High-output pump
By designing the motor assembly, suction and discharge assembly, and output assembly structure of a high-yield pump, and combining a pneumatic-hydraulic-electric motor and a pulverizing blade, the problems of high production cost and insufficient output in existing pump technology have been solved, achieving efficient and low-cost fluid transport and environmentally friendly and energy-saving effects.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-05-17
- Publication Date
- 2026-03-26
AI Technical Summary
Existing pump technology suffers from high production costs and insufficient output, failing to meet the development needs of social life and production. In particular, it is inefficient and energy-intensive in water resource shortages and oil extraction processes, and traditional equipment has a complex structure and requires frequent maintenance.
A high-yield pump was designed, which adopts a combined structure of motor group, suction and discharge group and output group. It combines a gas-hydraulic electric motor and a crushing blade to achieve high-speed flow and efficient transportation of fluid. By optimizing the specifications and combination of components, it can adapt to the needs of different scenarios.
It achieves efficient fluid transport, increasing output by more than 10 times and reducing costs by more than 85%. Its simple structure makes it easy to install and maintain, adapting to the needs of various industries. It is environmentally friendly and energy-saving, adaptable to extreme environments, and reduces failure rates and maintenance costs.
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Figure CN2025095603_26032026_PF_FP_ABST
Abstract
Description
High-yield pump TECHNICAL FIELD
[0001] The high-yield pump of the present application belongs to a life and production pump, and relates to a high-yield pump for sucking and discharging liquid by a motor and rotating blades. BACKGROUND
[0002] There are many types of water pumps for life and production, which have made positive contributions to social progress. According to the search of network and patent documents, there are thousands of pumps for life and production, but there are limitations, for example, according to records, household water pumps have small flow, short service life, stability, failure rate, and rubber cable motor immersed in water well pollution, and are not environmentally friendly and sustainable development pumps. The water industry pump structure is complex, energy consumption is large, efficiency is low, and cost is high. Among the more than 600 cities in China, more than 300 cities are short of water resources, there is no low-cost high-yield pump suitable for economy, and underground water cannot be extracted in time, water resources cannot be transported, and the effect on water shortage, drought and flood is limited, which is not conducive to the fundamental improvement of life and production quality.
[0003] There are thousands of oil pumping equipment in the world, among which the world oil industry generally uses production pumping with a dead beam type oil pumping machine for upstroke oil pumping and downstroke oil pumping. Therefore, there is half a year of waste and low yield every year. The daily yield of 150,000 oil pumping machines is 10 tons, and the annual power consumption is more than 10 billion degrees. There are many faults and maintenance, and the total cost is high and the yield is low. Every year, hundreds of millions of tons of imported oil are imported, and the price is high, the oil price fluctuates, and restricts the better development of social life and production. Today, the world's oil production equipment generally uses a beam type oil pumping machine, which has been invented for 100 years since Americans invented it. The water pump has been invented for 206 years since Americans invented it in 1818. The yield is low, the energy consumption is large, and the cost is high. The cost and yield of traditional oil pumping machines and pumps are not suitable for the urgent needs of human beings after 2024.
[0004] From January to September 2024, the global climate crisis is super-normal, the water ecology is bad, the gale, storm, hail and snow, drought and flood, and food crisis hurt the body and mind. The ice at the north and south poles is melting at a super-normal rate. If the sea water rises by 73 meters, most of the cities and towns in the world will be submerged, and more than 8 billion people on earth urgently need high-yield pumps, low-cost and high-quality pumps to improve life and production. SUMMARY
[0005] The purpose of the present application is to overcome the problems of high production cost, low yield and unsuitable for social life and production development of the prior art pump technology, and to provide a high-yield pump with low cost and high efficiency.
[0006] The technical content of the present application is as follows:
[0007] The high-yield pump of the present application is assembled in the pipe by a motor group, a suction and discharge group, an output group and a crushing knife. The specifications of the hole group adapt to the scenes required by life and production. Fluid enters the pipe from the lower inlet. The gas-liquid electric motor is installed in the pipe. The crushing knife is installed on the motor shaft. The pipe cooperates with the gas-liquid electric motor interface. The blade is fixed on the wheel shaft. The bearing bushing is installed in the non-return water piece shaft. The middle hole of the fluid interface is connected to the small-diameter flow channel. The feeding cylinder is opened. Fluid flows upward from the lower inlet to the small-diameter flow channel outlet. The gas-liquid electric motor is a gas-driven, liquid-driven and electric motor. The specifications of the parts are set according to the actual requirements.
