Cantilevered faucet spout
11186973 ยท 2021-11-30
Assignee
Inventors
Cpc classification
E03C1/0404
FIXED CONSTRUCTIONS
E03C1/04
FIXED CONSTRUCTIONS
International classification
Abstract
A faucet assembly including a spout with two fluid channels spaced apart from one another by a void. In an illustrative embodiment, the fluid channels converge near at least one outlet of the faucet assembly to create a desired flow pattern (e.g., waterfall flow) when the water source is operational and fluidly coupled to the faucet assembly. In an illustrative embodiment, the faucet spout is formed through additive manufacturing.
Claims
1. A faucet spout comprising: a fluid inlet; a base operably coupled to the fluid inlet; a first arm supported by the base and defining a first fluid channel fluidly coupled to the fluid inlet; a second arm supported by the base and defining a second fluid channel fluidly coupled to the fluid inlet, wherein the first arm and the second arm are spaced apart to define a first interior void therebetween and a second interior void therebetween; a bridge extending between the first arm and the second arm so that the bridge separates the first interior void proximally of the bridge and the second interior void distally of the bridge, the bridge defining a bridge channel fluidly coupled to the first fluid channel and the second fluid channel; and an outlet in fluid communication with the first fluid channel and the second fluid channel.
2. The faucet spout of claim 1, further comprising a mounting shank defining the fluid inlet and configured to be fluidly coupled to a water source.
3. The faucet spout of claim 2, wherein the mounting shank extends parallel to the first arm and the second arm.
4. The faucet spout of claim 1, further comprising a flange positioned outwardly from and adjacent to the outlet to provide a sheet-like effect to discharged fluid.
5. The faucet spout of claim 4, wherein the outlet includes a plurality of openings positioned facing the second interior void opposite the bridge.
6. The faucet spout of claim 5, wherein the flange cooperates with the plurality of openings to produce a waterfall flow to fluid discharged from the outlet.
7. The faucet spout of claim 4, wherein the outlet includes a first opening positioned laterally of the second interior void and a second opening positioned laterally of the second interior void in spaced relation to the first opening.
8. The faucet spout of claim 7, wherein the flange and the first opening are configured to produce a first waterfall flow, and the flange and the second opening is configured to produce a second waterfall flow.
9. The faucet spout of claim 1, wherein the base, the first arm and the second arm are formed via an additive manufacturing process.
10. A faucet spout comprising: a mounting shank including a fluid inlet configured to be fluidly coupled to a water source; and a spout body coupled to the mounting shank, the spout body including: at least one outlet; at least one fluid channel fluidly coupled to the fluid inlet of the mounting shank and the at least one outlet; and a flange positioned adjacent the outlet to provide a sheet-like effect to discharged fluid; wherein the mounting shank extends along an axis parallel to the at least one fluid channel of the spout body; wherein the spout is substantially perpendicular to a mounting structure when secured to the mounting structure by the mounting shank; wherein the at least one fluid channel includes a first fluid channel fluidly coupled to the inlet of the mounting shank and the at least one outlet and a second fluid channel fluidly coupled to the inlet of the mounting shank and the at least one outlet; wherein the first fluid channel and the second fluid channel are spaced apart to define an interior void along at least a portion of the spout.
11. The faucet spout of claim 10, wherein the outlet includes a plurality of openings positioned along an inside of the interior void of the spout opposite the position of the mounting shank.
12. The faucet spout of claim 11, wherein the flange cooperates with the plurality of openings to produce a waterfall flow to fluid discharged from the outlet.
13. The faucet spout of claim 10, wherein the spout body is formed via an additive manufacturing process.
14. A faucet spout comprising: a fluid inlet; a base operably coupled to the fluid inlet; a first arm supported by the base and defining a first fluid channel fluidly coupled to the fluid inlet; an outlet portion coupled to the first arm and including a discharge opening in fluid communication with the first fluid channel, and a flange cooperating with the discharge opening to produce a waterfall flow to fluid discharged from the discharge opening, wherein the flange laterally extends downstream of the discharge opening; and wherein the outlet portion includes a vertically extending distal void, and a discharge channel surrounding the distal void, wherein the discharge opening is in fluid communication with the discharge channel and the distal void.
15. The faucet spout of claim 14, further comprising a second arm defining a second fluid channel fluidly coupled to the inlet of the base, wherein the first arm and the second arm are spaced apart to define a proximal void.
16. The faucet spout of claim 15, further comprising a bridge defining a bridge channel, the bridge channel fluidly coupled to the first fluid channel and the second fluid channel.
