Efficient energy-saving water pump
By introducing an adjusting component and a super-hydrophobic coating into the water pump, the problem of the water outlet direction of the water pump not matching the water flow requirements was solved, thus achieving energy savings and extending the service life.
Patent Information
- Application Number
- CN202422827426.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-11-20
AI Technical Summary
When the existing water pump is installed in a deviated position, the direction of the water outlet does not match the water flow requirements, resulting in increased energy consumption.
A high-efficiency and energy-saving water pump including an adjustment component is designed. The water outlet direction of the water pump body is adjusted through supporting components and driving components. Bearings are used to maintain the stable rotation of the rotating shaft, and a super-hydrophobic coating is combined to reduce friction loss.
This ensures that the direction of the water pump outlet is consistent with the water flow requirements when the installation position deviates, thereby reducing energy consumption and increasing service life.
Smart Images

Figure CN223411108U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of water pumps, in particular to a high-efficiency energy-saving water pump. Background Art
[0002] A water pump is a machine that transports liquid or pressurizes liquid. Usually, when a water pump is installed and used, the position and height of the water inlet pipe and the water suction pipe of the water pump are generally fixed and cannot be adjusted, which is inconvenient for operators to install and use, and greatly reduces the speed of water pump installation.
[0003] The existing technology CN211666873U currently discloses an efficient and energy-saving water pump, comprising a water pump body, a connecting seat is provided at the bottom of the water pump body, a rubber pad is provided between the water pump body and the connecting seat, a base is provided under the connecting seat, and a fixing mechanism is symmetrically provided on the top of the base at the left and right sides of the connecting seat. The fixing mechanism comprises a fixing frame, a cross plate is fixedly connected to the top of the fixing frame, a handle is provided above the cross plate, a screw is fixedly connected to the bottom of the handle, and the bottom end of the screw passes through the cross plate and is connected to the connecting seat; both sides of the base are provided with a receiving groove under the fixing frame, a driving motor is installed inside the receiving groove, and a screw rod is fixedly connected to the top output end of the driving motor, and the end of the screw rod away from the driving motor passes through the receiving groove and is inserted into the fixing frame; by providing the driving motor, screw rod, bearing plate, fixing frame, cross plate, screw and handle, it is convenient to adjust and fix the height of the water pump body, which is convenient for users to install and use, and improves the installation speed of the water pump body.
[0004] However, with the above method, after the water pump body is installed on the rubber pad on the connecting seat, the direction of the water outlet of the water pump body is fixed. When the installation position of the water pump body deviates and the direction of the water outlet does not meet the actual demand of the water flow, the direction of the water outlet of the water pump body cannot be conveniently adjusted. When the direction of the water outlet does not meet the actual demand of the water flow, the water flow needs to change direction after leaving the water outlet to meet the actual demand. This change of direction will introduce additional resistance because the water flow will produce friction and collision with the surrounding fluid during the turning process, thereby consuming energy, which in turn increases the energy consumption of the water pump body. Utility Model Content
[0005] The purpose of this utility model is to provide an efficient and energy-saving water pump, which can conveniently adjust the direction of the water outlet of the water pump body when the installation position of the water pump body deviates and the direction of the water outlet does not meet the actual demand of the water flow, so that the direction of the water outlet of the water pump body meets the actual demand of the water flow, thereby saving energy consumption.
[0006] To achieve the above-mentioned object, the utility model provides a high-efficiency and energy-saving water pump, comprising a water pump body and an adjustment assembly, wherein the adjustment assembly comprises a base, a support component, a bearing, a rotating shaft and a driving component;
[0007] The base is located at the bottom of the water pump body, and the supporting component is arranged on the inner side of the base; the outer ring of the bearing is fixedly connected to the base and is located on the inner side of the base; the rotating shaft is fixedly connected to the inner ring of the bearing and is fixedly connected to the water pump body, and is located between the supporting component and the water pump body; the driving component is arranged on the top of the water pump body.
[0008] Wherein, the supporting component includes an annular track and a plurality of ball bearings; the annular track is fixedly connected to the water pump body and is located inside the water pump body; the plurality of ball bearings are respectively located inside the annular track.
[0009] Among them, the driving component includes a sliding rod, a rack, a gear and a screw; the sliding rod is slidingly connected to the base and is located on the top of the base; the rack is fixedly connected to the sliding rod and is located on the side of the sliding rod; the gear is fixedly connected to the rotating shaft and engages with the sliding rod; the screw is rotatably connected to the base, is threadedly connected to the sliding rod, and is located on the side of the base.
[0010] Among them, the driving component also includes a guide seat, a slider and an insert plate; the guide seat is fixedly connected to the base and is located on the top of the base; the slider is slidably connected to the guide seat and is located on the inner side of the guide seat; the insert plate is fixedly connected to the slider and is located on the side of the slider.
[0011] Wherein, the driving component further comprises a spring; one end of the spring is fixedly connected to the guide seat, and the other end of the spring is fixedly connected to the slider, and is located between the guide seat and the slider.