[0008] The fastener of the motor group passes through the assembly hole to connect the gas-liquid electric motor and fix it in the pipe. The fastener passes through the assembly hole to fix the supporting part. The positioning part bearing is installed on the motor shaft. The pipe cooperates with the gas-liquid electric motor interface. The crushing knife is installed on the motor shaft. The lower interface thread is set. Fluid enters the lower inlet and flows upward.
[0009] The fastener of the suction and discharge group of the high-yield pump passes through the assembly hole to connect and fix the wheel support. The fixing part and the wheel bearing fix the wheel shaft. The shaft connects the motor shaft and the wheel shaft. The blade is installed on the wheel shaft to generate suction and discharge force. Fluid flows upward and is discharged.
[0010] The fastener of the output group of the high-yield pump passes through the assembly hole to fix the non-return water supporting part and the upper non-return water supporting part. The non-return water piece shaft of the non-return water piece passes through the bearing bushing. The fastener passes through the assembly hole to fix the fluid output pipe and the pipe. The upper pipe joint thread is set. The fluid output pipe is provided with a pipe joint thread. The middle hole of the fluid interface is connected to the small-diameter flow channel and the fluid mixed with the injected fluid rises in the small-diameter flow channel to form high-speed fluid which flows out of the outlet of the small-diameter flow channel in the upper outlet.
[0011] The feeding cylinder of the high-yield pump is opened. The radial fluid is sucked. The fastener passes through the assembly hole to fix the wheel support. The wheel fixing part and the wheel bearing position the wheel shaft. The crushing knife is installed on the motor shaft. The blade is installed on the wheel shaft.
[0012] Technical effects of the present application
[0013] The high-yield pump of the present application can be designed and manufactured from small to large specifications to meet the needs quickly and at low cost. It is durable and improves the lives of more than 8 billion people, production and water, oil and ecological environment. The optimization is as follows:
[0014] 1. Performance improvement. The high-yield pump of the present application has faster flow rate than existing pump technology. The oil extraction efficiency is increased by more than 10 times. The yield is super high. The application is expanded to many industries.
[0015] 2. Cost reduction. The yield of the high-yield pump of the present application is only a few percent of the weight of the traditional oil extraction machine. Compared with the existing water pump, it can be made into a small nanometer pump. The failure rate is low. The cost of purchase, production, electricity operation and maintenance is reduced.
[0016] 3. Operation is easy. The application is simple to install and automatic to produce, and the displacement of liquid such as oil extraction plant, water pumping and water transportation becomes very simple and easy to operate, and the related mechanical and electrical intelligent network is matched, and the operation is operated with few people.
[0017] 4. Safe and reliable. The application is excellent, and can work for a long time in the conditions of flammable and explosive low temperature and high temperature, bad geology and environment.
[0018] 5. Energy saving and environmental protection. The application can save more than 85% of electricity than traditional oil pumping pumps, and the weight of a single beam oil pumping machine is 9 tons to several tens of tons (the weight of oil rods, pipes and the like is not included), the weight ratio of pump product yield is high, and the weight of small and micro type is lighter than that of traditional type, several catties, several jins, several dozens of jins, several hundreds of jins, several tons of giant type, the product production cycle is long, energy saving and environmental protection, and the gain is truly significant.
[0019] 6. Easy maintenance. The application selects materials and materials, has few parts, is reliable and durable, and is reasonable in design, and needs little maintenance and repair.
[0020] 7. Legal rules. The application of high-yield pump can save energy, reduce cost and increase benefit, reduce the production capacity and energy consumption of pump product, and is applied to green product, production and application, energy saving and emission reduction, and is in line with policy and regulations.
[0021] 8. Application is important and extensive. The application can be applied to oil pumping in petroleum industry, water pumping and water supply in rural and urban areas, 360 industries, ecological restoration of earth and water, cost reduction and benefit increase, and is matched with the "water ecological sustainable development network" applied to the submitted patent application, restores the ecological environment of the earth, innovates the living space environment of the climate, and improves the life and production, and needs to be in demand, and has good evolution level and wide prospect. BRIEF DESCRIPTION OF DRAWINGS
[0022] Fig. 1 is a motor group of the high-yield pump of the application.
[0023] Fig. 2 is a suction and discharge group of the high-yield pump of the application.
[0024] Fig. 3 is an output group of the high-yield pump of the application.
[0025] Fig. 4 is an application form of the high-yield pump of the application: hole entering group.
