EGR VALVE SYSTEM
20230193861 ยท 2023-06-22
Assignee
Inventors
Cpc classification
F02M26/72
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M26/68
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K27/029
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M26/74
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K2200/501
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M26/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K27/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M26/54
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F02M26/72
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M26/54
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M26/68
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
This EGR valve system is provided with a valve assembly, and a plurality of housing adapters. The valve assembly is provided with a housing including a flow passage, a valve seat provided in the flow passage, a valve element provided in the flow passage in such a way as to be capable of seating against the valve seat, a valve shaft on which the valve element is provided, and a driving unit for driving the valve shaft. The housing adapters include assembly holes, inlet flow passages which communicate with the assembly holes, and outlet flow passages. One of the housing adapters is selectively combined with the valve assembly, the housing of the valve assembly is assembled in the assembly hole of the selected housing adapter. In this assembled state, the inlet flow passage communicates with an inlet port, and the outlet flow passage communicates with an outlet port.
Claims
1. An EGR valve system comprising: a valve assembly; and a plurality of different housing adapters to be assembled with the valve assembly, wherein the valve assembly is provided with: a housing including a flow passage for EGR gas, the flow passage including an inlet port and an outlet port for the EGR gas; a valve seat provided in the flow passage; a valve element that is provided in the flow passage and capable of seating on the valve seat; a valve shaft on which the valve element is provided; and a driving unit for driving the valve shaft, the housing adapters each include: an assembly hole for the housing; and an inlet flow passage and an outlet flow passage each communicating with the assembly hole, and the EGR valve system is configured such that one of the plurality of different housing adapters is selectively combined with the valve assembly, the housing of the valve assembly is assembled in the assembly hole of the selected housing adapter, and, in this assembled state, the inlet flow passage communicates with the inlet and port the outlet flow passage communicates with the outlet port.
2. The EGR valve system according to claim 1, wherein the plurality of different housing adapters include the assembly holes that each have a common shape matching a shape of the housing, and one of the inlet flow passages or the outlet flow passages are formed in common positions and common orientations between the different housing adapters, while the other outlet flow passages or inlet flow passages are formed in different positions and different orientations between the different housing adapters.
3. The EGR valve system according to claim 2, wherein the plurality of different housing adapters include a first housing adapter, when the housing is assembled in the assembly hole of the first housing adapter, the inlet flow passage, the flow passage, and the outlet flow passage constitute a valve flow passage continuous in a nearly L-shape, and in the valve flow passage continuous in the nearly L-shape, one of the inlet flow passage or the outlet flow passage extends and opens in an axial direction of the valve shaft, the other outlet flow passage or inlet flow passage extends and opens in a direction intersecting with the axial direction, and the flow passage connects the inlet flow passage and the outlet flow passage.
4. The EGR valve system according to claim 2, wherein the plurality of different housing adapters include a second housing adapter, when the housing is assembled in the assembly hole of the second housing adapter, the inlet flow passage, the flow passage, and the outlet flow passage constitute a valve flow passage continuous in a nearly Z-shape or U-shape, and in the valve flow passage continuous in the nearly Z-shape or U-shape, both the inlet flow passage and the outlet flow passage extend and open in a direction intersecting with an axial direction of the valve shaft, and the flow passage connects the inlet flow passage and the outlet flow passage.
5. The EGR valve system according to claim 1, wherein the housing is made of a resin material.
6. The EGR valve system according to claim 5, wherein the housing adapter is made of a resin material.
7. The EGR valve system according to claim 6, wherein the housing assembled in the assembly hole is fixed to the housing adapter by welding.
8. The EGR valve system according to claim 2, wherein the housing is made of a resin material.
9. The EGR valve system according to claim 3, wherein the housing is made of a resin material.
10. The EGR valve system according to claim 4, wherein the housing is made of a resin material.
11. The EGR valve system according to claim 8, wherein the housing adapter is made of a resin material.
12. The EGR valve system according to claim 9, wherein the housing adapter is made of a resin material.
13. The EGR valve system according to claim 10, wherein the housing adapter is made of a resin material.
14. The EGR valve system according to claim 11, wherein the housing assembled in the assembly hole is fixed to the housing adapter by welding.
15. The EGR valve system according to claim 12, wherein the housing assembled in the assembly hole is fixed to the housing adapter by welding.
16. The EGR valve system according to claim 13, wherein the housing assembled in the assembly hole is fixed to the housing adapter by welding.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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MODE FOR CARRYING OUT THE INVENTION
First Embodiment
[0046] A detailed description of a first embodiment of an EGR valve system of this disclosure will now be given referring to the accompanying drawings.
[0047] (EGR Valve System)
[0048]
[0049] (Valve Assembly)
[0050] Next, the valve assembly 1 will be described below.
