CN205048827U - Ice making device - Google Patents

Ice making device Download PDF

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Publication number
CN205048827U
CN205048827U CN201520636120.0U CN201520636120U CN205048827U CN 205048827 U CN205048827 U CN 205048827U CN 201520636120 U CN201520636120 U CN 201520636120U CN 205048827 U CN205048827 U CN 205048827U
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CN
China
Prior art keywords
ice
ice making
making box
block
mounting groove
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Expired - Fee Related
Application number
CN201520636120.0U
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Chinese (zh)
Inventor
黄章颂
王庚申
李嘉瑜
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Ningbo Desa Electrical Appliance Manufacturing Co., Ltd.
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Zhejiang University of Technology ZJUT
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Priority to CN201520636120.0U priority Critical patent/CN205048827U/en
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Publication of CN205048827U publication Critical patent/CN205048827U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model provides an ice making device, including the casing, the ice making box of fixed mounting on the casing, the evaporating pipe of fixed mounting on casing and/or ice making box, ice making box have an arc bottom surface, and bottom contact or be close to sets up, still including being used for the ice -cube exhaust with being located the ice making box to deice the structure. The bottom contact of evaporating pipe and ice making box or be close to sets up, when the refrigerant flows through from the evaporating pipe is inside, can make the inside water of ice making box cool down rapidly and freeze to the freezing point is whole to improve refrigeration efficiency, the evaporating pipe has determined the installation of evaporating pipe and maintenance all can have sufficient activity space with the above -mentioned mounted position of ice making box, therefore installs, keeps in repair and be clean all very convenient, the inside high temperature refrigerant that can also circulate of evaporating pipe, the messenger meets hot melt back and ice making box separation with the ice -cube part of ice making box inner wall contact, deices the structure and outwards dials out the ice -cube, and it is easy that the row's of messenger ice becomes, has improved to arrange and iced efficiency.

Description

A kind of ice maker
Technical field
The utility model relates to a kind of ice maker, belongs to ice making equipment technical field.
Background technology
Chinese patent literature CN102331126A discloses a kind of ice-water separation device of ice machine, as shown in Figure 1, comprise casing 01, arrange by the ice making box 03 turning over ice motor 02 and drive upset in casing 01 inner chamber, the condenser 04 of ice making is provided with in ice making box 03, be fixedly installed frozen water separator frame 05 below ice making box 03, frozen water separator frame 05 and horizontal plane become to be greater than 0 inclination angle being less than 90 degree, and drip tray 06 is positioned at immediately below frozen water separator frame 05.After condenser 04 finishing ice-makings, ice making box 03 begins turning until upright position under the effect of turning over ice motor 02, in the process that ice making box 03 overturns, water gravitate flows out downwards, by frozen water separator frame 05, continue to flow downward, through the drip tray 06 of below, finally flow in water storage box 07.While flowing under water, ice cube departs from condenser 04, drops on frozen water separator frame 05, and glides along frozen water separator frame 05 under gravity, finally slip in ice bank 08.Ice machine in this patent document, structure is simple, and can rapidly frozen water be separated, row's ice is easy, but the water cooling of ice making box 03 inside is being prepared in the process of ice cube by condenser 04, inner for ice making box 03 all water is needed to cool together, and finally only having part water cooling to freeze, so a part of cold has just flowed away with water, and Energy Efficiency Ratio is lower; In addition, after condenser 04 finishing ice-makings, turning over ice motor 02 needs to overturn carrying ice cube together with the ice making box 03 of water, comparatively requires great effort, further increases energy resource consumption, reduce energy utilization rate.
