Lubrication device for engine

The lubrication device with a reservoir tank and controlled oil passages addresses oil level management issues, enhancing engine efficiency by stabilizing oil levels and reducing air pressure pulsations without valves or pumps.

JP2025151687APending Publication Date: 2025-10-09MITSUBISHI MOTORS CORP
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Patent Information

Application Number
JP2024053235
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-03-28
Publication Date
2025-10-09

AI Technical Summary

Technical Problem

Existing engine lubrication systems face challenges in managing oil levels in the oil pan, leading to reduced ventilation areas and increased air pressure pulsations due to complex valve and pump mechanisms, and uncontrolled oil return to the oil pan.

Method used

A lubrication device with a reservoir tank positioned higher than the oil pan, featuring oil passages with varying cross-sectional areas to control oil distribution and circulation without valves or pumps, ensuring stable oil levels and ventilation.

Benefits of technology

The system effectively maintains optimal oil levels in the oil pan, reducing air pressure pulsations and enhancing engine efficiency by expanding ventilation areas, while minimizing oil accumulation and preventing excessive oil loss.

✦ Generated by Eureka AI based on patent content.

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Abstract

To lower an oil level of an oil pan by suppressing an oil amount to be returned to the oil pan and inhibit the oil amount in the oil pan from becoming excessively small without depending on a valve and a pump.SOLUTION: A lubrication device for an engine includes: an oil pan 2 provided in a lower part of an engine body 1; and a reservoir tank 3 provided at a position higher than the oil pan 2 to receive part of oil dropping down from the engine body 1. The reservoir tank 3 includes: an inner tank 4; an accommodation part 5 that covers the inner tank 4 while a gap is formed between the accommodation part and the inner tank 4; a first oil passage 6 for supplying oil from the engine body 1 into the inner tank 4; a second oil passage 7 provided in a bottom part of the inner tank 4 to discharge the oil in the inner tank 4 to the accommodation part 5; and a third oil passage 8 for supplying the oil in the accommodation part 5 to the oil pan 2. An oil passage cross sectional area of the second oil passage 7 is smaller than that of the first oil passage 6, and an oil passage cross sectional area of the third oil passage 8 is the same as that of the first oil passage 6.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The present invention relates to a lubrication device for an engine mounted on a vehicle. [Background technology]

[0002] Generally, the lubrication system for a vehicle engine is designed so that oil is introduced into the cylinder head above the engine, passes through an oil trap in the cylinder block, and falls into an oil pan below the engine. The oil collected in the oil pan is then sucked up by an oil pump and introduced into the cylinder head. This process is repeated to circulate the oil.

[0003] In an engine's lubrication system, air pressure pulsations occur in the crankcase due to the up and down movement of the pistons, which impede the up and down movement of the pistons and reduce the engine's fuel efficiency. For this reason, it is important to ensure sufficient ventilation area between the cylinders in the crankcase to suppress the occurrence of these air pressure pulsations. Generally, as the oil level in the oil pan rises, the ventilation area between the cylinders in the crankcase decreases, which limits the upper oil limit. Meanwhile, to ensure sufficient engine lubrication, it is necessary to ensure a large amount of oil in the oil pan.

[0004] Patent Document 1 describes an automatic oil pan supply device that addresses this upper limit oil amount restriction. In this device, a reserve tank is attached to the cylinder block via a supply pipe with a supply pump, and the actual oil level is calculated from the oil level in the oil pan, which is continuously detected by multiple oil level detection sensors. When the actual oil level is below a reference oil level, control is performed to supply new oil from the reserve tank to the oil pan, thereby controlling the amount of oil.

[0005] Patent document 2 also describes an engine oil supply device in which an auxiliary oil tank is provided in an oil pan via a supply pipe having a control valve, the internal space of the auxiliary oil tank is connected to the internal space of the engine via a communicating pipe having a control valve, and the amount of oil is controlled by controlling each control valve.

