Patent classifications
E03F5/0411
Adjustable floor drain and method of installation
A drain assembly comprises a shroud, a shank, and a frame. The drain assembly may further comprise a shim with an angled top surface. The frame may have an angled bottom surface. A rotational orientation of the angled top surface of the shim relative to the shank and a rotational orientation of the angled bottom surface of the frame relative to the shank may be independently adjustable, thereby allowing for the top surface of the frame to be both angularly and rotationally adjusted relative to a central axis of the drain assembly independent of the positional height of the shank. The drain assembly may further comprise a cover having bendable tabs. The bendable tabs may be disposed around a periphery of the cover and may be configured to contact an angled inner surface of an upper bowl of the shroud, such that the bendable tabs bend around the frame, thereby locking the cover onto the frame.
Guard apparatus for a curb inlet
A guard for curb inlets prevents entry of large objects such as cans and bottles into the opening of the curb inlet, but allows water to enter the opening. The guard defines a relief on its bottom side so that the guard may be installed at the correct height without measurement. The guard may be composed of first and second or first, second and third slidably-engaged portions to allow the length of the guard to be user-selectable to fit a variety of curb inlets. The guard may include a grill to strain smaller debris from the water.
OIL LEAK DETECTION CIRCUIT AND BLOCKING MECHANISM FOR USE IN A STORM WATER DRAINAGE SYSTEM
A device for detecting the presence of hydrocarbon fluid in runoff water includes an outer canister and a cartridge situated within the outer canister. The cartridge includes a pre-filter, at least one containment vessel, a diffuser/separator member situated within the containment vessel, a hydrocarbon fluid accumulator and an electronic circuit. The diffuser/separator member slows the flow of runoff water entering the containment vessel so that oil in the runoff water separates from and rises to the surface of the water where it accumulates in the hydrocarbon fluid accumulator. A sensor situated in the hydrocarbon fluid accumulator detects the accumulated oil and sends a signal to the electronic circuit which, in turn, closes a valve and prevents water from flowing through an egress opening in the outer canister.
Stormwater inlet seal and a stormwater inlet
Stormwater inlets and stormwater inlet seals are disclosed. The stormwater inlet seal can include a first section and a second section. The first section and/or second section at least partially defines an opening in the stormwater inlet seal. The first section can be pivotally connected to the second section about an edge of the first section. The first section can be moveable between a first position in which the first section is biased towards a closed position to direct fluid towards the opening and a second position which allows access to the inlet. A stormwater inlet with a first section that is pivotally connected to a sidewall is also disclosed.
STORMWATER INLET SEAL AND A STORMWATER INLET
Stormwater inlets and stormwater inlet seals are disclosed. The stormwater inlet seal can include a first section and a second section. The first section and/or second section at least partially defines an opening in the stormwater inlet seal. The first section can be pivotally connected to the second section about an edge of the first section. The first section can be moveable between a first position in which the first section is biased towards a closed position to direct fluid towards the opening and a second position which allows access to the inlet. A stormwater inlet with a first section that is pivotally connected to a sidewall is also disclosed.
COVER ASSEMBLY AND METHODS
Systems and methods of installing a fixture into a material are provided. The fixture includes a body and a cover assembly that is removably coupled to the body and configured to move relative to the body once the body has been secured within the material. The cover assembly includes a movable component configured to aid removal of the cover assembly.
ADJUSTABLE FLOOR DRAIN AND METHOD OF INSTALLATION
A drain assembly comprises a shroud, a shank, and a frame. The drain assembly may further comprise a shim with an angled top surface. The frame may have an angled bottom surface. A rotational orientation of the angled top surface of the shim relative to the shank and a rotational orientation of the angled bottom surface of the frame relative to the shank may be independently adjustable, thereby allowing for the top surface of the frame to be both angularly and rotationally adjusted relative to a central axis of the drain assembly independent of the positional height of the shank. The drain assembly may further comprise a cover having bendable tabs. The bendable tabs may be disposed around a periphery of the cover and may be configured to contact an angled inner surface of an upper bowl of the shroud, such that the bendable tabs bend around the frame, thereby locking the cover onto the frame.
Adjustable floor drain and method of installation
A drain assembly comprises a shroud, a shank, and a frame. The drain assembly may further comprise a shim with an angled top surface. The frame may have an angled bottom surface. A rotational orientation of the angled top surface of the shim relative to the shank and a rotational orientation of the angled bottom surface of the frame relative to the shank may be independently adjustable, thereby allowing for the top surface of the frame to be both angularly and rotationally adjusted relative to a central axis of the drain assembly independent of the positional height of the shank. The drain assembly may further comprise a cover having bendable tabs. The bendable tabs may be disposed around a periphery of the cover and may be configured to contact an angled inner surface of an upper bowl of the shroud, such that the bendable tabs bend around the frame, thereby locking the cover onto the frame.
Combination of a cover plate and a drain and use of such combination
A combination of a cover plate and a drain, preferably a floor drain is described. The cover plate is provided with first locking means and the drain is provided with cooperating second locking means for releasable connection of the cover plate to the floor drain. The cover plate is a temporary cover plate for use during installation of the drain. The cover plate may be used for a temporary protection of a drain during installation of the drain and for installing and adjusting the inclination of the drain without the need of separate levelling tools. To obtain this the cover plate is provided with levelling means for determining the orientation of the cover plate and thereby also the drain in relation to a horizontal or a vertical plane. The first locking means or the second locking means comprises a weakening arranged such that at least a part of the locking means is preferably damaged when the cover plate is removed from the drain to ensure that the cover is not reused.
FAST INSTALLATION CAP AND DRAIN
An elongated floor cleanout assembly includes a drain assembly. The drain assembly has a body assembly and a grating cover secured to the body assembly by at least one screw. The drain assembly also has a cap enclosing the drain assembly and secured to the grating cover by the at least one screw. The cap defines at least one slit having an arcuate portion and an end. The at least one screw is captured in the arcuate portion and the cap can be rotated to selectively allow the at least one screw to freely pass through the end for removal of the cap without removing the at least one screw.