Purifying and recycling device based on mountain spring water preparation

Through the rotation and impact vibration of the conical fine filter screen cartridge combined with water flow rinsing, the problem of filter hole blockage caused by sludge accumulation is solved, and efficient water quality purification and resource reuse is achieved.

CN120189749APending Publication Date: 2025-06-24湖南水中水饮料有限公司
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Patent Information

Application Number
CN202510517215.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-23
Publication Date
2025-06-24

AI Technical Summary

Technical Problem

When the existing purification and reuse device filters the precipitated water, sludge is prone to accumulate on the filter element, resulting in clogging of the filter holes and affecting the filtration efficiency.

Method used

The transmission assembly drives the conical fine filter screen cartridge for intermittent strikes and rotation, and combines the inclined structure to achieve rapid discharge of sludge and vibration cleaning of filter holes, and flushing with the water flow of the circulating assembly to reduce sludge accumulation.

Benefits of technology

Effectively prevent filter holes from clogging, maintain efficient filtration efficiency, improve water quality purification quality, and reduce water resource consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of water-saving equipment, in particular to a mountain spring water preparation-based purifying and recycling device which comprises a water storage tank, connecting frames are fixedly connected to the two sides of the top of the water storage tank, a driving part is mounted on the connecting frame on one side, and a conical fine filtering screen drum is driven by the driving part to rotate; precipitated water is rapidly filtered through the rotating conical fine filtration screen drum, water liquid in the precipitated water penetrates through the conical fine filtration screen drum and naturally falls into the water storage tank, and sludge particles in the water are reserved in the conical fine filtration screen drum and rotate along with rotation of the conical fine filtration screen drum. The sludge particles move towards the slag discharge port under the action of rolling and gravity, and are finally discharged from the conical fine filtration screen drum, so that the possibility that the sludge is accumulated in the conical fine filtration screen drum when precipitated water is filtered is reduced, the possibility that the conical fine filtration screen drum is blocked due to sludge accumulation is reduced, and the service life of the conical fine filtration screen drum is prolonged. The filtering efficiency of the device is kept to the maximum extent, so that the device keeps efficient filtering.
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Description

Technical Field

[0001] The present invention relates to the technical field of water-saving equipment, and particularly to a purification and reuse device based on the preparation of mountain spring water. Background Art

[0002] With the progress of society, people's living standards are constantly improving, and people are increasingly realizing the importance of health. Water is the source of life, accounting for about 65% - 80% of the human body weight. It is the most important and basic substance indispensable for the structure of human cells and a crucial substance to ensure healthy life activities. The quality of drinking water has a great impact on people's health. In today's rapid industrial development, mountain spring water is a high-quality source of drinking water.

[0003] When processing and preparing mountain spring water, a series of processes such as pretreatment, aeration, fine filtration, disinfection, detection, and filling are required for the collected mountain spring water to produce potable mountain spring water. When pretreating mountain spring water, it is often first precipitated in a sedimentation tank. After the impurities in the water are completely precipitated, the upper-layer water in the sedimentation tank is pumped out for subsequent processing, while the sediment water containing a large amount of impurities at the lower layer of the sedimentation tank is discharged. To avoid waste of water resources, a purification and reuse device is often needed to separate and filter the sediment water. The filtered water can be used as cleaning water during the preparation of mountain spring water for flushing the sedimentation tank, impurity filtration tank, and other water tanks or vessel equipment used for the preliminary pretreatment of mountain spring water.

[0004] When the existing purification and reuse device treats sediment water, most of them filter and separate the sludge and other impurities in the sediment water through a filter screen filter element, thereby realizing the separation treatment of sediment water. However, when filtering sediment water, due to the high content of sludge in the sediment water and the sludge being relatively fine, as the filtering time prolongs, the sludge will gradually accumulate on the filter screen filter element to form a mud cake layer, which easily causes large-area blockage of the filter holes, resulting in a gradual decrease in the separation efficiency of the device and easily affecting the purification efficiency of sediment water. Summary of the Invention

[0005] Aiming at the deficiencies of the prior art, the present invention provides a purification and reuse device based on the preparation of mountain spring water. The driving component drives the striking member to intermittently strike the conical fine filter screen cylinder, causing it to vibrate, thereby reducing the possibility of blockage of the filter holes caused by the accumulation of sludge, maintaining the filtering efficiency of the conical fine filter screen cylinder. At the same time, the inclined structure of the conical fine filter screen cylinder is used to quickly discharge the filtered sludge, reducing the possibility of sludge accumulation, and shortening the retention time of sludge in the conical fine filter screen cylinder, maximizing the filtering efficiency of the device.

