CN109900030B - Ice maker capable of recycling ice water - Google Patents
Ice maker capable of recycling ice water Download PDFInfo
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- CN109900030B CN109900030B CN201910239913.1A CN201910239913A CN109900030B CN 109900030 B CN109900030 B CN 109900030B CN 201910239913 A CN201910239913 A CN 201910239913A CN 109900030 B CN109900030 B CN 109900030B
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Abstract
The invention discloses an ice maker capable of recycling ice water, which comprises: the ice making box comprises an ice making box, a water supplementing pipe for supplying water to the ice making box, a refrigerating mechanism for freezing the water in the ice making box into ice, a turnover driving mechanism for driving the ice making box to turn, an ice carrying net which is positioned right below the ice making box and is used for carrying ice cubes poured out of the ice making box, a liquid storage bin which is positioned right below the ice carrying net and is used for receiving melted ice water on the ice carrying net, a drain pipe which is externally connected to the bottom of the liquid storage bin and is used for draining the ice water in the liquid storage bin, and a tee joint positioned below the liquid storage bin; the tee joint comprises: a vertical main pipe and a horizontal side pipe with one end communicated with the main pipe; the other end of the side pipe is connected with a drain pipe, the liquid storage bin is communicated with the side pipe through the drain pipe, and a drain valve is arranged on the drain pipe; the top end of the main pipe is connected with the water supplementing pipe, and the bottom end of the main pipe is communicated with one end of a water supply pipe; the other end of the water supply pipe is provided with an outer pipe joint externally connected with an external water source, and the water supply pipe is provided with a booster pump. The ice maker can recycle ice water.
Description
Technical Field
The invention relates to an ice maker capable of recycling ice water.
Background
Ice making machines are commonly used ice making equipment, including: the ice making box, the moisturizing pipe that supplies water to the ice making box, the refrigeration mechanism that freezes the water in the ice making box into ice, the upset actuating mechanism that drives the upset of ice making box, be located the ice-carrying net of ice-cube that the ice making box poured, be located the ice-carrying net under, and be used for receiving the stock solution storehouse that melts the ice water on the ice-carrying net, and external in stock solution storehouse bottom, and be arranged in discharging the drain pipe of ice water in the stock solution storehouse.
The ice water of the existing ice machine is always directly discharged, so that waste is caused.
Disclosure of Invention
The invention aims to provide an ice maker, which can recycle ice water.
In order to achieve the above object, the present invention provides an ice maker capable of recycling ice water, comprising: the ice making box, a water supplementing pipe for supplying water to the ice making box, a refrigerating mechanism for freezing the water in the ice making box into ice, a turnover driving mechanism for driving the ice making box to turn over, an ice carrying net which is positioned right below the ice making box and is used for carrying ice cubes poured out of the ice making box, a liquid storage bin which is positioned right below the ice carrying net and is used for receiving melted ice water on the ice carrying net, and a drain pipe which is externally connected to the bottom of the liquid storage bin and is used for discharging the ice water in the liquid storage bin;
the ice maker further includes: the tee joint is positioned below the liquid storage bin; the tee comprises: a vertical main pipe and a horizontal side pipe with one end communicated with the main pipe; the other end of the side pipe is connected with a drain pipe, the liquid storage bin is communicated with the side pipe through the drain pipe, and a drain valve is arranged on the drain pipe; the top end of the main pipe is connected with the water supplementing pipe, and the bottom end of the main pipe is communicated with one end of a water supply pipe; the other end of the water supply pipe is provided with an outer pipe joint externally connected with an external water source, and the water supply pipe is provided with a booster pump;
the bottom of the main pipe is provided with: a first joint coaxial with the main pipe and used for connecting a water supply pipe; the top end of the main pipe is provided with: the second joint is coaxial with the main pipe and is used for connecting the water supplementing pipe; the other end of the side pipe is provided with: a third joint coaxial with the side pipe and used for connecting a drain pipe;
the top end of the first joint also extends to form a vertically-arranged truncated cone-shaped first inner tube, the first inner tube extends into the main pipe, and the first inner tube and the main pipe are coaxial; the bottom end of the first inner tube is a large-diameter end, and the top end of the first inner tube is a small-diameter end;
a second inner pipe is vertically arranged in the main pipe, the second inner pipe and the main pipe are coaxial, and the second inner pipe is positioned between the first inner pipe and the second joint; the outer edge of the top end of the second inner tube is integrally connected with the inner wall of the main tube; the outer diameter of the second inner tube is larger than that of the large-diameter end of the first inner tube; the inner diameter of the second inner pipe is larger than that of the small-diameter end of the first inner pipe, and the inner diameter of the second inner pipe is smaller than that of the large-diameter end of the first inner pipe; the bottom of second inner tube is equipped with: a recess into which the small diameter end of the first inner tube extends; the small-diameter end of the first inner tube extends into the recess, and a gap exists between the small-diameter end of the first inner tube and the second inner tube;
the main pipe is provided with: a through hole for penetrating the main pipe and the side pipe; the axis of the through hole is leveled with the end face of the bottom end of the second inner tube.