Chinese patent literature CN101881535A discloses a kind of block-ice ice maker, as shown in Figure 2, comprise support 010, and the evaporimeter 011 be arranged on support 010, evaporimeter 011 has the ice making housing 012 of a rectangle, the ice tray 013 that the dividing plate in ice making housing 012 with hollow is welded to form, there is in dividing plate refrigerant flow path 014, ice making housing 012 outside is provided with the refrigerant inlet 015 and refrigerant outlet 016 that are communicated with refrigerant flow path 014, the bottom of ice making housing 012 is provided with lower cover 017, lower cover 017 be flexibly connected bottom ice making housing 012 and under shed for sealing ice tray 013, the ice filling plate 019 relative with the under shed of ice tray 013 is provided with bottom support 010, ice filling plate 019 periphery is provided with fence 018.Before ice making, it is made to be buckled in the bottom of ice tray 013 lower cover 017 pull-up, and guarantee that all ice trays 013 are water-tight, then in ice tray 013, quantitative water is added, cold-producing medium enters in refrigerant flow path 014 by refrigerant inlet 015, heat exchange is carried out with the water in ice tray 013, refrigerant temperature rises after evaporation, flowed out by refrigerant outlet 016, after the water temperature of ice tray 013 inside is reduced to and freezes completely, stop to refrigerant flow path 014 inside supply cold-producing medium, lower cover 017 is pulled down to origin-location, the under shed of ice tray 013 is opened wide, by in refrigerant superheat gas input refrigerant flow path 014, heat exchange is carried out with the ice cube in ice tray 013, the ice sheet of ice cube and ice tray 013 contact portion melts, whole ice cube drops on ice filling plate 019 because of gravity, after all ice cubes all come off, open fence 018 all ice cubes are taken out, complete ice making.
The all water be placed in ice tray 013 can all cool by the block-ice ice maker in this patent document becomes ice cube, there is not the problem that a part of cold is taken away by current, improve refrigerating efficiency, and turn over ice motor without the need to using ice tray is overturn, save the energy; But still at least there is following technological deficiency in the technical scheme in this patent document: 1. the under shed that have employed lower cover 017 pair of ice tray 013 opens and closes, after the water in ice tray 013 all cools and becomes ice cube, part ice cube can be sticked together with lower cover 017, this causes the drop-down difficulty of lower cover 017, be not easy to make the under shed of ice tray 013 to open wide, cause row's ice difficulty; 2. before ice making, need lower cover 017 pull-up, the under shed of ice tray 013 is sealed completely, which not only improves the production cost of ice tray 013 and lower cover 017, also cause equipment operating complicated, be difficult to use in automated production, and after use after a while, once the under shed of ice tray 013 can not be sealed up completely after lower cover 017 pull-up, just need to change lower cover 017, this causes lower cover 017 more frequently sliding, and maintenance cost is high; 3. refrigerant flow path 014 is arranged on diaphragm internal, cause whole ice making equipment complex structure further, and refrigerant flow path 014 is once break down, and is difficult to maintenance.
Utility model content
Therefore, the technical problems to be solved in the utility model is to overcome ice machine of the prior art cannot possess that structure is simple, refrigerating efficiency is high and the technological deficiency of the easy three kinds of advantages of row's ice simultaneously, thus provides that a kind of structure is simple, refrigerating efficiency is high and row's ice is easy to ice maker.
For this reason, the utility model provides a kind of ice production apparatus, comprising:
Casing;
Ice making box, fixed installation is on the housing;
Evaporation tube, is fixedly mounted on described casing and/or described ice making box, for being frozen by the liquid freezing being positioned at described ice making box;
The ice making inner chamber of described ice making box has lower arcuate surface, described evaporation tube contacts with the bottom of described ice making box or near arranging, also comprise and deice structure for what discharged by the ice cube being positioned at described ice making box, described in deice structure there is the switch portion outwards transferred to along described lower arcuate surface by described ice cube.
As a kind of improvement project, the part of described evaporation tube contact or close described ice making box has mates the arc surfaced sidewall of fitting with described ice making box outer wall.
As a kind of improvement project, described ice making box is semi-cylindrical shaped, and is provided with some baffle plates in described ice making box, multiple along described ice making box axial distribution and separate ice build-up tank for being divided into by described ice making box.
Also comprise the rhone be communicated with described ice build-up tank.
As a kind of improvement project, also comprise installation ice storage basket on the housing, be provided with drainage hole bottom described ice storage basket, described ice storage basket is for receiving by the described described ice cube deicing structure and transfer to.
As a kind of improvement project, the described structure that deices comprises the rotating shaft be installed in rotation on described casing, and drive the drive motors of described axis of rotation, described switch portion is arranged on the plate in described rotating shaft, described plate is rotated under the driving of described drive motors, thus is outwards transferred to by the ice cube being positioned at described ice making box.
As a kind of improvement project, described plate is provided with multiple in described rotating shaft, is respectively used to the ice cube being positioned at different ice build-up tank outwards to transfer to.
As a kind of improvement project, also comprise the water-supply-pipe be fixedly installed on the housing, described water-supply-pipe is provided with pod apertures, described pod apertures to be positioned at directly over described ice build-up tank and with described ice build-up tank one_to_one corresponding.
