Water purifier with ice making function
By designing water components and demolding components in the water purifier, and uniform water injection is achieved using electric bidirectional telescopic rods and nozzles, the problems of uneven ice size and low demolding efficiency are solved, and water resource conservation and manual operating time are achieved.
Patent Information
- Application Number
- CN202421945495.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-13
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-08-13
AI Technical Summary
The existing water purifier with ice making function can easily lead to uneven size of ice cubes, waste of water resources, and low ice mold release efficiency during the ice making process, which increases the amount of manual operation.
A water purifier with ice making function is designed, using water outlet assembly and mold release assembly, and uniform water injection is achieved through electric bidirectional telescopic rod and nozzle to ensure the consistent size of ice cubes; the efficiency of ice cubes is improved through electric telescopic rod and mold release assembly and reduce manual operation.
The ice cube size is achieved more uniformly, water resources are saved, the ice cube demolding efficiency is improved, and manual operation time and workload are reduced.
Smart Images

Figure CN222895361U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of water purifiers, in particular to a water purifier with an ice-making function. Background Art
[0002] A water purifier is a household appliance or device designed to filter and remove impurities, pollutants and harmful substances in tap water to provide cleaner and safer drinking water. Their working principles generally cover physical filtration, chemical adsorption and reverse osmosis technology. Some water purifiers can not only filter and purify tap water, but also have the function of making ice. It combines the filtration technology of the water purifier and the ice-making ability of the ice maker to provide users with a convenient ice preparation experience.
[0003] Existing water purifiers with ice-making function discharge purified tap water and make ice cubes separately, so as to facilitate and easily make fresh ice cubes. The purified tap water used for ice making can maintain good water quality of the ice cubes. However, when making ice, it is easy to cause the size of the ice cubes to be uneven, and water resources are wasted when filling water. In addition, the ice cubes are easy to stick to the ice box and need to be manually demolded, which increases the workload of the personnel.
[0004] Therefore, those skilled in the art provide a water purifier with an ice-making function to solve the problems raised in the above background technology. Utility Model Content
[0005] The purpose of the utility model is to solve the shortcomings of the prior art and to propose a water purifier with an ice-making function, so that water can be evenly injected when making ice cubes to save water resources, and the size of the ice cubes can be formed more uniformly, and the ice cubes can be easily demolded, thereby improving the demolding efficiency, saving manual operation time, and reducing manual workload.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a water purifier with ice-making function, comprising a refrigerator, a water purifier body is fixedly arranged on the upper end surface of the refrigerator near the rear end, an ice storage tank is provided inside the refrigerator, a fixing plate is fixedly arranged on the upper part of the ice storage tank, an ice-making frame is fixedly arranged inside the hole opened in the middle of the upper end surface of the fixing plate, a sealing groove is opened in the middle of the lower end surface of the fixing plate, main water pipes are embedded on both sides of the ice storage tank near the upper part, water outlet components are fixedly arranged on the opposite side of the two main water pipes, and demoulding components are fixedly arranged on both sides of the ice storage tank near the lower part;
[0007] The water outlet assembly includes two folding tubes, a buffer tank and two movable plates, the upper ends of the two movable plates are fixedly provided with connecting plates, the two connecting plates are fixedly provided with electric two-way telescopic rods on the lower sides of the two connecting plates on the opposite sides, the two folding tubes are fixedly provided with spray heads on the opposite sides, a sliding rod is fixedly provided on the upper sides of the buffer tank, and a shock absorber is fixedly provided on the middle part of the sliding rod;
[0008] The demoulding assembly comprises two movable grooves, two connecting blocks and two second bearing seats, a movable block is fixedly arranged in the middle of the opposite sides of the two connecting blocks, a rubber plate is fixedly arranged on the upper ends of the two connecting blocks, a demoulding groove is evenly arranged in the middle of the lower end surface of the rubber plate, a sliding groove is opened on the upper side of the opposite side of the two connecting blocks, an electric telescopic rod is intruded into the lower part of the two connecting blocks, an extrusion plate is fixedly arranged on the opposite side of the two electric telescopic rods, a first bearing seat is fixedly arranged on the upper side of the opposite side of the two extrusion plates, a rotating rod is rotatably sleeved inside the two first bearing seats, a through rod is fixedly arranged at the lower ends of the two connecting blocks, a return spring is fixedly sleeved in the middle of the through rod, a supporting plate is fixedly arranged on the upper ends of the two second bearing seats, sliding blocks are fixedly arranged on both sides of the supporting plate, a plurality of demoulding modules are evenly fixedly arranged in the middle of the upper end surface of the supporting plate, and an electric guide rail is fixedly arranged inside the two movable grooves;
[0009] Through the above technical scheme, the water purifier body is arranged at the upper end of the refrigerator, so that the tap water is purified inside the water purifier body, and the purified water is discharged into the water outlet assembly through the main water pipes on both sides of the ice storage tank inside the refrigerator, and the sealing groove at the lower end is sealed by the demoulding assemblies on both sides of the ice storage tank, so that the water outlet assembly evenly injects water into the ice making frame, so that the size of the ice cubes is more uniform, and the waste of water resources is reduced. After ice making, the ice cubes are demolded by the demoulding assembly, which reduces the workload of personnel for demoulding and improves the efficiency of ice making.