[0051] As shown in
[0052] In the present embodiment, the flow passage 11 includes a bent passage part 11c bending in a direction intersecting with a direction toward the inlet port 11a at an upper (downstream) side of the valve seat 13. The bent passage part 11c gradually widens in diameter toward the outlet port 11b.
[0053] In the present embodiment, the housing 12 is provided, on its outer surface, with a first sealing member 18 and a second sealing member 19. In the present embodiment, those two sealing members 18 and 19 are formed of rubber O-rings. In the present embodiment, the first sealing member 18 is placed on the outer periphery of the housing 12, near the inlet port 11a of the housing 12 and around the inlet port 11a. The housing 12 is formed, in the outer periphery near the inlet port 11a, with a peripheral groove 12a. The first sealing member 18 is mounted in this peripheral groove 12a. The second sealing member 19 is placed on the outer periphery of the housing 12, above the outlet port 11b, The housing 12 is formed, in the outer periphery above the outlet port 11b, with a peripheral groove 12b. The second sealing member 19 is mounted in this peripheral groove 12b.
[0054] (First to Third Housing Adapters)
[0055] The first to third housing adapters 2 to 4 will be described below. The first housing adapter 2 is described first.
[0056] The second housing adapter 3 is described below.
[0057] The third housing adapter 4 is described below.
[0058] In the present embodiment, as shown in
[0059] (First to Third EGR Valves)
[0060] In the present embodiment, one of three different, first to third housing adapters 2 to 4 is selectively combined with the valve assembly 1, and thus the housing 12 of the valve assembly 1 is assembled in the assembly hole 21, 31, or 41 of the selected one of the first to third housing adapters 2 to 4. In this assembled state, the inlet flow passage 22, 32, or 42 communicates with the inlet port 11a of the housing 12, while the outlet flow passage 23, 33, or 43 communicates with the outlet port 11b of the housing 12. Thus, a first EGR valve 51, a second EGR valve 52, or a third EGR valve 53, which will be described later, is selectively constituted.
[0061] The first EGR valve 51 is first described.
[0062] To produce the first EGR valve 51 in the present embodiment, as shown in
[0063] The second EGR valve 52 is described below.
[0064] To produce the second EGR valve 52 in the present embodiment, as shown in
[0065] The third EGR valve 53 is further described below.
[0066] To produce the third EGR valve 53 in the present embodiment, as shown in
[0067] (Operations and Effects of the EGR Valve System)
[0068] According to the configuration of the EGR valve system in the present embodiment described above, one of the three different, first to third housing adapters 2 to 4 is selectively combined with a single valve assembly 1. Thus, the housing 12 of the valve assembly 1 is assembled in the assembly hole 21, 31, or 41 of the selected one of the first to third housing adapters 2 to 4. In this assembled state, the inlet flow passage 22, 32, or 42 of the selected one of the housing adapters 2 to 4 communicates with the inlet port 11a of the flow passage 11 of the housing 12 and, similarly, the outlet flow passage 23, 33, or 43 of the selected one of the housing adapters 2 to 4 communicates with the outlet port 11b of the flow passage 11. Thus, the valve assembly 1 can be used in common to the three different, first to third housing adapters 2 to 4. Further, as many as the number of first housing adapters 2 to 4, arrangements of the inlet flow passages 22, 32, and 42 and the outlet flow passages 23, 33, and 43 can be combined in various types and various kinds. Consequently, the first to third EGR valves 51 to 53 can be provided to meet various flow passage constrains in mounting on a vehicle without changing the shape of the housing 12 of the valve assembly 1 and replacing attachment parts. Moreover, the shapes of the first to third housing adapters 2 to 4 can be relatively simplified and the space required to mount the EGR valve in a vehicle can be saved just by that much.
[0069] According to the configuration in the present embodiment, the three different, first to third housing adapters 2 to 4 are respectively provided with the assembly holes 21, 31, 41 which are common with each other, the inlet flow passages 22, 32, 42 or outlet flow passage 23, 33, 43 formed in common positions and common orientations with each other, and the outlet flow passages 23 33, 43 or inlet flow passages 22, 32, 42 formed in different positions and different orientations from each other. Accordingly, pipes of the EGR passage can be commonalized with respect to the inlet flow passages 22, 32, 42 or outlet flow passage 23, 33, 43 of the first to third housing adapters 2 to 4, This configuration can facilitate designing of the arrangement of the EGR valves 51 to 53 in a vehicle.
[0070] According to the configuration in the present embodiment, the first EGR valve 51 obtained by combination of the first housing adapter 2 with the valve assembly 1 is configured to have the first valve flow passage 56 continuous in a nearly L-shape. Thus, the first EGR valve 51 can be used for the arrangement that the axis of the pipe of the EGR passage connected to the inlet flow passage 22 and the axis of the pipe of the EGR passage connected to the outlet flow passage 23 intersect with each other at almost right angle, Consequently, the valve assembly 1 can be common to the foregoing specific pipe arrangement of the EGR passage.