As a kind of improvement project, described casing is provided with guiding gutter, two opposing sidewalls of described guiding gutter are respectively equipped with the first mounting groove and the second mounting groove, and the two ends of described evaporation tube are arranged on described first mounting groove and/or described second mounting groove by the first mounting structure; The two ends of described ice making box are fixedly mounted on described first mounting groove by the second mounting structure and described second mounting groove is inner.
As a kind of improvement project, described first mounting structure comprises and is opened in evaporation tube mounting groove on described first mounting groove and/or described second mounting groove bottom surface and opening up, for passing for the input of described evaporation tube and/or output.
As a kind of improvement project, described second mounting structure comprises the first back-up block be detachably fixedly mounted on described first mounting groove bottom surface, detachably be fixedly mounted on the second back-up block on described second mounting groove bottom surface, the bottom surface of described first back-up block is fixedly connected with the opposite end of described ice making box respectively with the bottom surface of described second back-up block.
As a kind of improvement project, described first back-up block and described second back-up block end face are also provided with the rotating shaft mounting groove for installing described rotating shaft.
As a kind of improvement project, also comprise the 3rd back-up block for closing described first mounting groove, described 3rd back-up block has for holding described first back-up block and the inner chamber be fixedly connected with described first back-up block; Described inner chamber has the inwall be positioned at outside described first back-up block.
As a kind of improvement project, described 3rd back-up block is provided with the first installing hole for passing for the water inlet end of described water-supply-pipe; The 4th back-up block be fixedly mounted on described second back-up block end face is provided with the second installing hole of the blind end for holding described water-supply-pipe;
Also comprise installation ice storage basket on the housing, be provided with drainage hole bottom described ice storage basket, described ice storage basket is for receiving by the described described ice cube deicing structure and transfer to;
Described water-supply-pipe is positioned at the top of described ice build-up tank towards described ice storage basket side, for described deice structure promote described ice cube time, prevent described ice cube from overturning to the direction away from described ice storage basket side.
As a kind of improvement project, described second back-up block is provided with screwed hole and/or bolt column towards the outer wall outside described casing, for relative with the installation through hole be located on described drive motors, thus by using bolt and/or nut to fixedly mount described drive motors;
Described 4th back-up block is used for closing described second mounting groove, and described 4th back-up block is provided with screwed hole and/or threaded post towards the outer wall outside described casing, for relative with the installation through hole be located on microswitch and microswitch pressing plate, thus by using bolt and/or nut to fixedly mount described microswitch.
As a kind of improvement project, also comprise the water tank be arranged side by side with described guiding gutter, the bottom surface of described guiding gutter is higher than the bottom surface of described water tank, and described guiding gutter is communicated with described water tank by flow-guiding mouth; Described ice storage basket is arranged on described water tank upper.
A kind of ice maker of the present utility model has the following advantages:
1. ice maker of the present utility model, evaporation tube contacts with the bottom of ice making box or near arranging, when cold-producing medium flows through from evaporation tube inside, the water of ice making box inside can be made to be cooled to rapidly freezing point freeze over, improve refrigerating efficiency; The above-mentioned installation site of evaporation tube and ice making box determines the installation, maintenance of evaporation tube and cleanly all can have sufficient activity space, thus installation, maintenance and easy to clean; Can also be circulated high temperature refrigerant in evaporation tube inside, ice making box sidewall is heated up, be separated with ice making box inwall after melting with the ice cube heat of ice making box contact internal walls, the lower arcuate surface of ice cube along ice making box is outwards transferred to by the switch portion deicing structure, thus the row's of making ice change is easy, the row's of improve ice efficiency.
2. ice maker of the present utility model, the part of evaporation tube contact or close ice making box has the arc surfaced sidewall mating with ice making box outer wall and fit, arc surfaced sidewall can increase the area that evaporation tube presses close to ice making box, increases the efficiency of transmission of cold or heat further.
3. ice maker of the present utility model, is provided with some baffle plates in ice making box, be divided into by ice making box multiple along ice making box axial distribution and separate ice build-up tank, thus make ice maker of the present utility model high efficiencyly can prepare crescent ice.
4. ice maker of the present utility model, ice storage basket is for receiving by the ice cube deicing structure dial-out, and the water remained on ice cube can be discharged downwards by the drainage hole be located at bottom ice storage basket, thus ensures that ice cube is anhydrous; Also comprise the rhone be communicated with ice build-up tank, water unnecessary in ice build-up tank can discharge by rhone, the ice cube adhesion phenomenon avoiding the water in adjacent ice build-up tank to interconnect causing.
