Internal combustion engine, lubrication system, and engine oil strainer
10876439 ยท 2020-12-29
Assignee
Inventors
- Xuguang Tan (Shandong, CN)
- Jiawei Shen (Shandong, CN)
- Yong Cui (Shandong, CN)
- Jingpeng Cui (Shandong, CN)
- Jianwen Li (Shandong, CN)
Cpc classification
F01M2001/1078
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M2011/007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M1/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M11/0004
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M2001/0292
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M11/0458
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01M1/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D27/10
PERFORMING OPERATIONS; TRANSPORTING
F01M11/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An engine oil strainer includes a lubricating oil passage, and an oil inlet and an oil outlet which are respectively disposed at two ends of the lubricating oil passage. The engine oil strainer further includes a check valve which is disposed at the oil inlet and which only allows a lubricating oil to flow into the lubricating oil passage. Also disclosed herein are a lubrication system employing the engine oil strainer, and an internal combustion engine having the lubrication system. When the internal combustion engine stops operating, the lubricating oil flows back from the oil outlet into the engine oil strainer. Since the check valve is disposed at the location of the oil inlet of the engine oil strainer, the lubricating oil flowing back into the engine oil strainer is not capable of proceeding to flow back from the oil inlet into the oil pan.
Claims
1. An oil strainer, comprising a lubricating oil passage, and an oil inlet and an oil outlet respectively provided at two ends of the lubricating oil passage, and wherein the oil strainer further comprises a check valve which is arranged at the oil inlet and only allows a lubricating oil to flow into the lubricating oil passage; the oil strainer further comprises an oil return pressurized passage, and the oil return pressurized passage has one end in communication with the lubricating oil passage, and another end having an oil return port allowing a returning lubricating oil to flow in; and wherein a housing of the oil strainer is in a shape of a triangle, the housing is drilled to form a first passage and a second passage, the first passage extends through two corners of the housing, and the second passage is drilled from a remaining corner of the housing and is in communication with the first passage, two ends of the first passage are sealed by screw plugs respectively, the oil outlet and the oil return port are respectively opened on a sidewall of the first passage, the lubricating oil passage is defined by the second passage and a section of the first passage adjacent to the oil outlet, and the oil return pressurized passage is defined by a section of the first passage adjacent to the oil return port, the first passage and the second passage are connected by an arc-shaped transition section, and the arc-shaped transition section is bent toward the oil outlet.
2. The oil strainer according to claim 1, wherein the oil strainer further comprises a pressure limiting valve provided at the oil return port, and the pressure limiting valve is configured to open the oil return pressurized passage in a case that a pressure of the returning lubricating oil reaches an opening pressure of the pressure limiting valve.
3. The oil strainer according to claim 1, wherein a frustum-shaped flow guiding portion is provided at the oil inlet, and the check valve is embedded in the frustum-shaped flow guiding portion.
4. A lubricating system, applicable to an internal combustion engine, comprising an oil pump and the oil strainer according to claim 1, wherein, the oil outlet of the oil strainer is in communication with an inlet of the oil pump; and the oil return port of the oil strainer is in communication with an oil return passage of the internal combustion engine.
5. The lubricating system according to claim 4, wherein sealing members are provided between the oil outlet and the inlet of the oil pump, and between the oil return port and a body of the internal combustion engine.
6. The lubricating system according to claim 5, wherein the sealing members are sealing gaskets or O-rings.
7. An internal combustion engine, comprising the lubrication system according to claim 4.
8. A lubricating system, applicable to an internal combustion engine, comprising an oil pump and the oil strainer according to claim 2, wherein, the oil outlet of the oil strainer is in communication with an inlet of the oil pump; and the oil return port of the oil strainer is in communication with an oil return passage of the internal combustion engine.
9. The lubricating system according to claim 8, wherein sealing members are provided between the oil outlet and the inlet of the oil pump, and between the oil return port and a body of the internal combustion engine.
10. A lubricating system, applicable to an internal combustion engine, comprising an oil pump and the oil strainer according to claim 3, wherein, the oil outlet of the oil strainer is in communication with an inlet of the oil pump; and the oil return port of the oil strainer is in communication with an oil return passage of the internal combustion engine.
11. The lubricating system according to claim 10, wherein sealing members are provided between the oil outlet and the inlet of the oil pump, and between the oil return port and a body of the internal combustion engine.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
REFERENCE NUMERALS
(5) TABLE-US-00001 1 lubricating oil passage, 2 oil return pressurized passage, 3 oil inlet, 4 oil outlet, 5 oil return port, 6 pressure limiting valve, 7 check valve, 8 frustum-shaped flow guiding portion, 9 housing, 10 screw plug, 11 O-ring, 12 filter screen.
