Brickstone soaking system

By designing a brick soaking system, which utilizes alternating soaking tanks and water storage cylinders, the problems of wastewater waste and inconvenience in handling bricks during the soaking process are solved, achieving water recycling and efficient soaking of bricks.

CN223593739UActive Publication Date: 2025-11-25CHENGDE TIANYI ARCHITECTURAL DESIGN INST CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423105349.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-11-25
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

Existing methods for soaking bricks and stones have problems such as wasting wastewater and inconvenience in handling the soaked bricks and stones.

Method used

Design a brick soaking system, including a first soaking pool and a second soaking pool, which are used alternately. A water storage tank is set on the outside of the inner cylinder to store the overflowing water. The water is recycled by a pumping component, and the bricks are easily removed by a brick removal machine.

Benefits of technology

It enables water recycling, avoids waste, improves the efficiency of soaking bricks and stones, saves energy, and facilitates brick removal.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223593739U_ABST
    Figure CN223593739U_ABST
Patent Text Reader

Abstract

A masonry soaking system belongs to the technical field of building construction and comprises a first brick soaking pool, a second brick soaking pool and a water pumping assembly, and the first brick soaking pool and the second brick soaking pool are the same in structure and alternately used; the first brick soaking pool comprises an inner cylinder and a water storage cylinder, the inner cylinder is provided with a first water outlet pipe and a spraying piece, the first water outlet pipe is arranged at the lower end of the inner cylinder and penetrates through the side wall of the water storage cylinder to be connected with the second brick soaking pool, and the spraying piece is arranged above the inner cylinder; the water storage cylinder is arranged outside the inner cylinder to form a water storage cavity, a second water outlet pipe is arranged at the lower end of the water storage cylinder, and two ends of the second water outlet pipe are respectively connected with the first bubble brick pool and the second bubble brick pool; one end of the water pumping assembly is arranged between the first bubble brick pool and the second bubble brick pool, a water inlet and a water outlet of the water pumping assembly are formed in the first bubble brick pool and the second bubble brick pool respectively, the outer side of the inner barrel can be wrapped with a water storage barrel, the water storage barrel is used for storing water flowing out of the inner barrel, redundant water in the inner barrel is stored, and water is prevented from being wasted.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of building construction, and particularly relates to a brick and stone soaking system. BACKGROUND

[0002] In the process of building construction, wetting the bricks and stones with water is an important step, which has the following advantages: preventing the bricks and stones and mortar from drying too fast; improving the quality of masonry, so that the wet bricks and mortar are more easily adhered together and better fixed on the wall, and a smooth and straight wall surface is easily built; and preventing dust generated in the construction process from polluting the surrounding environment and avoiding harm to the construction environment and personnel.

[0003] There are the following ways to wet the bricks and stones in daily life: 1. irrigation method, which is to guide the water source into the construction site by using irrigation engineering in the whole construction process, so as to ensure the normal and good wetting state of the bricks and mortar; 2. spraying method, which is to spray water mist to wet the bricks and mortar by setting a spray head at the construction site; and 3. on-site manual method, which is to manually pour water on the bricks and mortar, especially when the face brick construction is often realized by manual spraying.

[0004] However, the above methods all have certain defects and exist the problem of waste water, and if the irrigation method is used, the problem of inconvenient taking of the soaked bricks and stones will also occur. SUMMARY

[0005] Therefore, it is necessary to provide a brick and stone soaking system to solve the problems of waste water and inconvenient taking of the soaked bricks and stones in the process of soaking the bricks and stones.

[0006] The solution of the application to solve the technical problems is as follows:

[0007] A brick and stone soaking system, comprising a first brick soaking pool, a second brick soaking pool and a water pumping assembly, the first brick soaking pool and the second brick soaking pool are the same in structure and are used alternately.

[0008] The first brick soaking pool comprises an inner cylinder and a water storage cylinder, the inner cylinder is used for soaking the bricks and stones, and the inner cylinder is provided with a first water outlet pipe and a spraying piece, the first water outlet pipe is arranged at the lower end of the inner cylinder, and the first water outlet pipe penetrates through the side wall of the water storage cylinder and is connected with the second brick soaking pool, and the spraying piece is arranged above the inner cylinder.

