Full-automatic maintenance-free water purification constant-pressure equipment
By designing fully automatic maintenance-free water purification constant pressure equipment, and using filtering and boosting mechanisms and water purification mechanisms, the existing constant pressure water supply equipment has solved the problems of high maintenance costs and low usage efficiency in different scenarios and water quality changes, and achieved high efficiency, automation and long-term continuous use of the equipment.
Patent Information
- Application Number
- CN202510429944.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-08
- Publication Date
- 2025-05-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
When faced with different usage scenarios and changes in water quality, existing constant pressure water supply equipment is prone to blockage and damage to functional components, which has high maintenance costs and low usage efficiency.
A fully automatic maintenance-free water purification constant pressure equipment is designed, using a filtering and boosting mechanism and a water purification mechanism. Through the design of multiple filter elements and rotating frames, automatic filtration and purification are realized to avoid direct impact on the equipment.
The equipment can operate efficiently in different usage scenarios, reduce the damage to the equipment by water quality, reduce maintenance costs, improve usage efficiency, and be used continuously for a long time.
Smart Images

Figure CN119933233A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of water purification constant pressure equipment, and specifically relates to a full-automatic maintenance-free water purification constant pressure equipment. Background Art
[0002] The constant pressure water supply equipment has an additional small auxiliary pump function inside. When the water consumption does not exceed the water output of the small pump, the small auxiliary pump will supply water to maintain the pressure. When the water consumption exceeds the water output of the small pump, the pressure sensor senses the drop in fluid pressure in the pipe. After analysis and calculation, the microcomputer controller outputs a signal to the frequency converter based on the calculation result. The frequency converter controls the operation of the variable frequency main pump and adjusts the number of water pumps according to the water consumption, thereby greatly saving electricity and water.
[0003] However, in the prior art, the existing constant pressure water supply equipment can only transport clean water due to structural limitations. Since there are many impurities remaining in the wastewater, specific boosting equipment is required for transportation, resulting in a relatively single actual use scenario of the existing constant pressure water supply equipment. At the same time, since the actual water quality of water resources is easily affected by the transportation conditions and the transportation environment, and the existing constant pressure water supply equipment is easily affected by the water quality, the functional components are prone to blockage and damage, and it is necessary to stop the operation of the existing constant pressure water supply equipment to replace the damaged components, which increases the actual maintenance cost and affects the actual use efficiency of the existing constant pressure water supply equipment. Summary of the invention
[0004] The purpose of the present invention is to provide a fully automatic maintenance-free water purification constant pressure equipment that can be applied to different usage scenarios, improve the breadth of practical use, and avoid water quality causing significant damage to the equipment.
[0005] The technical solution adopted by the present invention is as follows: a fully automatic maintenance-free water purification constant pressure equipment, comprising: a filtering and boosting mechanism, the filtering and boosting mechanism comprising a bottom plate, a base, a rotating frame, two connecting frames, a rotating pipe, a valve body, a delivery pipe, a driving component and a filtering component, the base is fixedly connected to the top of the bottom plate, the rotating frame is rotatably connected to the top of the base, the two connecting frames are both connected and arranged at the bottom of the rotating frame, the rotating pipe is rotatably connected between the opposite outer surfaces of the two connecting frames, the delivery pipe is connected and arranged at one end of the rotating pipe, and the valve body is arranged on the delivery pipe; A water purification mechanism, the water purification mechanism comprising a mounting tank, a first baffle, a water injection pipe, a second baffle, a sealing frame, a rotating frame, a push frame, a drainage pipe and a flow guide component, the mounting tank is fixedly connected to the top of the bottom plate, the first baffle and the second baffle are both fixedly connected to the inside of the mounting tank, the water injection pipe is communicatively arranged on the outer surface of one side of the first baffle, one end of the water injection pipe is fixedly connected to one end of the delivery pipe, the sealing frame is slidably inserted on the outer surface of one side of the mounting tank, the rotating frame is rotatably connected to the inside of the sealing frame, the push frame is fixedly connected to the outer surface of one side of the rotating frame, the drainage pipe is communicatively arranged on the bottom of the mounting tank, and the flow guide component is arranged on the sealing frame; and The constant pressure device body is arranged on the bottom plate.
[0006] Wherein, a material collecting frame is fixedly connected to the top of the bottom plate, and the interior of the rotating tube is communicated with the interiors of the two connecting frames.
[0007] Wherein, the filter component includes two extension frames, two linkage shafts, two linkage belts, two mounting belts and a plurality of filter strips, the two extension frames are respectively connected and arranged at the top and bottom of the rotating frame, the two linkage shafts are respectively rotatably arranged inside the two extension frames, the outer surface of each linkage shaft is sleeved with two support wheels, the outer surface of one side of each support wheel is fixedly connected with a linkage wheel, each linkage belt is sleeved between the outer surfaces of the corresponding two linkage wheels, each mounting belt is sleeved between the outer surfaces of the corresponding two support wheels, and a plurality of filter strips are equidistantly and fixedly connected between the relative outer surfaces of the two mounting belts.
[0008] The driving component comprises a fixed toothed disc, a support shaft, a ratchet, a support spring, a clamping ring, a first pulley, a second pulley, a limiting tube, a rotating gear and a lifting assembly, wherein the fixed toothed disc is fixedly connected to an outer surface of one side of the base, the support shaft is fixedly connected to an outer surface of one side of the rotating frame, the ratchet is rotatably connected to an outer surface of the support shaft, the support spring is slidably sleeved on an outer surface of the support shaft, the clamping ring is rotatably connected to an outer surface of the support shaft, the first pulley is slidably sleeved on an outer surface of the clamping ring, the second pulley is sleeved on an outer surface of a corresponding linkage shaft, a belt is sleeved between the outer surfaces of the second pulley and the first pulley, the limiting tube is rotatably connected to an outer surface of one side of the rotating frame, a limiting spring is arranged inside the limiting tube, a resist rod is slidably inserted at one end of the limiting tube, a resist block is slidably connected to one end of the resist rod, the resist block is rotatably connected to an outer surface of one side of the rotating frame, the other end of the resist rod is fixedly connected to a resist sheet, the rotating gear is rotatably connected to the outer surface of the support shaft, the rotating gear is meshed with the fixed toothed disc, and the lifting assembly is arranged on a bottom plate.