17. The faucet spout of claim 16, wherein the proximal void is positioned proximally of the bridge, and the distal void is positioned distally of the bridge.
18. A faucet spout comprising: a fluid inlet; a base operably coupled to the fluid inlet; a first arm supported by the base and defining a first fluid channel fluidly coupled to the fluid inlet; an outlet portion coupled to the first arm and including a discharge opening in fluid communication with the first fluid channel, and a flange cooperating with the discharge opening to produce a waterfall flow to fluid discharged from the discharge opening, wherein the flange laterally extends downstream of the discharge opening; a second arm spaced apart from the first arm; and a mounting shank defining the fluid inlet and configured to be fluidly coupled to a water source, wherein the mounting shank extends parallel to the first arm and the second arm.
19. The faucet spout of claim 14, wherein the base, the first arm, and the outlet portion are formed via an additive manufacturing process.
20. The faucet spout of claim 10, wherein the interior void is defined by a vertically extending distal void.
21. A faucet spout comprising: a fluid inlet; a base operably coupled to the fluid inlet; a first arm supported by the base and defining a first fluid channel fluidly coupled to the fluid inlet; an outlet portion coupled to the first arm and including a discharge opening in fluid communication with the first fluid channel; wherein the outlet portion includes a vertically extending distal void and a discharge channel in fluid communication with the first fluid channel and the discharge opening; and wherein the outlet portion includes a flange positioned inwardly from the discharge opening in a direction toward the center of the vertically extending distal void.
22. The faucet spout of claim 21, further comprising a second arm defining a second fluid channel fluidly coupled to the inlet of the base, wherein the first arm and the second arm are spaced apart to define a proximal void.
23. The faucet spout of claim 22, further comprising a bridge defining a bridge channel, the bridge channel fluidly coupled to the first fluid channel and the second fluid channel.
24. The faucet spout of claim 23, wherein the proximal void is positioned proximally of the bridge, and the distal void is positioned distally of the bridge.
25. The faucet spout of claim 21, further comprising a mounting shank defining the fluid inlet and configured to be fluidly coupled to a water source, wherein the mounting shank extends parallel to the first arm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The detailed description of the drawings particularly refers to the accompanying figures in which:
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DETAILED DESCRIPTION OF THE DRAWINGS
(10) The embodiments of the disclosure described herein are not intended to be exhaustive or to limit the disclosure to the precise forms disclosed. Rather, the embodiments described herein enable one skilled in the art to practice the disclosure.
(11) Referring initially to
(12) Illustratively, the faucet spout 14 is fluidly coupled to hot and cold water control valves 26 and 28, shown schematically in
(13) With reference to
(14) Still referring to
(15) After converging at bridge 58, fluid channels 53 and 55 may define an outlet portion 50 including a dispensing void or dispensing opening 60, and converging again via a dispensing channel 61 at distal end 22 of faucet spout 14. The dispensing channel 61 is defined by an inner wall 62 and a peripheral outer wall 64. The bridge 58 illustratively includes opposing lateral walls 66 and 68 defining a connecting opening 70 providing fluid communication between the bridge channel 59 and the dispensing channel 61.
(16) Referring further to
(17) With reference to
(18) Referring further to
(19) Referring to
(20) With reference to
(21) Illustratively, faucet assemblies 10 and 110 are formed as one continuous piece using additive manufacturing processes, such as three dimensional (3D) printing. In other illustrative embodiments, various components of the faucet assemblies 10 and 110 may be formed as separate parts via known manufacturing processes and secured together using various known fastening means (such as adhesives, threaded couplings, etc.). For example, three-dimensional printing illustratively uses digital three dimensional models (such as those created from scans or computer-assisted design software) to produce a three dimensional object through the creation of layers by a three dimensional printer. Several different three dimensional printing technologies are known, including selective laser sintering, fused deposition modeling, direct metal laser sintering, electron beam additive manufacturing technology, and stereolithography.
(22) Many different materials can be used to create three dimensionally printed objects, including acrylonitrile butadiene styrene plastic, polylactic acid, polyamide, glass filled polyamide, epoxy resins, silver, titanium, steel, wax, photopolymers, polycarbonate, stainless steels, INCONEL, brass, bronze, and other materials that may be powder based. Where direct metal laser sintering is used with application-suitable corrosion resistant materials, non-sintered metallic powder can be removed with a stream of pressurized fluid, and internal channels treated with acid etching or abrasive slurries. Multimedia three dimensional printing is also known, so that in some embodiments, mixed metallic-plastic items may be fabricated.
(23) Although the invention has been described in detail with reference to certain preferred embodiments, variations and modifications exist within the spirit and scope of the invention as described and defined in the following claims.