This invention relates to fluid control, and in particular to a variable differential adjustor for a fluid pressure-actuated switch, with the fluid, in the preferred form, being air.
In dwellings and other structures using sump pumps to drain subterranean building footings and avoid ingress of water into the structure, it is important that the sump pump be actuated when water removal limits occur. Thus, sump pumps have switches that are activated by many different types of actuation devices, such as floats, pressure pads, and pressure tubes. It is the latter type of structure that is utilized with the invention of the present application.
Pressure tubes typically extend into a sump pit or other water collection area, and as water rises in the sump pit, pressure within the tube increases until a pressure-actuated switch is closed, thus activating the sump pump. Once the water level is reduced below a certain level by the sump pump, the pressure-actuated switch is deactivated, and pumping ceases.
To control the level at which pumping begins, typically the tube is repositioned up or down, which then translates into a higher or lower water level which commences actuation of the sump pump. If repositioning of the pressure tube is impossible or inconvenient, then the only manner in which to change the actuation of a pressure-actuated switch would be to restrict air pressure to the switch, effectively delaying actuation of the switch.
The invention is directed to a variable differential adjustor for a fluid pressure-actuated switch. A restrictor housing is provided, having a fluid passage therethrough. A connection of the restrictor housing is provided to the pressure-actuated switch for directing fluid pressure to and from the restrictor housing for activation of the pressure-actuated switch. A restrictor plug, shaped to engage the fluid passage, is positionable in the fluid passage to alter fluid flow through the fluid passage to the pressure-actuated switch.
In the preferred form of the invention, air is the fluid, and the fluid passage comprises a bore. The restrictor plug comprises an element which is adjustable in the bore. Preferably, that element is a set screw which is threadedly engaged in the bore. The bore typically is smooth and the set screw is engaged with threaded peaks of the set screw, leaving a helical fluid passage between the set screw and the bore for fluid flow.
The restrictor housing is preferably a hollow tube junction in tubing leading from a pressure tube to a pressure-actuated switch for a sump pump. The set screw is threadedly engaged in a smooth bore in the tube junction.
The invention is described in greater detail in the following description of an example embodying the best mode of the invention, taken in conjunction with the drawing figures, in which:
A pressure tube 12 extends to sump pit or other water collection area, and as the level of the water 14 rises or falls, air pressure within the pressure tube 12 changes commensurately. That pressure is communicated to the pressure-actuated switch by means of hollow tubing 16.
To control transmission of fluid pressure from the pressure tube 12 to the switch 10, a variable differential adjustor 20 according to the invention is installed in the tubing 16. As best illustrated in
The restrictor housing preferably comprises a hollow tube junction which joins portions of the tubing 16. The restrictor housing has a series of exterior barbs 26 on each end which lodge the restrictor in place when forced within the tubing 16.
The restrictor housing 22 has a fluid passage in the form of a bore 28. Thus, if the restrictor plug 24 were not present, the bore 28 would form an unrestricted connection between two portions of the tubing 16.
The restrictor plug 24 is shaped to engage the bore 28. Preferably the restrictor plug 24 is a set screw, having a helical thread 30 which engages in the bore 28. The set screw forming the restrictor plug 24 can be conventional, and has thread peaks engaging the bore 28, leaving a helical fluid passage 32 between the set screw and the bore 28. The helical fluid passage 32 thus becomes a restricted passage to control pressure transmission through the variable differential adjustor 20.
Again viewing
The invention, while simple, provides a dependable and widely adjustable restrictor, which is not temperature dependent. Various changes can be made to the invention without departing from the spirit thereof or scope of the following claims.
Number | Name | Date | Kind |
---|---|---|---|
4278856 | Owens | Jul 1981 | A |
5155310 | Goans | Oct 1992 | A |
5478977 | Beasley | Dec 1995 | A |
5672049 | Ciurlo | Sep 1997 | A |
6472624 | Harris et al. | Oct 2002 | B1 |
6495777 | Chou | Dec 2002 | B1 |