[0006] Furthermore, Patent Document 3 describes an engine lubrication device having an oil pan separator with a main chamber and an auxiliary chamber separated from the main chamber by a partition wall inside the oil pan. In this device, the main chamber has an upper surface that opens toward the cylinder block and is equipped with a strainer suction port that supplies oil to the cylinder block, while the auxiliary chamber has an upper surface that opens toward the cylinder block. An outlet hole is provided at the bottom of the auxiliary chamber to allow oil in the auxiliary chamber to flow into the main chamber. This outlet hole is set so that the amount of oil flowing from the auxiliary chamber to the main chamber is less than the amount of oil flowing from the cylinder block side into the auxiliary chamber, and the amount of oil is adjusted by accumulating oil in the auxiliary chamber. [Prior art documents] [Patent documents]

[0007] [Patent Document 1] Japanese Patent Application Publication No. 06-323121 [Patent Document 2] Japanese Patent Application Publication No. 05-240018 [Patent Document 3] Japanese Patent Application Laid-Open No. 2014-105646 Summary of the Invention [Problem to be solved by the invention]

[0008] In the automatic oil pan supply device described in Patent Document 1 and the engine oil supply device described in Patent Document 2, valves are installed in the supply pipes and supply pipes, and a supply pump is installed to adjust the amount of oil supplied to the oil pan, making the devices complex.

[0009] Furthermore, in the oil pan separator described in Patent Document 3, the amount of oil that flows out from the auxiliary chamber to the main chamber returns to the oil pan, and the amount of oil that returns to the oil pan cannot be suppressed.

[0010] Therefore, an object of the present invention is to reduce the amount of oil returning to the oil pan without using a valve or pump, thereby lowering the oil level in the oil pan and preventing the amount of oil in the oil pan from becoming insufficient. [Means for solving the problem]

[0011] In order to solve the above problems, the present invention can employ the following configurations 1 to 4. [Configuration 1] The engine has an oil pan provided at the bottom of the engine body, and a reservoir tank provided at a higher position than the oil pan to receive some of the oil dripping from the engine body. The reservoir tank has a tank body and a storage section that covers the tank body with a gap formed between the tank body and the storage section, a first oil passage that supplies oil from the engine body into the tank body, a second oil passage that discharges oil in the tank body to the storage section, and a third oil passage that supplies oil in the storage section to the oil pan, A lubrication device for an engine, wherein the second oil passage has a smaller cross-sectional area than the first oil passage, and the third oil passage has a cross-sectional area equal to the cross-sectional area of ​​the first oil passage.

[0012] [Configuration 2] 2. The engine lubrication device according to claim 1, wherein the reservoir tank is provided so as to be in contact with a side surface of the engine body. [Configuration 3] The first oil passage extends in a direction intersecting the vertical direction and is connected to the engine body, the engine body is provided with an oil drop hole that opens in the vertical direction, the opening of the first oil passage in the engine body and the oil drop hole face each other horizontally, and the upper end of the opening of the first oil passage is positioned higher than the oil drop hole. [Configuration 4] a supply passage for returning oil in the oil pan to an upper portion of the engine body via a pump; The upper end of the tank body is provided such that a first portion located on one side of the entire circumference in a direction perpendicular to the up-down direction is lower than a second portion located on the other side opposite to the one side, 4. The lubrication device for an engine according to claim 3, wherein the intake port of the supply passage is located on the other side of the center of the oil pan in a direction perpendicular to the up-down direction of the oil pan. [Effects of the Invention]

[0013] According to this invention, because the cross-sectional area of ​​the second oil passage is smaller than the cross-sectional area of ​​the first oil passage, the amount of oil discharged from the tank body through the second oil passage to the accommodation portion is less than the amount of oil supplied from the engine body through the first oil passage into the tank body, so that oil accumulates in the tank body and the oil level in the oil pan can be lowered. Also, because the cross-sectional area of ​​the third oil passage is approximately the same as the cross-sectional area of ​​the first oil passage, when oil in the oil pan is supplied to the tank body so much that it overflows from the tank body, the amount of oil that overflows from the tank body and is supplied to the oil pan through the third oil passage is equal to or greater than the amount of oil supplied from the engine body through the first oil passage into the tank body, so that the oil level in the oil pan can be prevented from dropping excessively. [Brief explanation of the drawings]