[0009] Wherein, a connecting bolt is fixedly connected to the outer surface of one side of the ratchet wheel, and one end of the connecting bolt is rotatably connected to the first pulley.
[0010] Wherein, a first clamping strip is fixedly connected to an outer surface of one side of the clamping ring, and a second clamping strip is fixedly connected to an outer surface of one side of the rotating gear.
[0011] Among them, one end of the support spring is in contact with the outer surface of one side of the ratchet, and the other end of the support spring is in contact with the outer surface of one side of the clamping ring.
[0012] Among them, the lifting assembly includes a lifting frame, a reciprocating screw, a driving motor, a driving worm wheel and a driving worm. The lifting frame is fixedly connected to the top of the base plate, the reciprocating screw is rotatably connected to the inner bottom surface of the lifting frame, the outer surface of the reciprocating screw is threadedly connected to a movable frame, the driving worm wheel is sleeved on the outer surface of the reciprocating screw, the driving worm is rotatably connected to the inner bottom surface of the lifting frame, the driving worm and the driving worm wheel are meshed, the driving motor is fixedly connected to the inner bottom surface of the lifting frame, and the output end of the driving motor is fixedly connected to one end of the driving worm.
[0013] Wherein, the outer surfaces of both sides of the rotating frame are fixedly connected with sliders, and each of the sliders is slidably inserted into the interior of the moving frame.
[0014] In which, the guide component includes a row frame, a limit frame, a sealing plate, a baffle frame, a moving plate, a pull rod, an adjusting gear, a first rack and a second rack, the row frame is connected and arranged on the outer surface of one side of the sealing frame, the limit frame is fixedly connected to the inside of the row frame, the sealing plate is slidably inserted in the inside of the row frame, the outer surface of one side of the sealing plate is fixedly connected to the limit bolt, one end of the limit bolt slides through the limit frame, the sliding sleeve on the outer surface of the limit bolt is provided with a limit spring, the baffle frame is connected and arranged on the outer surface of one side of the second partition plate, the pull rod slides through the inner surface wall of one side of the baffle frame, the moving plate is fixedly connected to one end of the pull rod, the sliding sleeve on the outer surface of the pull rod is provided with a positioning spring, the adjusting gear is rotatably connected to the inner surface wall of one side of the baffle frame, the first rack is slidably inserted in the inner surface wall of one side of the baffle frame, the second rack is fixedly connected to the outer surface of one side of the moving plate, the second rack is meshed with the adjusting gear, and the first rack is meshed with the adjusting gear.
[0015] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are: (1) In the present invention, when the water resource contains more impurities during use, the water resource is injected into the rotating frame so that the water resource can fill half of the space inside the rotating frame. Under the obstruction of the filter strip, larger foreign matter can be temporarily retained on the side away from the conveying pipe. At this time, the driving motor is controlled to start, so that the driving motor cooperates with the driving worm and the driving worm wheel to drive the reciprocating screw to rotate. The rotating reciprocating screw can drive the moving frame to reciprocate along the direction of the lifting frame. During the movement of the moving frame, the slider can drive one end of the rotating frame to rotate, so that the installation belt inside the extension frame can gradually be in a horizontal state. During this process, the support shaft that rotates with the rotating frame can drive the rotating gear to move along the outer edge of the fixed toothed disk, and then under the position limit of the fixed toothed disk, the rotating gear can rotate by itself. The rotating rotating gear cooperates with the second clamping strip and the first clamping strip to synchronously drive the clamping ring to rotate, so that the rotating clamping ring can drive the first pulley to rotate. The rotating first pulley cooperates with the belt to drive the second pulley to rotate, so that the second pulley cooperates with the corresponding linkage shaft to drive the corresponding support wheel and linkage wheel to rotate, so that the support wheel and linkage The wheel cooperates with the mounting belt and the linkage belt to drive the filter strip to rotate, and then the filtered larger foreign matter can be gradually transported to the top of the rotating frame, and then the discharged foreign matter can fall into the aggregate frame for discharge. When the rotating frame rotates until the mounting belt is in a horizontal state, the movable frame will drive the rotating frame to restore its original position under the action of the reciprocating screw rod. At this time, the rotating gear will follow the support shaft to rotate in the opposite direction under the position limit of the fixed toothed disc, and then under the action of the second clamping strip, the first clamping strip will squeeze the clamping ring to compress the support spring, and then the rotating rotating gear cannot drive the clamping ring to rotate. At the same time, under the limit of the resistance block, the ratchet prevents the first pulley from rotating in the opposite direction through the linkage bolt, and then during the reciprocating rotation of the rotating frame, the foreign matter filtered out of the rotating frame can be discharged. At the same time, when the mounting belt is in a horizontal state, the water resources at the bottom of the rotating frame near the connecting frame will be injected into the rotating pipe under greater pressure, and then the water resources with greater pressure can be injected into the water injection pipe through the conveying pipe, and then sufficient purification and filtration treatment is carried out, so that the equipment can be applied to different usage scenarios, improve the actual use of the equipment, and enable the equipment to efficiently realize its functions.
