The field to which the disclosure generally relates to includes hydraulic tensioners.
A vehicle may include one or more hydraulic tensioners.
One variation may include a product comprising: an orifice flow valve comprising: a disk, wherein the disk comprises at least one orifice which is constructed and arranged to direct a forward flow of a fluid through the at least one orifice and to impede a backflow of the fluid through the at least one orifice.
Other illustrative variations within the scope of the invention will become apparent from the detailed description provided hereinafter. It should be understood that the detailed description and specific examples, while disclosing variations within the scope of the invention, are intended for purposes of illustration only and are not intended to limit the scope of the invention.
Select examples of variations within the scope of the invention will become more fully understood from the detailed description and the accompanying drawings, wherein:
The following description of the variations is merely illustrative in nature and is in no way intended to limit the scope of the invention, its application, or uses.
Referring to
Referring to
In a number of variations, an orifice 42 may comprise a linear structure orifice 44. In a number of variations, a linear structure orifice 44 may include a first cylindrical surface 46, a second cylindrical surface 48, and a lip 50 extending therebetween, for example as illustrated in
Referring to
Referring to
In a number of variations, the at least one orifice 42 may be constructed and arranged so that the forward flow of oil may flow from the reservoir 28 to the tensioner 20 through the bottom surface 36 of the disk body 32 and through the one or more orifices 42 with little to no obstruction. The at least one orifice 42 may also be constructed and arranged so that the backflow of the oil encounters turbulence which may result in flow losses. In other words, the forward flow into the tensioner 20 may be at a greater rate than the backflow into the tensioner's reservoir 28, for example as illustrated in
In any number of variations, the flow path of the orifices 42 may be at one or more angles or inclines, may be curved, or may be any of a number of shapes and may be located at any location in the disk body 32. Further, the number of orifices 42 may be varied depending on design requirements. The dimensions of each orifice 42 may also be varied depending on design requirements.
In any number of variations, the orifice flow valve 30 may be comprised of any number of materials including, but not limited to, plastic, plastic with a hardened metal spring contact surface, or metal. The disk body 32 may comprise one component, for example as illustrated in
The following description of variants is only illustrative of components, elements, acts, products and methods considered to be within the scope of the invention and are not in any way intended to limit such scope by what is specifically disclosed or not expressly set forth. The components, elements, acts, products and methods as described herein may be combined and rearranged other than as expressly described herein and still are considered to be within the scope of the invention.
Variation 1 may include a product comprising: an orifice flow valve comprising: a disk, wherein the disk comprises at least one orifice which is constructed and arranged to direct a forward flow of a fluid through the at least one orifice and to impede a backflow of the fluid through the at least one orifice.
Variation 2 may include a product as set forth in Variation 1 wherein a flow rate of the forward flow of the fluid is greater than a flow rate of the backflow of the fluid.
Variation 3 may include a product as set forth in any of Variations 1-2 wherein the at least one orifice is constructed and arranged to create a turbulent flow path for the backflow of fluid and a non-turbulent path for the forward flow of the fluid.
Variation 4 may include a product as set forth in any of Variations 1-3 further comprising a cutout located adjacent a bottom surface of the disk.
Variation 5 may include a product as set forth in any of Variations 1-4 wherein the cutout is constructed and arranged to send the forward flow of fluid through the at least one orifice.
Variation 6 may include a product as set forth in any of Variations 1-5 wherein the at least one orifice comprises a first cylindrical surface, a second cylindrical surface, and a lip extending therebetween, and wherein a first diameter of the first cylindrical surface is less than a second diameter of the second cylindrical surface.
Variation 7 may include a product as set forth in any of Variations 1-6 wherein the at least one orifice comprises a cylindrical surface and a tapered surface, and wherein the diameter of the tapered surface increases as it extends to the bottom surface.
Variation 8 may include a product as set forth in any of Variations 1-7 wherein the at least one orifice comprises a plurality of linear tapered surfaces.
Variation 9 may include a product as set forth in any of Variations 1-8 wherein a bottom surface of the disk comprises a taper.
Variation 10 may include a product as set forth in any of Variations 1-9 wherein the disk is one component.
Variation 11 may include a product as set forth in any of Variations 1-10 wherein the disk comprises several layers.