[0026] Figure number, high-yield pump, motor group 1, suction and exhaust group 2, output group 3, hole inlet group 4, pipe 5, lower interface thread 6, lower inlet 7, fluid 8, high-speed fluid 81, radial inlet fluid 82, assembly hole 9, support 10, fastener 11, gas-liquid electric motor 12, gas-liquid electric motor 121, gas-liquid electric motor 122, motor shaft 13, motor shaft 131, positioning member 14, bearing 15, gas-liquid electric motor interface 16, gas-liquid electric motor interface 161, gas-liquid electric motor interface 162, crushing knife 17, crushing knife 171, upper support 18, upper fixing member 19, upper bearing 20, wheel support 21, wheel support 211, wheel shaft 22, wheel shaft 221, fixing member 23, fixing member 231, wheel bearing 24, wheel bearing 241, shaft coupling 25, wheel blade 26, wheel blade 261, wheel blade 262, wheel blade 263, wheel blade 264, wheel blade 265, wheel blade 266, wheel blade 267, upper support 27, wheel upper fixing member 28, upper bearing 29, non-return water support 30, upper non-return water support 31, bearing bush 32, non-return water member 33, water return member shaft 34, upper pipe joint thread 35, fluid output pipe 36, pipe joint thread 37, radial variable small flow channel 38, outlet 39, feeding cylinder 40, hole 41. DETAILED DESCRIPTION
[0027] The high-yield pump of the present application is further described below in conjunction with the accompanying drawings
[0028] Description: The high-yield pump of the present application is divided into three parts in one drawing, namely Figures 1-3, to fit the length of the A4 page of the specification, and in the divided drawing description, the related devices in the front and back drawings are written in the description of one drawing.
[0029] Referring to Figure 1, the high-yield pump, the fastener 11 of the motor group 1 passes through the assembly hole 9 to connect the gas-liquid electric motor 12, 121, 122 to be fixed in the pipe 5, the fastener 11 passes through the assembly hole 9 to fix the support 10, the positioning member 14 and the bearing 15 are installed on the motor shaft 13, the pipe 5 is matched with the gas-liquid electric motor interface 16, 161, 162, the crushing knife 17 is installed on the motor shaft 13, the lower interface thread 6 is provided, and the fluid 8 enters the lower inlet 7 and flows upward.
[0030] In the lower part of Figure 2, the fastener 11 connects the upper support 18, the upper fixing member 19, and the upper bearing 20 to the upper end of the motor shaft 13, the external gas-liquid electric power supply line connects the gas-liquid electric motor interface 16, 161, 162, the gas-liquid electric motor 12, 121, 122, and drives the motor shaft 13 to rotate, and the crushing knife 17 rotates to crush the coarse material in the fluid into powder to prevent the flow channel from being blocked.
[0031] The specifications and quantities of the pipe 5, the three gas-liquid electric motors 12, 121, 122, the gas-liquid electric motor interfaces 16, 161, 162, and the crushing knife 17 are set according to the configuration required by the user.
[0032] Figure 2, high-yield pump, suction and discharge group 2, fastener 11 through the assembly hole 9 to connect the fixed wheel support 21, fixed 23, wheel bearing 24 fixed wheel shaft 22, shaft coupling 25 to connect the motor shaft 13 and the wheel shaft 22, the wheel blade 26, 261, 262 installed on the wheel shaft 22 to produce suction and discharge force rotation, fluid 8 from the bottom to the top flow discharge.
[0033] In Figure 3, the lower part of the fastener 11 fixed on the wheel upper support 27, the wheel upper fixed 28, the wheel bearing 29 fixed the upper end of the wheel shaft 22, the motor shaft 13 is connected to the wheel shaft 22 rotation with shaft coupling 25, so that the wheel blade 26, 261, 262 rotation, produce suction and discharge fluid 8 from the bottom to the top flow. Tube 5, wheel blade 26, 261, 262 specifications as needed.
[0034] Figure 3, high-yield pump, output group 3, fastener 11 through the assembly hole 9 to fix the check water support 30, the upper check water support 31, the check water element 33, the check water element shaft 34 through the bearing pad 32, the fastener 11 through the assembly hole 9 to fix the fluid output pipe 36 and the pipe 5, provided with the pipe joint thread 35, the fluid output pipe 36 is provided with the pipe joint thread 37, the hole in the fluid interface 163 communicates with the radial variable small flow channel 38 and the injection fluid mixes with the fluid 8, rises in the radial variable small flow channel 38 into high-speed fluid 81 from the upper outlet 39 of the radial variable small flow channel 38.