[0009] The water storage cylinder is arranged outside the inner cylinder to form a water storage cavity, and the lower end of the water storage cylinder is provided with a second water outlet pipe, and the two ends of the second water outlet pipe are connected with the first brick soaking pool and the second brick soaking pool respectively.

[0010] One end of the water pumping assembly is arranged between the first bubble brick pool and the second bubble brick pool, and the water inlet and the water outlet of the water pumping assembly are arranged in the first bubble brick pool and the second bubble brick pool respectively, for pumping water in the first bubble brick pool or the second bubble brick pool.

[0011] Preferably, a brick taking machine is further included, which is arranged between the first bubble brick pool and the second bubble brick pool and can move between the first bubble brick pool and the second bubble brick pool, for taking out bricks in the first bubble brick pool and the second bubble brick pool.

[0012] Preferably, the height of the water storage cylinder is higher than the height of the inner cylinder.

[0013] Preferably, the spraying member includes an annular water groove arranged above the inner wall of the inner cylinder, and a plurality of water outlets are arranged on the annular water groove.

[0014] Preferably, the water pumping assembly includes a pump and a water outlet pipe, the pump can be placed in the first bubble brick pool or the second bubble brick pool, the inlet of the water outlet pipe is connected with the pump, and the outlet of the water outlet pipe is connected with the spraying member.

[0015] Preferably, the water inlet of the pump is provided with a filter screen.

[0016] Preferably, the second bubble brick pool is provided with a sewage outlet on the side away from the first bubble brick pool, for discharging mud in the first bubble brick pool and the second bubble brick pool.

[0017] Preferably, the inner cylinder is provided with a backflow hole, and the backflow hole is arranged close to the upper end of the inner cylinder.

[0018] The technical scheme of the brick soaking system can achieve the following beneficial effects:

[0019] The water storage cylinder is arranged outside the inner cylinder, for storing water flowing out of the inner cylinder, so that the excess water in the inner cylinder is stored, and water waste is avoided.

[0020] The first bubble brick pool and the second bubble brick pool are used alternately, which can facilitate taking out soaked bricks and realize recycling of water, so that the bubble brick taking (brick) process does not interfere with each other, and the efficiency is improved.

[0021] The water recycling is realized by using the flowability of water, when the water levels of the first bubble brick pool and the second bubble brick pool are flush, the water pumping assembly starts to work, and energy is saved. BRIEF DESCRIPTION OF DRAWINGS

[0022] Fig. 1 The flow chart of the brick soaking system in the application.

[0023] Fig. 2 Another flow chart of the stone soaking system in the application.

[0024] Fig. 3 Structure diagram of the spraying member.

[0025] In the figure: first soaking brick pool 10, inner cylinder 101, backflow hole 1011, water storage cylinder 102, second water outlet pipe 1021, first water outlet pipe 103, spraying member 104, annular water tank 1041, water outlet hole 1042, second soaking brick pool 20, water pumping assembly 30, pump 301, water outlet pipe 302, brick taking machine 40, sewage outlet 50. DETAILED DESCRIPTION

[0026] In order to more clearly illustrate the technical solutions of the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiments. Obviously, the drawings described in the following are some embodiments of the application, and other drawings can also be obtained by those skilled in the art without any creative effort on the basis of these drawings.

[0027] Please refer to Figs. 1 to 3 A stone soaking system, comprising a first soaking brick pool 10, a second soaking brick pool 20 and a water pumping assembly 30, the first soaking brick pool 10 and the second soaking brick pool 20 are the same structure and are used alternately.

[0028] The first soaking brick pool 10 comprises an inner cylinder 101 and a water storage cylinder 102, the inner cylinder 101 is used for soaking bricks, and the inner cylinder 101 is provided with a first water outlet pipe 103 and a spraying member 104, the first water outlet pipe 103 is arranged at the lower end of the inner cylinder 101, and the first water outlet pipe 103 penetrates through the side wall of the water storage cylinder 102 and is connected to the second soaking brick pool 20, and the spraying member 104 is arranged above the inner cylinder 101.

[0029] The water storage cylinder 102 is arranged outside the inner cylinder 101 to form a water storage cavity, and the lower end of the water storage cylinder 102 is provided with a second water outlet pipe 1021, and the two ends of the second water outlet pipe 1021 are respectively connected to the first soaking brick pool 10 and the second soaking brick pool 20.