[0010] The electric two-way telescopic rod in the water outlet assembly drives the connecting plate to slide around the sliding rod, so that the connecting plate squeezes the shock absorber around the sliding rod, so that the movable plate at the lower end of the connecting plate drives the folding tube to move, so that the folding tube is unfolded, and the water passing through the water purifier body is discharged through the main water pipe, so that the nozzle embedded in the movable plate sprays the water out, so that it is convenient to fill water into each ice making frame when making ice, and the water filling before making each ice cube is more uniform. The uniform water filling can significantly improve the production efficiency of ice cubes, ensure the consistency of ice cube quality and shape, and save resources and reduce production costs at the same time;
[0011] The connecting block in the demoulding assembly slides around the electric guide rail through the movable block, so that the connecting block drives the rubber plate at the upper end to clamp and seal the sealing groove opened in the middle part of the lower end surface of the fixed plate, so that the ice making frame is sealed and it is convenient to inject water for ice making. After ice cubes are formed inside the ice making frame, the electric telescopic rod at the lower side of the connecting block drives the extrusion plate to slide around the through rod and squeezes the return spring in the middle part of the through rod, and the rotating rod inside the first bearing seat between the extrusion plates drives the support plate at the upper end of the second bearing seat to move, and the sliders on both sides of the support plate slide inside the slide groove, so that the stripping module at the upper end of the support plate is clamped in the demoulding groove at the lower end of the rubber plate, so as to squeeze the ice cube on the upper end of the rubber plate for demoulding, and the movable block on the connecting block is lowered on the electric guide rail to make the ice cube fall into the ice storage tank, which improves the demoulding efficiency after the ice cube is formed, and prevents the ice cube from automatically falling off due to the inability to demould. This saves manual operation time, improves the efficiency of ice making, and reduces labor costs.
[0012] Furthermore, the two nozzles are respectively embedded in two movable plates, and the two connecting plates are respectively slidably sleeved on both sides of the sliding rod;
[0013] Through the above technical solution, the nozzle is embedded in the movable plate, so that the movable plate can drive the nozzle to evenly inject water. The connecting plate is slidably sleeved around the sliding rod, so that the connecting plate is more stable when moving.
[0014] Furthermore, the two movable blocks are respectively slidably sleeved around the two electric guide rails, and the two extrusion plates are respectively slidably sleeved on both sides of the through rod;
[0015] Through the above technical scheme, the movable block is slidably sleeved around the electric guide rail, which is convenient for driving the connecting block to move up and down, and the extrusion plate is slidably sleeved around the through rod, which is convenient for squeezing the reset spring around the through rod to limit the position.
[0016] Furthermore, the two rotating rods are respectively rotatably sleeved inside the two second bearing seats, and the two sliding blocks are respectively slidably disposed inside the two sliding grooves;
[0017] Through the above technical solution, the sliding blocks on both sides of the support plate connected to the second bearing seat can be driven to slide in the slide groove by rotating the rotating rod which is rotatably sleeved inside the second bearing sleeve.
[0018] Furthermore, the rubber plate is clamped and arranged inside the sealing groove, and the plurality of demoulding modules are clamped and arranged inside the plurality of demoulding grooves;
[0019] Through the above technical scheme, the rubber plate is clamped and arranged inside the sealing groove, so that it is sealed when water is injected to form ice cubes, and the demoulding module is clamped and arranged inside the demoulding groove, so that the demoulding groove is squeezed and deformed to demould the loosened ice cubes.
[0020] Furthermore, a placing table is fixedly provided at the front end of the upper end of the refrigerator, and a base is fixedly provided at the lower end of the refrigerator;
[0021] Through the above technical solution, the placement table arranged at the front end of the upper end of the refrigerator facilitates the placement of water cups, and the support of the refrigerator is improved by the base at the lower end of the refrigerator.