[0006] To achieve the above object, the present invention provides the following technical solution: A purification and reuse device based on mountain spring water preparation, including a water storage tank. Both sides of the top of the water storage tank are fixedly connected with connecting frames. A driving member is installed on one of the connecting frames. A conical fine filter screen cylinder is installed on the driving member. The conical fine filter screen cylinder is erected between the two connecting frames. Transmission components are fixedly connected to both sides inside the water storage tank. A striking member is installed between the two transmission components. A pretreatment component is installed on one side of the water storage tank. One of the transmission components is in transmission connection with the pretreatment component. A plurality of dial blocks are fixedly connected to both ends of the conical fine filter screen cylinder. A circulation component is installed on one side of the water storage tank. The water pumping end of the circulation component is communicated with the water storage tank, and the water drainage ends of the circulation component are respectively located at the top and the inner side of one end of the conical fine filter screen cylinder; Send the sediment water into the conical fine filter screen cylinder through the water inlet pipe. Drive the conical fine filter screen cylinder to rotate through the driving member. The rotating conical fine filter screen cylinder filters and separates the sediment water. The separated water falls into the water storage tank, while the separated sludge is discharged along the inclined structure direction of the conical fine filter screen cylinder. When the conical fine filter screen cylinder rotates, it synchronously drives the two transmission components, and then drives the striking member to intermittently strike the conical fine filter screen cylinder. When the transmission component is driven, it synchronously drives the pretreatment component. The sediment water is pretreated through the pretreatment component. The filtered water inside the water storage tank is pumped back into the conical fine filter screen cylinder through the circulation component for circular filtration. During this period, part of the water sprays downward from above the conical fine filter screen cylinder to wash the conical fine filter screen cylinder.

[0007] Preferably, the driving member includes a waterproof motor fixedly connected to one of the connecting frames. A rotating shaft is rotatably connected between the two connecting frames. A plurality of connecting rods are fixedly connected to the rotating shaft, and one end of the rotating shaft is fixedly connected to the output end of the waterproof motor. The end of the connecting rod away from the rotating shaft is fixedly connected to the conical fine filter screen cylinder.

[0008] Preferably, the transmission component includes a connection box fixedly connected to one side inside the water storage tank. A reset member is fixedly connected to one side inside the connection box. A driving block is slidably connected inside the connection box. The end of the reset member away from the connection box is fixedly connected to the driving block. A first dial piece is fixedly connected to the bottom of the driving block.

[0009] Preferably, the reset member includes a sleeve rod fixedly connected to one side inside the connection box. A second reset spring is fixedly connected inside the sleeve rod. The end of the second reset spring away from the sleeve rod is fixedly connected to an inner rod. The end of the inner rod away from the second reset spring is fixedly connected to the driving block.

[0010] Preferably, one side of the water storage tank is fixedly connected with a mounting plate. The pretreatment assembly includes slide bars symmetrically penetrating and connected to the mounting plate. One end of the slide bar far from the mounting plate is fixedly connected with a blocking member. One side of the slide bar close to the mounting plate is fixedly connected with a limiting piece. A first return spring is sleeved on the slide bar, and the first return spring is located between the mounting plate and the blocking member.

[0011] Preferably, the blocking member includes a bottom plate fixedly connected to one end of the slide bar. The top end of the bottom plate is fixedly connected with an arc-shaped screening plate. The arc-shaped screening plate is located at the inner end of the conical fine filter screen cylinder. A guide groove is provided on one side of the water storage tank, and the guide block is slidably installed inside the guide groove.

[0012] Preferably, the striking member includes a linkage rod fixedly connected between the two driving blocks. A plurality of upright columns are fixedly connected to the top of the linkage rod, and a striking ball is fixedly connected to the top end of the upright column.

[0013] Preferably, a second dial is fixedly connected to the side of one of the driving blocks. A chute is provided on one side of the water storage tank, and the second dial is slidably installed inside the chute.

[0014] Preferably, the circulation assembly includes a water pump fixedly connected to one side of the water storage tank. The water outlet end of the water pump is fixedly connected with a T-shaped water pipe. One end of the T-shaped water pipe is fixedly connected with a delivery pipe, and a flushing member is installed at the other end of the T-shaped water pipe. The end of the delivery pipe far from the T-shaped water pipe is fixedly connected with a spray pipe, and the spray pipe is installed on the connecting frame adjacent to the pretreatment assembly.

[0015] Preferably, the flushing member includes a supercharger fixedly connected to one end of the T-shaped water pipe. The output end of the supercharger is fixedly connected with a connecting water pipe. The end of the connecting water pipe far from the supercharger is fixedly connected with a straight water pipe. A vertical rod is fixedly connected to one side of the top of the water storage tank, and the straight water pipe is fixedly connected to the vertical rod. The end of the straight water pipe far from the connecting water pipe is fixedly connected with a water distribution pipe, and a plurality of nozzles are fixedly connected to the water distribution pipe.

