This application claims priority to Brazilian Patent Application No. 10 2018 068836-7 filed Sep. 17, 2018, the disclosure of which is hereby incorporated by reference in its entirety.
The present invention relates to an isolation retainer between an external zone and an internal zone of an electric pump, through which the electric pump rotor is projected. More particularly, the present invention relates to a retainer particularly applied to the rotor shaft of an electric pump of white line equipment.
As known in the state of art, retainers are elements designed to isolate adjacent zones and between said zones a shaft or mechanical element generally moves in. Their primary function is to prevent direct contact between said adjacent zones, which usually define different conditions. Particularly in regard to the equipment known as white line, the retainers are provided, for example, to isolate the zone surrounding an electric pump from the zone in which the fluid to be pumped is located.
In some more specific applications, said electric pump is enclosed in a chamber (internal zone) isolated from the environment (external zone) in order to avoid deleterious effects, either by the presence of water (from washing and/or rinsing) or by the presence of particulates and contaminants in the air surrounding said pump.
In this particular case, with the electric pump enclosed in a closed chamber, the electric motor driving the driving shaft is powered by an electric current and, as known, this produces heat during the conversion from electricity to movement. Such heat emanates within the chamber, thereby increasing the internal pressure of the chamber. In order to prevent the internal pressure from assuming values above the acceptable ones in design, from which a chamber seal impairment and/or a rotor assembly locking may occur, among other problems, the state of art presents a solution in which the retainer employed has an exhaust port, which allows internal pressure relief but impairs the tightness of the internal zone.
In addition, not only can the electric pump be exposed to external agents but also other components enclosed in said chamber, such as the bearing of the electric pump. In this case, the possible penetration of particles into the bearing that support and position the drive shaft may lead to premature bearing impairment due to grooves emergence or deformations of the bearing.
US 2014 041466 and U.S. Pat. No. 8,376,369 describe a retainer for isolation between internal oiled zone and external air zone whereas helical grooves are provided to push oil into its reservoir and to push air out of the oil reservoir. Although the inventive concept is not innovative, such a solution has its efficiency impaired in the condition of stopped shaft, i.e. without rotation.
BRPI 0401042 describes an oil retainer whereas the seal includes passages to create an internal pressure relief path.
Thus, it is a first object of the present invention a retainer particularly provided for an electrical pump of white line equipment, which allows the isolation of the internal zone from the external zone, but allowing the internal pressure relief.
These and other objects are achieved from a rotor shaft retainer, preferably to be provided in an electric pump to be used in white line equipment, and in particular to be coupled to the upper edge of the electric pump housing and capable of permitting the sealing of the shaft passing therethrough, said retainer having a basically cylindrical shape and composed of a disc shaped base, externally provided with a fixing ring and a cylindrical dome which is uppermost provided with an opening, defining a central passageway formed from said opening to a lower base opening. In particular, the central passageway comprises at least two lips-shaped annular cavities, projecting themselves in the inner radial direction and facing the upper opening of the retainer, and, at least, said lips-shaped cavities being made of rubber having a Shore A hardness of 62 to 78 and defining respective angles from 38 to 58 degrees in relation of the bottom surface plane of the base.
In particular, said retainer comprises three lips-shaped cavities with an inclination angle from 43 and 53 degrees. In addition, between each lips-shaped annular cavity and its upper adjacent is defined a chamber partially filled with grease having a kinematic viscosity at 40° C. of about 220 mm2/s.
The object of the present invention will be better defined and understood from the detailed description of a preferred embodiment thereof, which is made accompanied by the attached illustrative and non-limiting figures, in which:
In accordance with
With particular reference to
In accordance with the illustration of
More particularly, the angle defined between any of said lips-shaped annular cavities (8a-8c) and the horizontal plane, which is the plane defined by the base (3), is 38 to 58 degrees, and more particularly from 43 and 53 degrees. In addition, and preferably, the respective inclination angles of each of the lips-shaped annular cavities are equal. However, and depending on the particular characteristics of the electric pump, its rotor shaft, and other factors, it is possible to define each of the inclination angles with respective different values, but always within the limits now established.
In addition, and in order that the desired results of sealing, gas exhaust and useful life are achieved by the retainer, in accordance with the present invention, it is further desired that said retainer, and in particular said lips-shaped cavities (8a-8c) are made from natural or synthetic rubber having a Shore A hardness between 62 and 78.
In the various tests carried out by the inventors, it has been established that the combination of the above parameters for lips-shaped cavities arrangement, as determined, is effective for achieving the desired sealing results between the shaft (22) of the electric pump (20), as well as the durability of the retainer itself.
In addition, between each lips-shaped annular cavity (8) and its upper adjacent one is defined a chamber (9) for receiving a lubricating/retaining material of particulates, contaminants and the like. Preferably, and in order to allow retention of any particulate material which eventually penetrates the shaft/lips-shaped cavity seal, each of said chambers (9) is partially filled with a grease which has a kinematic viscosity at 40° C., about 220 mm2/s.
Thus, according to said tests and trials carried out, it has been found that the retainer, as defined herein, ensures a very effective sealing of the rotating shaft (22) against possible penetration of particles, such as sand and others, inside the electric pump, but without impairing the gas relief capability coming from the electric pump chamber. In addition, a retainer thus defined has a very significant useful life, safeguarding the integrity of the electric pump and its shaft.
Number | Date | Country | Kind |
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10 2018 068836-7 | Sep 2018 | BR | national |