[0022] Furthermore, a rotating door is hingedly provided at the middle of the front end surface of the refrigerator, a handle is fixedly provided at the lower middle of the upper end surface of the rotating door, and a control panel is embedded at the upper front end surface of the water purifier body;
[0023] Through the above technical scheme, a revolving door is hingedly provided at the middle part of the front end surface of the ice making machine. The revolving door is opened by a handle at the upper end of the revolving door to take ice. The control panel arranged at the upper part of the front end surface of the water purifier body is connected to the water purifier body and the electric two-way telescopic rod, the nozzle and the electric guide rail by electric wires.
[0024] The utility model has the following beneficial effects:
[0025] 1. The utility model proposes a water purifier with ice-making function. A water outlet assembly is arranged on the opposite side of a main water pipe. The electric two-way telescopic rod in the water outlet assembly drives the connecting plate to slide around the sliding rod, so that the connecting plate squeezes the shock absorber around the sliding rod, and the movable plate at the lower end of the connecting plate drives the folding tube to move, so that the folding tube is unfolded, and the water passing through the water purifier body is discharged through the main water pipe, so that the nozzle embedded in the movable plate sprays the water, so that each ice-making frame can be filled with water when making ice, and the water injection before each ice cube is made can be more uniform. The uniform water injection can significantly improve the production efficiency of ice cubes, ensure the consistency of ice cube quality and shape, and save resources and reduce production costs.
[0026] 2. The utility model provides a water purifier with ice-making function. The connecting blocks in the demoulding assembly arranged at the lower sides of the ice storage tank slide around the electric guide rail through the movable blocks, so that the connecting blocks drive the rubber plate at the upper end to clamp and seal the sealing groove opened in the middle of the lower end surface of the fixed plate, so that the ice-making frame is sealed and convenient for water injection to make ice. After ice cubes are formed inside the ice-making frame, the electric telescopic rods at the lower sides between the connecting blocks drive the extrusion plate to slide around the through rod and squeeze the reset spring in the middle of the through rod, so that the extrusion plates are relatively The rotating rod inside the first bearing seat drives the support plate at the upper end of the second bearing seat to move, and the sliders on both sides of the support plate slide in the slide groove, so that the demoulding module on the upper end of the support plate is clamped in the demoulding groove at the lower end of the rubber plate to squeeze the ice cube on the upper end of the rubber plate for demoulding, and the movable block on the connecting block is lowered on the electric guide rail to make the ice cube fall into the ice storage tank, thereby improving the demoulding efficiency of the ice cube after being formed, and preventing the ice cube from automatically falling due to failure to demould, saving manual operation time, improving the efficiency of ice making, and reducing labor costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 This is an axial schematic diagram of a water purifier with ice-making function proposed by the utility model;
[0028] Figure 2 This is a front cross-sectional schematic diagram of a water purifier with ice-making function proposed by the utility model;
[0029] Figure 3 This is an enlarged view of point A of a water purifier with ice-making function proposed by the utility model;
[0030] Figure 4 This is an enlarged view of point B of a water purifier with ice-making function proposed by the utility model.