[0016] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. In the present invention, the driving member drives the conical fine filter screen cylinder to rotate. The rotating conical fine filter screen cylinder quickly filters the sediment water, so that the water liquid in the sediment water passes through the conical fine filter screen cylinder and naturally falls into the water storage tank. The silt particles in the water remain inside the conical fine filter screen cylinder. As the conical fine filter screen cylinder rotates, the silt particles move towards the slag discharge port under the action of rolling and gravity, and finally are discharged from the conical fine filter screen cylinder, thereby reducing the possibility of silt accumulation in the conical fine filter screen cylinder during the filtration of sediment water, reducing the possibility of blockage of the conical fine filter screen cylinder due to silt accumulation, maximizing the filtration efficiency of the device, and enabling the device to maintain high-efficiency filtration; 2. When the conical fine filter screen cylinder rotates, it can drive multiple dial blocks to rotate, thereby intermittently driving two transmission components. As a result, the internal components of the transmission components reciprocally drive the striking components, which in turn drive the internal components of the striking components to reciprocally strike the conical fine filter screen cylinder, causing the conical fine filter screen cylinder to vibrate. Consequently, the silt particles adhering to the inner wall of the conical fine filter screen cylinder are shaken off, reducing the possibility of silt adhering to the inner wall of the conical fine filter screen cylinder. Thus, the possibility of silt clogging the filter holes of the conical fine filter screen cylinder is reduced, maintaining the filtration efficiency. At the same time, the vibrating conical fine filter screen cylinder can drive the internal silt to vibrate, thereby accelerating the silt discharge speed of the conical fine filter screen cylinder, and further avoiding the possibility of a decrease in filtration efficiency when the device filters sediment water for a long time. 3. Before the sediment water enters the conical fine filter screen cylinder, it can first pass through the pretreatment component. Through the pretreatment component, the sediment water can be pretreated. Large debris (such as gravel, branches, leaves, etc.) in the sediment water can be blocked to prevent it from entering the inside of the conical fine filter screen cylinder, avoiding large-area blockage of the internal filter holes of the conical fine filter screen cylinder and abrasion of the inner wall, ensuring the water permeability of the filter holes. At the same time, when the transmission component drives the striking component, the pretreatment component can be driven synchronously, causing the pretreatment component to vibrate, and then quickly discharging the debris blocked by the pretreatment component into the external collection bucket.

[0017] 4. After the water liquid of the sediment water is filtered and falls into the water storage tank, through the operation of the circulation component, the internal components of the circulation component extract the water liquid inside the water storage tank, and pump a part of the water back into the conical fine filter screen cylinder. Then, through the rotating conical fine filter screen cylinder, the water liquid is circularly filtered, further reducing the silt particle content in the water liquid and improving the filtration quality of the water liquid. Another part of the water can be sprayed downward from the upper part of the conical fine filter screen cylinder to wash the filter holes of the conical fine filter screen cylinder, further removing the silt particles adhering to the conical fine filter screen cylinder, enabling the conical fine filter screen cylinder to maintain the filtration efficiency. At the same time, when the water liquid washes the conical fine filter screen cylinder, it can naturally rush into the conical fine filter screen cylinder, thereby flushing the filtered silt, increasing the water saturation of the silt, and cooperating with the inclined structure, rotation and vibration of the conical fine filter screen cylinder to accelerate the silt discharge efficiency, greatly reducing the retention time of silt inside the conical fine filter screen cylinder, and further reducing the possibility of silt accumulation inside the conical fine filter screen cylinder, maximizing the filtration efficiency of the device for sediment water. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the overall device of the present invention.

[0019] Figure 2 It is a schematic structural diagram of the second perspective of the device of the present invention.

[0020] Figure 3This is a schematic diagram of the partial structure of the device of the present invention.

[0021] Figure 4 This is a partial cross-sectional view of the device of the present invention.

[0022] Figure 5 This is a schematic diagram of the structure of the conical fine filter sieve tube in the device of the present invention.

[0023] Figure 6 This is a schematic diagram of the connection structure between the transmission component and the striking member in the device of the present invention.

[0024] Figure 7 This is a schematic diagram of the structure of the reset member in the device of the present invention.

[0025] Figure 8 This is a schematic diagram of the structure of the transmission component in the device of the present invention.

[0026] Figure 9 This is a schematic diagram of the structure of the pretreatment component in the device of the present invention.

[0027] Figure 10 This is a schematic diagram of the structure of the circulation component in the device of the present invention.

