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High-speed runoff turbine and gas compressor composite impeller

A technology of turbine impeller and composite impeller, which is applied to non-variable-capacity engines, mechanical equipment, non-variable-capacity pumps, etc., can solve problems such as many parts, limited power or torque, and loose connection parts of the impeller or turbine impeller. , to achieve the effect of reducing quantity, reducing processing difficulty, reducing intake flow loss and aerodynamic noise

Inactive Publication Date: 2021-02-12
BEIJING POWER MACHINERY INST
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This structure consists of many parts, and the transmittable power or torque is limited, especially in the case of large torque transmission, it is easy to cause loosening of the connection between the rotating shaft and the compressor impeller or turbine impeller.

Method used

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  • High-speed runoff turbine and gas compressor composite impeller

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Embodiment Construction

[0012] It should be noted that, in the case of no conflict, the embodiments of the present invention and the features in the embodiments can be combined with each other.

[0013] The present invention will be described in detail below with reference to the accompanying drawings and examples.

[0014] A high-speed radial turbine and compressor composite impeller includes a turbine impeller 2, a compressor impeller 1 and a transition hub 3, and the turbine impeller 2, compressor impeller 1 and transition hub 3 adopt an integral structure, such as figure 1 shown;

[0015] The turbine wheel 2 is located on the same axis as the compressor wheel 1, and the exhaust end of the compressor wheel 1 is adjacent to the intake end of the turbine wheel 2;

[0016] The air intake end of the compressor impeller 1 has an air intake guiding boss 5, and the central part of the air intake end guiding boss 5 has a blind hole 4 for connecting with the rotating shaft, and the bottom of the blind hol...

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Abstract

The invention relates to a high-speed runoff turbine and a gas compressor composite impeller. The turbine mainly comprises a turbine impeller, a gas compressor impeller, a transition hub and the like.The turbine impeller, the gas compressor impeller and the transition hub are of an integrated structure, the turbine impeller and the gas compressor impeller are located on the same axis, and the transition hub is located between the backs of the gas compressor impeller and the turbine impeller. The composite impeller is reliably connected with a rotating shaft through a blind hole and a threadedhole in an air inlet flow guide boss at the side air inlet end of the gas compressor impeller. According to the size parameters of a turbine, a gas compressor and a rotating shaft in the closed Brayton cycle power generation system, on the basis of determining the structural parameters of the composite impeller, composite impeller machining and assembly between the composite impeller and the rotating shaft are completed. The structure of the turbine can reduce the number of rotating parts of the closed cycle power generation system, reduce the processing difficulty of a rotor assembly, improve the assembly precision of a rotor structure, and ensure the working reliability and service life of the power generation system.

Description

technical field [0001] The invention belongs to the technical field of structural design of a closed Brayton cycle thermoelectric conversion system, and in particular relates to a composite impeller of a high-speed radial flow turbine and a compressor. Background technique [0002] As a new form of thermoelectric conversion, the closed Brayton cycle thermoelectric conversion system can convert thermal energy to mechanical work through thermal processes such as heat absorption, expansion work, heat release and compression with the help of a certain gas working fluid in a closed environment. , and the mechanical work is further converted into electrical energy by a generator. During the working process of the closed Brayton cycle thermoelectric conversion system, there is only energy exchange with the outside world, but no working fluid exchange. A typical closed Brayton cycle thermoelectric conversion system is mainly composed of turbines, compressors, generators, regenerato...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F01D15/08F01D1/22F01D5/04F01D11/00F04D25/04F04D29/28F04D29/26F04D29/66F04D29/62F04D29/08
CPCF01D15/08F01D1/22F01D5/04F01D11/00F04D25/04F04D29/284F04D29/266F04D29/666F04D29/624F04D29/083
Inventor 马同玲王正赵伟王力国
Owner BEIJING POWER MACHINERY INST
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