[0016] (2) In the present invention, when in use, a plurality of existing filter cartridges are inserted into the rotating frame, and a delivery pipe and a water injection pipe are separated, and one end of the water injection pipe is connected to a water resource delivery pipeline with poor water quality, so that water resources can be delivered to the delivery space formed between the first baffle, the rotating frame and the installation tank through the water injection pipe. When the delivery space is filled with water resources, the internal pressure of the delivery space increases with the continuous injection of water resources, so that water resources can be injected into the second baffle through the connection between the rotating frame and the internal part of the baffle frame. At this time, the water resources flowing through the existing filter cartridge can be fully filtered and purified, so that the filtered water The resources can be transported to the interior of the constant pressure equipment body through the drainage pipe, and then the constant pressure equipment body can transport the filtered water resources, effectively preventing the water quality from affecting the constant pressure equipment body and avoiding damage to the constant pressure equipment body. At the same time, when the water resources are injected into the baffle frame through the existing filter element, the moving piece can drive the pull rod to squeeze the positioning spring under the squeezing of the water resources, and move out of the baffle frame at the same time, so that the water resources can be transported to the side of the second partition through the gap between the baffle frame and the moving piece. At this time, in the process of the moving piece moving out of the baffle frame, the second rack will move with the moving piece, and at the same time can cooperate with the adjusting gear to enable the first rack to be inserted into the corresponding existing filter element. The internal space of the rotating frame at the position is limited, thereby limiting the rotation angle of the rotating frame to ensure that the water resources can be continuously transported. When the filtering effect of the existing filter element disappears, the water resources in the delivery space will not be able to be transported to the inside of the baffle frame. Then, under the support of the positioning spring, the first rack is restored to its original position, so that the rotating frame can rotate again. As the internal pressure of the discharge frame gradually increases, the water resources in the delivery space can squeeze the sealing piece, so that the sealing piece can cooperate with the limit bolt to compress the limit spring and move to the outside of the discharge frame, so that the water resources in the delivery space can be discharged through the discharge frame, so that the water resources in the delivery space can be arranged in a uniform manner during the flow process. The push-pull frame drives the rotating frame to rotate, so that the existing filter elements at different positions can be rotated to one side of the baffle frame, so that the water resources can be transported to the second partition side through the baffle frame again. At this time, the internal pressure of the row frame is reduced, and then, under the support of the limit spring, the limit bolt can drive the sealing plate to seal the row frame again, so that multiple existing filter elements can be replaced and used by themselves, which will ensure that the equipment can be used for a long time. At the same time, the rotating frame can be quickly taken out of the installation tank through the sealing frame, which is convenient for replacing the existing filter elements, effectively avoiding a long shutdown of the constant pressure equipment body, and improving the actual use effect of the equipment.
[0017] (3) In the present invention, when in use, it is connected with the existing clean water pipeline through the water inlet pipe, so that the clean water resources in the water inlet pipe can be transported to the inside of the water outlet pipe under the action of the booster pump body. At this time, the water resources injected into the outlet pipe will be injected into the inside of the steady flow compensation tank body through the extension pipe. As the liquid level inside the steady flow compensation tank body increases, the air inside the steady flow compensation tank body is compressed, thereby increasing the pressure of the steady flow compensation tank body, so that the steady flow compensation tank body can provide appropriate pressure for the inside of the water outlet pipe, and at the same time can adjust the pressure inside the water outlet pipe to prevent large fluctuations in the pressure inside the water outlet pipe. The pressure sensor body monitors the pressure inside the water outlet pipe, so that the controller body can adjust the usage quantity and operating status of the booster pump body through the monitoring data, so as to ensure that the water resources inside the water outlet pipe can be transported to the designated use position at a certain pressure, so that the equipment can efficiently realize its functions. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a first perspective stereogram of the present invention; Figure 2 It is a second viewing angle stereogram of the present invention; Figure 3 It is a partially cutaway stereoscopic view from a first viewing angle of the present invention; Figure 4 It is a sectional and expanded stereoscopic view of the filtering and pressurizing mechanism of the present invention from a first viewing angle; Figure 5 For the present invention Figure 4 Enlarged view of part A in the middle; Figure 6 For the present invention Figure 4 Enlarged view of part B; Figure 7 It is a partially expanded stereoscopic view of the filtering and pressurizing mechanism of the present invention from a second viewing angle; Figure 8 For the present invention Figure 7 Enlarged view of part C in the middle; Fig. 9 It is a partially cutaway and expanded stereoscopic view of the water purification mechanism of the present invention from a first viewing angle; Fig.10 For the present invention Fig. 9 Enlarged view of part D in the middle; Fig.11 For the present invention Fig. 9 Enlarged view of part E in the middle; Fig.12 It is a sectional and expanded stereoscopic view of the water purification mechanism of the present invention from a second viewing angle; Fig.13 For the present invention Fig.12 Enlarged view of part F in the middle; Fig.14 It is a three-dimensional diagram of the constant pressure device body of the present invention.
[0019] Markings in the figure: 1. Filtering and boosting mechanism; 101. Bottom plate; 102. Base; 103. Rotating frame; 104. Sliding block; 105. Delivery pipe; 106. Valve body; 107. Extension frame; 108. Interlocking wheel; 109. Interlocking belt; 110. Mounting belt; 111. Filter strip; 112. Second pulley; 113. First pulley; 114. Clamping ring; 115. First clamping strip; 116. Rotating gear; 117. Support spring; 118. Ratchet; 119. Interlocking bolt; 120. Limiting tube; 121. Retaining rod; 122. Retaining block; 123. Fixed toothed disc; 124. Lifting frame; 125. Reciprocating screw rod; 126. Moving frame; 127. Driving motor; 128. Aggregate frame; 129. Second clamping strip; 130. Connecting frame; 131. Rotating pipe; 2. Water purification mechanism; 201. Installation tank; 202. Water injection pipe; 203. First partition; 204. Second partition; 205. Stop frame; 206. Adjusting gear; 207. First rack; 208. Moving sheet; 209. Second rack; 210. Pull rod; 211. Sealing frame; 212. Rotating frame; 213. Limiting frame; 214. Sealing sheet; 215. Push frame; 216. Drain pipe; 217. Drain frame; 3. Constant pressure equipment body; 301. Booster pump body; 302. Water inlet pipe; 303. Water outlet pipe; 304. Pressure sensor body; 305. Controller body; 306. Flow stabilization compensation tank body. DETAILED DESCRIPTION
[0020] In order to make the purpose, technical solution and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.