[0028] In the figure: 1. Water storage tank; 2. Driving member; 3. Conical fine filter sieve tube; 4. Circulation component; 5. Striking member; 6. Pretreatment component; 7. Transmission component; 8. Water inlet pipe; 11. Connecting frame; 12. Chute; 13. Guide groove; 21. Waterproof motor; 22. Rotating shaft; 23. Connecting rod; 31. Pusher block; 41. Water pump; 42. T-shaped water pipe; 43. Delivery pipe; 44. Spray pipe; 45. Booster; 46. Connecting water pipe; 47. Straight water pipe; 48. Water distribution pipe; 49. Nozzle; 51. Link rod; 52. Column; 53. Striking ball; 61. Arc-shaped screening plate; 62. Bottom plate; 63. Slide bar; 64. First reset spring; 65. Limiting piece; 71. Connecting box; 72. Reset member; 73. Driving block; 74. First paddle; 75. Second paddle; 721. Sleeve rod; 722. Second reset spring; 723. Inner rod. Detailed implementation manners

[0029] 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. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention. Embodiment 1

[0030] Please refer to Figures 1 to 7, which is the first embodiment of the present invention, provides a technical solution: a purification and reuse device based on spring water preparation, including a water storage tank 1, both sides of the top of the water storage tank 1 are fixedly connected with connecting frames 11, a driving member 2 is installed on one side of the connecting frame 11, a conical fine filter sieve cylinder 3 is installed on the driving member 2, and the conical fine filter sieve cylinder 3 is erected between the two connecting frames 11. Here, the conical fine filter sieve cylinder 3 is in the shape of a conical cylinder, with a large opening on one side and a small opening on the other side. The small opening is the water inlet, and the large opening is the slag discharge port, and a slag guide plate is arranged below the slag discharge port to facilitate the guidance and discharge of sludge. The driving member 2 is used to The conical fine filter sieve drum 3 is driven to rotate the conical fine filter sieve drum 3. When the sediment water enters the conical fine filter sieve drum 3, due to the inclination and rotation of the conical fine filter sieve drum 3, the sediment water continuously turns over and rolls in the conical fine filter sieve drum 3. Under the action of gravity, the water passes through the conical fine filter sieve drum 3 and is discharged into the water storage tank 1, while the silt particles in the water remain in the conical fine filter sieve drum 3, and move to the slag discharge port under the action of rolling and gravity, and are finally discharged from the conical fine filter sieve drum 3. The conical fine filter sieve drum 3 is woven with stainless steel wire, has good corrosion resistance, high strength and wear resistance, and is not easy to Rust-proof, can be used for a long time, both sides of the interior of the water storage tank 1 are fixedly connected with transmission components 7, and a striking piece 5 is installed between the two transmission components 7. Here, the striking piece 5 is in an inclined state, and its inclination angle is consistent with the inclination angle of the side of the conical fine filter sieve cylinder 3, so as to facilitate the internal components of the striking piece 5 to contact and strike the surface of the conical fine filter sieve cylinder 3. A pretreatment component 6 is installed on one side of the water storage tank 1, and a transmission component 7 on one side is transmission-connected with the pretreatment component 6. Both ends of the conical fine filter sieve cylinder 3 are fixedly connected with a plurality of shifting blocks 31. Here, the internal structure of one of the transmission components 7 contacts with the pretreatment component 6. When the shifting block 3 When the two transmission components 7 are driven synchronously, the transmission component 7 on one side can synchronously drive the pretreatment component 6, and the pretreatment component 6 is located at the water inlet of the conical fine filter sieve cylinder 3. The upper part of the connecting frame 11 on one side is fixedly connected with a water inlet pipe 8, and the water inlet pipe 8 is located at the water inlet of the conical fine filter sieve cylinder 3. By connecting the external sewage pipe with the conical fine filter sieve cylinder 3, the water inlet pipe 8 can be used to discharge the sedimentation water into the conical fine filter sieve cylinder 3. A circulation component 4 is installed on one side of the water storage tank 1, and the pumping end of the circulation component 4 is connected to the water storage tank 1, and the drainage end of the circulation component 4 is respectively located at the top and the inner side of one end of the conical fine filter sieve cylinder 3; The precipitated water is fed into the conical fine filtration sieve cylinder 3 through the water inlet pipe 8. The conical fine filtration sieve cylinder 3 is driven to rotate by the driving member 2. The rotating conical fine filtration sieve cylinder 3 filters and separates the precipitated water. The separated water falls into the water storage tank 1, while the separated sludge is discharged along the inclined structure direction of the conical fine filtration sieve cylinder 3. When the conical fine filtration sieve cylinder 3 rotates, it synchronously drives the two transmission components 7, and then drives the striking member 5 to intermittently strike the conical fine filtration sieve cylinder 3. When the transmission component 7 is driven, it synchronously drives the pretreatment component 6. The precipitated water is pretreated by the pretreatment component 6. The filtered water inside the water storage tank 1 is pumped back into the conical fine filtration sieve cylinder 3 through the circulation component 4 for cyclic filtration. During this period, part of the water is sprayed downward from above the conical fine filtration sieve cylinder 3 to wash the conical fine filtration sieve cylinder 3.