[0031] Legend:
[0032] 1. Water purifier body; 2. Control panel; 3. Placement table; 4. Ice making ice box; 5. Rotating door; 6. Handle; 7. Base; 8. Water outlet assembly; 9. Demolding assembly; 10. Main water pipe; 11. Fixed plate; 12. Ice making frame; 13. Sealing groove; 14. Ice storage tank; 801. Buffer tank; 802. Folding pipe; 803. Sprinkler; 804. Moving plate; 805. Connecting plate; 806. Sliding rod; 807. Shock absorber; 808. Electric double telescopic rod; 901, moving groove; 902, movable block; 903, electric guide rail; 904, connecting block; 905, electric telescopic rod; 906, first bearing seat; 907, rotating rod; 908, second bearing seat; 909, supporting plate; 9010, demolding module; 9011, rubber plate; 9012, slide groove; 9013, slider; 9014, demolding groove; 9015, extrusion plate; 9016, through rod; 9017, reset spring. DETAILED DESCRIPTION
[0033] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0034] Reference Figure 1-4 , an embodiment provided by the utility model:
[0035] A water purifier with ice-making function comprises a refrigerator 4, a water purifier body 1 is fixedly arranged on the upper end surface of the refrigerator 4 near the rear end, an ice storage tank 14 is provided inside the refrigerator 4, a fixing plate 11 is fixedly arranged on the upper part of the ice storage tank 14, an ice-making frame 12 is fixedly arranged inside the hole opened in the middle of the upper end surface of the fixing plate 11, a sealing groove 13 is opened in the middle of the lower end surface of the fixing plate 11, main water pipes 10 are embedded on both sides of the ice storage tank 14 near the upper part, a water outlet assembly 8 is fixedly arranged on the opposite side of the two main water pipes 10, and a demoulding assembly 9 is fixedly arranged on both sides of the ice storage tank 14 near the lower part, and a sealing groove 13 is opened in the middle of the lower end surface of the fixing plate 11. The water purifier body 1 disposed at the upper end of the ice making refrigerator 4 purifies the tap water inside the water purifier body 1, and discharges the purified water into the water outlet assembly 8 through the main water pipes 10 on both sides of the upper part of the ice storage tank 14 inside the ice making refrigerator 4, and the sealing groove 13 at the lower end is sealed through the demoulding assemblies 9 on both sides of the lower part of the ice storage tank 14, so that the water outlet assembly 8 evenly injects water into the ice making frame 12, so that the size of the ice cubes is more uniform, and the waste of water resources is reduced. After ice making, the ice cubes are demolded by the demoulding assembly 9, which reduces the workload of personnel for demoulding and improves the efficiency of ice making.
[0036] The water outlet assembly 8 includes two folding tubes 802, a buffer tank 801 and two movable plates 804. The upper ends of the two movable plates 804 are fixedly provided with connecting plates 805. The two connecting plates 805 are fixedly provided with electric two-way telescopic rods 808 at the bottom of the opposite side. The two folding tubes 802 are fixedly provided with nozzles 803 at the opposite side. The buffer tank 801 is fixedly provided with a slide bar 806 at the top. The middle part of the slide bar 806 is fixedly provided with a shock absorber 807. The connecting plate 805 is driven to slide around the slide bar 806 by the electric two-way telescopic rod 808 in the water outlet assembly 8, so that the connecting plate 805 The shock absorber 807 around the sliding rod 806 is squeezed, so that the movable plate 804 at the lower end of the connecting plate 805 drives the folding tube 802 to move, so that the folding tube 802 is unfolded, and the water passing through the water purifier body 1 is discharged through the main water pipe 10, so that the nozzle 803 embedded in the movable plate 804 sprays the water, so that it is convenient to inject water into each ice-making frame 12 when making ice, and the water injection before each ice cube is made is more uniform. The uniform water injection can significantly improve the efficiency of ice production, ensure the consistency of ice quality and shape, and save resources and reduce production costs.
[0037] The demoulding assembly 9 includes two movable grooves 901, two connecting blocks 904 and two second bearing seats 908. A movable block 902 is fixedly arranged in the middle of the opposite side of the two connecting blocks 904. A rubber plate 9011 is fixedly arranged on the upper end of the two connecting blocks 904. A demoulding groove 9014 is evenly opened in the middle of the lower end surface of the rubber plate 9011. A slide groove 9012 is opened on the upper side of the two connecting blocks 904 on the opposite side. An electric telescopic rod 905 is intruded and arranged on the lower side of the two connecting blocks 904. An extrusion plate 9015 is fixedly arranged on the opposite side of the two electric telescopic rods 905. A A first bearing seat 906 is arranged, and a rotating rod 907 is rotatably sleeved inside the two first bearing seats 906. A through rod 9016 is fixedly arranged at the lower end of each of the two connecting blocks 904, and a return spring 9017 is fixedly sleeved in the middle of the through rod 9016. A support plate 909 is fixedly arranged at the upper end of each of the two second bearing seats 908, and a slider 9013 is fixedly arranged on both sides of the support plate 909. A plurality of stripping modules 9010 are evenly fixedly arranged in the middle of the upper end surface of the support plate 909, and an electric guide rail 903 is fixedly arranged inside the two moving grooves 901. The connecting block 904 in the stripping assembly 9 is connected to the electric guide rail 903 through the movable block 902. The connecting block 904 drives the rubber plate 9011 at the upper end to engage and seal the sealing groove 13 provided in the middle of the lower end surface of the fixing plate 11, so that the ice-making frame 12 is sealed to facilitate water injection for ice-making. After ice cubes are formed inside the ice-making frame 12, the electric telescopic rod 905 at the lower side between the connecting blocks 904 drives the extrusion plate 9015 to slide around the through rod 9016 and squeeze the return spring 9017 in the middle of the through rod 9016, and the rotating rod 907 inside the first bearing seat 906 between the extrusion plate 9015 drives the support plate at the upper end of the second bearing seat 908 The rubber plate 9011 is connected to the rubber plate 909 by a plurality of movable blocks 902. The movable blocks 902 on the connecting block 904 are lowered on the electric guide rails 903 to make the ice cubes fall into the ice storage tank 14, thereby improving the efficiency of demolding the ice cubes after they are formed, and preventing the ice cubes from automatically falling due to failure to demold, thereby saving manual operation time, improving the efficiency of ice making, and reducing labor costs.