5. ice maker of the present utility model, the water-supply-pipe be arranged on casing is supplied water separately to each ice build-up tank by pod apertures, better can not only avoid the intercommunicated ice cube adhesion phenomenon caused of the aqueous phase in adjacent two or more ice build-up tank, improve ice making quality, by controlling the water yield be conveyed in each ice build-up tank, ice cube size can also be controlled.
6. ice maker of the present utility model; evaporation tube and ice making box are by being located at the first mounting groove in guiding gutter two opposing sidewalls and the second mounting groove is arranged on guiding gutter inside; the protection that evaporation tube and ice making box are subject to guiding gutter can not collide damage; also can flow directly in guiding gutter from the water of evaporation tube, ice making box or rhone outflow and be collected, be convenient to again utilize.
7. ice maker of the present utility model, the evaporation tube mounting groove be opened on the first mounting groove and/or the second mounting groove bottom surface is opening up, be not only the input that is arranged on the inner evaporation tube of guiding gutter and output provides installation site, be also convenient to evaporation tube input and/or output and install along the lay-in in direction from top to bottom.
8. ice maker of the present utility model, first back-up block is fixedly mounted on the first mounting groove bottom surface, second back-up block is fixedly mounted on the second mounting groove bottom surface, the bottom surface of the first back-up block is fixedly connected with the opposite end of ice making box respectively with the bottom surface of the second back-up block, the end face of the first back-up block and the second back-up block is also provided with the rotating shaft mounting groove for installing rotating shaft; First back-up block and the second back-up block is not only ice making box and rotating shaft provides installation site simultaneously, is also detachably fixedly connected with the first mounting groove, the second mounting groove respectively, easy disassembly and the replacing after damaging.
9. ice maker of the present utility model, the installation that the 3rd back-up block is not only water-supply-pipe provides the first installing hole, is also closed by the first mounting groove, makes guiding gutter relative closure, avoids outside foreign material to enter into ice making box inside and hinders ice making.
10. ice maker of the present utility model, the 4th back-up block is fixedly mounted on the second back-up block, provides support for the blind end for water-supply-pipe; Second back-up block outer wall being provided with the mounting structure for installing drive motors simultaneously, the 4th back-up block outer wall being provided with the mounting structure for installing microswitch simultaneously, improve facility compact.
Accompanying drawing explanation
Fig. 1 is the perspective view of a kind of ice machine in prior art.
Fig. 2 is the theory structure schematic diagram of another kind of ice machine in prior art.
Fig. 3 is the overall structure schematic diagram of the utility model ice maker.
Fig. 4 is another three-dimensional view of Fig. 3.
Fig. 5 is the overall structure schematic diagram of casing in Fig. 3.
Fig. 6 is the structural representation after Fig. 3 removes casing.
Fig. 7 is the detonation configuration schematic diagram of Fig. 6.
Fig. 8 is the structural representation after ice making box and evaporation tube combine.
Fig. 9 is another three-dimensional view of Fig. 8.
Figure 10 is the viewgraph of cross-section of Fig. 8.
In figure: 01-casing, 02-turns over ice motor, 03-ice making box, 04-condenser, 05-frozen water separator frame, 06-drip tray, 07-water storage box, 08-ice bank;
010-support, 011-evaporimeter, 012-ice making housing, 013-ice tray, 014-refrigerant flow path, 015-refrigerant inlet, 016-refrigerant outlet, 017-lower cover, 018-fence, 019-ice filling plate;
1-casing, 11-guiding gutter, 111-first mounting groove, 112-second mounting groove, 12-water tank, 13-evaporation tube installing hole, 2-ice making box, 21-baffle plate, 22-ice build-up tank, 23-rhone, 3-evaporation tube, 31-arc surfaced sidewall, 32-lagging casing, 33-insulation material, 4-rotating shaft, 41-plate, 42-drive motors, 43-U shape open slot, 44-rotating shaft mounting groove, 5-water-supply-pipe, 51-first installing hole, 61-first back-up block, 62-second back-up block, 63-the 3rd back-up block, 64-the 4th back-up block, 65-inner chamber, 7-microswitch, 71-microswitch pressing plate.
Detailed description of the invention
Below in conjunction with accompanying drawing, a kind of ice maker that the utility model provides is described in further detail.