DETAILED DESCRIPTION
(6) One core of the present application is to provide an oil strainer, to reduce the power consumed by an oil pump when an internal combustion engine is started, and effectively shorten the time for establishing an oil pressure, thereby sufficiently lubricating the internal combustion engine as quickly as possible.
(7) Another core of the present application is to provide a lubrication system having the oil strainer.
(8) Yet another core of the present application is to provide an internal combustion engine having the lubrication system.
(9) In order to enable the person skilled in the art to better understand the solutions of the present application, the present application will now be illustrated in further detail below in conjunction with the drawings and the specific embodiments.
(10) Referring to
(11) As shown in
(12) Of course, a filter screen 12 should be provided at the oil inlet 3. In order to further optimize the technical solutions in the above embodiments, the oil strainer in the present application is further provided with an oil return pressurized passage 2. As shown in
(13) It is not difficult to understand that in the actual working process, the lubricating oil in the oil return pressurized passage 2 will be merged with the lubricating oil flowing into the lubricating oil passage 1 from the oil inlet 3, which effectively increases the flow rate and pressure at the oil outlet 4 of the oil strainer. And since the oil outlet 4 of the oil strainer is in communication with an inlet of an oil pump, the oil strainer can effectively increase the inlet pressure of the oil pump, reduce the power consumption of the oil pump, and improve the fuel economy.
(14) It can be seen that in the embodiments of the present application, the inlet pressure of the oil pump is increased by improving the oil strainer, which avoids the idea of using a variable displacement oil pump with a complicated structure. The purpose of reducing the power consumption of the oil pump has been achieved on the premise of ensuing a simple structure and a low cost.
(15) To effectively increase the inlet pressure of the oil pump, the technical solutions of the above embodiments are further improved in this embodiment. In this embodiment, a pressure limiting valve 6 is further provided at the oil return port 5. As shown in
(16) As shown in
(17) A housing 9 of the oil strainer in the embodiments of the present application is in the shape of a triangle, as shown in
(18) The housing 9 is drilled to form a first passage and a second passage, the first passage extends through two corners of the triangular housing 9, and the second passage is drilled from the third corner to be in communication with the first passage. Two ends of the first passage are sealed by screw plugs 10, and the oil outlet 4 and the oil return port 5 are respectively opened on the sidewall of the housing 9. The lubricating oil passage 1 is defined by the second passage and a section of the first passage adjacent to the oil outlet 4, and the oil return pressurized passage 2 is defined by a section of the first passage adjacent to the oil return port 5. It can be seen that, the oil passage inside the oil strainer may be processed by the machining method, and of cause, the oil passage inside the oil strainer may also be processed by casting.
(19) In order to make full use of the momentum of the lubricating oil itself and avoid a direct impact between two streams of lubricating oil, in this embodiment, the first passage and the second passage are connected by an arc-shaped transition section, as shown in
(20) A lubricating system in the present application is applied to an internal combustion engine, and includes an oil pump and an oil strain according to any one of the above embodiments. The oil outlet 4 of the oil strainer is in communication with an inlet of the oil pump, and the oil return port 5 of the oil strainer is in communication with an oil return passage of the internal combustion engine.
(21) In the lubrication system, the cooperation between the oil pump and the oil strainer in the above embodiments effectively increases the pressure at the inlet of the oil pump, reduces the power consumption of the oil pump, and improves the fuel economy.
(22) Further, in order to avoid air sucking condition or oil leakage of the oil pump, in this embodiment, sealing members are provided between the oil outlet 4 and the inlet of the oil pump, and between the oil return port 5 and the body of the internal combustion engine. The sealing members may have many forms, such as sealing gaskets or sealing rings. In this embodiment, the sealing members are O-rings 11 as shown in
(23) In addition, an internal combustion engine is provided in the present application. The lubrication system of the internal combustion engine employs the lubrication system of the above embodiments. It should be noted that the internal combustion engine includes, but not limited to, a diesel engine and a gasoline engine.
(24) The internal combustion engine also has the advantage of good fuel economy due to employing the above lubrication system.
(25) The internal combustion engine, the lubrication system and the oil strainer according to the present application are described in detail. The principle and the embodiments of the present application are illustrated herein by specific examples. The above description of examples is only intended to help the understanding of the method and the spirit of the present application. It should be noted that, for the person skilled in the art, a few of modifications and improvements may be made to the present application without departing from the principle of the present application, and these modifications and improvements are also deemed to fall into the scope of the present application defined by the claims.