Oil drain valve with check ball and detachable bayonet-style actuator
09752473 ยท 2017-09-05
Assignee
Inventors
Cpc classification
F16K15/1823
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K15/044
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M2011/0425
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M11/0408
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F01M11/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L37/407
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K15/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An oil change drain valve includes a hollow valve body and a hollow body valve actuator arranged coaxial with the valve body. The valve body is adapted for insertion into an oil pan and houses a check ball and a spring arranged to urge the check ball into a closed position. The valve actuator is adapted for temporary insertion into a lower end of the valve body and includes a bayonet at its upper end. As the valve actuator moves toward the check ball, the bayonet contacts the ball and urges it into an open position. Oil flows through the valve body and actuator unimpeded by any mechanical or moving parts.
Claims
1. An oil change drain valve comprising: a valve body arranged for insertion into an oil pan drain opening, the valve body including an external threaded length and a hollow axial bore with an exposed open uppermost end, the hollow axial bore housing a check ball at another end and a wave spring located toward the exposed open uppermost end, the spring trapped by the valve body and arranged to urge the check ball into a closed position within the hollow axial bore; and a valve actuator arranged for temporary insertion into the hollow axial bore of the valve body, the valve actuator including a hollow axial bore arranged coaxial to the exposed open uppermost end of the valve body, a bayonet nut arranged to thread onto the external threaded length of the valve body, and a bayonet residing within the bayonet nut, the bayonet arranged to move between a first and a second position relative to the check ball as the bayonet nut threads along the external threaded length of the valve body, the bayonet remains in an unchanged position relative to the bayonet nut during travel, wherein when in the second position the bayonet urges the check ball toward a fully open position, a total length of travel of the bayonet being a same amount as the external threaded length; and a location washer housed within the hollow axial bore of the valve body arranged to position the check ball, wherein the location washer is a flat internal-toothed thrust washer; and a threaded removable valve body insert arranged for connection to the hollow axial bore of the valve body, the insert has an inner circular radius for a valve seat, and an outer portion containing an O-Ring and O-Ring groove.
2. An oil change drain valve according to claim 1 further comprising a tubing located at a lower end of the valve actuator and arranged coaxial with the hollow axial bore of the valve actuator.
3. A method of draining engine oil, the method comprising: removing a dust cap from a lower end of a valve body, the valve body including an external threaded length and a hollow axial bore with an exposed open uppermost end, the hollow axial bore housing a check ball at another end and a wave spring and a location washer located toward the exposed open uppermost end, wherein the location washer is a flat internal-toothed thrust washer, the wave spring trapped by the valve body, and a threaded removable insert on the downmost end, the insert containing an inner valve seat and outer O-Ring and O-Ring groove; inserting a valve actuator onto the lower end of the valve body, the valve actuator arranged for temporary insertion into the hollow axial bore of the valve body, the valve actuator including a hollow axial bore arranged coaxial to the exposed open uppermost end of the valve body, a bayonet nut arranged to thread onto the threaded length, and a bayonet residing within the bayonet nut; moving the valve actuator between a first and a second position, the bayonet remaining in an unchanged position relative to the bayonet nut during travel, the check ball being urged by the bayonet toward an open position when the valve actuator moves into the second position; and allowing oil to drain through the hollow axial bores of the valve body and the valve actuator.
4. A method according to claim 3 further comprising the steps of: removing the valve actuator from the lower end of the valve body; and reinstalling the dust cap.
5. An oil change drain valve comprising: a valve body arranged for insertion into an oil pan drain opening, the valve body including external threads, a hollow axial bore with an exposed open uppermost end, and a wave spring and a location washer trapped by the valve body, wherein the location washer is a flat, internal-toothed thrust washer, the hollow axial bore housing a check ball, the wave spring arranged to urge the check ball into a closed position within the hollow axial bore, and a threaded removable insert on a downmost end of the valve body, the insert containing an inner valve seat and an outer O-Ring and O-Ring groove; and a valve actuator including a hollow axial bore arranged coaxial to the exposed open uppermost end of the valve body and a valve actuator nut arranged to thread onto the external threads of the valve body.
6. An oil change drain valve according to claim 5 further comprising the valve actuator including at least one bayonet projection located at an uppermost end of the hollow axial bore of the valve actuator.
7. An oil change drain valve according to claim 5 further comprising a total length of travel of the valve actuator limited by a total length of the external threads.
8. An oil change drain valve according to claim 5 further comprising a tubing located at a lower end of the valve actuator and arranged coaxial with the hollow axial bore of the valve actuator.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
ELEMENTS USED IN THE DRAWINGS AND DETAILED DESCRIPTION
(5) 1 Valve body with axial hollow bore 2 Washer 3 Spring means (e.g. compression spring, wave spring, or their equivalent) 4 Location washer 5 Internal check ball 6 Valve body insert 7 Bayonet (with axial hollow bore) 8 Bayonet tap nut 9 Bayonet tap sleeve 10 Dust cap 11 Tether 12 Dust cap seal 13 Small O-ring 14 Large O-ring 15 Tubing 16 Tubing clamp
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(6) An oil pan drain valve made according to this invention provides a simple, leak-proof, efficient oil plug which permanently replaces the drain plug and facilitates a mess-free oil change.
(7) Referring to the drawing figures, a preferred embodiment of the drain valve includes a valve body 1 connected to the oil pan at one end and a detachable valve actuator 7, 8, 9 at the other end. The drain valve can be made of a high-quality brass, metal, or chemical and heat resistant plastics.
(8) In the ordinary task of changing engine oil, a user would remove a dust cap 10 located at the lowermost end of the valve body 1, insert the bayonet 7 of the detachable valve actuator into the now-exposed lowermost end of the valve body 1, and thread a tap nut 8 of the valve actuator clock-wise until the uppermost end of the bayonet 7 unseats the check ball 5 thereby releasing the oil through the valve body 1 and bayonet 7. Once the oil pan has been drained, the user would reverse the steps and re-fill the crank case with new engine oil.
(9) The drain valve includes a valve body 1 which is threadably connected to the oil pan plug opening. A washer 2 seals the valve body 1 to the oil pan. The valve body 1 includes a chamber or insert 6 housing an internal check ball 5 and spring means such as a compression spring or a wave spring 3. The use of the wave spring 3 and insert 6 is preferred because it permits the oil to flow faster through the valve body 1 than does a compression spring only design. On the lowermost end of the valve body 1, a rubber tether 11 holds a dust cap 10. An outside seal 12 seals the cap 10.
(10) The check ball 5 is actuated by a bayonet 7 which is seated inside the bayonet tap nut 8. The tap nut 8 is threadably connected to the valve body 1. As the tap nut 8 is threaded onto the valve body 1, a bayonet tip engages with the check ball 5, unseating the ball 5 and thrusting it upward against the spring 3. As the check ball 5 is unseated, oil is permitted to flow through the valve and into tubing 15. A bayonet tap sleeve 9 allows the tap nut 8 to rotate freely without causing a kink in the tubing 15.
(11) The advantages of the drain valve over the prior art are numerous. First, the valve body does not protrude any further from the oil pan than the drain plug itself freeing the vehicle operator from concern the valve could be dislodged from a road obstacle. Second, the drain valve includes both a valve and drain tube as part of a completely enclosed system. The user avoids a mess and skin contact. Third, the current design is efficient because there is no inner piston assembly, extraction tool, or other obstruction that impedes freely flowing oil. Fourth, the design is simple, only involving two assembled components: the valve body and the valve actuator with connected drain tubing. Fifth, and last, drain valve does not include a lever which could become accidently jarred open during vehicle operation.