Embodiment
The present embodiment provides a kind of ice maker, as shown in Figure 3, comprise casing 1, casing 1 is installed with ice making box 2, the ice making inner chamber of ice making box 2 has lower arcuate surface, the outer side bottom surface of ice making box 2 is installed with the evaporation tube 3 for all water being positioned at ice making box 2 being all cooled to ice, also comprises and deices structure for what discharged by the ice cube being positioned at ice making box 2, deices structure and has the switch portion outwards transferred to along above-mentioned lower arcuate surface by ice cube; Wherein, evaporation tube 3 contacts with the bottom of ice making box 2 and arranges.
Evaporation tube 3 contacts with the bottom of ice making box 2 or near arranging, when cold-producing medium flows through from evaporation tube 3 inside, the water of ice making box 2 inside can be made to be cooled to rapidly freezing point freeze over, thus improves refrigerating efficiency; Evaporation tube 3 and the above-mentioned installation site of ice making box 2 determine the installation, maintenance of evaporation tube 3 and cleanly all can have sufficient activity space, thus installation, maintenance and easy to clean; Can also be circulated high temperature refrigerant in evaporation tube 3 inside, ice making box 2 sidewall is heated up, be separated with the inwall of ice making box 2 after melting with the ice cube heat of ice making box 2 contact internal walls, the lower arcuate surface of ice cube along ice making box 2 is outwards transferred to by the switch portion deicing structure, thus the row's of making ice change is easy, the row's of improve ice efficiency.
As Figure 8-9, ice making box 2 inside is provided with some baffle plates 21, for ice making box 2 being divided into multiple some separate ice build-up tank 22 along ice making box 2 axial distribution.After ice making box 2 being divided into multiple separate ice build-up tank 22, make the ice maker of the present embodiment high efficiency can prepare crescent ice.Ice making box 2, under the enlightenment of the present embodiment, can also be divided into multiple ice build-up tank 22 with other shapes, or directly ice making box 2 be prepared into the form with multiple difformity ice build-up tank 22 by those skilled in the art.
Evaporation tube 3 is fixedly mounted on the outer side bottom surface of ice making box 2, and evaporation tube 3 contacts or have near the part of ice making box 2 bottom surface and mate the arc surfaced sidewall 31 of fitting with ice making box 2 outer wall.Mate the arc surfaced sidewall 31 of fitting with ice making box 2 outer wall and can increase evaporation tube 3 with ice making box 2 near the area of fitting, thus more rapidly cold can be passed to ice making box 2, increase cold or heat transfer efficiency further.
Improve as to the one of the present embodiment, as shown in Figure 10, the lagging casing 32 being used for being incubated evaporation tube 3 can also be set below ice making box 2, fill insulant material 33 in lagging casing 32, thus reduce scattering and disappearing of cold or heat, promote the utilization rate of cold or heat further.Lagging casing 32 can adopt foaming box, and insulation material 33 can adopt foaming layer.
As shown in Figure 3 and Figure 7, casing 1 is also provided with ice storage basket (not shown), drainage hole is provided with bottom ice storage basket, ice storage basket is for receiving by the ice cube deicing structure dial-out, and the water remained on ice cube can be discharged by the drainage hole be located at bottom ice storage basket, thus ensure that ice cube is anhydrous downwards; Also comprise the rhone 23 be communicated with ice build-up tank 22, water unnecessary in ice build-up tank 22 can discharge by rhone 23, avoids the water in adjacent ice build-up tank 22 to interconnect the ice cube adhesion phenomenon caused.
As shown in Figure 6 and Figure 7, deice structure and comprise the rotating shaft 4 be installed in rotation on casing 1, and the drive motors 42 that drive shaft 4 is rotated, switch portion is the plate 41 be arranged in rotating shaft 4, plate 41 is rotated under the driving of drive motors 42, thus is outwards transferred to by the ice cube being positioned at ice making box 2.Plate 41 is provided with multiple in rotating shaft 4, is respectively used to the ice cube being positioned at different ice build-up tank 22 outwards to transfer to.
Casing 1 is also provided with water-supply-pipe 5, and water-supply-pipe 5 is provided with pod apertures, pod apertures to be positioned at directly over ice build-up tank 22 and with ice build-up tank 22 one_to_one corresponding.The water-supply-pipe 5 be arranged on casing 1 is supplied water separately to each ice build-up tank 22 by pod apertures, the water in adjacent or multiple ice build-up tank 22 not only can be avoided to contact with each other the ice cube adhesion phenomenon caused, improve ice making quality, by controlling the water yield be conveyed in each ice build-up tank 22, ice cube size can also be controlled.