[0035] Start-up fluid 8 pushes the check water element 33 to make the check water element shaft 34 upward to the bottom of the bearing pad 32 to stop, shutdown check water element 33 lower edge falls on the check water support 30 to prevent the fluid above from flowing downward to impact the wheel blade 26, 261, 262. External, injection fluid fusion fluid 8, so that it runs fast, injection fluid species, fluid output pipe 36 specifications as needed.
[0036] Figure 4, high-yield pump hole group 4, pipe 51 feeding cylinder 40 opening 41, suction radial fluid 82, fastener 11 through the assembly hole 9 to fix the wheel support 211, wheel fixed 231, wheel bearing 241 to locate the wheel shaft 221, the crushing knife 171 is installed on the motor shaft 131, the wheel blade 263-267 is installed on the wheel shaft 221.
[0037] High-yield pump strain amount of parts, namely hole group 4, crushing knife 171 crushing material to prevent blockage, pipe 5 extension wheel blade 263-267 five to enhance suction and discharge force, feeding cylinder 40 opening multiple holes 41, wheel blade 263-267 plus 5 can be added or subtracted, parts size can be added or subtracted, crushing knife and wheel blade shape, according to the actual flow of specific needs to set up to meet the needs of life production ecological needs.
[0038] High-yield pump is made of different specifications, suitable for needs.
Claims
1. A high capacity pump characterized by Motor group 1, suction and exhaust group 2, output group 3 and crushing knife 17 are assembled in pipe 5, the specification of hole group 4 adapts to the scene of life production needs, fluid 8 enters pipe 5 from lower inlet 7, gas-liquid electric motor 12, 121, 122 is installed in pipe 5, crushing knife 17 is installed on motor shaft 13, crushing knife 171 is installed on motor shaft 131, pipe 5 cooperates with gas-liquid electric motor interface 16, 161, 162, blade 26, 261, 262 is fixed on wheel shaft 22, bearing bush 32 installs check water piece shaft 35, the middle hole of fluid interface 163 is communicated with small diameter flow channel 38, feeding cylinder 40 is opened hole 41, wheel shaft 221 installs blade 263-267, fluid 8 flows upward from lower inlet 7 to upper outlet 39, and then flows out from small diameter flow channel 38, the gas-liquid electric motor is the abbreviation of pneumatic, hydraulic and electric motor, according to the implementation, it is installed in pipe 5, 51, and the specification of parts is set according to the actual needs.
2. The high capacity pump of claim 1, wherein The fastener 11 of the motor group 1 passes through the assembly hole 9 to connect the gas-liquid electric motor 12, 121, 122, so that it is fixed in the pipe 5, the fastener 11 passes through the assembly hole 9 to fix the support 10, the positioning piece 14 bearing 15 is installed on the motor shaft 13, the pipe 5 cooperates with the gas-liquid electric motor interface 16, 161, 162, the crushing knife 17 is installed on the motor shaft 13, the lower interface thread 6 is provided, and the fluid 8 enters the lower inlet 7 and flows upward.
3. The high capacity pump of claim 1, wherein The fastener 11 of the suction and exhaust group 2 passes through the assembly hole 9 to connect and fix the wheel support 21, the fixing piece 23, the wheel bearing 24 fixes the wheel shaft 22, the shaft coupling 25 couples the motor shaft 13 and the wheel shaft 22, the blade 26, 261, 262 is installed on the wheel shaft 22 to rotate to generate suction and exhaust force, and the fluid 8 flows upward and is discharged.
4. The high capacity pump of claim 1, wherein The fastener 11 of the output group 3 passes through the assembly hole 9 to fix the check water support 30 and the upper check water support 31, the check water piece shaft 34 of the check water piece 33 passes through the bearing bush 32, the fastener 11 passes through the assembly hole 9 to fix the fluid output pipe 36 and the pipe 5, the upper pipe joint thread 35 is provided, the fluid output pipe 36 is provided with pipe joint thread 37, the middle hole of the fluid interface 163 is communicated with the small diameter flow channel 38, and the fluid is injected and mixed with the fluid 8, and the high-speed fluid 81 is formed in the small diameter flow channel 38 and discharged from the upper outlet 39 of the small diameter flow channel 38.
5. The high capacity pump of claim 1 wherein The pipe 51 feeding cylinder 40 opening 41, suction radial fluid 82, fastener 11 through assembly hole 9 fixed wheel support 211, wheel fixing piece 231, wheel bearing 241 positioning wheel shaft 221, crushing knife 171 is installed on the motor shaft 131, and the wheel blade 263-267 is installed on the wheel shaft 221.
Citation Information
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