[0012] The utility model provides a high-efficiency and energy-saving water pump. When in use, the base is fixed in a desired position, and the supporting component is used to support the rotating shaft and the water pump body. When the direction of the water outlet of the water pump body does not meet the actual demand of the water flow, the staff drives the rotating shaft to rotate by controlling the driving component, and the rotating shaft drives the water pump body to rotate, so that the direction of the water outlet of the water pump body can be adjusted to make the direction of the water outlet of the water pump body meet the actual demand of the water flow; the bearing enables the rotating shaft to remain stable during rotation; through the above method, when the installation position of the water pump body deviates and the direction of the water outlet does not meet the actual demand of the water flow, the direction of the water outlet of the water pump body can be conveniently adjusted to make the direction of the water outlet of the water pump body meet the actual demand of the water flow, thereby saving energy consumption. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art.
[0014] Figure 1 It is a schematic diagram of the overall structure of the utility model.
[0015] Figure 2 It is a front cross-sectional view of the entirety of the present invention.
[0016] Figure 3 It is a top sectional view of the entire utility model.
[0017] Figure 4 This is a structural diagram of the utility model without the water pump body.
[0018] 101- pump body, 102- base, 103- support component, 104- bearing, 105- rotating shaft, 106- driving component, 107- ring track, 108- ball bearing, 109- slide rod, 110- rack, 111- gear, 112- screw, 113- guide seat, 114- slider, 115- plug plate, 116- spring. DETAILED DESCRIPTION
[0019] The embodiments of the present invention are described in detail below, and examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, but should not be understood as limiting the present invention.
[0020] See also Figures 1-4 ,in, Figure 1 It is a schematic diagram of the overall structure of the utility model. Figure 2 This is a front cross-sectional view of the entire utility model. Figure 3 This is a top sectional view of the entire utility model. Figure 4 This is a schematic diagram of the structure of the utility model without the water pump body.
[0021] The utility model provides a high-efficiency and energy-saving water pump, comprising a water pump body 101 and an adjusting component, wherein the adjusting component comprises a base 102, a supporting component 103, a bearing 104, a rotating shaft 105 and a driving component 106; the supporting component 103 comprises an annular track 107 and a plurality of ball bearings 108; the driving component 106 comprises a slide bar 109, a rack 110, a gear 111, a screw 112, a guide seat 113, a slider 114, a plug plate 115 and a spring 116; through the above-mentioned scheme, when the installation position of the water pump body 101 deviates and the direction of the water outlet does not meet the actual demand of the water flow, the direction of the water outlet of the water pump body 101 can be conveniently adjusted to make the direction of the water outlet of the water pump body 101 meet the actual demand of the water flow, thereby saving energy consumption.
[0022] According to this specific embodiment, the base 102 is located at the bottom of the water pump body 101, and the supporting component 103 is arranged on the inner side of the base 102; the outer ring of the bearing 104 is fixedly connected to the base 102 and is located on the inner side of the base 102; the rotating shaft 105 is fixedly connected to the inner ring of the bearing 104, and is fixedly connected to the water pump body 101, and is located between the supporting component 103 and the water pump body 101; the driving component 106 is arranged on the top of the water pump body 101. When in use, the base 102 is fixed in the desired position, and the supporting component 103 is used to support the rotating shaft 105 and the water pump body 101. When the direction of the water outlet of the water pump body 101 does not meet the actual water flow demand, the staff drives the rotating shaft 105 to rotate by controlling the driving component 106, and the rotating shaft 105 drives the water pump body 101 to rotate, so that the direction of the water outlet of the water pump body 101 can be adjusted to make the direction of the water outlet of the water pump body 101 meet the actual water flow demand; the bearing 104 enables the rotating shaft 105 to remain stable during rotation; through the above method, when the installation position of the water pump body 101 deviates and the direction of the water outlet does not meet the actual water flow demand, the direction of the water outlet of the water pump body 101 can be conveniently adjusted to make the direction of the water outlet of the water pump body 101 meet the actual water flow demand, thereby saving energy consumption. The surface of the water pump body 101 is sprayed with a super-hydrophobic coating. The super-hydrophobic coating adopts CoPont CR polymer nano-coating material, which makes the water pump body 101 super-hydrophobic, thereby reducing friction. The super-hydrophobic coating is firmly bonded, which can reduce the impact of cavitation on the pump body, improve the energy-saving efficiency of the pump body, and increase the service life of the pump body.
[0023] The annular track 107 is fixedly connected to the water pump body 101 and is located inside the water pump body 101. The plurality of balls 108 are respectively located inside the annular track 107. The annular track 107 limits the position of the balls 108, and the plurality of balls 108 provide support for the rotating shaft 105. When the rotating shaft 105 rotates, it drives the balls 108 to roll within the annular track 107, allowing the rotating shaft 105 and the water pump body 101 to rotate smoothly.
