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Three-wire synchronous meshing spring compensation combined pump

A technology of synchronous meshing and spring compensation, applied in pumps, rotary piston pumps, rotary piston machines, etc., it can solve the problems of positive displacement pumps that have never been seen before, and achieve the effect of good active isolation and sealing.

Inactive Publication Date: 2013-03-27
HUNAN BALING FURNACE ENERGY CONSERVATION
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

) to collect global engineering science and technology papers, and there has never been a positive displacement pump that can simultaneously have end face wear seal compensation and radial wear seal compensation

Method used

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  • Three-wire synchronous meshing spring compensation combined pump
  • Three-wire synchronous meshing spring compensation combined pump
  • Three-wire synchronous meshing spring compensation combined pump

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Embodiment Construction

[0031] The structure and working principle of the present invention will be further described in detail with reference to the drawings and embodiments.

[0032] A three-wire synchronous meshing spring compensation combination pump, including a pump body 4, a rotor shaft 1 installed on the central through hole 41 of the pump body 4, and a slave rotor 2 installed on the eccentric half hole 42 of the pump body 4, the eccentric half hole 42 There is an eccentric end cover 5 on the outer end surface, and the front plane of the compensation disk 6 between the outer end surface of the secondary rotor 2 and the eccentric end cover 5 is attached to the outer end surface of the secondary rotor 2 . The positioning pin 7 slides and fixes the circumferential position of the compensating disc 6 relative to the eccentric end cap 5. The small head of the pagoda-shaped spring 9 is supported on the inner side boss 59, and the large end supports the concave angle 69 on the back of the compensatin...

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Abstract

The invention provides a three-wire synchronous meshing spring compensation combined pump. The three-wire synchronous meshing spring compensation combined pump comprises a pump body 4, a rotor shaft 1 arranged in a central through hole 41 of the pump body 4, and an auxiliary rotor 2 arranged in an eccentric half hole 42 of the pump body 4; an eccentric end cover 5 is arranged on the outer end face of the eccentric half hole 42 and is closed and fixed by using at least three screws 8; the outer end face of the auxiliary rotor 2 is attached to the front of a compensation disk 6; a positioning pin 7 and a tower-shaped spring 9 are arranged between the back of the compensation disk 6 and the eccentric end cover 5; the rotor shaft 1 and the auxiliary rotor 2 synchronously produce three axially extending sealing bands; and under the action of a supporting bounce of the tower-shaped spring 9, one side of the front of the compensation disk 6 is kept being attached to the outer end faces of the two rotors, so the inner end faces of the two rotors are attached to the bottom surface 40 of the eccentric half hole. A, B and C three dynamic spaces have end face abrasion sealing compensation and radial abrasion sealing compensation, so that a good movement isolating and sealing state is kept between a high pressure cavity and a low pressure cavity for long time.

Description

technical field [0001] The invention belongs to the field of mechanical engineering, and the international patent classification is F04D non-variable displacement pump, which relates to an energy conversion displacement pump which converts mechanical energy into liquid pressure energy, in particular to a three-wire synchronous meshing spring compensation combination pump. Background technique [0002] The main structural forms of known positive displacement pumps are: plunger pump, screw pump, Roots pump and sliding vane pump. As a positive displacement pump, it has the advantage of high efficiency, but its efficiency is obviously reduced after long-term wear and tear. The main reason for the above defects is that the end face movable isolation between the high-pressure chamber and the low-pressure chamber cannot effectively seal. If the tolerance size of the end face is too small, it is easy to be stuck due to thermal expansion. If the tolerance size of the end face is too ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F04C2/10
Inventor 张意立
Owner HUNAN BALING FURNACE ENERGY CONSERVATION
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