[0031] The driving member 2 includes a waterproof motor 21 fixedly connected to one side connecting frame 11. A rotating shaft 22 is rotatably connected between the two connecting frames 11. A plurality of connecting rods 23 are fixedly connected to the rotating shaft 22, and one end of the rotating shaft 22 is fixedly connected to the output end of the waterproof motor 21. The end of the connecting rod 23 far from the rotating shaft 22 is fixedly connected to the conical fine filtration sieve cylinder 3.

[0032] The transmission component 7 includes a connection box 71 fixedly connected to one side inside the water storage tank 1. A reset member 72 is fixedly connected to one side inside the connection box 71, and a driving block 73 is slidably connected inside the connection box 71. Here, the outer surface of the driving block 73 and the inner side of the connection box 71 are both smoothed to reduce the friction between the two and improve the smoothness of the driving block 73 when moving. The end of the reset member 72 far from the connection box 71 is fixedly connected to the driving block 73. A first dial 74 is fixedly connected to the bottom of the driving block 73. The first dial 74 is located directly below one end of the conical fine filtration sieve cylinder 3 and is on the turning track of the dial block 31. When the conical fine filtration sieve cylinder 3 rotates, it can drive the dial block 31 to push against the first dial 74, thereby realizing the drive of the transmission component 7.

[0033] The reset member 72 includes a sleeve rod 721 fixedly connected to one side inside the connection box 71. A second reset spring 722 is fixedly connected inside the sleeve rod 721. The end of the second reset spring 722 far from the sleeve rod 721 is fixedly connected to an inner rod 723. The end of the inner rod 723 far from the second reset spring 722 is fixedly connected to the driving block 73.

[0034] The striking member 5 includes a linkage rod 51 fixedly connected between the two driving blocks 73. A plurality of columns 52 are fixedly connected to the top of the linkage rod 51. The linkage rod 51 is inclined and parallel to the outer wall of the conical fine filtration sieve cylinder 3. A striking ball 53 is fixedly connected to the top end of the column 52. Here, the striking ball 53 is made of rubber material, has strong elasticity, can improve the striking effect, and will not damage the conical fine filtration sieve cylinder 3 at the same time.

[0035] When recycling and treating the precipitated water generated by the mountain spring precipitation in the sedimentation tank, the external sewage pipe can be connected to the water inlet pipe 8, and the external precipitated water can be discharged into the conical fine filter sieve tube 3 through the water inlet pipe 8. Under the operation of the waterproof motor 21, the rotating shaft 22 can be driven to rotate. The rotating shaft 22 can drive multiple connecting rods 23 to rotate, thereby driving the conical fine filter sieve tube 3 to rotate. The water liquid in the precipitated water inside the conical fine filter sieve tube 3 can flow out along the filter holes and naturally fall inside the water storage tank 1, while the silt particles in the precipitated water remain inside the conical fine filter sieve tube 3, continuously tumbling with the rotation of the conical fine filter sieve tube 3 and moving along the inclined direction of the conical fine filter sieve tube 3, and then being discharged from the slag discharge port of the conical fine filter sieve tube 3, so as to realize the rapid filtration of the precipitated water by the conical fine filter sieve tube 3, and at the same time reduce the possibility of silt accumulation in the conical fine filter sieve tube 3 during the filtration of the precipitated water, reduce the possibility of blockage of the conical fine filter sieve tube 3 due to silt accumulation, maximize the filtration efficiency of the device, and keep the device with high filtration efficiency.

[0036] When the conical fine filter sieve tube 3 rotates, it can drive multiple dial blocks 31 to rotate, thereby driving the first dial piece 74 intermittently, so that the driving block 73 slides inside the connection box 71 under force. The moving driving block 73 can drive the linkage rod 51 to move towards the conical fine filter sieve tube 3, thereby driving multiple columns 52 to move. By contacting the outer wall of the conical fine filter sieve tube 3 with multiple hitting balls 53, intermittent hitting of the conical fine filter sieve tube 3 can be realized, so that the conical fine filter sieve tube 3 vibrates, and the silt particles adhering to the inner wall of the conical fine filter sieve tube 3 are shaken off, thereby reducing the possibility of blockage of the filter holes of the conical fine filter sieve tube 3 by silt and maintaining the filtration efficiency. At the same time, the vibrating conical fine filter sieve tube 3 can drive the silt inside to vibrate, thereby accelerating the silt discharge speed of the conical fine filter sieve tube 3. When the dial block 31 cancels the acting force on the first dial piece 74, under the elastic action of the return spring two 722, the inner rod 723 can be pushed upwards, thereby resetting the driving block 73.