[0021] For example, please refer to Figure 1-Figure 3 A fully automatic maintenance-free water purification constant pressure device is composed of a filtering and pressurizing mechanism 1, a water purification mechanism 2 and a constant pressure device body 3.
[0022] The details are as follows: See also Figure 3-Figure 8The filtering and boosting mechanism 1 includes a bottom plate 101, a base 102, a rotating frame 103, two connecting frames 130, a rotating pipe 131, a valve body 106, a delivery pipe 105, a driving component and a filtering component. The base 102 is fixedly connected to the top of the bottom plate 101, the rotating frame 103 is rotatably connected to the top of the base 102, the two connecting frames 130 are both connected and arranged at the bottom of the rotating frame 103, the rotating pipe 131 is rotatably connected between the relative outer surfaces of the two connecting frames 130, the delivery pipe 105 is connected and arranged at one end of the rotating pipe 131, the valve body 106 is arranged on the delivery pipe 105, the top of the bottom plate 101 is fixedly connected with a collecting frame 128, the interior of the rotating pipe 131 and the interiors of the two connecting frames 130 are connected, and the filtering component includes two extension frames 107, two connecting The rotating frame 103 includes a rotating shaft, two linkage belts 109, two mounting belts 110 and a plurality of filter strips 111. The two extension frames 107 are respectively connected and arranged at the top and bottom of the rotating frame 103. The two linkage shafts are respectively rotatably arranged inside the two extension frames 107. The outer surface of each linkage shaft is sleeved with two supporting wheels. The outer surface of one side of each supporting wheel is fixedly connected with a linkage wheel 108. Each linkage belt 109 is sleeved between the outer surfaces of the corresponding two linkage wheels 108. Each mounting belt 110 is sleeved between the outer surfaces of the corresponding two supporting wheels. A plurality of filter strips 111 are equidistantly fixedly connected between the opposite outer surfaces of the two mounting belts 110. The driving components include a fixed toothed disc 123, a supporting shaft, a ratchet 118, a supporting spring 117, a clamping ring 114, and a first pulley 1 13. The second pulley 112, the limiting tube 120, the rotating gear 116 and the lifting assembly, the fixed toothed disc 123 is fixedly connected to the outer surface of one side of the base 102, the support shaft is fixedly connected to the outer surface of one side of the rotating frame 103, the ratchet 118 is rotatably connected to the outer surface of the supporting shaft, the supporting spring 117 is slidably sleeved on the outer surface of the supporting shaft, the clamping ring 114 is rotatably connected to the outer surface of the supporting shaft, the first pulley 113 is slidably sleeved on the outer surface of the clamping ring 114, the second pulley 112 is sleeved on the outer surface of the corresponding linkage shaft, a belt is sleeved between the outer surfaces of the second pulley 112 and the first pulley 113, the limiting tube 120 is rotatably connected to the outer surface of one side of the rotating frame 103, a limiting spring is arranged inside the limiting tube 120, and a stop is slidably inserted at one end of the limiting tube 120 Rod 121, one end of the push rod 121 is slidably connected with a push block 122, the push block 122 is rotatably connected to the outer surface of one side of the rotating frame 103, the other end of the push rod 121 is fixedly connected with a push plate, the rotating gear 116 is rotatably connected to the outer surface of the support shaft, the rotating gear 116 is meshed with the fixed toothed disc 123, the lifting assembly is arranged on the bottom plate 101, the outer surface of one side of the ratchet 118 is fixedly connected with a connecting bolt 119, one end of the connecting bolt 119 is rotatably connected to the first pulley 113, the outer surface of one side of the clamping ring 114 is fixedly connected with a first clamping strip 115, the outer surface of one side of the rotating gear 116 is fixedly connected with a second clamping strip 129, one end of the support spring 117 is in contact with the outer surface of one side of the ratchet 118, and the other end of the support spring 117 is in contact with the outer surface of one side of the clamping ring 114.The lifting assembly includes a lifting frame 124, a reciprocating screw 125, a driving motor 127, a driving worm wheel and a driving worm. The lifting frame 124 is fixedly connected to the top of the base plate 101, the reciprocating screw 125 is rotatably connected to the inner bottom surface of the lifting frame 124, the outer surface of the reciprocating screw 125 is threadedly connected to the moving frame 126, the driving worm wheel is sleeved on the outer surface of the reciprocating screw 125, the driving worm is rotatably connected to the inner bottom surface of the lifting frame 124, the driving worm and the driving worm wheel are meshed, the driving motor 127 is fixedly connected to the inner bottom surface of the lifting frame 124, the output end of the driving motor 127 is fixedly connected to one end of the driving worm, the outer surfaces of both sides of the rotating frame 103 are fixedly connected with sliders 104, each slider 104 is slidably inserted into the inside of the moving frame 126, and the water resources are injected into the water. The water enters the rotating frame 103 so that the water resources can fill half of the internal space of the rotating frame 103. Under the obstruction of the filter strip 111, larger foreign objects can be temporarily retained on the side away from the conveying pipe 105. At this time, the driving motor 127 is controlled to start, so that the driving motor 127 cooperates with the driving worm and the driving worm gear to drive the reciprocating screw 125 to rotate. The rotating reciprocating screw 125 can drive the moving frame 126 to reciprocate along the direction of the lifting frame 124. During the movement of the moving frame 126, the slider 104 can drive one end of the rotating frame 103 to rotate, so that the installation belt 110 inside the extension frame 107 can gradually be in a horizontal state. In this process, the support shaft that rotates with the rotating frame 103 can drive the rotating gear 116 to rotate along the outer edge of the fixed toothed disc 123. The rotating gear 116 can rotate by itself under the position restriction of the fixed toothed disc 123, and the rotating rotating gear 116 cooperates with the second clamping strip 129 and the first clamping strip 115 to synchronously drive the clamping ring 114 to rotate, so that the rotating clamping ring 114 can drive the first pulley 113 to rotate, and the rotating first pulley 113 cooperates with the belt to drive the second pulley 112 to rotate, so that the second pulley 112 cooperates with the corresponding linkage shaft to drive the corresponding supporting wheel and the linkage wheel 108 to rotate, so that the supporting wheel and the linkage