Valve stem assemblies
11686401 · 2023-06-27
Inventors
Cpc classification
B60C29/005
PERFORMING OPERATIONS; TRANSPORTING
International classification
F16K15/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60C29/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A valve stem having a hollow tube and a compression sleeve mounted to the hollow tube; wherein the hollow tube and compression sleeve are partially insertable through a container wall opening from an exterior side of the container wall through to an interior side of the container wall, and a mechanism accessible from the exterior side of the container wall to compress the compression sleeve against the interior side of the container wall.
Claims
1. An assembly, comprising: a straight rigid hollow tube and a compression sleeve mounted to the hollow tube; wherein the hollow tube is at least partially threaded on its exterior surface extending along a middle of its exterior surface and a flange at a distal end to retain a distal end of the compression sleeve while under compressive forces; wherein the compression sleeve is made from a flexible, deformable and compressible material; wherein the hollow tube and compression sleeve are configured to be partially insertable through a wall opening from a first side of the wall through to a second side of the wall, and a mechanism accessible from the first side of the wall to compress the compression sleeve against the second side of the wall wherein the compression sleeve while under compressive forces forms a void between an inner wall of the compression sleeve and hollow tube, wherein the compression sleeve expands against the wall opening and against the second side of the container; and wherein the mechanism accessible from the first side of the wall to compress the compression sleeve against the second side of the wall comprises at least one nut configured for mounting to the external threads on the middle of the hollow tube, whereby when the nut is rotated, the hollow tube is partially retracted from the second side.
2. The valve stem of claim 1, wherein the compression sleeve material is selected from the group consisting of rubber, cork, ethylene propylene diene monomer (EPDM), Nitrile, Buna, Neoprene, Flexible Graphite, Grafoil, Aflas, Kalrez, Viton, Silicone, Metal, Mica, Felt or a plastic polymer such as Polytetrafluoroethylene (PTFE), Peek, Urethane, or Ethylene Propylene (EP), leather, and combinations thereof.
3. The valve stem of claim 1, wherein the compression sleeve is wedge shaped.
4. A tire rim and valve stem assembly, comprising: a tire rim including an aperture having an aperture diameter; a valve stem having a hollow tube and a compression sleeve mounted to the hollow tube according to claim 1; wherein the hollow tube and compression sleeve are partially insertable through tire rim aperture from an exterior side of the tire rim through to an interior side of the tire rim, and a valve stem mechanism accessible from the exterior side of the tire rim to retract the valve stem assembly and thereby compress the compression sleeve against the interior side of the tire rim.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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ELEMENT LIST
(21) 20 valve stem assembly 21 diameter of rim sealer collar (54) 22 dust cap 23 void from rubber seal bulge 24 valve core 25 diameter of narrowed encapsulated valve stem in
DETAILED DESCRIPTION
(22) Described herein are valve stem assemblies for enclosed containers, and in particular, externally mountable valve stem assemblies, which are clampable onto a wheel rim for a tubeless tire, and the like. The present embodiments are configured to be installed whenever and wherever desired with no specialized equipment or training or wheel rim modification. The clamp assembly allows for greater sealing properties of the valve stem than previously known in the art. The clamp assembly allows for smaller diameter of an interior rubber compression flange, which allows for easier insertion into the wheel rim valve stem opening. Thus, no special equipment is needed to force the valve stem and compression flange through the wheel rim opening. This allows for easier installation wherever the vehicle is located.
(23) Components to clamp the valve stem to the wheel rim are externally accessible using tools known in the art, such as a wrench to a nut on the valve stem tube. As the nut is turned on a threaded portion of the valve stem tube, the tube is partially withdrawn from the interior. A compression flange is restricted from withdrawing through the opening of the wheel rim once inserted through the opening. As the tube is withdrawn, the compression flange is compressed against the interior perimeter of the wheel rim opening forming a more air tight seal. Various shapes and features of the compression flange are provided to illustrate a few of the various configurations within the scope of the embodiments.
