Apparatus and method of assembling a piston on a shaft over a lip seal
View Patent ↗A method and apparatus for installing a piston over a lip seal on a shaft includes a cylinder or primary force and a weight member or secondary force. The primary force and secondary force are coupled by a resilient member, which will permit the secondary force to retract from the assembly process when the force needed to complete the assembly is above a predetermined value.
1. A method of assembling a piston into an installed position on a shaft over a lip seal disposed on the shaft, the method comprising:
positioning the piston to be slidably disposed on the shaft and adjacent to the lip seal;
exerting an apply force on the piston with a weight member to translate the piston over the lip seal to the installed position, the weight member being in contact with the piston and having an annular portion, a plurality of pins being attached to the annular portion, the plurality of pins transferring the apply force to the piston;
monitoring a reaction force exerted by the lip seal on the piston as the piston translates into the installed position over the lip seal; and
determining a condition of the lip seal based on the reaction force.
2. The method of claim 1 wherein determining the condition of the lip seal includes determining that the lip seal is properly positioned when the reaction force exerted by the lip seal as the piston translates into the installed position does not exceed a predetermined expected reaction force exerted by a properly positioned lip seal.
3. The method of claim 1 wherein determining the condition of the lip seal includes determining that the lip seal is not properly positioned when the reaction force exerted by the lip seal as the piston translates into the installed position exceeds a predetermined expected reaction force exerted by a properly installed lip seal.
4. The method of claim 1 wherein exerting the apply force includes exerting the apply force on the piston through a resilient member and in a direction toward the lip seal and toward the installed position of the piston.
5. The method of claim 1 wherein exerting the apply force includes exerting the apply force on the piston through a spring to translate the piston over the lip seal to the installed position.
6. The method of claim 5 wherein monitoring the reaction force includes monitoring the reaction force exerted by the lip seal on the piston as the piston translates into the installed position by monitoring a compression distance of the spring that is indicative of the reaction force.
7. The method of claim 6 wherein determining the condition of the lip seal includes determining a condition of the lip seal based on the reaction force by comparing the compression distance of the spring with a predetermined compression distance of the spring.
8. The method of claim 6 wherein monitoring the compression distance of the spring includes visually inspecting the compression distance of the spring relative to an initial compression of the spring before the apply force is exerted on the piston.
9. The method of claim 6 wherein monitoring a compression distance of the spring includes monitoring an output of an electronic sensor that determines the compression distance of the spring.
10. A method of assembling a piston into an installed position on a shaft over a lip seal disposed on the shaft, the method comprising:
positioning the piston to be slidably disposed on the shaft and adjacent to the lip seal;
exerting an apply force on the piston through a spring and a weight member to translate the piston over the lip seal to the installed position, the weight member being in contact with the piston and having an annular portion, a plurality of pins being attached to the annular portion, the plurality of pins transferring the apply force to the piston;
monitoring a reaction force exerted by the lip seal on the piston as the piston translates into the installed position over the lip seal by monitoring a compression distance of the spring that is indicative of the reaction force; and
determining a condition of the lip seal based on the reaction force by comparing the compression distance of the spring with a predetermined compression distance.
11. The method of claim 10 wherein monitoring the compression distance of the spring includes visually inspecting the compression distance of the spring relative to an initial compression of the spring before the apply force is exerted.
12. The method of claim 10 wherein monitoring a compression distance of the spring includes monitoring an output of an electronic sensor that determines the compression distance of the spring.
13. The method of claim 10 wherein determining a condition of the lip seal includes determining that the lip seal is properly positioned on the shaft when the compression of the spring is less than a predetermined expected compression amount for an improperly positioned lip seal.
14. The method of claim 10 wherein determining a condition of the lip seal includes determining that the lip seal is not properly positioned on the shaft when the compression of the spring is greater than or equal to a predetermined expected compression amount for an improperly positioned lip seal.