[0030] One end of the water pumping assembly 30 is arranged between the first soaking brick pool 10 and the second soaking brick pool 20, and the water inlet and the water outlet of the water pumping assembly 30 are arranged in the first soaking brick pool 10 and the second soaking brick pool 20 respectively, for pumping water in the first soaking brick pool 10 or the second soaking brick pool 20.

[0031] In order to avoid the overflow of water during the soaking process, which will cause water waste, and at the same time, it is not easy for the staff to take out the soaked bricks when there is water in the soaking pool.

[0032] In order to avoid this situation, the brick soaking system is provided with a first soaking pool 10 and a second soaking pool 20, both of which have the same structure and are used alternately (meaning of alternating use: when the first soaking pool 10 soaks bricks, the soaked bricks in the second soaking pool 20 are used, and vice versa, when the second soaking pool 20 soaks bricks, the soaked bricks in the first soaking pool 10 are used).

[0033] When setting, the water storage cylinder 102 is wrapped outside the inner cylinder 101, that is, a water storage cavity is formed between the inner cylinder 101 and the water storage cylinder 102, and the water overflowing from the inner cylinder 101 flows into the water storage cylinder 102, avoiding water waste.

[0034] Method of use: add water to the first soaking pool 10, then put the bricks to be soaked, at this time part of the water will overflow from the inner cylinder 101 and flow into the water storage cavity, and collect the overflowed water; at the same time, add bricks to the second soaking pool 20 (at this time, the second soaking pool 20 only puts bricks without adding water), which has the advantage of not interfering with each other when adding water and putting bricks, improving work efficiency.

[0035] After that, when the bricks in the first soaking pool 10 are soaked (the soaking time is about 2-4 hours), the water in the first soaking pool 10 is drained into the second soaking pool 20 (the work of putting bricks into the second soaking pool 20 has also been completed at this time), and the bricks in the second soaking pool 20 are soaked, at this time the staff can use the soaked bricks in the first soaking pool 10, which is convenient for using the soaked bricks (at this time, the first soaking pool 10 has no water, and there is no need to consider that the machine cannot take bricks or the staff cannot take bricks under the influence of water).

[0036] The method of draining the water in the first brick soaking pool 10 into the second brick soaking pool 20: open the first water outlet pipe 103, and in order to facilitate the drainage, the first water outlet pipe 103 is arranged below the inner cylinder 101, that is, close to the lower end surface of the inner cylinder 101, during the process of draining water, when the water level of the first brick soaking pool 10 and the second brick soaking pool 20 is kept flat, open the water pumping assembly 30 (save energy), and use the water pumping assembly 30 to pump the water in the first brick soaking pool 10 into the second brick soaking pool 20; at the same time, in order to also drain the water in the water storage cavity into the second brick soaking pool 20, also open the second water outlet pipe 1021, and also make the water in the water storage cavity drain into the second brick soaking pool 20, realize one brick and one brick soaking state, at this time in this state, the brick and the brick soaking do not interfere with each other, and water waste is avoided.

[0037] The first water outlet pipe 103 connects the inner cylinder 101 of the first brick soaking pool 10 and the second brick soaking pool 20, and the second water outlet pipe 1021 connects the water storage cavity of the first brick soaking pool 10 and the second brick soaking pool 20.

[0038] At the same time, when the second brick soaking pool 20 is finished, the water in the second brick soaking pool 20 is drained into the first brick soaking pool 10 by using the same way, realizing the recycling of water.

[0039] In specific use occasions, when the water in the first brick soaking pool 10 is drained into the second brick soaking pool 20, the water inlet end of the water pumping assembly 30 is placed in the first brick soaking pool 10; when the water in the second brick soaking pool 20 is drained into the first brick soaking pool 10, the water inlet end of the water pumping assembly 30 is placed in the second brick soaking pool 20.

[0040] The technical scheme of the brick soaking system adopted by the application can achieve the following beneficial effects:

[0041] The water storage cylinder 102 is arranged outside the inner cylinder 101 for storing the water flowing out of the inner cylinder 101, and the excess water in the inner cylinder 101 is stored, so that water waste is avoided.