Preferably, the side pipe is also communicated with the top end of a vertically arranged overflow pipe, and the overflow pipe is provided with a flow regulating valve.
Preferably, the outer wall of the main pipe also extends out of a mounting plate, and a mounting hole is formed in the mounting plate.
The invention has the advantages and beneficial effects that: an ice maker is provided which can reuse ice water.
The external water source is connected with the outer pipe joint of the water supply pipe through an external pipeline, and the water supply pipe is supplied with the warm water. When water is required to be supplied to the ice making box, the water draining valve on the booster pump and the water draining pipe is opened, ice water in the liquid storage bin flows into the side pipe of the tee joint through the water draining pipe, the booster pump pumps normal temperature water in the water supplying pipe into the main pipe of the tee joint, and based on the special tee joint structure, the water with the ice water can be mixed in the tee joint, and the mixed water is output to the water supplementing pipe and is sent into the ice making box. The water temperature entering the ice making box can be reduced by mixing the ice water and the normal-temperature water, so that the ice making efficiency is improved.
The side pipe is also externally connected with an overflow pipe provided with a flow regulating valve, and the overflow pipe can discharge part of ice water and can control the amount of the ice water flowing into the tee joint.
Drawings
FIG. 1 is a schematic illustration of the present invention;
fig. 2 is a schematic view of a tee.
Detailed Description
The following describes the embodiments of the present invention further with reference to the drawings and examples. The following examples are only for more clearly illustrating the technical aspects of the present invention, and are not intended to limit the scope of the present invention.
The technical scheme of the invention is as follows:
as shown in fig. 1 and 2, an ice maker for recycling ice water, comprising: the ice making box 1, a water supplementing pipe 2 for supplying water to the ice making box 1, a refrigerating mechanism (not shown in the figure) for freezing the water in the ice making box 1 into ice, a turnover driving mechanism (not shown in the figure) for driving the ice making box 1 to turn, an ice carrying net 3 which is positioned right below the ice making box 1 and is used for carrying ice cubes poured out of the ice making box 1, a liquid storage bin 4 which is positioned right below the ice carrying net 3 and is used for receiving melted ice water on the ice carrying net 3, and a drain pipe 5 which is externally connected to the bottom of the liquid storage bin 4 and is used for discharging the ice water in the liquid storage bin 4;
the ice maker further includes: a tee 6 positioned below the liquid storage bin 4; the tee 6 includes: a vertically arranged main pipe 61, and a horizontally arranged side pipe 62 having one end communicating with the main pipe 61; the other end of the side pipe 62 is connected with a drain pipe 5, the liquid storage bin 4 is communicated with the side pipe 62 through the drain pipe 5, and a drain valve 7 is arranged on the drain pipe 5; the top end of the main pipe 61 is connected with the water supplementing pipe 2, and the bottom end of the main pipe 61 is communicated with one end of a water supply pipe 8; the other end of the water supply pipe 8 is provided with an outer pipe joint (not shown in the figure) externally connected with an external water source, and the water supply pipe 8 is provided with a booster pump 9;