Variation 12 may include a product as set forth in any of Variations 1-11 wherein the orifice flow valve is attached to a hydraulic tensioner.
Variation 13 may include a product as set forth in any of Variations 1-12 wherein the at least one orifice is linear.
Variation 14 may include a product as set forth in any of Variations 1-13 wherein the at least one orifice is at an incline.
Variation 15 may include a product as set forth in any of Variations 1-14 wherein the at least one orifice is curved.
Variation 16 may include a product as set forth in any of Variations 1-15 further comprising at least one first orifice comprising a first geometry and at least one second orifice comprising a second geometry.
Variation 17 may include a timing chain tensioner hydraulic flow valve comprising: an orifice valve comprising: a valve substrate; wherein the valve substrate comprises at least one orifice; wherein the at least one orifice is constructed and arranged to direct a forward fluid flow through the at least one orifice; and wherein the at least one orifice is constructed and arranged to impede a fluid backflow through the at least one orifice.
Variation 18 may include a timing chain tensioner hydraulic flow valve comprising: an orifice valve comprising: a valve substrate; wherein the valve substrate comprises a plurality of orifices formed therethrough; wherein each of the plurality of orifices has an inlet cross-sectional area greater than an outlet cross-sectional area; wherein each of the plurality of orifices directs a forward fluid flow through the at least one orifice; and wherein each of the plurality of orifices is constructed and arranged to impede a fluid backflow through the at least one orifice.
Variation 19 may include a method comprising: preventing a backflow of fluid into a hydraulic tensioner comprising: providing a valve substrate with at least one orifice, wherein the at least one orifice is constructed and arranged to direct a forward flow of fluid from a tensioner reservoir into the hydraulic tensioner and to impede a backflow of fluid from the tensioner into the reservoir.
Variation 20 may include a product comprising a timing chain tensioner hydraulic flow valve comprising a valve substrate which comprises a means for directing a forward flow of fluid from a tensioner reservoir into a hydraulic tensioner and a means for impeding a backflow of fluid from the tensioner into the reservoir.
The above description of select variations within the scope of the invention is merely illustrative in nature and, thus, variations or variants thereof are not to be regarded as a departure from the spirit and scope of the invention.
This application claims the benefit of U.S. Provisional Application No. 61/932,506 filed Jan. 28, 2014.
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/US2015/013155 | 1/27/2015 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2015/116606 | 8/6/2015 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
3903921 | Brookman | Sep 1975 | A |
20080121834 | Kern | May 2008 | A1 |
20120252616 | Tawarada et al. | Oct 2012 | A1 |
20130331214 | Crump | Dec 2013 | A1 |
Number | Date | Country |
---|---|---|
102338186 | Feb 2012 | CN |
202833600 | Mar 2013 | CN |
103133451 | Jun 2013 | CN |
103343836 | Oct 2013 | CN |
19929668 | Jan 2001 | DE |
102009017484 | Oct 2010 | DE |
55152981 | Nov 1980 | JP |
2002333056 | Nov 2002 | JP |
2008133879 | Jun 2008 | JP |
2009192030 | Aug 2009 | JP |
2009281492 | Dec 2009 | JP |
2012062945 | Mar 2012 | JP |
2012211645 | Nov 2012 | JP |
2013142441 | Jul 2013 | JP |
Entry |
---|
International Search Report and Written Opinion; dated May 12, 2015 for International Application No. PCT/US2015/013155; 12 pages. |
Chinese Office Action dated Mar. 2, 2018 ; Application No. 201580003855.2; Applicant: BorgWarner Inc.; 30 pages. |
Japanese Office Action dated Nov. 6, 2018 ; Application No. 2016-544850; Applicant; BorgWarner Inc.; 16 pages. |
Chinese Office Action dated Dec. 5, 2018 ; Application No. 201580003855.2; Applicant: BorgWarner Inc.; 17 pages. |
Chinese Office Action dated Jun. 3, 2019; Application No. 201580003855.2; Applicant: BorgWarner Inc.; 9 pages. |
Number | Date | Country | |
---|---|---|---|
20170023107 A1 | Jan 2017 | US |
Number | Date | Country | |
---|---|---|---|
61932506 | Jan 2014 | US |