Quick connector with a replaceable restriction orifice
11668423 · 2023-06-06
Assignee
Inventors
- Donald P. Tinsley, III (Huntington Woods, MI, US)
- Kevin W. Lucka (Southfield, MI, US)
- David E. Fletcher (Davison, MI, US)
- Matthew C. Gilmer (South Lyon, MI, US)
Cpc classification
F15D1/025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L37/144
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M25/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K2015/03514
PERFORMING OPERATIONS; TRANSPORTING
B60K15/035
PERFORMING OPERATIONS; TRANSPORTING
B60K15/03504
PERFORMING OPERATIONS; TRANSPORTING
International classification
F16L37/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M25/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Female quick couplings have a housing defining an axial bore therethrough that has a frustum-shaped bore portion that defines a restriction orifice, a first slot transverse to the axial bore, an a first shoulder between the first slot and the restriction orifice, and a locking member slidingly received in the first slot. The frustum-shaped bore can have an upstream conical frustum and a downstream conical frustum mated at their respective smaller diameter. The upstream conical frustum has a largest diameter that is larger than a largest diameter of the downstream conical frustum. Engine systems incorporating the female quick coupling and female quick coupling kits are also disclosed.
Claims
1. A female quick coupling comprising: a housing defining an axial bore therethrough that has a frustum-shaped bore portion that has an upstream conical frustum and a downstream frustum mated at their respective smaller diameters to define a restriction orifice, a first slot transverse to the axial bore, and a first shoulder between the first slot and the restriction orifice; a spacer seated against the first shoulder within the axial bore; and a locking member slidingly received in the first slot, thereby locking the spacer in the axial bore.
2. The female quick coupling of claim 1, comprising a sealing member and a lock washer seated on the spacer.
3. The female quick coupling of claim 2, wherein the axial bore has a dual stepped bore defining the first shoulder and a second shoulder, wherein the lock washer is seated against the second shoulder.
4. The female quick coupling of claim 1, wherein the upstream conical frustum has a largest diameter substantially similar to an internal diameter of the first sealing member and the downstream conical frustum has a largest diameter substantially similar to an internal diameter of the axial bore extending downstream of the first shoulder.
5. The female quick coupling of claim 4, wherein the largest diameter of the upstream conical frustum is larger than the largest diameter of the downstream conical frustum.
6. The female quick coupling of claim 5, wherein the upstream conical frustum and the downstream conical frustum are shaped according to a hyperbolic function.
7. A fuel vapor purge system comprising: a fuel tank in fluid communication with a fuel filler inlet, a purge canister and an internal combustion engine; and a female quick coupling of claim 1 in the fuel line between the fuel filler inlet and the fuel tank.
8. The system of claim 7, comprising a purge cannister in fluid communication with the fuel tank.
9. The female quick coupling of claim 1, wherein the frustum-shaped bore portion is integral with the housing.
10. The female quick coupling of claim 7, wherein the frustum-shaped bore portion is integral with the housing.
11. A female quick coupling kit comprising: a plurality of housings each defining an axial bore therethrough that has a frustum-shaped bore portion that defines a restriction orifice, a first slot transverse to the axial bore, and a first shoulder between the first slot and the restriction orifice, wherein each restriction orifice is of a different dimension relative to one another, and a first of the plurality of housings has a frustum shaped port portion that has an upstream conical frustum and a downstream frustum mated at their respective smaller diameters to define the restriction orifice thereof; a spacer seatable in the axial bore of any of the plurality of housings against the first shoulder; a sealing member seatable in the axial bore of any of the plurality of housings; and a locking member slidingly receivable in the latching slot to lock a male fluid line in the axial bore of any of the housings.
12. The female quick coupling kit of claim 11, comprising, in order, seated upon the first shoulder, a first sealing member, a spacer, a second sealing member, and a lock washer; wherein the axial bore has a dual stepped bore defining the first shoulder and a second shoulder, and the lock washer is seated against the second shoulder.