[0037] The filtered water can be used in the preparation process of mountain spring water to wash the sedimentation tank, impurity filtration tank and other pools or utensil equipment used for the preliminary pretreatment of mountain spring water, and can be used as cleaning water, replacing the clear water used for daily washing, so as to reduce the water consumption during the preparation of mountain spring water. Embodiment 2

[0038] Please refer to Figure 8 and Figure 9, which is the second embodiment of the present invention. This embodiment is different from the first embodiment in that: a mounting plate is fixedly connected to one side of the water storage tank 1, and the pretreatment component 6 includes a sliding rod 63 symmetrically connected to the mounting plate, and the end of the sliding rod 63 away from the mounting plate is fixedly connected to a blocking member, and the side of the sliding rod 63 close to the mounting plate is fixedly connected to a limiting plate 65. A return spring 64 is sleeved on the sliding rod 63, and the return spring 64 is located between the mounting plate and the blocking member. Here, the limiting plate 65 is located on the back side of the mounting plate and the opposite side of the blocking member, which can be used to limit the movement of the sliding rod 63 to prevent the sliding rod 63 from falling off the mounting plate, and when the blocking member moves, the blocking member can be reset by utilizing the elastic action of the return spring 64.

[0039] The blocking member includes a bottom plate 62 fixedly connected to one end of the sliding rod 63, and an arc-shaped screening plate 61 is fixedly connected to the top of the bottom plate 62. The arc-shaped screening plate 61 is located at one end of the inner part of the conical fine filter cylinder 3. Here, the arc-shaped screening plate 61 is woven with stainless steel wire, is arc-shaped, has an inclined angle, and has strong wear resistance. After blocking large debris in the sedimentation water, the large debris can move along the inclined direction, thereby achieving separation, blocking and impurity removal of the large debris. A guide block is fixedly connected to the side of the bottom plate 62 close to the water tank 1. The guide block slides in the guide groove 13, and the movement of the circulating component 4 can be auxiliary guided to improve the smoothness of the circulating component 4 when moving. A guide groove 13 is opened on one side of the water tank 1, and the guide block is slidably installed inside the guide groove 13.

[0040] A paddle 2 75 is fixedly connected to the side of the driving block 73 on one side. Here, the driving block 73 near the pretreatment component 6 is provided with a paddle 2 75, while the driving block 73 away from the pretreatment component 6 is not provided. The paddle 2 75 can be used to drive the pretreatment component 6 in a resistance manner. A slide groove 12 is opened on one side of the water tank 1, and the paddle 2 75 is slidably installed inside the slide groove 12.

[0041] Before the sedimentation water enters the conical fine filter sieve cylinder 3, it can first pass through the arc-shaped screening plate 61. The sedimentation water can be pre-treated by the arc-shaped screening plate 61, and large pieces of debris in the sedimentation water can be blocked to prevent them from entering the conical fine filter sieve cylinder 3, thereby avoiding large-area blocking of the filter holes inside the conical fine filter sieve cylinder 3 and wear on the inner wall, thereby ensuring the water permeability of the filter holes.

[0042] When the paddle block 31 drives the paddle 1 74, the driving block 73 on one side can drive the paddle 2 75 to move, so that the paddle 2 75 moves inside the slide groove 12, so that the paddle 2 75 resists and drives the bottom plate 62, so that the bottom plate 62 drives the arc-shaped screening plate 61 to move. When the paddle 1 74 loses the force applied by the paddle block 31 and the driving block 73 is reset, the paddle 2 75 releases the resistance drive to the bottom plate 62. At this time, the bottom plate 62 can be quickly reset under the elastic action of the reset spring 1 64, thereby realizing the reciprocating shaking of the arc-shaped screening plate 61, so that the large pieces of debris filtered out on the arc-shaped screening plate 61 slide down along the inclined surface and fall into the external collection bucket.

[0043] The remaining structures are the same as those of Example 1. Example 3

[0044] See also Figure 3 and Figure 10 , which is the third embodiment of the present invention. This embodiment is different from the first and second embodiments in that: the circulation component 4 includes a water pump 41 fixedly connected to one side of the water storage tank 1, the water outlet end of the water pump 41 is fixedly connected to a T-shaped water pipe 42, one end of the T-shaped water pipe 42 is fixedly connected to a delivery pipe 43, and the other end of the T-shaped water pipe 42 is installed with a flushing component, and the end of the delivery pipe 43 away from the T-shaped water pipe 42 is fixedly connected to a water spray pipe 44, the water spray pipe 44 is located on the inner side of the water inlet of the conical fine filter sieve cylinder 3, and the water inside the water storage tank 1 is re-pumped into the conical fine filter sieve cylinder 3 through the water spray pipe 44 for circulation filtration, and the water spray pipe 44 is installed on the connecting frame 11 adjacent to the pretreatment component 6.