Improve as one, U-shaped open slot 43 can also be set in plate 41, the opening direction of U-shaped open slot 43 is away from rotating shaft 4, not freezing water can be avoided to transfer to, drive motors 42 load can be reduced, in addition, the ad-hoc location rotated when rotating shaft 4 makes, U-shaped open slot 43 is relative with the pod apertures of water-supply-pipe 5, and the water flowed out from pod apertures directly enters ice build-up tank 22 inside through U-shaped open slot 43, and that water impact plate 41 can be avoided to cause dabbles.
As in Figure 3-5, casing 1 is provided with guiding gutter 11, two opposing sidewalls of guiding gutter 11 is respectively equipped with the first mounting groove 111 and the second mounting groove 112, and the two ends of evaporation tube 3 are arranged on the first mounting groove 111 by the first mounting structure; The two ends of ice making box 2 are fixedly mounted on the first mounting groove 111 by the second mounting structure and the second mounting groove 112 is inner.
To be arranged on guiding gutter 11 inner by being located at the first mounting groove 111 in guiding gutter 11 two opposing sidewalls and the second mounting groove 112 for evaporation tube 3 and ice making box 2; the protection that evaporation tube 3 and ice making box 2 are subject to guiding gutter 11 can not collide damage; the water flowed down from evaporation tube 3 or ice making box 2 also can flow directly in guiding gutter 11 to be collected, and is convenient to again utilize.
As shown in Figure 7, the first mounting structure comprises and is opened in evaporation tube mounting groove 13 on the first mounting groove 111 bottom surface and opening up, for passing for the input of evaporation tube 3 and output.The evaporation tube mounting groove 13 be opened on the first mounting groove 111 is opening up, be not only the input that is arranged on the inner evaporation tube 3 of guiding gutter 11 and output provides installation site, be also convenient to evaporation tube 3 input and output and install along the lay-in in direction from top to bottom.
Second mounting structure comprises the first back-up block 61 be detachably fixedly mounted on the first mounting groove 111 bottom surface, the bottom surface being detachably fixedly mounted on the second back-up block 62, first back-up block 61 on the second mounting groove 112 bottom surface is fixedly connected with the opposite end of ice making box 2 respectively with the bottom surface of the second back-up block 62.First back-up block 61 two ends are provided with through hole, corresponding thereto, first mounting groove 111 bottom surface is provided with screwed hole, use bolt to be fixedly mounted on the first mounting groove 111 bottom surface by dismountable for the first back-up block 61, dismountable being in a like fashion fixedly mounted on the second mounting groove 112 bottom surface adopted by the second back-up block 62.Be provided with screwed hole in the middle part of the bottom surface of the first back-up block 61, ice making box 2 one end is corresponding thereto provided with through hole, uses bolt to be connected with screwed hole through after through hole, thus is fixedly mounted on one end of ice making box 2 on the first back-up block 61 bottom surface; Adopt in the same way, the other end of ice making box 2 and the installation of the second back-up block 62 can be realized.
First back-up block 61 and the second back-up block 62 end face are also provided with the rotating shaft mounting groove 44 for installing rotating shaft 4.First back-up block 61 and the second back-up block 62 is not only ice making box 2 and rotating shaft 4 provides installation site simultaneously, is also detachably fixedly connected with the first mounting groove 111, second mounting groove 112 respectively, easy disassembly and the replacing after damaging.
The 3rd back-up block the 63, three back-up block 63 also comprised for closing the first mounting groove 111 has for holding the first back-up block 61 and the inner chamber 65 be fixedly connected with the first back-up block 61; Inner chamber 65 has the inwall be positioned at outside the first back-up block 61.3rd back-up block 63 is also provided with the first installing hole 51 for passing for the water inlet end of water-supply-pipe 5.
Also comprise the second installing hole that the 4th back-up block the 64, four back-up block 64 be fixedly mounted on the second back-up block 62 end face is provided with the blind end for holding water-supply-pipe 5.