[0042] The first brick soaking pool 10 and the second brick soaking pool 20 are used alternately, which can facilitate taking out the soaked bricks and stones, and realizes the recycling of water, forms the state that the brick soaking and the brick taking (brick using) do not interfere with each other, and improves the efficiency.

[0043] The water recycling is realized by using the flowability of water, when the water level of the first brick soaking pool 10 and the second brick soaking pool 20 is flat, the water pumping assembly 30 starts to work, and energy is saved.

[0044] In a specific use, a brick taking machine 40 is arranged between the first and second soaking brick pools 10, 20 and can move between the first and second soaking brick pools 10, 20 to take out the bricks in the first and second soaking brick pools 10, 20.

[0045] In order to improve the efficiency of taking out the bricks, the brick taking machine 40 is arranged between the first and second soaking brick pools 10, 20. The brick taking machine 40 can be a commercially available mechanical arm or other brick taking device. The above device is used to take out the soaked bricks in the first and second soaking brick pools 10, 20.

[0046] Further, the height of the water storage cylinder 102 is higher than the height of the inner cylinder 101.

[0047] The height of the water storage cylinder 102 is higher than the height of the inner cylinder 101, so that the water flowing out of the inner cylinder 101 can flow into the water storage cavity. When the water overflows from the inner cylinder 101, the water can not overflow from the upper edge of the water storage cylinder 102. The water is intercepted by the water storage cylinder 102 and flows into the water storage cavity.

[0048] At the same time, when the bricks are put into the first or second soaking brick pool 10, 20 filled with water, the bricks will contact the water. During the contact, the bricks will splash the water in the first or second soaking brick pool 10, 20. The splashed water hits the inner wall of the water storage cylinder 102 and flows along the inner wall of the water storage cylinder 102 into the water storage cavity under the obstruction of the inner wall of the water storage cylinder 102, so that the splashed water in the inner cylinder 101 is better collected.

[0049] In a specific embodiment, the spraying member 104 includes a ring-shaped water groove 1041 arranged above the inner wall of the inner cylinder 101, and a plurality of water outlets 1042 are formed in the ring-shaped water groove 1041.

[0050] Since water has the property of flowing, the water is poured from above the stacked bricks to make the water contact the bricks during the upward flow of the water. The ring-shaped water groove 1041 is arranged above the inner cylinder 101, and the water outlet of the water pumping assembly 30 is connected to the ring-shaped water groove 1041, so that the water flows out of the water outlets 1042, realizes the downward flow of the water, and divides the water to avoid splashing. At the same time, the water is prevented from continuously impacting a brick or a region to increase the degree of splashing.

[0051] In a preferred embodiment, the water pumping assembly 30 comprises a pump 301 and a water outlet pipe 302, the pump 301 can be placed in the first brick making pool 10 or the second brick making pool 20, the inlet of the water outlet pipe is connected with the pump 301, and the outlet of the water outlet pipe 302 is connected with the spraying device 104.

[0052] In order to facilitate the use, the water pumping assembly 30 is provided as the pump 301 and the water outlet pipe 302, which are convenient to take and use, and the pump 301 is simple to operate and low in cost. The pump 301 is placed in the first brick making pool 10 or the second brick making pool 20, and water is pumped into the second brick making pool 20 or the first brick making pool 10. When it is needed to drain the water in the first brick making pool 10 into the second brick making pool 20, the pump 301 is placed in the inner cylinder 101 of the first brick making pool 10, and the outlet of the water outlet pipe 302 is placed in the spraying device 104 arranged above the second brick making pool 20, so as to realize the recycling use of water. When it is needed to drain the water in the second brick making pool 20 into the first brick making pool 10, the pump 301 is placed in the inner cylinder 101 of the second brick making pool 20, and the outlet of the water outlet pipe 302 is placed in the spraying device 104 arranged above the first brick making pool 10.

[0053] In the use process, the inlet of the pump 301 is provided with a filter screen.

