Cylinder device with force multiplier
US-2015000516-A1 · Jan 1, 2015 · US
US10653988B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10653988-B2 |
| Application number | US-201515117429-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 13, 2015 |
| Priority date | Feb 14, 2014 |
| Publication date | May 19, 2020 |
| Grant date | May 19, 2020 |
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An air brake filter assembly and methods are shown. Example configurations include a filter lock that holds an indicator in an actuated position after a filter has become clogged. Example configurations may also include a bypass pathway to allow air to bypass the filter when the filter is clogged.
Opening claim text (preview).
The invention claimed is: 1. An air brake filter assembly, comprising: a filter assembly base; a filter coupled to the filter assembly base; a clogged filter indicator coupled to the filter assembly base and moveable from a first position indicating a normal filter condition to a second position indicating a clogged filter; a bypass pathway to allow air to bypass the filter when the filter is clogged, wherein the bypass pathway opens in response to the filter moving relative to the filter assembly base; a stepped piston comprising at least two different steps along the piston corresponding to the first position and the second position; and at least one lock ball configured to engage a first step of the stepped piston in the first position and to engage a second step of the stepped piston in the second position. 2. The air brake filter assembly of claim 1 , wherein the bypass pathway is dynamic. 3. The air brake filter assembly of claim 1 , further including a filter carrier wherein the filter carrier can be forced to move under pressure, if the filter is clogged, to unlock the clogged filter indicator and allow motion from the first position to the second position. 4. The air brake filter assembly of claim 1 , further including a second position lock. 5. The air brake filter assembly of claim 1 , wherein the clogged filter indicator is configured to move from the first position to the second position using line pressure. 6. The air brake filter assembly of claim 1 , wherein the base is reusable and the filter is replaceable. 7. An air brake filter assembly, comprising: a filter assembly base; a filter coupled to the filter assembly base; a clogged filter indicator coupled to the filter assembly base and moveable from a first position indicating a normal filter condition to a second position indicating a clogged filter; and an indicator lock to hold the clogged filter indicator in the first position until the filter becomes clogged, and to lock the clogged filter indicator in the second position after actuation of the indicator lock, wherein the indicator lock comprises a stepped piston comprising at least two different steps along the piston corresponding to the first position and the second position, wherein the indicator lock comprises at least one lock ball configured to engage a first step of the stepped piston in the first position and to engage a second step of the stepped piston in the second position. 8. The air brake filter assembly of claim 7 , further including a bypass pathway to allow air to bypass the filter when the filter is clogged. 9. The air brake filter assembly of claim 7 , wherein the indicator lock is biased with a spring to set an actuation pressure. 10. The air brake filter assembly of claim 8 , wherein the bypass pathway opens in response to the filter moving relative to the filter assembly base. 11. The air brake filter assembly of claim 7 , wherein the filter is a cylinder. 12. A filter cartridge for an air brake filter assembly, comprising: a filter carrier; a filter coupled to the filter carrier; and a lock coupled to the filter carrier to engage a clogged filter indicator, wherein the lock includes a stepped piston comprising at least two different steps along the piston, the at least two different steps comprising a first step configured to engage at least one lock ball in a first position and a second step configured to engage the at least one lock ball in a second position, wherein the piston defines a surface extending between the first step and the second step, wherein the surface is configured to engage the at least one lock ball continuously when the at least one lock ball is moved from the first step to the second step. 13. The filter cartridge of claim 12 , wherein the filter is a cylinder. 14. The filter cartridge of claim 12 , wherein the lock further comprises the at least one lock ball configured to engage the first step of the stepped piston in the first position and to engage the second step of the stepped piston in the second position. 15. A method, comprising: sensing a filter condition using a filter that is coupled to a movable filter carrier; moving the filter carrier and filter in response to a clogged filter condition; releasing an indicator lock on a clogged filter indicator in response to the moving of the filter carrier; moving the clogged filter indicator from a first position indicating a normal filter condition to a second position indicating a clogged filter, wherein the first position corresponds to a first step of a stepped piston and the second position corresponds to a second step of the stepped piston, wherein at least one lock ball engages the first step of the stepped piston in the first position; locking the clogged filter indicator in the second position, wherein the at least one lock ball engages the second step in the second position; and moving the filter carrier and filter to open a bypass pathway in response to line pressure. 16. The method of claim 15 , wherein locking the clogged filter indicator in the second position is in response to the moving of the filter carrier. 17. The method of claim 15 , further including bypassing a clogged filter to provide line pressure while the clogged filter indicator is locked in the second position. 18. The method of claim 15 , further including replacing a clogged filter with a new filter and resetting the clogged filter indicator. 19. The method of claim 15 , further including generating an electrical signal in response to the clogged filter indicator, and transmitting the electrical signal to a remote filter condition indicator to alert a user of a filter condition.
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