[0038] The two nozzles 803 are respectively embedded in the two movable plates 804, and the two connecting plates 805 are respectively slidably mounted on both sides of the sliding rod 806. The nozzles 803 are embedded in the movable plates 804, so that the movable plates 804 can drive the nozzles 803 to evenly inject water. The connecting plates 805 are slidably mounted on the sliding rod 806, so that the connecting plates 805 are more stable when moving.
[0039] The two movable blocks 902 are respectively slidably mounted on the two electric guide rails 903, and the two extrusion plates 9015 are respectively slidably mounted on both sides of the through rod 9016. The movable block 902 is slidably mounted on the electric guide rail 903, so as to facilitate the connection block 904 to move up and down. The extrusion plate 9015 is slidably mounted on the through rod 9016, so as to facilitate the extrusion and limiting of the return spring 9017 on the through rod 9016, so as to limit the upward movement of the support plate 909, and to limit the deformation of the demoulding module 9010 when it squeezes the demoulding groove 9014, so as to prevent the rubber plate 9011 from being damaged.
[0040] The two rotating rods 907 are respectively rotatably sleeved in the two second bearing seats 908, and the two sliding blocks 9013 are respectively slidably set in the two sliding grooves 9012. The rotating rod 907 is rotatably sleeved in the second bearing seat to conveniently drive the sliding blocks 9013 on both sides of the support plate 909 connected to the second bearing seat 908 to slide in the sliding groove 9012. The rubber plate 9011 is clamped and set in the sealing groove 13. A plurality of demoulding modules 9010 are clamped and set in a plurality of demoulding grooves 9014. The rubber plate 9011 is clamped and set in the sealing groove 13, so that it is sealed when water is injected to form ice cubes, and the demoulding module 9010 is clamped and set in the demoulding groove 9014, so that the demoulding groove 9014 is squeezed and deformed to loosen the ice cubes for demoulding.
[0041] A placing table 3 is fixedly provided at the front end of the upper end of the ice making refrigerator 4, and a base 7 is fixedly provided at the lower end of the ice making refrigerator 4. The placing table 3 arranged at the front end of the upper end of the ice making refrigerator 4 is convenient for placing water cups, and the base 7 at the lower end of the ice making refrigerator 4 improves the support of the ice making refrigerator 4. An evaporator and a condenser are fixed at the top of the ice making refrigerator 4, which is convenient for gradually turning water in the ice making frame 12 into ice cubes.
[0042] A revolving door 5 is hingedly provided in the middle of the front end face of the ice making refrigerator 4, and a handle 6 is fixedly provided at the lower middle part of the upper end face of the revolving door 5. A control panel 2 is embedded at the upper part of the front end face of the water purifier body 1. The revolving door 5 is hingedly provided in the middle of the front end face of the ice making refrigerator 4. The revolving door 5 is opened by the handle 6 at the upper end of the revolving door 5 to take ice. The control panel 2 arranged at the upper part of the front end face of the water purifier body 1 is connected to the water purifier body 1 and the electric two-way telescopic rod 808, the nozzle 803, and the electric guide rail 903 by electric wires to facilitate the control of ice making with purified tap water.
[0043] Working principle: when the water purifier body 1 is used, the tap water is purified by the water purifier body 1, and the purified water is discharged into the water outlet component 8 through the main water pipes 10 on both sides of the upper part of the ice storage tank 14 inside the refrigerator 4, and the lower sealing groove 13 is sealed by the demoulding components 9 on both sides of the lower part of the ice storage tank 14, so that the water outlet component 8 evenly injects water into the ice making frame 12, so that the size of the ice cubes is more uniform, and the waste of water resources is reduced. After ice making, the ice cubes are demolded by the demoulding component 9, which reduces the workload of personnel for demoulding and improves the efficiency of ice making.