(24) The present exemplary embodiments are described as a valve stem for a tubeless tire for ease of understanding the invention. However, it is noted that the present embodiments can include any enclosed vessel configured to store and controllably dispense and receive any type of flowable substances via the valve, the valve having an interior clamp to seal a vessel opening, and the clamping device being installable through the exterior of vessel opening and adjustable via the vessel exterior. As a further illustration, shown in
(25) For the present embodiments the terms ‘exterior’ and ‘interior’ are used in conjunction with a description of a tubeless tire. The ‘interior’ is used to describe one side of the container wall that is the interior pressurized portion of a tubeless tire where the compression flange is located once installed. The ‘exterior’ denotes the air outside the tubeless tire on the opposite side of the container wall where the components to clamp the compression flange against the interior wall are located. It is noted though that in describing the environment of the present embodiments other terms may be used to denote the opposite sides of a container wall.
(26) The present embodiments provide an improvement in the art in that it is unknown to provide an interior clamping mechanism to seal a wheel rim opening from the exterior of the wheel. The present embodiments are particularly useful for wheel rims on farm vehicles. Some farm equipment tires can be filled in part with water and weigh several hundred pounds. Specialized equipment is required to remove these large and heavy wheels, transport the wheel, and to demount, repair, remount, return and place back on the equipment. The present embodiments can be replaceable by a vehicle operator with no special tools or training. The advantages of such a device are evident by reduced maintenance costs and reduced vehicle down time from the quick and easy insertion of the present valve stems from the exterior of the wheel rim. In some embodiments, a wheel rim with multiple wheel rim openings may be advantageous. The valve stem assembly itself can be manufactured without significant retooling of present day valve stem manufacturing facilities.
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(28) 21 The diameter of rim sealer collar (54) should initially be at least 1/16″ larger than the diameter of the wheel rim valve stem receiving hole 42, which would then expand to about 3/32″ under compression the according to one approach; ¼″ initially according to another approach; or 3/16).
(29) 23 The potential void created when the compression seal is under pressure (slight or none) in its installed position (
(30) 22 A standard valve stem dust cap.
(31) 23 The valve stem portion disposed within compression sleeve (
(32) 24 A standard valve core typically know in the art as a Shrader valve.
(33) 25 The diameter of narrowed encapsulated valve stem portion in
(34) 26 The dust cap threads (standard) (approx. 0.775 cm for 1.588 cm opening).
(35) 27 The diameter of compression threads (30) and/or the rim sealer interior profile (50) (approx. 1.016 cm for 1.588 cm opening). In any event, in the preferred embodiment dimension 27 is greater than dimension 31 to allow the compression nut (32) to slide down to compression threads (30).
(36) 28 The valve stem air tube (standard) (approx. 0.775 cm for 1.588 cm opening).
(37) 29 The diameter of valve stem air tube flange (38) (approx. 1.320 cm).
(38) 30 The compression threads (approx. 1.016 for 1.588 cm opening). In one embodiment, compression threads 30 are of greater diameter than the dust cap threads to allow the compression nut to slide past the dust cap threads. In an alternate embodiment, the dust cap threads can be continuous with the compression threads so that the compression nut begins at the top of the valve stem tube. In embodiments not having a thread stop (67), optional notches or other types of marks such as colored marks along thread can denote where a user should stop adjustment or retraction of valve stem air tube. Multiple notches can be used for different container wall thicknesses.
(39) 31 The diameter of valve stem air tube (28) (approx. 0.775 cm).
(40) 32 The compression nut (two nuts optional) threads match compression threads (30) (bore diameter approx. 1.016 for 1.588 cm opening).
(41) 33 The fixed valve stem nut (
(42) 34 The compression washer (approx. inner diameter 1.97 cm for a 1.588 cm opening; approx. outer diameter 2.54 cm for 1.588 cm opening).
(43) 35 The compression nut longitudinal length (approx. ¼″ or greater).
