CONDENSING MECHANISM OF DISTILLED WATER DISPENSER
20220126222 ยท 2022-04-28
Inventors
Cpc classification
C02F2307/10
CHEMISTRY; METALLURGY
International classification
Abstract
A driving mechanism includes a condensing coil and a fan set above a body of a distilled water dispenser. The condensing coil has multiple layers of spiral coil formed by winding a stainless steel tube in a spiral on each of different horizontal planes. The stainless steel tube has one end thereof terminating in a steam inlet port and connected to an inner tank of the body, and an opposite end thereof terminating in a distilled water outlet port. The fan is used to drive air to the condensing coil so that the steam in the stainless steel tube is cooled and condensed into distilled water. This can achieve the purpose of improving the condensation efficiency, shortening the time required to generate distilled water, reducing the temperature of the distilled water outlet, and avoiding the use of radiating fins.
Claims
1. A condensing mechanism set above a body of a distilled water dispenser to condense the steam generated by the heating of an inner tank of said body into distilled water, the condensing mechanism comprising: a condensing coil comprising a first layer of spiral coil and a second layer of spiral coil, said first layer of spiral coil being formed of a stainless steel tube continuously wound in a spiral on a first horizontal plane, said second layer of spiral coil being formed of said stainless steel tube by extending said stainless steel tube to a second horizontal plane after formation of said first layer of spiral coil on said first horizontal plane and then continuously winding said stainless steel tube in a spiral on said second horizontal plane, said second layer of spiral coil being located below said first layer of spiral coil, said stainless steel tube having one end thereof terminating in a steam inlet port for connecting to said inner tank of said body and an opposite end thereof terminating in a distilled water outlet port; and a fan arranged on said condensing coil, used to drive air to said condensing coil so that the steam in said stainless steel tube is cooled and condensed into distilled water.
2. The condensing mechanism as claimed in claim 1, wherein said steam inlet port is located at the center of said first layer of spiral coil; said first layer of spiral coil is continuously spirally wound from the center to the surrounding.
3. The condensing mechanism as claimed in claim 2, wherein said second layer of spiral coil is continuously spirally wound from the surrounding to the center.
4. The condensing mechanism as claimed in claim 3, wherein said steam inlet port is located in said first layer of spiral coil; said distilled water outlet port is located in said second layer of spiral coil.
5. The condensing mechanism as claimed in claim 4, wherein said condensing coil further comprises a third layer of spiral coil, said third layer of spiral coil being formed of said stainless steel tube by extending said stainless steel tube from said second horizontal plane to a third horizontal plane after formation of said second layer of spiral coil on said second horizontal plane and then continuously winding said stainless steel tube in a spiral on said third horizontal plane, said third layer of spiral coil being located below said second layer of spiral coil, said distilled water outlet port being located in said third layer of spiral coil to replace the distilled water outlet port of said second layer of spiral coil.
6. The condensing mechanism as claimed in claim 5, wherein said third layer of spiral coil is continuously spirally wound from the center to the surrounding.
7. The condensing mechanism as claimed in claim 1, wherein said fan is an axial flow heat dissipation fan.
8. The condensing mechanism as claimed in claim 1, further comprising a bottom plate and a heat insulation layer, said bottom plate being a stainless steel plate used to cover an upper opening of said inner tank, said heat insulation layer being arranged on said bottom plate; said condensing coil is arranged on said heat insulation layer; said stainless steel tube has one end thereof passing through said heat insulation layer and said bottom plate, so that said steam inlet port is located below said bottom plate.
9. The condensing mechanism as claimed in claim 8, further comprising an upper cover housing detachably assembled on said body; said condensing coil and said fan are installed in said upper cover housing; said bottom plate is located below said upper cover housing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011]
[0012]
[0013]
[0014]
[0015]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0016] Referring to
[0017] Refer to
[0018] The steam inlet port 15 is preferably located at the center of the first layer of spiral coil 11. The first layer of spiral coil 11 is preferably continuously spirally wound from the center to the surrounding. The distilled water outlet port 16 preferably extends to one side of the condensing coil 10. The fan 20 is preferably an axial flow heat dissipation fan, which is arranged above the condensing coil 10, and is used to drive the air outside the upper cover housing 53 to flow toward the condensing coil 10 (as shown in
[0019] Based on the design that the first layer of spiral coil 11 of the condensing coil 10 is formed by continuously winding the stainless steel tube 14 in a spiral shape on the first horizontal plane H1, the condensing mechanism of the present invention can extend the vapor condensation passage of the condensing coil 10 in the limited space inside the upper cover housing 53. Therefore, the stainless steel tube 14 of the first layer of spiral coil 11 has a longer time to exchange heat with the cold air driven by the fan 20, so that the steam in the pipeline is condensed into distilled water with a lower temperature.
[0020] Refer to
[0021] Refer to
[0022] Through the above-mentioned structural design extending to the second layer of spiral coil 12 and even the third layer of spiral coil 13, the present invention can fit a stainless steel tube 14 with a length of up to 3 meters in the upper cover housing 53 of the existing distilled water dispenser 50. Therefore, there are enough heat dissipation channels and circulation time to condense the steam into distilled water at a lower temperature. Based on this condensation effect, referring to
[0023] Referring to
[0024] Although a particular embodiment of the invention has been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not to be limited except as by the appended claims.