Feeding auxiliary device for windshield washer fluid production

By using spiral refrigeration pipes and other combinations in the glass water production device, the circulating transport and heat dissipation cooling of condensate water are solved, and the risk of mixing and penetration of air-conditioning water is improved, and the production quality and cooling effect of glass water are improved.

CN222956245UActive Publication Date: 2025-06-10HUBEI KE TECH CO LTD
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Patent Information

Application Number
CN202421798382.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-29
Publication Date
2025-06-10
Estimated Expiration
2034-07-29

AI Technical Summary

Technical Problem

During the stirring process of existing glass water production equipment, the moisture in the air-conditioning air is mixed with the glass water, which may lead to a reduction in production quality and there is a risk of penetration in the semi-permeable hole arrangement.

Method used

A feeding auxiliary device for glass water production is designed, which adopts a combination of spiral refrigeration pipe, rotary joint, water inlet pipe, Y-shaped joint, water supply pipe, water outlet pipe and water pump to realize the circulation and transportation of condensate, and the heat dissipation and cooling is carried out through the deflector, fan and water chiller to ensure the recycling of condensate.

Benefits of technology

By recycling condensate water, the device significantly improves the cooling effect of glass water, avoids moisture infusion, improves production quality, and has the advantages of energy saving and environmental protection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a feeding auxiliary device for glass water production, which comprises a base, a stirring tank is fixed on the base, a rotatable stirring shaft is vertically arranged in the stirring tank, a plurality of stirring rods are fixed on the outer side of the stirring shaft, a liquid pumping pipe is fixed on one side of a stirring box, a cooling mechanism is arranged on the stirring tank, and a circulating assembly is arranged on the base. And a driving assembly is arranged on the stirring tank. According to the feeding auxiliary device for windshield washer fluid production, firstly, a spiral refrigeration pipe, a rotary joint, a water inlet pipe, a Y-shaped joint, a water supply pipe, a water outlet pipe and a water suction pump are arranged and connected in a matched mode, so that condensate water can be circularly conveyed into the stirring tank for heat absorption and cooling; the heat dissipation device is reasonable in structure, can dissipate heat of condensed water after heat absorption, can dissipate heat and cool the condensed water for cooling, so that the condensed water is recycled, and the heat dissipation device has better cooling effect and energy-saving and environment-friendly effects.
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Description

Technical Field

[0001] The utility model relates to the technical field of glass water production, in particular to a feeding auxiliary device for glass water production. Background Art

[0002] Glass water is the common name for car windshield cleaning fluid, which is a consumable item in car use. High-quality car windshield water is mainly composed of water, alcohol, ethylene glycol, corrosion inhibitors and a variety of surfactants.

[0003] The Chinese patent document with application number CN202220132898.8 in the related technology proposes a feeding auxiliary device for glass water, which includes a stirring tank, a storage tank, a stirring shaft, a motor, a pump body, a liquid extraction pipe, a clamping assembly and a gear. The storage tank is placed on one side of the stirring tank, and the two are connected by a liquid extraction pipe connected in series with the pump body, and the liquid extraction pipe is vertically fixed to the side of the stirring tank through the clamping assembly, the stirring shaft is vertically arranged on the inner side of the stirring tank, and a gear is sleeved on the outer side of the top thereof, the motor is vertically fixed on the top of the stirring tank, and its output end is meshed with the gear, the inner side of the stirring shaft is hollow, and blades and partitions are respectively sleeved on both sides and the middle of the axis, the partition is conical, and a number of semi-permeable holes that are only breathable are provided on the circumference of the stirring shaft, and cold air is pumped in through both sides of the stirring tank to avoid the glass water from being too hot during the stirring process, and the partition effectively prevents uneven cooling of the middle part due to the excessive length of the stirring shaft.