wheel 108 cooperate with the mounting belt 110 and the linkage belt 109 to drive the filter strip 111 to rotate, so that the larger foreign matter filtered out can be gradually transported to the top of the rotating frame 103, and the discharged foreign matter can be The gear 116 is able to rotate in the opposite direction under the action of the second clamping strip 129, and the first clamping strip 115 squeezes the clamping ring 114 and compresses the supporting spring 117, so that the rotating gear 116 cannot drive the clamping ring 114 to rotate. At the same time, under the restriction of the stop block 122, the ratchet 118 prevents the first pulley 113 from rotating in the opposite direction through the linkage bolt 119, so that during the reciprocating rotation of the rotating frame 103, the foreign matter filtered out of the rotating frame 103 can be discharged.At the same time, when the mounting belt 110 is in a horizontal state, the water resources at the bottom of the rotating frame 103 near the connecting frame 130 will be injected into the rotating pipe 131 under a relatively large pressure, and then the water resources with relatively large pressure can be injected into the water injection pipe 202 through the delivery pipe 105, so as to be fully purified and filtered; See also Figure 9-13The water purification mechanism 2 includes an installation tank 201, a first partition 203, a water injection pipe 202, a second partition 204, a sealing frame 211, a rotating frame 212, a push frame 215, a drain pipe 216 and a guide component. The installation tank 201 is fixedly connected to the top of the bottom plate 101, the first partition 203 and the second partition 204 are both fixedly connected to the inside of the installation tank 201, the water injection pipe 202 is connected and arranged on the outer surface of one side of the first partition 203, one end of the water injection pipe 202 is fixedly connected to one end of the delivery pipe 105, the sealing frame 211 is slidably inserted on the outer surface of one side of the installation tank 201, the rotating frame 212 is rotatably connected to the inside of the sealing frame 211, the push frame 215 is fixedly connected to the outer surface of one side of the rotating frame 212, and the drain pipe 216 is connected and arranged at the bottom of the installation tank 201 The guide component is arranged on the sealing frame 211, and the guide component includes a row frame 217, a limit frame 213, a sealing sheet 214, a baffle frame 205, a moving sheet 208, a pull rod 210, an adjusting gear 206, a first rack 207 and a second rack 209. The row frame 217 is connected and arranged on the outer surface of one side of the sealing frame 211, the limit frame 213 is fixedly connected to the inside of the row frame 217, and the sealing sheet 214 is slidably inserted into the inside of the row frame 217. The outer surface of one side of the sealing sheet 214 is fixedly connected to the limit bolt, one end of the limit bolt slides through the limit frame 213, and a limit spring is provided on the sliding sleeve of the outer surface of the limit bolt. The baffle frame 205 is connected and arranged on the outer surface of one side of the second partition plate 204, the pull rod 210 slides through the inner wall of one side of the baffle frame 205, and the moving sheet 208 is fixedly connected The first rack 207 is slidably inserted into the inner wall of the baffle 205, and the second rack 209 is fixedly connected to the outer surface of the moving plate 208. The second rack 209 is meshed with the adjusting gear 206, and the first rack 207 is meshed with the adjusting gear 206. By inserting a plurality of existing filter cartridges into the rotating frame 212, and separating the delivery pipe 105 and the water injection pipe 202, and connecting one end of the water injection pipe 202 to the water resource delivery pipe 105 with poor water quality, the water resource can be transported to the first partition plate 203, the rotating frame 212 and the installation tank 201 through the water injection pipe 202 to form a space between the first partition plate 203, the rotating frame 212 and the installation tank 201. When the conveying space is filled with water, the internal pressure of the conveying space increases with the continuous injection of water, so that the water can be injected into the second partition plate 204 through the connection between the rotating frame 212 and the baffle frame 205. At this time, the water flowing through the existing filter element can be fully filtered and purified, so that the filtered water can be transported to the constant pressure device body 3 through the drain pipe 216, and then the constant pressure device body 3 can transport the filtered water, effectively preventing the water quality from affecting the constant pressure device body 3 and avoiding damage to the constant pressure device body 3. At the same time, when the water is injected into the baffle frame 205 through the existing filter element, the moving sheet 208 can drive the pull rod 210 to squeeze the positioning spring under the squeezing of the water.At the same time, the baffle frame 205 is moved out, so that the water resources can be transported to the side of the second partition plate 204 through the gap between the baffle frame 205 and the movable sheet 208. At this time, when the movable sheet 208 moves out of the baffle frame 205, the second rack 209 will move with the movable sheet 208, and at the same time, it can cooperate with the adjusting gear 206 to enable the first rack 207 to be inserted into the internal space of the rotating frame 212 corresponding to the existing filter element, thereby limiting the rotation angle of the rotating frame 212 to ensure that the water resources can be continuously transported. When the filtering effect of the existing filter element disappears, the water resources in the transport space will not be able to be transported to the inside of the baffle frame 205. Then, under the support of the positioning spring, the first rack 207 is restored to its original position, so that the rotating frame 212 can rotate again. As the internal pressure of the row frame 217 gradually increases, the water resources in the transport space can squeeze the sealing sheet 214, so that the sealing sheet 214 cooperates with the limit bolt to compress the limit The spring can move to the outside of the row frame 217, so that the water resources in the conveying space can be discharged through the row frame 217, so that the water resources in the conveying space can cooperate with the push frame 215 to drive the rotating frame 212 to rotate during the flow of water resources in the conveying space, so that the existing filter elements at different positions can be rotated to the side of the baffle frame 205, so that the water resources can be transported to the side of the second partition plate 204 through the baffle frame 205 again. At this time, the internal pressure of the row frame 217 is reduced, and then under the support of the limit spring, the limit bolt can drive the sealing sheet 214 to seal the row frame 217 again, so