[0014] [Figure 1] FIG. 1 is an explanatory front view showing a lubrication device for an engine according to a first embodiment of the present invention; [Figure 2] FIG. 1 is an enlarged front view of a reservoir tank of the engine lubrication device; [Figure 3] FIG. 1 is an enlarged front view of the engine lubrication device in a tilted state; [Figure 4] FIG. 10 is an enlarged front view illustrating a reservoir tank of a lubrication device for an engine according to a second embodiment of the present invention. [Figure 5] FIG. 10 is a front view illustrating the lubrication device of the engine tilted toward the first direction. [Figure 6] An enlarged front view of the reservoir tank of the engine lubrication device tilted toward the first direction. DETAILED DESCRIPTION OF THE INVENTION

[0015] A lubrication device for an engine according to a first embodiment of the present invention will be described with reference to Figures 1 to 3. The present invention is a lubrication device that introduces oil to be introduced into an engine mounted mainly on a vehicle and circulates the oil in the engine.

[0016] 1, the engine lubrication device of this embodiment has an oil pan 2 provided below the engine body 1, a reservoir tank 3 provided at a position higher than the oil pan 2 and configured to receive some of the oil dripping from the engine body 1, and a supply passage 9 for supplying the oil in the oil pan 2 to the upper part of the engine body 1. The reservoir tank 3 has a tank body 4 (inner tank 4), a storage section 5 that covers the inner tank 4, a first oil passage 6 for supplying some of the oil dripping from the engine body 1 into the inner tank 4, a second oil passage 7 for discharging the oil in the inner tank 4 to the storage section 5, and a third oil passage 8 for supplying the oil in the storage section 5 to the oil pan 2.

[0017] The engine body 1 includes a cylinder block 10, a crankcase 11 integrally formed with the lower part of the cylinder block 10, and a cylinder head 12 integrally connected to the upper part of the cylinder block 10. The engine body 1 is mounted on a vehicle in a tilted state at a predetermined angle. An oil pan 2 is connected to the lower part of the cylinder block 10. The supply path 9 consists of a passage 13 formed inside the cylinder block 10 and the cylinder head 12, and a suction pipe 14 connected to the oil pan 2 side of the passage 13.

[0018] A pump P is connected to the suction pipe 14, and a plurality of discharge ports 13a are connected to the cylinder head 12 side of the passage 13. When the pump P is driven, oil in the oil pan 2 is sucked through the suction port 14a of the suction pipe 14 and supplied from the plurality of discharge ports 13a to various sliding parts of the engine arranged in the cam chamber 12a of the cylinder head 12.

[0019] An oil drop hole 15 is provided in the bottom surface of the cam chamber 12a of the cylinder head 12. The oil drop hole 15 is located on one side (the lowest side in the vertical direction) within the range of the bottom surface of the cam chamber 12a. The oil drop hole 15 penetrates the cylinder block 10 and the cylinder head 12. The oil drop hole 15 is supplied with oil from multiple discharge ports 13a, and returns a portion of the oil that accumulates on the bottom surface of the cam chamber 12a to the oil pan 2. In this embodiment, multiple oil return holes with a structure similar to that of the oil drop hole 15 are provided on the other side of the range of the bottom surface of the cam chamber 12a from the oil drop hole 15.

[0020] A first oil passage 6 connected to the cam chamber 12a is provided in the cylinder head 12. The first oil passage 6 is provided on one side of the bottom surface of the cam chamber 12a with respect to the cylinder head 12. The first oil passage 6 extends horizontally from the cylinder head 12, with the tip opposite the cylinder head 12 facing downward above the inner tank 4 of the reservoir tank 3.