[0045] The flushing part includes a booster 45 fixedly connected to one end of a T-shaped water pipe 42, an output end of the booster 45 is fixedly connected to a connecting water pipe 46, an end of the connecting water pipe 46 away from the booster 45 is fixedly connected to a straight water pipe 47, a vertical pole is fixedly connected to one side of the top of the water storage tank 1, a straight water pipe 47 is fixedly connected to the vertical pole, an end of the straight water pipe 47 away from the connecting water pipe 46 is fixedly connected to a water distribution pipe 48, a plurality of nozzles 49 are fixedly connected to the water distribution pipe 48, wherein the water distribution pipe 48 is in an inclined state, which is consistent with the inclination angle of the side of the conical fine filter sieve cylinder 3, the two are in a parallel state, and the nozzle of the nozzle 49 is downward, and the spray end is toward the direction of the conical fine filter sieve cylinder 3.

[0046] Under the operation of the water pump 41, the water in the water storage tank 1 can be pumped into the T-shaped water pipe 42, and then enter the delivery pipe 43 and the connecting water pipe 46 respectively. The water entering the delivery pipe 43 can be re-sent to the water inlet of the conical fine filter sieve 3 through the water spraying pipe 44, so as to circulate and filter the filtered water, further reduce the silt particle content in the water, and improve the filtration and purification quality of the sediment water. The water entering the connecting water pipe 46 can be pressurized by the supercharger 45 first, and then enter the connecting water pipe 46, and enter the straight water pipe 47 and the water distribution pipe 48, and then a plurality of nozzles 49 spray the water. The water is sprayed onto the conical fine filter sieve cylinder 3, and then the filter holes on the conical fine filter sieve cylinder 3 are flushed, and the sludge particles attached to the inner wall of the conical fine filter sieve cylinder 3 are further removed. At the same time, the water will fall into the conical fine filter sieve cylinder 3 after cleaning, and then come into contact with the filtered sludge and disperse it, thereby increasing the saturation of the sludge. The inclined structure, rotation, flipping and vibration of the conical fine filter sieve cylinder 3 accelerate the discharge efficiency of the sludge, greatly reduce the residence time of the sludge in the conical fine filter sieve cylinder 3, further reduce the possibility of sludge accumulation in the conical fine filter sieve cylinder 3, and maximize the filtration efficiency of the device for sedimentation water.

[0047] The remaining structures are the same as those of embodiments 1 and 2.

[0048] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A purification and reuse device based on mountain spring water, comprising a water storage tank (1), characterized in that: The top of the water storage tank (1) is fixedly connected to connecting frames (11) on both sides, a driving member (2) is installed on one side of the connecting frame (11), a conical fine filter sieve cylinder (3) is installed on the driving member (2), and the conical fine filter sieve cylinder (3) is mounted between the two connecting frames (11). The inside of the water storage tank (1) is fixedly connected to transmission components (7) on both sides, a striking component (5) is installed between the two transmission components (7), and a pre-treatment device (5) is installed on one side of the water storage tank (1). The transmission component (7) on one side is in transmission connection with the pretreatment component (6), a plurality of shifting blocks (31) are fixedly connected to both ends of the conical fine filter sieve cylinder (3), a water inlet pipe (8) is fixedly connected to the upper portion of the connecting frame (11) on one side, a circulation component (4) is installed on one side of the water storage tank (1), a water pumping end of the circulation component (4) is in communication with the water storage tank (1), and a water discharge end of the circulation component (4) is respectively located at the top and the inner side of one end of the conical fine filter sieve cylinder (3); The sedimentation water is fed into the conical fine filter cylinder (3) through the water inlet pipe (8), and the conical fine filter cylinder (3) is driven to rotate by the driving member (2), thereby filtering and separating the sedimentation water. The separated water falls into the water storage tank (1), while the separated sludge is discharged along the inclined structural direction of the conical fine filter cylinder (3). When the conical fine filter cylinder (3) rotates, it synchronously drives the transmission component (7) to drive the striking member (5) to strike the conical fine filter cylinder (3). When the transmission component (7) is driven, the pretreatment component (6) is synchronously driven to pretreat the sedimentation water. The filtered water in the water storage tank (1) is re-pumped into the conical fine filter cylinder (3) through the circulation component (4). During this period, part of the water is sprayed downward from the top of the conical fine filter cylinder (3) for flushing.

