Vehicle air intake assembly
10876503 ยท 2020-12-29
Inventors
Cpc classification
F02M35/02416
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A vehicle air intake assembly is disclosed. The assembly includes a base member having an aperture configured to allow air to flow through the base member and into an engine and an outer member spaced from the base member to position an air filter between the outer member and the base member.
Claims
1. A vehicle air intake assembly comprising: a base member having a base member aperture configured to permit a flow of air therethrough; an outer member spaced from the base member; an end member disposed radially within the outer member, the end member configured to direct the flow or air between the base member and the outer member and/or restrict the flow of air at the outer member; an air filter having a first side, a second side, and at least one lateral side, wherein a width of the air filter is defined by a distance between the first side and the second side, the air filter configured to be disposed between the base member and the outer member such that the first side is disposed closer to the base member and the second side is disposed closer to the outer member, and such that the at least one lateral side is exposed and configured to filter the flow of air passing through the at least one lateral side; and a plurality of arms configured to couple the base member to the outer member, each arm of the plurality of arms defined by a distal end non-rotatably coupled to the outer member, and a proximal end rotatably coupled to the base member, wherein a total length of each arm is defined by a distance between the respective distal end and proximal end such that the total length of each arm is greater than the width of the air filter.
2. The vehicle air intake assembly of claim 1, further comprising an orifice member removably coupled to the base member.
3. The vehicle air intake assembly of claim 1, further comprising one of a first orifice member and a second orifice member, the first orifice member having a larger diameter orifice than the second orifice member, wherein the base member is configured to be coupled to the one of the first orifice member and the second orifice member.
4. The vehicle air intake assembly of claim 3, wherein the base member is magnetically coupled to the one of the first orifice member and the second orifice member.
5. The vehicle air intake assembly of claim 1, wherein the end member is at least partially transparent.
6. The vehicle air intake assembly of claim 1, further comprising at least one fastener configured to couple the base member to an engine, wherein the at least one fastener includes a fastener passage defined at least partially within the at least one fastener such that at least a portion of the flow of air flows through the base member aperture and the fastener passage.
7. The vehicle air intake assembly of claim 6, further comprising an orifice member coupled to the base member, wherein the orifice member includes an orifice passage such that the portion of the flow of air that flows through the base member aperture and the fastener passage further flows through the orifice passage.
8. The vehicle air intake assembly of claim 1, wherein one or more magnetic elements or magnetic portions are used to couple an orifice member to the base member.
9. The vehicle air intake assembly of claim 1, wherein one or more threaded or slotted connection structures at an interface between an orifice member and the base member are used to couple the orifice member to the base member.
10. A vehicle air intake assembly comprising: a base member having a base member aperture configured to permit a flow of air therethrough and into an engine; an outer member spaced from the base member; an end member disposed radially within the outer member, the end member configured to direct the flow or air between the base member and the outer member and/or restrict the flow of air at the outer member; an air filter having a first side, a second side, and at least one lateral side, wherein a width of the air filter is defined by a distance between the first side and the second side, the air filter configured to be disposed between the base member and the outer member such that the first side is disposed closer to the base member and the second side is disposed closer to the outer member, and such that the at least one lateral side is exposed and configured to filter the flow of air passing through the at least one lateral side; a plurality of arms configured to couple the base member to the outer member, each arm of the plurality of arms defined by a distal end non-rotatably coupled to the outer member, and a proximal end rotatably coupled to the base member, wherein a total length of each arm is defined by a distance between the respective distal end and proximal end such that the total length of each arm is greater than the width of the air filter; and an orifice member removably coupled to the base member at the base member aperture by an orifice member coupling means, such that at least a portion of the orifice member is positioned between the base member and the outer member.
11. The vehicle air intake assembly of claim 10, wherein the outer member, the end member, the air filter, and the orifice member are configured to impede a flow of objects and/or debris into the engine.
12. The vehicle air intake assembly of claim 10, wherein the end member is at least partially transparent.
13. The vehicle air intake assembly of claim 10, wherein the orifice member coupling means comprises one or more magnetic elements or magnetic portions and/or one or more threaded or slotted connection structures at an interface between the orifice member and the base member.
14. A vehicle air intake assembly comprising: a base member having a base member aperture configured to permit a flow of air therethrough; an outer member spaced from the base member; an end member disposed radially within the outer member, the end member configured to direct the flow or air between the base member and the outer member and/or restrict the flow of air at the outer member, the end member further configured to at least partially transmit light such that the base member aperture is visible through the end member; an air filter having a first side, a second side, and at least one lateral side, wherein a width of the air filter is defined by a distance between the first side and the second side, the air filter configured to be disposed between the base member and the outer member such that the first side is disposed closer to the base member and the second side is disposed closer to the outer member, and such that the at least one lateral side is exposed and configured to filter the flow of air passing through the at least one lateral side; a plurality of arms configured to couple the base member to the outer member, each arm of the plurality of arms defined by a distal end non-rotatably coupled to the outer member, and a proximal end rotatably coupled to the base member, wherein a total length of each arm is defined by a distance between the respective distal end and proximal end such that the total length of each arm is greater than the width of the air filter, and such that the plurality of arms encompass the air filter between the base member and the outer member; and an orifice member removably coupled to the base member at the base member aperture by an orifice member coupling means, such that at least a portion of the orifice member is positioned between the base member and the outer member.