Second back-up block 62 is provided with tapping screw hole towards the outer wall outside casing 1, for relative with the installation through hole be located on drive motors 42, by using tapping screw fixed installation drive motors 42; 4th back-up block 64 is for closing the second mounting groove 112, and the 4th back-up block 64 is provided with tapping screw hole towards the outer wall outside casing 1, for relative with the installation through hole be located on microswitch 7 and microswitch pressing plate 71, by using tapping screw fixed installation microswitch 7.Second back-up block 62 outer wall being provided with the mounting structure for installing drive motors simultaneously, the 4th back-up block 64 outer wall being provided with the mounting structure for installing microswitch simultaneously, improve facility compact.Above-mentioned tapping screw hole and tapping screw also can replace with common screwed hole and bolt.
Output shaft or the rotating shaft 4 of microswitch 7 and drive motors 42 link, and for detecting the turned position of rotating shaft 4, and then judging the position of plate 41, because this is prior art, not repeating them here.
Also comprise the water tank 12 be arranged side by side with guiding gutter 11, the bottom surface of guiding gutter 11 is higher than the bottom surface of water tank 12, and guiding gutter 11 is communicated with water tank 12 by flow-guiding mouth 14; Ice storage basket is arranged on water tank 12 top.
The ice maker of the present embodiment is used to carry out the process of ice making as follows:
First, water-supply-pipe 5 is that ice build-up tank 22 supplies water by pod apertures, then in evaporation tube 3, the cold-producing medium of circulation is that ice build-up tank 22 is lowered the temperature, until all water in ice build-up tank 22 are all cooled to ice, then in evaporation tube 3, pass into high temperature refrigerant, the ice cube being positioned at ice build-up tank 22 is separated with the inwall of ice build-up tank 22, then start drive motors 42 drive shaft 4 and rotate, the ice cube being positioned at ice build-up tank 22 is outwards transferred to by plate 41, and rhone 23 receives ice cube and ice cube is exported to ice storage basket.
Obviously, above-described embodiment is only for clearly example being described, and the restriction not to embodiment.For those of ordinary skill in the field, can also make other changes in different forms on the basis of the above description.Here exhaustive without the need to also giving all embodiments.And thus the apparent change of extending out or variation be still among the protection domain of the invention.

Claims (14)

1. an ice maker, comprising:
Casing (1);
Ice making box (2), is fixedly mounted on described casing (1);
Evaporation tube (3), is fixedly mounted on described casing (1) and/or described ice making box (2), freezes for the liquid freezing that will be positioned at described ice making box (2);
It is characterized in that: the ice making inner chamber of described ice making box (2) has lower arcuate surface, described evaporation tube (3) contacts with the bottom of described ice making box (2) or near arranging, also comprise and deice structure for what discharged by the ice cube being positioned at described ice making box (2), described in deice structure there is the switch portion outwards transferred to along described lower arcuate surface by described ice cube.
2. ice maker according to claim 1, is characterized in that: the part of described evaporation tube (3) contact or close described ice making box (2) has the arc surfaced sidewall (31) mating with described ice making box (2) outer wall and fit.
3. ice maker according to claim 1 and 2, it is characterized in that: in described ice making box (2), be provided with some baffle plates (21), multiple along described ice making box (2) axial distribution and separate ice build-up tank (22) for described ice making box (2) is divided into.
4. ice maker according to claim 3, it is characterized in that: also comprise the ice storage basket be arranged on described casing (1), be provided with drainage hole bottom described ice storage basket, described ice storage basket is for receiving by the described described ice cube deicing structure and transfer to.
5. ice maker according to claim 3, it is characterized in that: described in deice structure and comprise the rotating shaft (4) be installed in rotation on described casing (1), and the drive motors (42) driving described rotating shaft (4) to rotate, described switch portion is for being arranged on the plate (41) in described rotating shaft (4), described plate (41) is rotated under the driving of described drive motors (42), thus is outwards transferred to by the ice cube being positioned at described ice making box (2).
6. ice maker according to claim 5, is characterized in that: described plate (41) is provided with multiple in described rotating shaft (4), is respectively used to the ice cube being positioned at different ice build-up tank (22) outwards to transfer to.
7. ice maker according to claim 5, it is characterized in that: also comprise the water-supply-pipe (5) be fixedly installed on described casing (1), described water-supply-pipe (5) is provided with pod apertures, described pod apertures be positioned at described ice build-up tank (22) top and with described ice build-up tank (22) one_to_one corresponding.
8. ice maker according to claim 7, it is characterized in that: described casing (1) is provided with guiding gutter (11), two opposing sidewalls of described guiding gutter (11) are respectively equipped with the first mounting groove (111) and the second mounting groove (112), the two ends of described evaporation tube (3) are arranged on described first mounting groove (111) and/or described second mounting groove (112) by the first mounting structure; The two ends of described ice making box (2) are fixedly mounted on described first mounting groove (111) by the second mounting structure and described second mounting groove (112) is inner.