13. The female quick coupling of claim 11, wherein the first of the plurality of housings has a frustum shaped port portion that is integral with the housing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(9) The following detailed description will illustrate the general principles of the invention, examples of which are additionally illustrated in the accompanying drawings. In the drawings, like reference numbers indicate identical or functionally similar elements.
(10) As used herein, “fluid” means any liquid, suspension, colloid, gas, plasma, or combinations thereof.
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(12) The engine system may be an onboard refueling vapor recovery (ORVR) system, a pressure integrity check system, or a make-up air system. The quick connect however is not limited thereto and can be useful in any system requiring a restriction to flow of fluid therethrough.
(13) Referring now to
(14) The first slot 112 has a plurality of arm sockets 114. Arm sockets 114a extends through the housing 104 and are both open at both ends, and arm sockets 114b extend into and terminate within the housing 104.
(15) A locking member 120 cooperates with the housing 104 to fasten a male quick coupling within the connector collar 110, in particular the locking member is slidingly receivable in the first slot 112 until it locks therein using a set of elongate arms 122. The locking member 120 has a cover portion 124 from which the set of elongate arms 122 protrude and from which a set of shorter holding arms 126 protrude. In
(16) Returning to
(17) Turning now to
(18) Turning now to
(19) Turning to
(20) Turning to
(21) Referring now to
(22) Similar to the locking member 120, the latchable plug 160 has a cover portion 174 from which a set of elongate arms 172 protrude and from which a set of shorter holding arms 176 protrude. In addition, a body 180 protrudes from the cover portion 174 at a position between the set of elongate arms 172. The body 180 defines the restriction orifice 162. The body 180 may have any of the frustoconical shaped bores or mating frustum shaped bores described above. The set of elongate arms 122 each define a gap 175 between a foot 172 thereof and a radially inward protruding tab 177 thereof for locking to a locking feature of the slot 164 in the same manner described above for the locking member 120 and the first slot 112. The body 180 does not extend beyond the protruding tabs 177, so as not to interfere with the mating thereof with the locking feature of the second slot 164. The second slot 164 is generally the same at the first slot, but of smaller dimensions.
(23) In
(24) The female quick coupling 102a can be part of a kit that has a plurality of removable inserts 130′ that each define an orifice opening 162 of a different size and/or differently angled frustums terminating at the orifice opening 162. The removable inserts 130′ are able to be removed and replaced with one having a different size restriction orifice during testing in the event the female quick coupling does not meet a customer's pre-selected system requirements.
(25) Turning now to
(26) The female quick coupling 102b can be part of a kit that has a plurality of housings 104′ that each define an orifice opening 192 of a different size and/or differently angled frustums terminating at the orifice opening 162. The housing 104′ is able to be removed and replaced with one having a different size restriction orifice during testing in the event the female quick coupling does not meet a customer's pre-selected system requirements.
(27) Advantages and/or benefits of the quick connector with a replaceable or tunable restriction orifice include the integration of the restriction orifice into the quick connector for smaller packaging and a reduction of components. But even more importantly, the quick connector disclosed herein provides an easy means to change the orifice dimensions during manufacturing and, more specifically, during testing. The replaceable orifice is easily changed during testing without vehicle tear up or waiting for a new part to be manufactured, which is considered a late stage engineering change that can cause significant delay.
(28) It should be noted that the embodiments are not limited in their application or use to the details of construction and arrangement of parts and steps illustrated in the drawings and description. Features of the illustrative embodiments, constructions, and variants may be implemented or incorporated in other embodiments, constructions, variants, and modifications, and may be practiced or carried out in various ways. Furthermore, unless otherwise indicated, the terms and expressions employed herein have been chosen for the purpose of describing the illustrative embodiments of the present invention for the convenience of the reader and are not for the purpose of limiting the invention.
(29) Having described the invention in detail and by reference to preferred embodiments thereof, it will be apparent that modifications and variations are possible without departing from the scope of the invention which is defined in the appended claims.