[0021] The opening 6a of the first oil passage 6 and the oil drop hole 15 face each other in the horizontal direction. That is, the opening 6a of the first oil passage 6, in other words, the connection portion of the first oil passage 6 with the engine body 1, opens in a direction perpendicular to the vertical direction, and the opening 6a of the first oil passage 6 and the oil drop hole 15 are approximately the same height in the vertical direction. The lower end of the opening 6a of the first oil passage 6 and one end of the bottom surface of the cam chamber 12a are aligned in the vertical direction. The upper end of the opening 6a of the first oil passage 6 is located higher than the opening of the oil drop hole 15 on the cam chamber 12a side.

[0022] An inner tank 4 of a reservoir tank 3 is provided on the side of the engine body 1 with a gap between it and the side of the engine body 1. The inner tank 4 has a cylindrical portion 4a that is open at the top and a bottom portion 4b that closes the bottom of the cylindrical portion 4a. The upper end of the cylindrical portion 4a is formed at the same height around its entire circumference. A second oil passage 7 is connected to the bottom portion 4b. The second oil passage 7 is made of a pipe having a constant oil passage cross-sectional area A2, which is set smaller than the oil passage cross-sectional area A1 of the first oil passage 6. Note that the oil passage cross-sectional area means the smallest oil passage cross-sectional area from the upstream side to the downstream side of the oil passage.

[0023] The accommodation section 5 is provided so as to surround the outer periphery of the cylindrical section 4a of the inner tank 4 and contact the engine body 1. The accommodation section 5 has a side section 5a provided on the engine body 1, an upper section 5b located above the inner tank 4, and a bottom section 5c located below the bottom section 4b of the inner tank 4. The side section 5a is formed, for example, from a strip-shaped member bent so that both longitudinal ends face each other. Both longitudinal ends of the side section 5a (both ends on the engine body 1 side) are fixed across the cylinder block 10 and the cylinder head 12 of the engine body 1, respectively. The upper section 5b closes an upper end opening formed by the periphery of the side section 5a and the engine body 1. A first oil passage 6 is connected to the upper section 5b. The bottom section 5c closes a lower end opening formed by the periphery of the side section 5a and the engine body 1. The bottom section 5c is also inclined downward as it approaches the engine body 1. At the lower end of the housing portion 5, a third oil passage 8 that connects to the space formed by the housing portion 5 and the engine body 1 is provided.

[0024] The third oil passage 8 penetrates the cylinder block 10, and its tip is located inside the crankcase 11. The oil passage cross-sectional area A3 of the third oil passage 8 is set to be the same as the oil passage cross-sectional area A1 of the first oil passage 6. Note that "the same size" does not have to be strictly the same, and includes, for example, a case where it is 0.8 to 1.2 times larger. The inner tank 4 is covered by the accommodation portion 5 and the engine body 1. Here, a gap is provided between the cylindrical portion 4a of the inner tank 4 and the side portion 5a of the accommodation portion 5 and the engine body 1. Because this gap also functions as an oil passage, it will be referred to as the fourth oil passage hereinafter.

[0025] The combined cross-sectional area A5 of the fourth oil passage cross-sectional area A4 and the second oil passage cross-sectional area A2 is set to be larger than twice the cross-sectional area A3 of the third oil passage 8. According to this setting, for example, when the engine body 1 tilts significantly due to the vehicle tilt and oil leaks from the inner tank 4 through the fourth oil passage, which occupies about half of the fourth oil passage on the side where the engine body 1 is tilted, the combined amount of oil leaking from the inner tank 4 and the amount of oil discharged from the second oil passage 7 to the accommodation portion 5 is approximately the same as the amount of oil supplied from the third oil passage 8 to the oil pan 2. When the engine body 1 tilts significantly as in this case, the oil leaking from the inner tank 4 due to the tilt can be supplied to the oil pan 2, thereby preventing the oil in the oil pan 2 from becoming unevenly distributed due to the engine body 1 tilting significantly and reducing the amount of oil in part of the oil pan 2.