[0071] According to the configuration in the present embodiment, the second EGR valve 52 obtained by combination of the second housing adapter 3 with the valve assembly 1 is configured to have the second valve flow passage 57 continuous in a nearly Z-shape. Thus, the second EGR valve 52 can be used for the arrangement that the axis of the pipe of the EGR passage connected to the inlet flow passage 32 and the axis of the pipe of the EGR passage connected to the outlet flow passage 33 are offset and extend in different directions. Consequently, the valve assembly 1 can be common to the foregoing specific pipe arrangement of the EGR passage.
[0072] According to the configuration in the present embodiment, the third EGR valve 53 obtained by combination of the third housing adapter 4 with the valve assembly 1 is configured to have the third valve flow passage 58 continuous in a nearly U-shape. Thus; the third EGR valve 53 can be used for the arrangement that the axis of the pipe of the EGR passage connected to the inlet flow passage 42 and the axis of the pipe of the EGR passage connected to the outlet flow passage 43 are offset and extend in the same direction. Consequently, the valve assembly 1 can be common to the foregoing specific pipe arrangement of the EGR passage.
[0073] According to the configuration in the present embodiment, the housing 12 of the valve assembly 1 is made of resin and thus the housing 12 can have corrosion resistance. Accordingly, the first to third EGR valves 51 to 53 can be prevented from corrosion due to condensate water of EGR gas and hence stabilize the flow characteristics of EGR gas. Moreover, the metal parts, such as the valve seat 13, can be made by insert molding in the housing 12, so that the housing 12 can be designed to be thin in wall thickness and small in size.
Second Embodiment
[0074] Next, a second embodiment embodying the EGR valve system 11 be described in detail referring to the drawings. In the following description, the identical or equivalent components as in the first embodiment are assigned the same reference signs and dispensed with the details. The following description is given with a focus on differences from the first embodiment.
[0075] (First to Third EGR Valves)
[0076]
[0077] (Operations and Effects of the EGR Valve System)
[0078] According to the EGR valve system in the present embodiment described above, in addition to the operations and effects in the first embodiment, the following operations and effects can be obtained. In the present embodiment, specifically, the first housing adapter 2, and the second and third housing adapters are made of a resin material, so that the first housing adapter 2 and the second and third housing adapters can have corrosion resistance. Accordingly, the first EGR valve 61 and the second and third EGR valves can be prevented from corrosion due to condensate water of EGR gas and hence stabilize the flow characteristics of EGR gas.
[0079] According to the configuration in the present embodiment, the housing 12 of the valve assembly 1 can be made integral with the first housing adapter 2, the second housing adapter, or the third housing adapter, by vibration welding 66. This makes it possible to prevent separation between the housing 12 and the first housing adapter 2 due to deformation. Further, since the housing 12 is applied with vibration welding 66 along the entire outer periphery thereof, airtightness between the housing 12 and the first housing adapter 2 can be achieved by that vibration welding 66. Thus, the first sealing member 18 and the second sealing member 19 may be dispensed with.
[0080] The present disclosure is not limited to each of the foregoing embodiments and may be partial embodied in other specific forms without departing from the essential characteristics thereof.
[0081] Each of the foregoing embodiments shows three housing adapters 2 to 4 as a plurality of different housing adapters. However, the number of the housing adapters is not limited to three, and two or four or more different housing adapters may be provided.
INDUSTRIAL APPLICABILITY
[0082] The present disclosure is applicable to an EGR valve of an EGR apparatus to be mounted in a vehicle and others.
REFERENCE SIGNS LIST
[0083] 1 Valve assembly [0084] 2 First housing adapter [0085] 3 Second housing adapter [0086] 4 Third housing adapter [0087] 11 Flow passage [0088] 11a Inlet port [0089] 11b Outlet port [0090] 12 Housing [0091] 15 Valve seat [0092] 14 Valve element [0093] 15 Valve shaft [0094] 16 Drive unit [0095] 21 Assembly hole [0096] 27 Inlet flow passage [0097] 23 Outlet flow passage [0098] 31 Assembly hole [0099] 32 Inlet flow passage [0100] 33 Outlet flow passage [0101] 41 Assembly hole [0102] 42 Inlet flow passage [0103] 43 Outlet flow passage [0104] 51 First EGR valve [0105] 52 Second. EGR valve [0106] 53 Third EGR valve [0107] 56 First valve flow passage [0108] 57 Second valve flow passage [0109] 58 Third valve flow passage [0110] 61 First EGR valve [0111] 66 Vibration welding