[0024] Secondly, the slide bar 109 is slidably connected to the base 102 and is located at the top of the base 102; the rack 110 is fixedly connected to the slide bar 109 and is located on the side of the slide bar 109; the gear 111 is fixedly connected to the rotating shaft 105 and meshes with the slide bar 109; the screw 112 is rotatably connected to the base 102 and is threadedly connected to the slide bar 109 and is located on the side of the base 102. The base 102 is provided with a sliding groove adapted to the slide bar 109. By rotating the screw 112, the screw 112 rotates, causing the slide bar 109 to move horizontally, which in turn drives the rack 110 to move horizontally. The rack 110 drives the gear 111 and the rotating shaft 105 to rotate, and the rotating shaft 105 drives the water pump body 101 to rotate. Since the base 102 and the screw rod 112 are connected via threads, the water pump body 101 is not likely to rotate even after being hit.
[0025] At the same time, the guide seat 113 is fixedly connected to the base 102 and is located on the top of the base 102; the slider 114 is slidably connected to the guide seat 113 and is located inside the guide seat 113; the insert plate 115 is fixedly connected to the slider 114 and is located on the side of the slider 114. The guide seat 113 provides guidance for the slider 114. After the position of the water pump body 101 is adjusted, the slider 114 is slid to insert the insert plate 115 between two adjacent teeth on the gear 111, which can limit the rotation of the gear 111 and thus fix the position of the water pump body 101.
[0026] In addition, one end of the spring 116 is fixedly connected to the guide seat 113, and the other end is fixedly connected to the slider 114, and is located between the guide seat 113 and the slider 114. The spring 116 is in a compressed state between the guide seat 113 and the slider 114. The elastic potential energy of the spring 116 can push the slider 114 and the inserting plate 115, so that the inserting plate 115 is pressed against the gear 111, thereby improving the locking stability of the gear 111.
[0027] When using the present invention, the base 102 is fixed in the desired position. When the direction of the water outlet of the water pump body 101 does not meet the actual water flow requirements, the staff first pulls the plug plate 115 away from the gear 111. At this time, the spring 116 is compressed, and then the screw 112 is rotated. The rotation of the screw 112 causes the slide bar 109 to move horizontally. The slide bar 109 drives the rack 110 to move horizontally. The rack 110 drives the gear 111 and the rotating shaft 105 to rotate. The rotating shaft 105 rotates, driving the water pump body 101 to rotate, thereby adjusting the direction of the water outlet of the water pump body 101 so that the direction of the water outlet of the water pump body 101 matches the actual water flow demand. After the position of the water pump body 101 is adjusted, the spring 116 is released, and the insert plate 115 is inserted between two adjacent teeth on the gear 111 under the push of the spring 116, which can limit the rotation of the gear 111, thereby fixing the position of the water pump body 101. The bearing 104 allows the rotating shaft 105 to remain stable during rotation. In this way, when the installation position of the water pump body 101 deviates and the direction of the water outlet does not match the actual water flow demand, the direction of the water outlet of the water pump body 101 can be conveniently adjusted so that the direction of the water outlet of the water pump body 101 matches the actual water flow demand, thereby saving energy consumption.
[0028] The above disclosure is merely one or more preferred embodiments of the present application and is not intended to limit the scope of the present application. A person skilled in the art will understand that all or part of the processes of the above embodiments and equivalent changes made in accordance with the claims of the present application are still within the scope of the present application.
Claims
1. A high-efficiency energy-saving water pump, comprising a water pump body, characterized in that: Also included are adjustment components; The adjustment assembly includes a base, a supporting component, a bearing, a rotating shaft and a driving component; The base is located at the bottom of the water pump body, and the supporting component is arranged on the inner side of the base; the outer ring of the bearing is fixedly connected to the base and is located on the inner side of the base; the rotating shaft is fixedly connected to the inner ring of the bearing and is fixedly connected to the water pump body, and is located between the supporting component and the water pump body; the driving component is arranged on the top of the water pump body.
2. A high-efficiency energy-saving water pump according to claim 1, characterized in that: The supporting component includes an annular track and a plurality of balls; the annular track is fixedly connected to the water pump body and is located inside the water pump body; the plurality of balls are respectively located inside the annular track.
3. The high-efficiency energy-saving water pump according to claim 2, characterized in that: The driving component includes a sliding rod, a rack, a gear and a screw; the sliding rod is slidingly connected to the base and is located on the top of the base; the rack is fixedly connected to the sliding rod and is located on the side of the sliding rod; the gear is fixedly connected to the rotating shaft and engages with the sliding rod; the screw is rotatably connected to the base, is threadedly connected to the sliding rod, and is located on the side of the base.
4. A high-efficiency energy-saving water pump according to claim 3, characterized in that: The driving component also includes a guide seat, a slider and an insert plate; the guide seat is fixedly connected to the base and is located on the top of the base; the slider is slidably connected to the guide seat and is located on the inner side of the guide seat; the insert plate is fixedly connected to the slider and is located on the side of the slider.
5. The high-efficiency energy-saving water pump according to claim 4, characterized in that: The driving component further comprises a spring; one end of the spring is fixedly connected to the guide seat, and the other end of the spring is fixedly connected to the slider, and is located between the guide seat and the slider.
Citation Information
Patent Citations
Efficient energy-saving water pump
CN211666873U