that multiple existing filter elements can be replaced and used by themselves, which will ensure that the equipment can be used for a long time. At the same time, the rotating frame 212 can be quickly taken out of the installation tank 201 through the sealing frame 211, so as to facilitate the replacement of the existing filter element, and effectively avoid the long-term shutdown of the constant pressure equipment body 3; See also Fig.14The constant pressure device body 3 includes an inlet pipe 302, an outlet pipe 303, a plurality of booster pump bodies 301, a pressure sensor body 304, a flow-stabilizing compensation tank body 306 and a controller body 305. The flow-stabilizing compensation tank body 306, the controller body 305 and the plurality of booster pump bodies 301 are all fixedly connected to the top of the bottom plate 101. The inlet pipe 302 is connected and arranged between the input ends of the plurality of booster pump bodies 301. The outlet pipe 303 is connected and arranged between the output ends of the plurality of booster pump bodies 301. The pressure sensor body 304 is arranged on the outlet pipe 303. One end of the outlet pipe 303 is fixedly connected to one end of the drain pipe 216. The output end of the flow-stabilizing compensation tank body 306 is connected and arranged with an extension pipe. One end of the extension pipe is connected to the inside of the outlet pipe 303. The outlet pipe 303 is connected to the existing clean water pipeline through the inlet pipe 302, so that the inlet pipe 302 is connected to the existing clean water pipeline. The clean water resources inside the water pipe 302 can be transported to the inside of the water outlet pipe 303 under the action of the booster pump body 301. At this time, the water resources injected into the inside of the water outlet pipe 303 will be injected into the inside of the steady flow compensation tank body 306 through the extension pipe. As the liquid level inside the steady flow compensation tank body 306 increases, the air inside the steady flow compensation tank body 306 is compressed, thereby increasing the pressure of the steady flow compensation tank body 306, so that the steady flow compensation tank body 306 can provide appropriate pressure for the inside of the water outlet pipe 303, and at the same time can adjust the internal pressure of the water outlet pipe 303 to prevent large fluctuations in the internal pressure of the water outlet pipe 303. The pressure sensor body 304 monitors the internal pressure of the water outlet pipe 303, so that the controller body 305 can adjust the usage quantity and operating status of the booster pump body 301 through the monitoring data.
[0023] The following is a detailed description of the method for using a fully automatic maintenance-free water purification constant pressure device provided by an embodiment of the present invention: when in use, the water inlet pipe 302 is connected to the existing water purification pipeline, so that the purified water resources inside the water inlet pipe 302 can be transported to the inside of the water outlet pipe 303 under the action of the booster pump body 301. At this time, the water resources injected into the outlet pipe 303 will be injected into the inside of the steady flow compensation tank body 306 through the extension pipe. As the liquid level inside the steady flow compensation tank body 306 increases, the air inside the steady flow compensation tank body 306 is compressed, thereby causing the steady flow compensation tank body 306 to The pressure increases, so that the steady flow compensation tank body 306 can provide appropriate pressure for the inside of the water outlet pipe 303, and can adjust the internal pressure of the water outlet pipe 303 to prevent the internal pressure of the water outlet pipe 303 from fluctuating greatly. The pressure sensor body 304 monitors the internal pressure of the water outlet pipe 303, so that the controller body 305 can adjust the usage quantity and operating status of the booster pump body 301 through the monitoring data, so as to ensure that the water resources inside the water outlet pipe 303 can be transported to the designated use position at a certain pressure, so that the equipment can efficiently realize its due functions; By inserting a plurality of existing filter cartridges into the rotating frame 212, and separating the delivery pipe 105 and the water injection pipe 202, and connecting one end of the water injection pipe 202 to the water resource delivery pipe 105 with poor water quality, water resources can be delivered to the delivery space formed between the first partition plate 203, the rotating frame 212 and the installation tank 201 through the water injection pipe 202. When the delivery space is filled with water resources, the internal pressure of the delivery space increases with the continuous injection of water resources, so that the water resources can be injected into the second partition plate 204 through the connection between the rotating frame 212 and the internal part of the baffle frame 205. At this time, the water resources flowing through the existing filter cartridge can be fully filtered and purified, so that the filtered water resources can be discharged through the drainage pipe 2 16 is transported to the inside of the constant pressure device body 3, and then the constant pressure device body 3 can transport the filtered water resources, effectively preventing the water quality from affecting the constant pressure device body 3 and avoiding damage to the constant pressure device body 3. At the same time, when the water resources pass through the existing filter element and are injected into the baffle frame 205, under the squeezing of the water resources, the movable sheet 208 can drive the pull rod 210 to squeeze the positioning spring and move out of the baffle frame 205 at the same time, so that the water resources can be transported to the side of the second partition plate 204 through the gap between the baffle frame 205 and the movable sheet 208. At this time, in the process of the movable sheet 208 moving out of the baffle frame 205, the second rack 209 will move with the movable sheet 208, and at the same time can cooperate with the adjusting gear 206 to enable the first rack 207 to be inserted into the corresponding existing filter element. The internal space of the rotating frame 212 where the filter element is located, thereby limiting the rotation angle of the rotating frame 212, ensuring that the water resources can be continuously transported. When the filtering effect of the existing filter element disappears, the water resources in the delivery space will not be able to be transported to the inside of the baffle frame 205, and then, under the support of the positioning spring, the first rack 207 is restored to its original position, so that the rotating frame 212 can rotate again. As the internal pressure of the discharge frame 217 gradually increases, the water resources in the delivery space can squeeze the sealing sheet 214, so that the sealing sheet 214 can cooperate with the limit bolt to compress the limit spring and move to the