The invention relates to the hydraulic technical field, in particular to a centrifugal cooling pump.
To obtain combustion engines with low fuel consumption and high emission, the temperature of the machine body cooling liquid needs to be raised over 120° C. on one hand; on the other hand, to meet the requirements for temperature and density of intake air by using the intercooler, and the need of engine oil cooling by using the engine oil cooler, the temperature of the cooling liquid needs to be controlled below 100° C. At present, combustion engines mainly adopt single-circuit centrifugal cooling pumps, which can meet certain standard of the cooling water regarding temperature, but fail to meet the needs of different parts requiring cooling liquid of different temperatures in the cooling system of the combustion engines. To satisfy the needs of different parts requiring cooling liquid of different temperatures, the high-low temperature double-circuit cooling pump is designed.
The double-circuit cooling system may meet the needs of different parts requiring different temperatures in the cooling system; commonly there are two kinds of double-circuit cooling systems, i.e. double-pump & double-circuit system, and single-pump & double-circuit system. The double-pump & double-circuit system has two cooling pumps with complex repetition in structure, while the single-pump & double-circuit system is complex in realization of the system.
Therefore, a double-circuit cooling system that is simple in both structure and realization of the system is required.
The invention provides a centrifugal cooling pump which comprises an intake water plate, an impeller, a spiral case, a bearing, a bearing block, a transmission shaft and a fastener; the said bearing is installed with an interference fit on the bearing block; the transmission shaft is matched with an interference fit with the inner ring of the bearing; the impeller is mounted with an interference fit on the transmission shaft; the said intake water plate and the bearing block are set respectively at the two sides of the spiral case and fixed by using a fastener; the said intake water plate is set with a first water inlet; the said spiral case is set with a second water inlet; the said impeller together with the spiral case form independent high-temperature fluid flow channel and low-temperature fluid flow channel.
Preferably, a high-temperature blade is set on one side of the said impeller corresponding to the high-temperature flow channel and a low-temperature blade is set on the other side of the impeller corresponding to the low-temperature flow channel.
Preferably, the said high-temperature blade and low-temperature blade both adopt the forward bending and sweepback form.
Preferably, the number of the high-temperature blade and low-temperature blade are six respectively.
Preferably, the said first water inlet and second water inlet both adopt water intake along axial direction of the transmission shaft.
Preferably, the said intake water plate has a straight tapered axial suction chamber, and the taper of the suction chamber is 7-11°. Preferably, the said suction chamber has the taper of 10°.
Preferably, the said spiral case still includes a first water outlet and a second water outlet; the said high-temperature flow channel corresponds to the first water outlet; the said low-temperature flow channel corresponds to the second water outlet.
Preferably, the said first water outlet and second water outlet both adopt water emission along the axial direction of the transmission shaft.
The invention has the following advantages:
1) The cooling pump of the invention has an impeller with both sides installed with a blade respectively; the impeller, together with the spiral case, forms two flow channels, i.e. one blade on one side corresponds to the high-temperature channel, and the other blade on the other side corresponds to the low-temperature channel. The said high-temperature flow channel and low-temperature flow channel split the cooling fluid to two independent and parallel cooling circuits for high-temperature fluid and low-temperature fluid respectively. Therefore, the invention adopting a double-circuit cooling system has combined the simple system of the double-pump & double-circuit system and the simple structure of the single-pump & double-circuit system. Additionally, the impeller adopts forward bending and sweepback blades, in realization of high efficiency. Meanwhile, the water inlets of the intake water plate and the spiral case adopt the tapered suction chamber structure, which can promote the cavitation performance of the pump and is benign to balancing axial forces of the pump.
2) The invention adopts high-low temperature double-circuit cooling pump, which can meet the needs of promoting the temperature-balancing ability of the engine and thermal transmission efficiency, realize satisfaction of different cooling liquid to different parts of combustion engines, reduce the emission index of combustion engine, increase the efficiency of the whole machine and reduce the fuel consumption.
The invention is further described in combination with the drawings attached.
As shown in
A preferred embodiment of impeller 2 of the centrifugal cooling pump of the invention is described in combination with
The pump feeds water through the water inlet A11 on the intake water plate 1 and the water inlet B12 on the spiral case 3; the transmission shaft 6 of the pump is connected to external power for drive; the impeller 2 is connected with an interference fit with the transmission shaft 6; the screw of impeller 2 throws water coming from the water inlet into the high-temperature flow channel and low-temperature flow channel respectively and then water comes out along axial direction of the pump from the water outlet 11 and water outlet 12.
Obviously, the above embodiments of the invention are only for clear description of the invention, but not to restrict the protection scope of the invention. It shall be understood that regular technicians of the field may make changes or alterations in different forms based on the foregoing description, as embodiments of the invention cannot be exhausted here. Any change or alteration that can be obviously derived from the technical plan of the invention shall be also protected as a part of the invention.
Number | Date | Country | Kind |
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201010290009.2 | Sep 2010 | CN | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN2011/001559 | 9/14/2011 | WO | 00 | 12/4/2012 |