9. ice maker according to claim 8, it is characterized in that: described first mounting structure comprises and is opened in evaporation tube mounting groove (13) on described first mounting groove (111) and/or described second mounting groove (112) bottom surface and opening up, for passing for the input of described evaporation tube (3) and/or output.
10. ice maker according to claim 9, it is characterized in that: described second mounting structure comprises the first back-up block (61) be detachably fixedly mounted on described first mounting groove (111) bottom surface, detachably be fixedly mounted on the second back-up block (62) on described second mounting groove (112) bottom surface, the bottom surface of described first back-up block (61) is fixedly connected with the opposite end of described ice making box (2) respectively with the bottom surface of described second back-up block (62).
11. ice makers according to claim 10, is characterized in that: described first back-up block (61) and described second back-up block (62) end face are also provided with the rotating shaft mounting groove (44) for installing described rotating shaft (4).
12. ice makers according to claim 11, it is characterized in that: also comprise the 3rd back-up block (63) for closing described first mounting groove (111), described 3rd back-up block (63) has for holding described first back-up block (61) and the inner chamber (65) be fixedly connected with described first back-up block (61); Described inner chamber (65) has the inwall being positioned at described first back-up block (61) outside.
13. ice makers according to claim 12, is characterized in that: described 3rd back-up block (63) is provided with the first installing hole (51) for passing for the water inlet end of described water-supply-pipe (5); The 4th back-up block (64) be fixedly mounted on described second back-up block (62) end face is provided with the second installing hole of the blind end for holding described water-supply-pipe (5);
Also comprise the ice storage basket be arranged on described casing (1), be provided with drainage hole bottom described ice storage basket, described ice storage basket is for receiving by the described described ice cube deicing structure and transfer to;
Described water-supply-pipe (5) is positioned at the top of described ice build-up tank (22) towards described ice storage basket side, for described deice structure promote described ice cube time, prevent described ice cube from overturning to the direction away from described ice storage basket side.
14. ice makers according to claim 13, it is characterized in that: described second back-up block (62) is provided with screwed hole and/or bolt column towards the outer wall in described casing (1) outside, for relative with the installation through hole be located on described drive motors (42), thus by using bolt and/or nut to fixedly mount described drive motors;
Described 4th back-up block (64) is for closing described second mounting groove (112), and the outer wall of described 4th back-up block (64) outside described casing (1) is provided with screwed hole and/or threaded post, for relative with the installation through hole be located on microswitch (7) and microswitch pressing plate (71), thus by using bolt and/or nut to fixedly mount described microswitch (7).
CN201520636120.0U 2015-08-21 2015-08-21 Ice making device Expired - Fee Related CN205048827U (en)

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CN201520636120.0U CN205048827U (en) 2015-08-21 2015-08-21 Ice making device

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Application Number Priority Date Filing Date Title
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CN201520636120.0U Expired - Fee Related CN205048827U (en) 2015-08-21 2015-08-21 Ice making device

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107388669A (en) * 2017-08-22 2017-11-24 东莞嘉丰机电设备有限公司 A kind of ice making cold drink peddles all-in-one
CN110530085A (en) * 2019-04-12 2019-12-03 深圳市中雪制冷设备有限公司 Block ice machine and ice making with multi-panel ice making function take ice method
WO2023123272A1 (en) * 2021-12-30 2023-07-06 合肥华凌股份有限公司 Ice-making assembly and leakage detection method and apparatus therefor, and refrigeration device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107388669A (en) * 2017-08-22 2017-11-24 东莞嘉丰机电设备有限公司 A kind of ice making cold drink peddles all-in-one
CN110530085A (en) * 2019-04-12 2019-12-03 深圳市中雪制冷设备有限公司 Block ice machine and ice making with multi-panel ice making function take ice method
WO2023123272A1 (en) * 2021-12-30 2023-07-06 合肥华凌股份有限公司 Ice-making assembly and leakage detection method and apparatus therefor, and refrigeration device

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Address after: 315314 No. 98 Haiwei Avenue, Guanhaiwei Town, Cixi City, Ningbo City, Zhejiang Province

Patentee after: Ningbo Desa Electrical Appliance Manufacturing Co., Ltd.

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