[0026] In the engine lubrication device of this embodiment, the engine drives the pump of the supply passage 9, and oil in the oil pan 2 is sucked through the suction port 14a of the suction pipe 14 of the supply passage 9. The sucked oil passes through the passage 13 of the supply passage 9 and is supplied from the discharge port 13a to various engine sliding parts arranged in the cam chamber 12a. A portion of the supplied oil flows to one side along the bottom surface of the cam chamber 12a, passes through the oil drop hole 15, passes through the crankcase 11, and returns to the oil pan 2. Meanwhile, the remaining oil passes from the cam chamber 12a through the opening 6a, passes through the first oil passage 6, and is supplied into the inner tank 4. The oil in the inner tank 4 is discharged through the second oil passage 7 to the accommodation portion 5. Here, the oil passage cross-sectional area A2 of the second oil passage 7 is smaller than the oil passage cross-sectional area A1 of the first oil passage 6, so oil accumulates in the inner tank 4.

[0027] Next, the oil discharged from the second oil passage 7 to the housing 5 passes through the third oil passage 8 and returns to the oil pan 2 via the crankcase 11. The oil in the oil pan 2 is then sucked in by the pump in the supply passage 9. By repeating this process, the oil is circulated.

[0028] In this engine lubrication device, as described above, oil supplied from the first oil passage 6 can be stored in the inner tank 4 while the engine is running. By storing oil up to the capacity of the inner tank 4 while the engine is running, it is possible to ensure the amount of oil circulating within the engine while suppressing the amount of oil that accumulates in the oil pan 2 and lowering the oil level in the oil pan 2. By lowering the oil level in the oil pan 2, the ventilation area between the cylinders in the crankcase 11 is expanded, making it possible to suppress the generation of air pressure pulsation associated with the above-mentioned up and down movement of the pistons.

[0029] Furthermore, if oil is further supplied from the first oil passage 6 when the inner tank 4 is filled to capacity, the oil will overflow from the inner tank 4. The overflowing oil passes through the fourth oil passage formed between the storage section 5 and the inner tank 4 and the third oil passage 8 to be supplied to the oil pan 2. Since the inner tank 4 does not store oil beyond its capacity, it is possible to prevent the amount of oil in the oil pan 2 from decreasing drastically.

[0030] Furthermore, as shown in Figure 3, when the vehicle is in operation, the engine body 1 may tilt as the vehicle tilts. In this case, the tilt of the oil level in the oil pan 2 changes. At this time, in the lubrication device for this engine, the inner tank 4 tilts in accordance with the angle at which the engine body 1 tilts, and the oil in the inner tank 4 overflows from the tilted upper end side of the inner tank 4 by a volume α shown in Figure 3.

[0031] 3 is supplied to the oil pan 2 through the third oil passage 8 from the fourth oil passage formed between the storage portion 5 and the inner tank 4, thereby raising the oil level in the oil pan 2. On the other hand, when the vehicle is not tilted (normal state), the inner tank 4 does not tilt, and oil is stored in the capacity of the inner tank 4, including the capacity α shown in FIG. 3, and in this case, the oil level in the oil pan 2 can be lowered.

[0032] As described above, in the engine lubrication system, oil is stored to the capacity of the inner tank 4, and any oil supplied beyond that capacity is supplied to the oil pan 2 through the third oil passage 8. Therefore, the amount of oil supplied to the oil pan 2 can be controlled without providing valves or pumps in the first oil passage 6, the second oil passage 7, and the third oil passage 8.

[0033] Furthermore, the storage section 5 is provided so as to contact the side surface of the engine body 1. This allows the oil in the storage section 5 to be heated quickly by the heat generated when the engine is running. This allows the oil viscosity to be reduced early after the engine is started, reducing friction during the warm-up process.

[0034] Next, an engine lubrication device according to a second embodiment of the present invention will be described with reference to Figures 4 to 6. The engine lubrication device of this embodiment differs from the first embodiment described above in that the portion of the upper end of the cylindrical portion 4a of the inner tank 4 that is located on the first direction side (described later) is lower than the portion that is located on the second direction side, which is opposite to the first direction, and the suction port 14a of the suction pipe 14 is positioned closer to the second direction side in the oil pan 2. Other structural elements that are the same as those in the first embodiment are denoted by the same reference numerals as in the first embodiment, and descriptions thereof will be omitted.