[0044] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. A water purifier with ice-making function, comprising an ice-making refrigerator (4), characterized in that: A water purifier body (1) is fixedly arranged on the upper end surface of the ice making refrigerator (4) near the rear end, an ice storage tank (14) is provided inside the ice making refrigerator (4), a fixing plate (11) is fixedly arranged on the upper side of the ice storage tank (14), an ice making frame (12) is fixedly arranged inside a hole provided in the middle of the upper end surface of the fixing plate (11), a sealing groove (13) is provided in the middle of the lower end surface of the fixing plate (11), main water pipes (10) are embedded on both sides of the ice storage tank (14) near the upper side, water outlet components (8) are fixedly arranged on opposite sides of the two main water pipes (10), and demoulding components (9) are fixedly arranged on both sides of the ice storage tank (14) near the lower side; The water outlet assembly (8) comprises two folding tubes (802), a buffer tank (801) and two movable plates (804), the upper ends of the two movable plates (804) are fixedly provided with connecting plates (805), the two connecting plates (805) are fixedly provided with electric bidirectional telescopic rods (808) at the lower side of the two opposite sides, the two folding tubes (802) are fixedly provided with spray heads (803) at the lower side, a sliding rod (806) is fixedly provided inside the buffer tank (801) at the upper side, and a shock absorber (807) is fixedly provided around the middle of the sliding rod (806).
2. A water purifier with ice-making function according to claim 1, characterized in that: The demoulding assembly (9) comprises two movable grooves (901), two connecting blocks (904) and two second bearing seats (908); a movable block (902) is fixedly arranged in the middle of the opposite sides of the two connecting blocks (904); a rubber plate (9011) is fixedly arranged on the upper ends of the two connecting blocks (904); a demoulding groove (9014) is evenly arranged in the middle of the lower end surface of the rubber plate (9011); a sliding groove (9012) is opened on the upper side of the opposite side of the two connecting blocks (904); an electric telescopic rod (905) is intruded and arranged on the lower side of the two connecting blocks (904); an extrusion plate (9015) is fixedly arranged on the opposite side of the two electric telescopic rods (905); and the two extrusion plates (9015) are fixedly arranged on the opposite side of the two electric telescopic rods (905). A first bearing seat (906) is fixedly arranged on the upper side of the opposite side of the plate (9015), and a rotating rod (907) is rotatably sleeved inside the two first bearing seats (906). A through rod (9016) is fixedly arranged at the lower end of the two connecting blocks (904), and a return spring (9017) is fixedly sleeved in the middle part of the through rod (9016). A support plate (909) is fixedly arranged on the upper end of the two second bearing seats (908), and sliding blocks (9013) are fixedly arranged on both sides of the support plate (909). A plurality of stripping modules (9010) are evenly fixedly arranged in the middle part of the upper end surface of the support plate (909), and an electric guide rail (903) is fixedly arranged inside the two movable grooves (901).
3. The water purifier with ice-making function according to claim 1, characterized in that: The two nozzles (803) are respectively embedded in the two movable plates (804), and the two connecting plates (805) are respectively slidably mounted on both sides of the sliding rod (806).
4. A water purifier with ice-making function according to claim 2, characterized in that: The two movable blocks (902) are respectively slidably sleeved around the two electric guide rails (903), and the two extrusion plates (9015) are respectively slidably sleeved on both sides of the through rod (9016).
5. The water purifier with ice-making function according to claim 2, characterized in that: The two rotating rods (907) are respectively rotatably sleeved inside the two second bearing seats (908), and the two sliding blocks (9013) are respectively slidably disposed inside the two sliding grooves (9012).
6. The water purifier with ice-making function according to claim 2, characterized in that: The rubber plate (9011) is snap-fitted and arranged inside the sealing groove (13), and the plurality of demoulding modules (9010) are snap-fitted and arranged inside the plurality of demoulding grooves (9014).
7. The water purifier with ice-making function according to claim 1, characterized in that: A placement table (3) is fixedly arranged at the front end of the upper end of the refrigerator (4), and a base (7) is fixedly arranged at the lower end of the refrigerator (4).
8. The water purifier with ice-making function according to claim 1, characterized in that: A rotating door (5) is hingedly provided in the middle of the front end surface of the refrigerator (4), a handle (6) is fixedly provided at the lower middle of the upper end surface of the rotating door (5), and a control panel (2) is embedded in the upper part of the front end surface of the water purifier body (1).