[0004] With respect to the above-mentioned related technologies, the inventors believe that the following defects exist: the device prevents the glass water from overheating during the stirring process by injecting cold air into both sides of the stirring tank, but the injected cold air contains a small amount of moisture, and the moisture in the cold air is mixed with the glass water in the stirring tank, and the setting of the semi-permeable holes that are only air-permeable still has the possibility of infiltration, which may cause the glass water in the stirring tank to flow back into the stirring shaft, thereby reducing the production quality of the glass water. In view of this, a feeding auxiliary device for glass water production is proposed to solve the above-mentioned problems. Utility Model Content

[0005] The main purpose of the utility model is to provide a feeding auxiliary device for glass water production, which solves the problems raised in the above-mentioned background technology.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a feeding auxiliary device for glass water production, comprising a base, a stirring tank is fixed on the base, a rotatable stirring shaft is vertically arranged in the stirring tank, a plurality of stirring rods are fixed on the outside of the stirring shaft, a liquid extraction pipe is fixed on one side of the stirring box, a cooling mechanism is provided on the stirring tank, a circulation component is provided on the base, and a driving component is provided on the stirring tank;

[0007] The cooling mechanism includes a rotary joint, a spiral refrigeration pipe, and a circulation barrel. The spiral refrigeration pipe is arranged inside the stirring tank, and the circulation barrel is fixed on the base. One end of the spiral refrigeration pipe is communicated with the upper end of the circulation barrel. Rotary joints are rotatably installed at the upper and lower ends of the stirring shaft, and a water inlet pipe and a water outlet pipe are respectively fixed to the upper and lower rotary joints.

[0008] A water pump is fixed on the base. One end of the water pump is communicated with the circulation barrel. One end of the water pump is communicated with a Y-shaped joint, and the other two ends of the Y-shaped joint are respectively communicated with the water inlet pipe and the other end of the spiral refrigeration pipe.

[0009] Furthermore, a fixed plate is horizontally arranged inside the circulation barrel. A plurality of drainage holes are formed in the fixed plate, and a plurality of guide plates for guiding condensed water are fixed inside the circulation barrel.

[0010] Furthermore, a second filter screen is embedded on one side of the circulation barrel, and a plurality of fans are embedded at the other end of the circulation barrel. A first filter screen is arranged outside the fans.

[0011] Furthermore, a water chiller for cooling condensed water is fixed at the bottom of the circulation barrel.

[0012] Furthermore, the circulation assembly includes a circulation pump. The circulation pump is fixedly installed on the base. First circulation pipes and second circulation pipes are respectively and fixedly connected to both sides of the circulation pump. One ends of the first circulation pipe and the second circulation pipe both penetrate into the chemical reaction kettle.

[0013] Furthermore, the drive assembly includes a motor and a gear. The motor is fixedly installed on the stirring tank. Gears are fixed to the output end of the motor and the stirring shaft respectively, and the two gears are meshed with each other.

[0014] Compared with the prior art, the technical solution of the present application has the following beneficial effects:

[0015] 1. For the feeding auxiliary device for glass water production, firstly, through the mutual cooperation and connection of the spiral refrigeration pipe, rotary joint, water inlet pipe, Y-shaped joint, water supply pipe, water outlet pipe, and water pump, the condensed water can be circulated and transported into the stirring tank for heat absorption and cooling. The guide plates and fans are used in cooperation with each other, and can dissipate the heat of the condensed water after heat absorption. The structure is reasonable, and the condensed water for cooling can be dissipated and cooled, so that the condensed water can be recycled, and has a better cooling effect and the effects of energy conservation and environmental protection. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a three-dimensional structural diagram of the present utility model;

[0017] Figure 2 is a structural diagram of the present utility model.

[0018] In the figure: 1 base, 2 stirring tank, 3 stirring shaft, 4 stirring rod, 5 liquid extraction pipe, 6 cooling mechanism, 601 circulation barrel, 602 fixing plate, 603 fan, 604 deflector, 605 water pump, 606 chiller, 607 spiral refrigeration pipe, 608 rotary joint, 609 water inlet pipe, 610 Y-shaped joint, 611 water supply pipe, 612 first filter screen, 613 water outlet pipe, 614 second filter screen, 615 drain outlet, 7 circulation assembly, 701 circulation pump, 702 first circulation pipe, 703 second circulation pipe, 8 drive assembly. Specific embodiments

