flowing across and/or through the unit 82. The water line or flow path 72 then runs through one or more condensers 84 (e.g., in the form of plate heat exchangers or shell-and-tube heat exchangers, though other variations are possible), before delivering the water to the booster 70 for final heating. A condenser 88 may be located in the wash tank and a condenser 90 may be located in the blower dryer unit 18. A second waste heat recovery unit 92 may also be provided. Of course, machines that do not include waste heat recovery are also possible.
(14) Referring now to
(15) Referring to
(16) In another assembly shown in
(17) In another assembly shown in
(18) In another assembly shown in
(19) Referring again to
(20) The subject spray tube assemblies provide advantages, including (i) opportunity to seal off individual tubes on a tube assembly once the movable cover is closed, (ii) opportunity to have full access to the open end of each individual tube once the cover is opened, (iii) use of a sliding latch mechanism to secure the movable cover, (iv) use of a spring loaded latching mechanism to secure the movable cover and/or (v) use of a flexing latch mechanism to secure the movable cover.
(21) It is to be clearly understood that the above description is intended by way of illustration and example only and is not intended to be taken by way of limitation, and that changes and modifications are possible. For example, although the illustrated embodiments contemplate a pivotable connection between the lower edges of the movable part and the fixed part, the pivotable connection could be along the top or along either side. Likewise, the location of the latching assembly could vary. Accordingly, other embodiments are contemplated and modifications and changes could be made without departing from the scope of this application.