[0035] In the engine lubrication device of this embodiment, when the vehicle tilts while in operation, the tilt of the oil level in the oil pan 2 changes with the vehicle's tilt. For example, when the vehicle tilts toward the first direction (one side in a direction intersecting the vertical direction), as shown in FIG. 5 , the suction port 14a of the suction pipe 14 may momentarily or intermittently approach the oil level in the oil pan 2 (part of the suction port 14a may appear to be moving upward from the oil level). In this embodiment, the suction port 14a is located on the other side of the center of the oil pan 2 in the direction intersecting the vertical direction, i.e., the second direction. Therefore, when the vehicle tilts toward the first direction, the amount of oil in the oil pan 2 on the first direction side increases and the amount of oil on the second direction side, i.e., the suction port 14a side, decreases. In this state, poor suction of the oil in the oil pan 2 from the suction pipe 14 may occur.

[0036] In this engine lubrication system, the upper end of the cylindrical portion 4a of the inner tank 4 is positioned in the first direction, lower than the upper end of the cylindrical portion 4a in the second direction, which is opposite to the first direction. Therefore, when the vehicle tilts in the first direction and the suction port of the suction pipe 14 moves partially or completely away from the oil level in the oil pan 2, oil is more likely to leak from the upper end of the inner tank 4 on the first direction side and be supplied to the oil pan 2 through the third oil passage 8, raising the oil level in the oil pan 2. As a result, the suction port 14a of the suction pipe 14 is positioned lower than the oil level in the oil pan 2, preventing poor oil suction. On the other hand, when the vehicle tilts in the second direction, the suction port of the suction pipe 14 is less likely to move away from the oil level in the oil pan 2, making it easier for oil to accumulate in the inner tank 4 and reducing the amount of oil in the oil pan 2. [Explanation of symbols]

[0037] 1 Engine body 1a Reinforcing rib 2 Oil pan 3 Reservoir tank 4 Inner tank 4a Cylindrical part 4b Bottom part 5. Storage section 5a Side part 5b Top part 5c Bottom part 6 1st oilway 6a opening 7 2nd oilway 8 3rd oilway 9 Supply route 10 Cylinder block 11 Crankcase 12 Cylinder head 12a Cam chamber 13 Passage 13a Discharge port 14 Suction tube 14a Suction port 15 Oil Pitfall P pump

Claims

1. The engine has an oil pan provided at the bottom of the engine body, and a reservoir tank provided at a higher position than the oil pan to receive some of the oil dripping from the engine body. The reservoir tank has a tank body and a storage section that covers the tank body with a gap formed between the tank body and the storage section, a first oil passage that supplies oil from the engine body into the tank body, a second oil passage that discharges oil in the tank body to the storage section, and a third oil passage that supplies oil in the storage section to the oil pan, A lubrication device for an engine, wherein the second oil passage has a cross-sectional area smaller than that of the first oil passage, and the third oil passage has a cross-sectional area equal to that of the first oil passage.

2. 2. The engine lubrication system according to claim 1, wherein the reservoir tank is provided so as to contact a side surface of the engine body.

3. 3. An engine lubrication device as described in claim 1 or claim 2, wherein the first oil passage extends in a direction intersecting the vertical direction and is connected to the engine body, the engine body is provided with an oil drop hole that opens in the vertical direction, the opening of the first oil passage in the engine body and the oil drop hole are opposite each other in the horizontal direction, and the upper end of the opening of the first oil passage is positioned higher than the oil drop hole.

4. a supply passage for returning oil in the oil pan to an upper portion of the engine body via a pump; the upper end of the tank body is provided such that a first portion located on one side of the entire circumference in a direction perpendicular to the up-down direction is lower than a second portion located on the other side opposite to the one side, 4. The lubrication device for an engine according to claim 3, wherein the intake port of the supply passage is located on the other side of the center of the oil pan in a direction perpendicular to the up-down direction of the oil pan.

Citation Information

Patent Citations

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    JP1993240018A

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    JP2014105646A