[0054] In the process of making bricks, there is a certain amount of impurities (such as small brick blocks falling from the bricks) in the inner cylinder 101 of the first brick making pool 10 and the second brick making pool 20. In order to avoid the damage of the impurities to the internal structure of the pump 301 (which can be a mud pump), a filter screen is arranged at the inlet of the pump 301 to avoid the impurities entering the pump 301. In the specific use process, the filter screen can be used to wrap the entire pump 301. In order to facilitate the taking out of the pump 301 from the first brick making pool 10 or the second brick making pool 20, a pull rope can be arranged on the pump 301, and the staff can take out the pump 301 from the first brick making pool 10 or the second brick making pool 20 by using the pull rope.

[0055] Further, the second brick making pool 20 is provided with a sewage outlet 50 on the side away from the first brick making pool 10, which is used to drain the mud in the first brick making pool 10 and the second brick making pool 20.

[0056] In order to avoid a large amount of mud and sand from depositing at the bottom of the inner cylinder 101, the sewage outlet 50 is arranged on one side of the second brick making pool 20. When the first brick making pool 10 and the second brick making pool 20 are cleaned, the sewage outlet 50 is opened, and the sewage for flushing mud and sand can be drained from the sewage outlet 50.

[0057] In a preferred embodiment, the inner cylinder 101 is provided with a backflow hole 1011, and the backflow hole 1011 is arranged close to the upper end of the inner cylinder 101.

[0058] In order to avoid the water in the water storage cavity from flowing out of the water storage cavity or the height of the water level in the water storage cavity being higher than the height of the water level in the inner cylinder 101, a backflow hole 1011 is formed on the inner cylinder 101, so that when the height of the water level in the water storage cavity is higher than the height of the water level in the inner cylinder 101, the water in the water storage cavity can flow back into the inner cylinder 101 through the backflow hole, so that the water can play a role of soaking the bricks and stones. It should be noted that the water in the water storage cavity does not participate in the work of soaking the bricks and stones.

[0059] The above disclosure is only the preferred embodiment of the present application, and of course cannot limit the scope of the rights of the present application. Those skilled in the art can understand that all or part of the processes of the above embodiments can be implemented, and equivalent changes made according to the claims of the present application still belong to the scope covered by the present application.

Claims

1. A brick and stone soaking system, characterized in that, It includes a first brick-filled tank, a second brick-filled tank, and a pumping assembly. The first brick-filled tank and the second brick-filled tank have the same structure and are used alternately. The first brick soaking tank includes an inner cylinder and a water storage cylinder. The inner cylinder is used to soak bricks and stones. The inner cylinder is equipped with a first water outlet pipe and a spray device. The first water outlet pipe is located at the lower end of the inner cylinder and passes through the side wall of the water storage cylinder to connect with the second brick soaking tank. The spray device is located at the upper part of the inner cylinder. The water storage cylinder is located outside the inner cylinder to form a water storage cavity. A second water outlet pipe is provided at the lower end of the water storage cylinder, and the two ends of the second water outlet pipe are respectively connected to the first soaking brick pool and the second soaking brick pool. One end of the pumping component is disposed between the first and second brick-soaking pools, and the inlet and outlet of the pumping component are respectively disposed in the first and second brick-soaking pools, for pumping water from the first or second brick-soaking pool.

2. The brick soaking system according to claim 1, characterized in that, It also includes a brick-removing machine, which is used to remove bricks from the first and second brick-removing pools.

3. The brick soaking system according to claim 1, characterized in that, The height of the water storage cylinder is higher than the height of the inner cylinder.

4. The brick and stone soaking system according to claim 1, characterized in that, The spray component includes an annular water trough, which is disposed above the inner wall of the inner cylinder, and the annular water trough is provided with a plurality of water outlet holes.

5. The brick and stone soaking system according to claim 4, characterized in that, The pumping assembly includes a pump and an outlet pipe. The pump can be placed in a first or second brick pool. The inlet of the outlet pipe is connected to the pump, and the outlet of the outlet pipe is connected to the spray unit.

6. The brick and stone soaking system according to claim 5, characterized in that, The pump is equipped with a filter screen at its inlet.

7. The brick and stone soaking system according to claim 1, characterized in that, The second brick-soaking tank has a sewage outlet on the side away from the first brick-soaking tank, which is used to discharge the mud from the first brick-soaking tank and the second brick-soaking tank.

8. The brick and stone soaking system according to claim 1, characterized in that, The inner cylinder is provided with a reflux hole, which is located near the upper end of the inner cylinder.