outside of the discharge frame 217, so that the water resources in the delivery space can be discharged through the discharge frame 217, so that the water resources in the delivery space can cooperate with the flow of the water resources in the delivery space. The push frame 215 drives the rotating frame 212 to rotate, so that the existing filter cartridges at different positions can rotate to the side of the baffle frame 205, so that the water resources can be transported to the side of the second partition plate 204 through the baffle frame 205 again. At this time, the internal pressure of the row frame 217 is reduced, and then under the support of the limit spring, the limit bolt can drive the sealing sheet 214 to seal the row frame 217 again, so that multiple existing filter cartridges can be replaced and used by themselves, which will ensure that the equipment can be used for a long time. At the same time, the rotating frame 212 can be quickly taken out of the installation tank 201 through the sealing frame 211, so as to facilitate the replacement of the existing filter cartridge, effectively avoid the long-term shutdown of the constant pressure equipment body 3, and improve the actual use effect of the equipment; When the water resource contains more impurities, the water resource is injected into the rotating frame 103 so that the water resource can fill half of the internal space of the rotating frame 103. Under the obstruction of the filter strip 111, larger foreign matter can be temporarily retained on the side away from the conveying pipe 105. At this time, the driving motor 127 is controlled to be started, so that the driving motor 127 cooperates with the driving worm and the driving worm gear to drive the reciprocating screw 125 to rotate. The rotating reciprocating screw 125 can drive the moving frame 126 to reciprocate along the direction of the lifting frame 124. During the movement of the moving frame 126, the slider 104 can drive one end of the rotating frame 103 to rotate, so that the mounting belt 110 inside the extension frame 107 can gradually be in a horizontal state. During this process, the support shaft that rotates with the rotating frame 103 can drive the rotating gear 116 to move along the outer edge of the fixed toothed disc 123, and then under the position limit of the fixed toothed disc 123, the rotating gear 116 can rotate by itself, and the rotating rotating gear 116 cooperates with the second clamping strip 129 and the first clamping strip 115 to synchronously drive the clamping ring 114 to rotate, so that the rotating clamping ring 114 can drive the first pulley 113 to rotate, and the rotating first pulley 113 cooperates with the belt to drive the second pulley 112 to rotate, so that the second pulley 112 cooperates with the corresponding linkage shaft to drive the corresponding support wheel and the linkage wheel 108 to rotate, so that the support wheel and the linkage wheel 108 cooperate to install The belt 110 and the linked belt 109 can drive the filter strip 111 to rotate, thereby gradually transporting the filtered larger foreign matter to the top of the rotating frame 103, and then the discharged foreign matter can fall into the collecting frame 128 for discharge. When the rotating frame 103 rotates until the mounting belt 110 is in a horizontal state, the movable frame 126 will drive the rotating frame 103 to restore its original position under the action of the reciprocating screw rod 125. At this time, the rotating gear 116 will follow the support shaft to rotate in the opposite direction under the position limit of the fixed toothed disc 123, and then under the action of the second clamping strip 129, the first clamping strip 115 will squeeze the clamping ring 114 to compress the supporting spring 117, and then the rotating rotating gear 116 cannot drive the clamping ring 114 to rotate. Rotate, and at the same time, under the restriction of the stop block 122, the ratchet 118 prevents the first pulley 113 from rotating in the opposite direction through the connecting bolt 119, so that during the reciprocating rotation of the rotating frame 103, the foreign matter filtered out from the rotating frame 103 can be discharged. At the same time, when the mounting belt 110 is in a horizontal state, the water resources at the bottom of the rotating frame 103 near the connecting frame 130 will be injected into the rotating pipe 131 under greater pressure, and then the water resources with greater pressure can be injected into the water injection pipe 202 through the delivery pipe 105, so as to perform sufficient purification and filtration treatment, so that the equipment can be applied to different usage scenarios, improve the actual use of the equipment, and enable the equipment to efficiently realize its functions.
[0024] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. A fully automatic maintenance-free water purification constant pressure equipment, characterized in that: include: A filtering and pressurizing mechanism (1), the filtering and pressurizing mechanism (1) comprising a bottom plate (101), a base (102), a rotating frame (103), two connecting frames (130), a rotating pipe (131), a valve body (106), a delivery pipe (105), a driving component and a filtering component, the base (102) being fixedly connected to the top of the bottom plate (101), the rotating frame (103) being rotatably connected to the top of the base (102), the two connecting frames (130) being connected and arranged at the bottom of the rotating frame (103), the rotating pipe (131) being rotatably connected between opposite outer surfaces of the two connecting frames (130), the delivery pipe (105) being connected and arranged at one end of the rotating pipe (131), and the valve body (106) being arranged on the delivery pipe (105); A water purification mechanism (2), the water purification mechanism (2) comprising a mounting tank (201), a first partition (203), a water injection pipe (202), a second partition (204), a sealing frame (211), a rotating frame (212), a push frame (215), a drainage pipe (216) and a flow guide component, the mounting tank (201) being fixedly connected to the top of a bottom plate (101), the first partition (203) and the second partition (204) being fixedly connected to the inside of the mounting tank (201), and the water injection pipe (202) being arranged in communication with the mounting tank (201). On the outer surface of one side of the first partition plate (203), one end of the water injection pipe (202) and one end of the delivery pipe (105) are fixedly connected, the sealing frame (211) is slidably inserted into the outer surface of one side of the installation tank (201), the rotating frame (212) is rotatably connected to the inside of the sealing frame (211), the pushing frame (215) is fixedly connected to the outer surface of one side of the rotating frame (212), the drainage pipe (216) is connected and arranged at the bottom of the installation tank (201), and the flow guide component is arranged on the sealing frame (211); and A constant pressure device body (3), wherein the constant pressure device body (3) is arranged on the bottom plate (101).