[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0020] Please refer to Figure 1-2 , a feeding auxiliary device for glass water production in this embodiment, includes a base 1, a stirring tank 2 is fixed on the base 1, a rotatable stirring shaft 3 is vertically arranged in the stirring tank 2, a plurality of stirring rods 4 are fixed on the outer side of the stirring shaft 3, both the stirring shaft 3 and the stirring shaft 3 are hollow, a liquid extraction pipe 5 is fixed on one side of the stirring tank, one end of the liquid extraction pipe 5 is communicated with an external storage tank, a cooling mechanism 6 is arranged on the stirring tank 2, a circulation assembly 7 is arranged on the base 1, and a drive assembly 8 is arranged on the stirring tank 2. The drive assembly 8 includes a motor and a gear. The motor is fixedly installed on the stirring tank 2, and gears are fixed on the output end of the motor and the stirring shaft 3 respectively. The two gears are meshed to drive the stirring shaft 3 to rotate to stir the materials in the stirring tank 2.

[0021] The cooling mechanism 6 includes a rotary joint 608, a spiral refrigeration pipe 607 and a circulation barrel 601. A spiral refrigeration pipe 607 is arranged inside the stirring tank 2, a circulation barrel 601 is fixed on the base 1, one end of the spiral refrigeration pipe 607 is communicated with the upper end of the circulation barrel 601, and rotary joints 608 are rotatably installed at the upper and lower ends of the stirring shaft 3. The water inlet pipe 609 and the water outlet pipe 613 are respectively fixed on the upper and lower rotary joints 608.

[0022] A water pump 605 is fixed on the base 1. One end of the water pump 605 is communicated with the circulation barrel 601. One end of the water pump 605 is communicated with a Y-shaped joint 610. The other two ends of the Y-shaped joint 610 are respectively communicated with the water inlet pipe 609 and the other end of the spiral refrigeration pipe 607.

[0023] The device sucks the material into the stirring tank 2 through the liquid suction pipe 5, and then by turning on the water pump 605, the water pump 605 can input the condensed water inside the circulation barrel 601 into the Y-shaped joint 610 through the water supply pipe 611. The Y-shaped joint 610 then conveys the condensed water into the spiral refrigeration pipe 607 and the inside of the stirring shaft 3. The condensed water inside the spiral refrigeration pipe 607 and the stirring shaft 3 can absorb heat from the inside of the stirring tank 2, thereby cooling it.

[0024] Among them, a fixing plate 602 is horizontally arranged inside the circulation barrel 601. A plurality of drainage holes are formed on the fixing plate 602. A plurality of flow guiding plates 604 for guiding the condensed water are fixed inside the circulation barrel 601, increasing the residence time of the condensed water on the flow guiding plates 604.

[0025] Meanwhile, a second filter screen 614 is embedded on one side of the circulation barrel 601, and a plurality of fans 603 are embedded at the other end of the circulation barrel 601. A first filter screen 612 is arranged outside the fans 603. The second filter screen 614 is fixedly installed on the circulation barrel 601, and the condensed water is cooled by the fans 603.

[0026] In addition, a chiller 606 for cooling the condensed water is fixed at the bottom of the circulation barrel 601, facilitating the re-cooling of the condensed water.

[0027] Please refer to Figure 1 , in this embodiment, the circulation component 7 includes a circulation pump 701. The circulation pump 701 is fixedly installed on the base 1. Both sides of the circulation pump 701 are respectively fixedly connected with a first circulation pipe 702 and a second circulation pipe 703. One ends of the first circulation pipe 702 and the second circulation pipe 703 both penetrate into the chemical reaction kettle.

[0028] By starting the circulation pump 701, the device can extract the solution at the bottom of the inner wall of the stirring tank 2 through the first circulation pipe 702, and then re-enter it into the inside of the stirring tank 2 through the second circulation pipe 703, which can drive the solution inside the stirring tank 2 to circulate, thereby improving the efficiency of solution synthesis and facilitating heat dissipation at the same time.

[0029] The working principle of the above embodiment is as follows:

[0030] The material is sucked into the stirring tank 2 through the liquid suction pipe 5, and then by turning on the water pump 605, the water pump 605 can input the condensed water inside the circulation barrel 601 into the Y-shaped joint 610 through the water supply pipe 611. The Y-shaped joint 610 then conveys the condensed water into the spiral refrigeration pipe 607 and the inside of the stirring shaft 3. The condensed water inside the spiral refrigeration pipe 607 and the stirring shaft 3 can absorb heat from the inside of the stirring tank 2, thereby cooling it.