(44) 36 The compression sleeve (compression flange) (rim sealer) is made from a flexible and/or compressible and/or stretchable material. Compression sleeve 36 is one of the key elements of the present embodiments (shown, e.g., as rubber seal 36). Compression sleeve 36 is bound to valve stem air tube 36 and is configured to be externally inserted with force into an opening of a container. This is shown, for example, in
(45) Thus, the distal end of the rubber seal 36 is approximately the same diameter as the hole 42 so that it initially inserts easily. As it is pushed through hole 42, the compression sleeve material near flange 38 stretches going inside of the wheel rim wall and the cone formed by the rubber sleeve taper deforms enough to make it through the opening. As soon as the detent 52 passes through rim opening 42, the upper tapered portion of compression sleeve 36 expands to extend beyond the entire perimeter of rim opening 42, thus allowing the top portion of the tapered rubber sleeve to expand to a greater diameter than the rim opening 42. A rim sealer collar 54 can provide a positive stop to resist over insertion of the rubber seal. Next, rotation of compression nut 32 withdraws flange 38 from the rim opening, taking the bottom portion of the compression sleeve with it. The pressure of rubber sleeve 38 against the perimeter of the inner side of the wheel rim opening caused by withdrawing flange 38 causes an air/fluid tight seal of the valve stem 20 about the opening. A stop at the bottom of compression threads 30 can be employed to prevent over-tightening of the valve stem against the wheel rim. Also, a second nut can be employed as a locking nut to keep the compression nut 32 from moving once installed. The rubber seal rotation resistance and a locking nut would be guaranteed to keep it snug. The portion that engages the interior wall of the wheel rim may optionally by slightly convex or concave so that the outer perimeter of the compression sleeve is slightly (e.g., 0.2 cm) sloped upward (exteriorly) or downward (interiorly) towards the center of compression sleeve 36.
(46) 38 The valve stem air tube flange (approx. 1.320 for 1.588 cm opening). To assist in the insertion of rubber sleeve 36, a valve stem air tube flange at the very distal end of the valve stem air tube 28 is encased inside of the bottom of rubber sleeve 36 and is contiguous with the metal tube.
(47) 40 The wheel rim.
(48) 42 The wheel rim valve stem receiving hole.
(49) 43 The wheel rim receiving opening/hole dimension (e.g., approx. 1.588 cm or 1.15 cm, or 1.588 cm or 1.15 cm).
(50) 44 The air shaft for metal air tube.
(51) 45 Exemplary wheel rim thickness and notch 52 height (approx. 0.2 cm).
(52) 46 Exemplary compression sleeve taper.
(53) 47 Compression sleeve taper angle
(54) 48 Compression sleeve taper angle/dimension
(55) 50 The compression sleeve interior profile.
(56) 51 The upper taper diameter of the compression sleeve (approx. 1.97 cm for 1.588 cm opening and 9 degree taper; and approx. 2.29 cm for 1.588 cm opening and 19 degree taper when the narrower end at the distal end of the compression sleeve is approx. 1.575 cm). In another embodiment where the container wall opening is 1.15 cm, the upper taper diameter can be (approx. 1.829 cm for 1.15 cm opening and 13 degree taper; and approx. 1.524 cm for 1.15 cm opening and a 19 degree taper when the narrower end at the distal end of the compression sleeve is approximately 1.143 cm).
(57) The dimension material of the compression sleeve beyond the air tube flange 38 could be no less than approx. 1/16″ (e.g., 1/16″).
(58) 52 The rim sealer notch/detent
(59) 53 The rim sealer collar 54 outer diameter (approx. no less than 1/16″ (e.g., 1/16″) greater than diameter of wheel rim valve stem receiving hole (42)). According to another approach, dimension 53 can be between 1/16″ to ¼″.
(60) 54 The rim sealer collar (approx. 1.97 cm for 1.588 cm opening).
(61) 55 The rim seal collar thickness (approx. 1/16″ to 3/32″), which might deform to a 1/64″ under pressure. Should be no less than 1/16″).
(62) 57 The bottom taper diameter (approx. 1.143 cm for 1.15 cm opening to 1.575 cm for 1.588 cm opening)
(63) 58 A vulcanized area.
(64) 60 Air flow.
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(68) The diameter dimension of notch 52. It is noted that the shape and dimensions are dependent on density of compression sleeve material.
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(72) 67 Thread stop (no threads to stop withdraw of the tube).
(73) 68 Optional donut shaped void in compression sleeve (36)
(74) 69 Flexible fins
(75) 70 Exemplary tank (such as an oil tank)
(76) 71 Exemplary fluid valve held in place within a tank opening with one of the present embodiment.
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(78) It will be understood that various changes in the details, materials, and arrangements of the valve stems, which have been herein described and illustrated in order to explain the nature of the package and methods, may be made by those skilled in the art within the principle and scope of the embodied packages, laminates and methods as expressed in the appended claims.