Gear device for electric motor
09777823 · 2017-10-03
Assignee
Inventors
Cpc classification
Y10T74/2186
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
A gear device for electric motor 1 which is combined with an electric motor installed in a vehicle, wherein a breather pathway 8 is provided in a gear box 2 where a row of gears for transmitting force of the electric motor is contained, the breather pathway connecting between an inside and outside of the gear box 2, and in the breather pathway 8, a closing valve system 10 is provided to close the breather pathway 8 when an outer pressure of the gear box 2 is lower in comparison to an inner pressure of the gear box 2 exceeding an acceptable range.
Claims
1. A gear device for an electric motor which is combined with the electric motor installed in a vehicle, wherein a breather pathway is provided in a gear box where a row of gears for transmitting force of the electric motor is contained, the breather pathway connecting between an inside and outside of the gear box, and in the breather pathway, a closing valve system including a valve chamber and a valve body contained within the valve chamber so as to move vertically, the valve body is provided to, when an outer pressure of the gear box is lower in comparison to an inner pressure of the gear box to such a degree that the valve body is moved, close the breather pathway by the valve body being moved, wherein the breather pathway includes a first pathway extending vertically and a second pathway extending vertically and communicating with an upper side of the first pathway, the valve chamber is formed by combining a first enlarged portion which is an upper portion of the first pathway and a second enlarged portion which is a lower portion of the second pathway, the valve body has a valve axis to enter the first enlarged portion; and a flange provided so as to be enlarged outward in a diameter direction from an upper end of the valve axis, the flange having an outer diameter which is smaller than an inner diameter of the second enlarged portion, and also at least a portion of the outer diameter being bigger than an inner diameter of the second pathway and bigger than an inner diameter of the first enlarged portion, and having at least one airflow slit formed on a bottom surface of the flange, a horizontal cross sectional surface of the valve body being circular; a base portion is provided in a circumferential direction of the first enlarged portion, the base portion having an upper surface to connect to the bottom surface of the at least a portion of the flange where the outer diameter is bigger than an inner diameter of the first enlarged portion when the valve body descends in the valve chamber by the valve body's own weight, and the closing valve system is constructed so that when the valve body descends in the valve chamber by the valve body's own weight, the first pathway and second pathway are connected via an aperture created by each of the airflow slits disposed between the upper surface of the base portion and the bottom surface of the flange connecting to each other and an aperture between the valve body and the valve chamber, and when the outer pressure is lower in comparison to the inner pressure to such a degree that the valve body is moved, the valve body ascends in the valve chamber to close the second pathway by an upper surface of the flange.
2. The gear device of the electric motor according to claim 1, wherein the inner diameter of the first enlarged portion is smaller than the inner diameter of the second enlarged portion, and the outer diameter of the flange is bigger than the inner diameter of the first enlarged portion, and the base portion is provided in an outer circumferential side portion of the first enlarged portion.
3. The gear device of the electric motor according to claim 1, wherein a filter is further provided in the breather pathway so as to be located at an outside of the gear box more outward than a location closed by the closing valve system.
4. The gear device of the electric motor according to claim 2, wherein a filter is further provided in the breather pathway so as to be located at an outside of the gear box more outward than a location closed by the closing valve system.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
(2)
(3)
DESCRIPTION OF EMBODIMENTS
(4)
(5) In the upper portion of the gear box 2, a void portion 2a is provided so as to extend laterally. Above the void portion 2a, breather device 5 is provided. The breather device 5 has a base portion 6, a breather cap 7, and a breather pathway 8. The base portion 6 is formed integrally with the upper portion of the gear box 2. The breather cap 7 is fixed to the base portion 6. The breather pathway 8 extends so as to penetrate the base portion 6 and the breather cap 7, and one end thereof opens at the void portion 2a and the other end thereof opens at an outer portion of the breather cap 7. The breather pathway 8 includes a first pathway 8a extending vertically in the base portion 6, a second pathway 8b extending vertically in the breather cap 7, and a third pathway 8c extending horizontally from an upper end of the second pathway 8b. However, the formation of the breather pathway 8 is just an example, the construction of flow paths of the breather pathway 8 can be changed appropriately.
(6) An aperture of connected surfaces between the base portion 6 and the breather cap 7 is sealed with packing 9. In an inside of the packing 9, a closing valve system 10 is provided. The closing valve system 10 includes a float chamber (a valve chamber) 11 and a float (a valve body) 12 contained in the float chamber 11. The float chamber 11 is constructed by combining an enlarged portion 8d which is an upper portion of the first pathway 8a and an enlarged portion 8e which is a lower portion of the second pathway 8b.
(7) As shown enlarged in
(8) Returning to
(9) In such a gear device 1, when the pressure of inside of the gear box 2 is equal to the pressure of outside of the gear box 2, the float 12 descends by its own weight. Thereby, as shown in
(10) The pressure difference at a moment when the float 12 closes the breather pathway 8 (an affecting pressure to the float 12) can be set appropriately, so that, as long as the difference pressure between the inside and outside of the gear box 2 is within the acceptable range, maintained is a state that the airflow is possible via the breather pathway 8, and when the pressure difference exceeds the acceptable range, that is, when the outer pressure descends exceeding the acceptable range further than the inner pressure, the float 12 ascends to close the breather pathway 8. For example, in order to avoid a leak of lubricating oil at a moment when the vehicle having the gear device 1 and the other vehicle pass each other in a tunnel while running at a high speed range exceeding a predetermined limit (for example, not less than 300 km/h), an amount of descent of the pressure in the tunnel, the pressure occurring at the moment of passing each other, is measured or estimated, and the affecting pressure to the float 12 may be set so that the float 12 closes the breather pathway 8 with the pressure difference smaller than the pressure difference between the inside and outside of the gear box 2, which could occur together with the descent of the pressure.
(11) According to the above mentioned gear device 1, the filter 14 is located at an outer position of the gear box 2 beyond a position where the breather pathway 8 is closed by the float 12, that is, a position where the flange 12 is connected to the upper surface of the expanded portion 8e. Accordingly, even if the outer pressure of the gear box 2 descends more rapidly than the inner pressure of the gear box 2, and the mist component of lubricating oil in the gear box 2 flows into the breather pathway 8, as the breather pathway 8 is closed by the float 12, it could not happen that the filter 14 has to receive a big mount of mist component. Thereby, it is possible to suppress a progress of clogging of the filter 14. Therefore, it is possible to prolong a cycle of exchange and/or maintenance for the filter 14.
(12) The present invention is not limited only to above mentioned embodiment, but also can be executed in a various embodiments. For example, it is not necessary to mount the filter 14. The closing valve system 10 can be constituted in such a way that the whole of the closing valve system 10 is contained in either one of the base portion 6 or the breather cap 7. Instead of or in addition to the airflow slit 12c, an airflow slit can be formed on the upper surface of the base portion 6. The closing valve system 10 is not limited only to the example that the float 12 as the valve body is moved by using a pressure difference. The closing valve system could be constructed in such a way that a valve body located in the breather pathway 8 is pressed in an opening-valve direction (a downward direction in
REFERENCE SINGS LIST
(13) 1 A gear device for electric device
(14) 2 A gear box
(15) 5 A breather device
(16) 6 A base portion
(17) 7 A breather cap
(18) 8 A breather pathway
(19) 10 A closing valve system
(20) 11 A flow chamber (a valve chamber)
(21) 12 A float (a valve body)
(22) 14 A filter