[0031] After absorbing heat, the condensed water is then transported through the water outlet pipe 613 and the other end of the spiral refrigeration pipe 607 to the fixing plate 602 inside the circulation barrel 601, and then the condensed water is transported to the diversion plate 604 through the drain outlet 615. Then, the fan 603 blows air to dissipate heat from the condensed water, so that the heat dissipated inside the circulation barrel 601 can be discharged through the second filter screen 614. After heat dissipation, the condensed water can continue to be transported into the mixing tank 2 for heat absorption and cooling, and can be recycled.

[0032] After absorbing heat, the condensed water is then input into the spiral diversion heat dissipation rack inside the circulation barrel 601 through the first delivery pipe, so that the condensed water after absorbing heat flows downward along the spiral diversion heat dissipation rack. At the same time, the air supply pump can blow air into the circulation barrel 601 through the air duct and the air inlet pipe, so that the heat dissipated inside the circulation barrel 601 can be discharged through the dust cover. After heat dissipation, the condensed water can continue to be transported into the mixing tank 2 for heat absorption and cooling, and can be recycled.

[0033] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "comprising an..." does not exclude the existence of additional identical elements in the process, method, article or device comprising the element.

[0034] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A feeding auxiliary device for glass water production, comprising a base (1), characterized in that: A stirring tank (2) is fixed on the base (1), a rotatable stirring shaft (3) is vertically arranged in the stirring tank (2), a plurality of stirring rods (4) are fixed outside the stirring shaft (3), a liquid extraction pipe (5) is fixed on one side of the stirring box, a cooling mechanism (6) is provided on the stirring tank (2), a circulation component (7) is provided on the base (1), and a driving component (8) is provided on the stirring tank (2); The cooling mechanism (6) comprises a rotary joint (608), a spiral refrigeration tube (607) and a circulation barrel (601); the inner side of the stirring tank (2) is provided with a spiral refrigeration tube (607); the circulation barrel (601) is fixed on the base (1); one end of the spiral refrigeration tube (607) is connected to the upper end of the circulation barrel (601); the upper and lower ends of the stirring shaft (3) are rotatably mounted with rotary joints (608); the upper and lower sides of the rotary joints (608) are respectively fixed with a water inlet pipe (609) and a water outlet pipe (613); A water pump (605) is fixed on the base (1), one end of the water pump (605) is connected to the circulation barrel (601), one end of the water pump (605) is connected to a Y-shaped joint (610), and the other two ends of the Y-shaped joint (610) are respectively connected to the water inlet pipe (609) and the other end of the spiral refrigeration pipe (607).

2. The feeding auxiliary device for glass water production according to claim 1, characterized in that: A fixed plate (602) is transversely arranged in the circulation barrel (601), a plurality of drainage holes are provided on the fixed plate (602), and a plurality of guide plates (604) for guiding condensed water are fixed in the circulation barrel (601).

3. The feeding auxiliary device for glass water production according to claim 1, characterized in that: A second filter (614) is embedded in one side of the circulation barrel (601), and a plurality of fans (603) are embedded in the other end of the circulation barrel (601), and a first filter (612) is arranged outside the fan (603).

4. The feeding auxiliary device for glass water production according to claim 1, characterized in that: A water chiller (606) for cooling condensed water is fixed at the bottom of the circulation barrel (601).

5. The feeding auxiliary device for glass water production according to claim 1, characterized in that: The circulation assembly (7) comprises a circulation pump (701), which is fixedly mounted on the base (1), and a first circulation pipe (702) and a second circulation pipe (703) are respectively fixedly connected to both sides of the circulation pump (701), and one end of the first circulation pipe (702) and the second circulation pipe (703) both penetrate into the interior of the chemical reactor.

6. The feeding auxiliary device for glass water production according to claim 1, characterized in that: The driving assembly (8) comprises a motor and a gear. The motor is fixedly mounted on the stirring tank (2). The output end of the motor and the stirring shaft (3) are both fixed with gears, and the two gears are meshed with each other.

Citation Information

Patent Citations

  • Auxiliary feeding device for windshield washer fluid

    CN216756322U