2. A fully automatic maintenance-free water purification constant pressure equipment as claimed in claim 1, characterized in that: A material collecting frame (128) is fixedly connected to the top of the bottom plate (101), and the interior of the rotating tube (131) and the interiors of the two connecting frames (130) are both connected.
3. A fully automatic maintenance-free water purification constant pressure equipment as claimed in claim 2, characterized in that: The filter component comprises two extension frames (107), two linkage shafts, two linkage belts (109), two installation belts (110) and a plurality of filter strips (111); the two extension frames (107) are respectively connected and arranged at the top and bottom of the rotating frame (103); the two linkage shafts are respectively rotatably arranged inside the two extension frames (107); the outer surface of each linkage shaft is sleeved with two support wheels; the outer surface of one side of each support wheel is fixedly connected to a linkage wheel (108); each linkage belt (109) is sleeved between the outer surfaces of the corresponding two linkage wheels (108); each installation belt (110) is sleeved between the outer surfaces of the corresponding two support wheels; and the plurality of filter strips (111) are equidistantly and fixedly connected between the opposite outer surfaces of the two installation belts (110).
4. A fully automatic maintenance-free water purification constant pressure equipment as claimed in claim 3, characterized in that: The driving component comprises a fixed toothed disc (123), a support shaft, a ratchet (118), a support spring (117), a clamping ring (114), a first pulley (113), a second pulley (112), a stop tube (120), a rotating gear (116) and a lifting assembly, wherein the fixed toothed disc (123) is fixedly connected to an outer surface of one side of the base (102), the support shaft is fixedly connected to an outer surface of one side of the rotating frame (103), the ratchet (118) is rotatably connected to the outer surface of the support shaft, the support spring (117) is slidably sleeved on the outer surface of the support shaft, the clamping ring (114) is rotatably connected to the outer surface of the support shaft, the first pulley (113) is slidably sleeved on the outer surface of the clamping ring (114), and the second pulley (112) is sleeved The second pulley (112) and the first pulley (113) are provided on the outer surface of the corresponding linkage shaft, and a belt is sleeved between the outer surfaces of the second pulley (112) and the first pulley (113). The limit tube (120) is rotatably connected to the outer surface of one side of the rotating frame (103). A limit spring is arranged inside the limit tube (120). A stop rod (121) is slidably inserted at one end of the limit tube (120). A stop block (122) is slidably connected to one end of the stop rod (121). The stop block (122) is rotatably connected to the outer surface of one side of the rotating frame (103). The other end of the stop rod (121) is fixedly connected to a stop plate. The rotating gear (116) is rotatably connected to the outer surface of the supporting shaft. The rotating gear (116) is meshed with a fixed toothed disc (123). The lifting assembly is arranged on the bottom plate (101).
5. A fully automatic maintenance-free water purification constant pressure equipment as claimed in claim 4, characterized in that: A linkage bolt (119) is fixedly connected to the outer surface of one side of the ratchet wheel (118), and one end of the linkage bolt (119) is rotatably connected to the first pulley (113).
6. A fully automatic maintenance-free water purification constant pressure equipment as claimed in claim 5, characterized in that: A first clamping strip (115) is fixedly connected to an outer surface of one side of the clamping ring (114), and a second clamping strip (129) is fixedly connected to an outer surface of one side of the rotating gear (116).
7. A fully automatic maintenance-free water purification constant pressure equipment as claimed in claim 6, characterized in that: One end of the support spring (117) is in contact with the outer surface of one side of the ratchet (118), and the other end of the support spring (117) is in contact with the outer surface of one side of the clamping ring (114).
8. A fully automatic maintenance-free water purification constant pressure equipment as claimed in claim 7, characterized in that: The lifting assembly comprises a lifting frame (124), a reciprocating screw (125), a driving motor (127), a driving worm wheel and a driving worm, wherein the lifting frame (124) is fixedly connected to the top of the base plate (101), the reciprocating screw (125) is rotatably connected to the inner bottom surface of the lifting frame (124), the outer surface of the reciprocating screw (125) is threadedly connected to a moving frame (126), the driving worm wheel is sleeved on the outer surface of the reciprocating screw (125), the driving worm is rotatably connected to the inner bottom surface of the lifting frame (124), the driving worm is meshed with the driving worm wheel, the driving motor (127) is fixedly connected to the inner bottom surface of the lifting frame (124), and the output end of the driving motor (127) is fixedly connected to one end of the driving worm.
9. A fully automatic maintenance-free water purification constant pressure equipment as claimed in claim 8, characterized in that: Slide blocks (104) are fixedly connected to the outer surfaces of both sides of the rotating frame (103), and each of the slide blocks (104) is slidably inserted into the interior of the moving frame (126).
10. A fully automatic maintenance-free water purification constant pressure equipment as claimed in claim 9, characterized in that: The flow guide component comprises a row frame (217), a limiting frame (213), a sealing sheet (214), a stop frame (205), a movable sheet (208), a pull rod (210), an adjusting gear (206), a first rack (207) and a second rack (209); the row frame (217) is connected and arranged on the outer surface of one side of the sealing frame (211); the limiting frame (213) is fixedly connected to the inside of the row frame (217); the sealing sheet (214) is slidably inserted into the inside of the row frame (217); the outer surface of one side of the sealing sheet (214) is fixedly connected to a limiting bolt; one end of the limiting bolt slides through the limiting frame (213); a limiting spring is provided on the sliding sleeve on the outer surface of the limiting bolt; the stop frame (217) is fixedly connected to the outer surface of the limiting bolt; the The first rack (207) is slidably inserted into the inner wall of the baffle frame (205), and the second rack (209) is fixedly connected to the outer surface of the moving plate (208). The second rack (209) is meshed with the adjusting gear (206), and the first rack (207) is meshed with the adjusting gear (206).