15. The vehicle air intake assembly of claim 14, wherein the base member includes at least one base member passage fluidically connected to the base member aperture.
16. The vehicle air intake assembly of claim 15, wherein the orifice member includes an orifice member passage fluidically connecting the at least one base member passage to the base member aperture, the orifice member passage being visible through the end member.
17. The vehicle air intake assembly of claim 16, further comprising at least one fastener configured to couple the base member to an engine, wherein the at least one fastener includes a fastener passage defined therein, such that the fastener passage fluidically connects the engine to the at least one base member passage.
18. The vehicle air intake assembly of claim 14, wherein the orifice member is defined by one of a first orifice member and a second orifice member, the first orifice member having a larger diameter orifice than the second orifice member, and such that the first orifice member is interchangeable with the second orifice member.
Description
BRIEF DESCRIPTION OF THE FIGURES
(1) The embodiments described herein and other features, advantages, and disclosures contained herein, and the manner of attaining them, will be better understood from the following description in conjunction with the accompanying drawing figures, in which like reference numerals identify like elements, and wherein:
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DETAILED DESCRIPTION
(11) In the following detailed description of embodiments of the present disclosure, reference is made to the accompanying drawings that form a part hereof, and in which is shown by way of illustration, and not by way of limitation, such specific embodiments. It is to be understood that other embodiments may be utilized and that changes may be made without departing from the spirit and scope of the present disclosure.
(12) Referring now to
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(14) The assembly 10 further includes an end member 26, in an embodiment, configured to direct airflow between the base member 14 and the outer member 18. In an embodiment, the end member 26 is configured to restrict airflow at the outer member 18. The end member 26 in an embodiment is at least partially transparent. In the embodiment illustrated in
(15) One or more of the arms 20 is rotatably coupled to the base member 14 and/or the outer member 18 in one or more embodiments, and nonrotatably coupled to the base member 14 and/or the outer member 18 in one or more embodiments. In the illustrated embodiment, the arms 20 are rotatably coupled to the base member 14 and nonrotatably coupled to the outer member 18. With reference to
(16) Referring now to
(17) In the embodiment illustrated in
(18) The orifice member 24, in one or more embodiments, cooperates with the base member 14 by a means of coupling the orifice member 24 to the base member 14. Such means may include one or more magnetic elements or magnetic portions, one or more threaded or slotted connection structures at an interface between the orifice member 24 and the base member 14, the base member 14 and/or the orifice member 24 being sized and/or configured such that an interference fit is formed between the base member 14 and the orifice member 24, and/or any other structure or elements recognized by one having ordinary skill in the art that is/are capable of coupling the base member 14 to the orifice member 24 without a fastener or other separate element capable of being ingested through the aperture 16 and/or the orifice member 24. In an embodiment, the base member 14, the outer member 18, the air filter 22, and/or the orifice member 24 are configured to prevent objects from flowing into the engine 12 through the aperture 16. As best illustrated in
(19) As illustrated in
(20) Referring now to
(21) Referring now to
(22) In an embodiment, the base member 14 is magnetically coupled to the orifice member 24 and/or another orifice member having a different size and/or geometry. As illustrated in
(23) It will be appreciated that the assembly 10 of one or more embodiments disclosed herein allows intake air to be filtered prior to suction into the engine 12 while minimizing or eliminating the ability for any part or portion of the assembly 10 to be ingested into the engine 12. Additionally, the assembly 10 of one or more embodiments permits the inclusion of different sized and/or configured orifice members 24 based on desired intake air characteristics. The assembly 10 further provides the ability for a user to view one or more internal portions, parts, or spaces in the assembly 10 in order to inspect the assembly 10, an engine intake portion, or another space in an aesthetically pleasing manner. The arms 20 and/or their connection to the base member 14 and/or the outer member 18 allow(s) quick and convenient disassembly of the assembly 10, removal of one or more portion of the assembly 10, and/or replacement or cleaning of the air filter 22, while not impeding the flow of air into and through the air filter 22.
(24) While the disclosure has been illustrated and described in detail in the drawings and foregoing description, the same is to be considered as illustrative and not restrictive in character, it being understood that only certain embodiments have been shown and described and that all changes and modifications that come within the spirit of the disclosure are desired to be protected.