2. A purification and reuse device based on mountain spring water preparation according to claim 1, characterized in that: The driving member (2) comprises a waterproof motor (21) fixedly connected to a connecting frame (11) on one side; a rotating shaft (22) is rotatably connected between the two connecting frames (11); a plurality of connecting rods (23) are fixedly connected to the rotating shaft (22); one end of the rotating shaft (22) is fixedly connected to an output end of the waterproof motor (21); and one end of the connecting rod (23) away from the rotating shaft (22) is fixedly connected to a conical fine filter cylinder (3).

3. The purification and reuse device based on mountain spring water preparation according to claim 1, characterized in that: The transmission assembly (7) comprises a connection box (71) fixedly connected to one side of the interior of the water storage tank (1); a reset member (72) is fixedly connected to one side of the interior of the connection box (71); a driving block (73) is slidably connected to the interior of the connection box (71); an end of the reset member (72) away from the connection box (71) is fixedly connected to the driving block (73); and a paddle 1 (74) is fixedly connected to the bottom of the driving block (73).

4. A purification and reuse device based on mountain spring water preparation according to claim 3, characterized in that: The reset member (72) comprises a sleeve rod (721) fixedly connected to one side of the interior of the connection box (71); a second reset spring (722) is fixedly connected to the interior of the sleeve rod (721); an end of the second reset spring (722) away from the sleeve rod (721) is fixedly connected to an inner rod (723); and an end of the inner rod (723) away from the second reset spring (722) is fixedly connected to the drive block (73).

5. The purification and reuse device based on mountain spring water preparation according to claim 1, characterized in that: One side of the water storage tank (1) is fixedly connected to a mounting plate, the pretreatment assembly (6) comprises a slide rod (63) symmetrically penetrating and connected to the mounting plate, one end of the slide rod (63) away from the mounting plate is fixedly connected to a blocking member, and the side of the slide rod (63) close to the mounting plate is fixedly connected to a limiting plate (65), and a return spring (64) is sleeved on the slide rod (63), and the return spring (64) is located between the mounting plate and the blocking member.

6. A purification and reuse device based on mountain spring water preparation according to claim 5, characterized in that: The blocking member comprises a bottom plate (62) fixedly connected to one end of a sliding rod (63); a top end of the bottom plate (62) is fixedly connected to an arc-shaped screening plate (61); the arc-shaped screening plate (61) is located at one end inside the conical fine filter cylinder (3); a guide block is fixedly connected to a side of the bottom plate (62) close to the water storage tank (1); a guide groove (13) is provided on one side of the water storage tank (1); and the guide block is slidably mounted inside the guide groove (13).

7. The purification and reuse device based on mountain spring water preparation according to claim 3 is characterized in that: The striking member (5) comprises a linkage rod (51) fixedly connected between two driving blocks (73), a plurality of upright posts (52) being fixedly connected to the top of the linkage rod (51), and a striking ball (53) being fixedly connected to the top of the upright posts (52).

8. The purification and reuse device based on mountain spring water preparation according to claim 3 is characterized in that: A second paddle (75) is fixedly connected to the side of the driving block (73) on one side, a slide groove (12) is provided on one side of the water storage tank (1), and the second paddle (75) is slidably mounted inside the slide groove (12).

9. The purification and reuse device based on mountain spring water preparation according to claim 1, characterized in that: The circulation component (4) comprises a water pump (41) fixedly connected to one side of the water storage tank (1); a water outlet end of the water pump (41) is fixedly connected to a T-shaped water pipe (42); one end of the T-shaped water pipe (42) is fixedly connected to a delivery pipe (43); and the other end of the T-shaped water pipe (42) is installed with a flushing component; one end of the delivery pipe (43) away from the T-shaped water pipe (42) is fixedly connected to a water spray pipe (44); and the water spray pipe (44) is installed on a connection frame (11) adjacent to the pretreatment component (6).

10. A purification and reuse device based on mountain spring water preparation according to claim 9, characterized in that: The flushing component comprises a pressure booster (45) fixedly connected to one end of a T-shaped water pipe (42); an output end of the pressure booster (45) is fixedly connected to a connecting water pipe (46); an end of the connecting water pipe (46) away from the pressure booster (45) is fixedly connected to a straight water pipe (47); a top side of the water storage tank (1) is fixedly connected to a vertical pole; the straight water pipe (47) is fixedly connected to the vertical pole; an end of the straight water pipe (47) away from the connecting water pipe (46) is fixedly connected to a water distribution pipe (48); and a plurality of nozzles (49) are fixedly connected to the water distribution pipe (48).

Citation Information

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