the bottom end of the main pipe 61 is provided with: a first joint 63 coaxial with the main pipe 61 and for connecting the water supply pipe 8; the top end of the main pipe 61 is provided with: a second joint 64 coaxial with the main pipe 61 and for connecting the water replenishment pipe 2; the other end of the side pipe 62 is provided with: a third joint 65 coaxial with the side pipe 62 and for connecting the drain pipe 5;
the top end of the first joint 63 also extends to form a vertically-arranged truncated cone-shaped first inner tube 66, the first inner tube 66 extends into the main tube 61, and the first inner tube 66 and the main tube 61 are coaxial; the bottom end of the first inner tube 66 is a large-diameter end, and the top end of the first inner tube 66 is a small-diameter end;
a second inner tube 67 is vertically arranged in the main tube 61, the second inner tube 67 and the main tube 61 are coaxial, and the second inner tube 67 is positioned between the first inner tube 66 and the second joint 64; the top outer edge of the second inner tube 67 is integrally connected with the inner wall of the main tube 61; the outer diameter of the second inner tube 67 is larger than the outer diameter of the large diameter end of the first inner tube 66; the inner diameter of the second inner tube 67 is larger than the inner diameter of the small diameter end of the first inner tube 66, and the inner diameter of the second inner tube 67 is smaller than the inner diameter of the large diameter end of the first inner tube 66; the bottom end of the second inner tube 67 is provided with: a recess into which the small diameter end of the first inner tube 66 extends; the small diameter end of the first inner tube 66 extends into the recess, and a gap exists between the small diameter end of the first inner tube 66 and the second inner tube 67;
the main pipe 61 is provided with, at a joint portion thereof with the side pipe 62: a through hole 68 for penetrating the main pipe 61 and the side pipe 62; the axial center of the through hole 68 is flush with the bottom end face of the second inner tube 67.
Preferably, the side pipe 62 is also connected to the top end of a vertically arranged overflow pipe 69, and the overflow pipe 69 is provided with a flow regulating valve (not shown).
Preferably, the outer wall of the main pipe 61 further extends out of the mounting plate 610, and a mounting hole is formed in the mounting plate 610.
The invention relates to an ice maker, which can recycle ice water.
The external water source is connected with the outer pipe joint of the water supply pipe 8 through an external pipeline, and supplies the water supply pipe 8 with the warm water. When water is required to be supplied to the ice making box 1, the water discharging valve 7 on the booster pump 9 and the water discharging pipe 5 is opened, ice water in the liquid storage bin 4 flows into the side pipe 62 of the tee joint 6 through the water discharging pipe 5, the booster pump 9 pumps normal temperature water in the water supplying pipe 8 into the main pipe 61 of the tee joint 6, based on the special tee joint 6 structure of the ice making box 1, normal temperature water and ice water can be mixed in the tee joint 6, and mixed water is output to the water supplementing pipe 2 and is sent into the ice making box 1. The water temperature entering the ice making box 1 can be reduced by mixing the ice water and the normal-temperature water, so that the ice making efficiency is improved.
The side pipe 62 is also externally connected with an overflow pipe 69 provided with a flow regulating valve, and the overflow pipe 69 can discharge part of the ice water and can control the amount of the ice water flowing into the tee 6.
The foregoing is merely a preferred embodiment of the present invention, and it should be noted that it will be apparent to those skilled in the art that several modifications and variations can be made without departing from the technical principle of the present invention, and these modifications and variations should also be regarded as the scope of the invention.
Claims (3)
1. An ice maker for recycling ice water, comprising: the ice making box, a water supplementing pipe for supplying water to the ice making box, a refrigerating mechanism for freezing the water in the ice making box into ice, a turnover driving mechanism for driving the ice making box to turn over, an ice carrying net which is positioned right below the ice making box and is used for carrying ice cubes poured out of the ice making box, a liquid storage bin which is positioned right below the ice carrying net and is used for receiving melted ice water on the ice carrying net, and a drain pipe which is externally connected to the bottom of the liquid storage bin and is used for discharging the ice water in the liquid storage bin; the method is characterized in that:
the ice maker further includes: the tee joint is positioned below the liquid storage bin; the tee comprises: a vertical main pipe and a horizontal side pipe with one end communicated with the main pipe; the other end of the side pipe is connected with a drain pipe, the liquid storage bin is communicated with the side pipe through the drain pipe, and a drain valve is arranged on the drain pipe; the top end of the main pipe is connected with the water supplementing pipe, and the bottom end of the main pipe is communicated with one end of a water supply pipe; the other end of the water supply pipe is provided with an outer pipe joint externally connected with an external water source, and the water supply pipe is provided with a booster pump;
the bottom of the main pipe is provided with: a first joint coaxial with the main pipe and used for connecting a water supply pipe; the top end of the main pipe is provided with: the second joint is coaxial with the main pipe and is used for connecting the water supplementing pipe; the other end of the side pipe is provided with: a third joint coaxial with the side pipe and used for connecting a drain pipe;
the top end of the first joint also extends to form a vertically-arranged truncated cone-shaped first inner tube, the first inner tube extends into the main pipe, and the first inner tube and the main pipe are coaxial; the bottom end of the first inner tube is a large-diameter end, and the top end of the first inner tube is a small-diameter end;
a second inner pipe is vertically arranged in the main pipe, the second inner pipe and the main pipe are coaxial, and the second inner pipe is positioned between the first inner pipe and the second joint; the outer edge of the top end of the second inner tube is integrally connected with the inner wall of the main tube; the outer diameter of the second inner tube is larger than that of the large-diameter end of the first inner tube; the inner diameter of the second inner pipe is larger than that of the small-diameter end of the first inner pipe, and the inner diameter of the second inner pipe is smaller than that of the large-diameter end of the first inner pipe; the bottom of second inner tube is equipped with: a recess into which the small diameter end of the first inner tube extends; the small-diameter end of the first inner tube extends into the recess, and a gap exists between the small-diameter end of the first inner tube and the second inner tube;
the main pipe is provided with: a through hole for penetrating the main pipe and the side pipe; the axis of the through hole is leveled with the end face of the bottom end of the second inner tube.
2. The ice-making machine for reusable ice water according to claim 1, wherein said side pipe is further connected to a top end of a vertically placed overflow pipe, and a flow regulating valve is provided on the overflow pipe.
3. The ice-making machine for ice water as recited in claim 1, wherein said main pipe has an outer wall further extending out of a mounting plate having mounting holes.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201910239913.1A CN109900030B (en) | 2019-03-28 | 2019-03-28 | Ice maker capable of recycling ice water |
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CN201910239913.1A CN109900030B (en) | 2019-03-28 | 2019-03-28 | Ice maker capable of recycling ice water |
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CN109900030A CN109900030A (en) | 2019-06-18 |
CN109900030B true CN109900030B (en) | 2023-05-16 |
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CN201910239913.1A Active CN109900030B (en) | 2019-03-28 | 2019-03-28 | Ice maker capable of recycling ice water |
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US11243017B2 (en) * | 2019-09-09 | 2022-02-08 | Haier Us Appliance Solutions, Inc. | Drained plumbing system for an ice maker |
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US3791163A (en) * | 1971-10-18 | 1974-02-12 | King Seeley Thermos Co | Ice making machine |
CN201041443Y (en) * | 2007-06-04 | 2008-03-26 | 倪伯杨 | Water circulation utilization device for ice maker |
CN201606317U (en) * | 2010-01-20 | 2010-10-13 | 杨高利 | Low-order heat energy recovery power head |
CN106123420A (en) * | 2016-07-13 | 2016-11-16 | 滁州富达机械电子有限公司 | The aluminum groove ice machine that a kind of full-automatic low energy consumption AC and DC controls |
CN205860591U (en) * | 2016-08-03 | 2017-01-04 | 海信容声(广东)冰箱有限公司 | Ice making machine pf refrigerator water supply installation, ice making machine pf refrigerator and refrigerator |
CN209819949U (en) * | 2019-03-28 | 2019-12-20 | 常熟市圣海电器有限公司 | Ice maker capable of recycling ice water |
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