Patent classifications
Y10T29/49815
Fan clutch system and method for accessing components of the fan clutch system
Some embodiments of a fan clutch system for use in a vehicle can provide efficient access to one or more components for inspection and service even after the fan clutch system is installed in the vehicle. In particular embodiments, the fan clutch system can include a fan clutch device and a coil retainer assembly that are removably mounted to a right-angle gear box assembly in a manner that permits a technician to accessing at least one component for inspection, repair, or replacement. The coil retainer assembly may at least partially house an electromagnetic coil for selective activation. The system may further include a fan clutch device removably mounted to the drive member of the gear box assembly.
Corrosion monitoring in a fire sprinkler system
A fire sprinkler system according to one aspect of the present disclosure includes a pipe having a first pipe portion and a second pipe portion. The first pipe portion includes a wall having a first wall thickness, and the second pipe portion includes a wall having a second wall thickness that is greater than the first wall thickness. The fire sprinkler system further includes structure coupled to the pipe and defining a sealed chamber between the structure and at least the first pipe portion, and a sensor for sensing a pressure in the sealed chamber. Example corrosion monitoring devices and methods for monitoring corrosion in pipe systems, including fire sprinkler systems, are also disclosed.
METHOD OF FORMING RETAINING RING WITH SHAPED SURFACE
- Hung Chih Chen ,
- Steven M. Zuniga ,
- Charles C. Garretson ,
- Douglas R. McAllister ,
- Jian Lin ,
- Stacy Meyer ,
- Sidney P. Huey ,
- Jeonghoon Oh ,
- Trung T. Doan ,
- Jeffrey P. Schmidt ,
- Martin S. Wohlert ,
- Kerry F. Hughes ,
- James C. Wang ,
- Danny Cam Toan Lu ,
- Romain Beau De Lamenie ,
- Venkata R. Balagani ,
- Aden Martin Allen ,
- Michael Jon Fong
A retaining ring can be shaped by machining or lapping the bottom surface of the ring to form a shaped profile in the bottom surface. The bottom surface of the retaining ring can include flat, sloped and curved portions. The lapping can be performed using a machine that dedicated for use in lapping the bottom surface of retaining rings. During the lapping the ring can be permitted to rotate freely about an axis of the ring. The bottom surface of the retaining ring can have curved or flat portions.
Photovoltaic module carrier and methods of use
A novel PV module carrier and methods of use provide protection for PV modules during transportation, field handling, and assembly with racking systems. The carrier contains elements of a racking system to allow for quicker installation in the field. The PV module carrier reduces manufacturing costs by eliminating the need for frame elements, while reducing field installation time and labor cost for system installation.
Retaining ring with shaped surface
- Hung Chih Chen ,
- Steven M. Zuniga ,
- Charles C. Garretson ,
- Douglas R. McAllister ,
- Jian Lin ,
- Stacy Meyer ,
- Sidney P. Huey ,
- Jeonghoon Oh ,
- Trung T. Doan ,
- Jeffrey P. Schmidt ,
- Martin S. Wohlert ,
- Kerry F. Hughes ,
- James C. Wang ,
- Danny Cam Toan Lu ,
- Romain Beau De Lamenie ,
- Venkata R. Balagani ,
- Aden Martin Allen ,
- Michael Jon Fong
A retaining ring can be shaped by machining or lapping the bottom surface of the ring to form a shaped profile in the bottom surface. The bottom surface of the retaining ring can include flat, sloped and curved portions. The lapping can be performed using a machine that dedicated for use in lapping the bottom surface of retaining rings. During the lapping the ring can be permitted to rotate freely about an axis of the ring. The bottom surface of the retaining ring can have curved or flat portions.
Filter element especially for filtering liquids or gases
A filter element for filtering liquids or gases, having a concentrically arranged filter medium with zigzag pleats. The filter medium is provided with end disks on its axial end faces, each end disk having an inside that is connected to the filter medium and an outside that faces away from the filter medium. At least a first end disk carries a valve element which is situated concentrically inside the filter medium. This valve element includes a valve seat which bulges outward above the plane of the outer side of the end disk. The valve element includes a valve body which cooperates with the valve seat and which is arranged on the first end disk so that it is axially movable and is inside of and surrounded by the filter medium.
Method for component handling and connecting of components
A combination component handling and connecting device connectable to a multi-axis robot for use in moving and connecting components and subassemblies includes a housing and an actuator fixedly connected to the housing. The actuator includes an actuating link movable from a first position to a second position. Connected to the actuating link is an end effector for concurrent movement with the actuating link. The component handling and connecting device includes a clamp having a first jaw and a second jaw. The second jaw is connected to the actuating link for selectively moving the second jaw toward the first jaw operative to engage a component.
Modular cartridge for liquid transport
A device includes multiple components that are independent from one another but are configured to be detachably coupled with one another so as to form a cartridge. One of the components is a clamp that is configured to hold the other components such that they are coupled together. The cartridge has one or more reservoirs, one or more functional chambers, and one or more channels configured to transport a liquid stored in at least one of the one or more reservoirs into the one or more functional chambers.
Liquid filter, assembly, system, and methods
A filter cartridge 38 includes a first endcap 41 defining a first open aperture and having at least first and second protrusions extending from a wall along the aperture and into the first open aperture. The first protrusion is spaced from the second protrusion in both a vertical direction and a circumferential direction. The filter cartridge also includes filter media 44 and a second endcap 42 . The filter cartridge is mountable in a filter bowl 36 having an inner liner assembly, and the bowl and the inner liner assembly is connectable to a filter head to form a filter system. The filter system can have any one or combination of the following features: a filter lock-out mechanism to ensure that the filter head and the filter bowl are not connectable unless there is a proper filter cartridge installed therein; an automatic drain mechanism to drain the filter bowl of liquid before the filter cartridge is removed from the bowl; and a cartridge retention mechanism, to ensure that the filter cartridge remains with the filter bowl after the filter bowl has been removed from the filter head. Adaptor rings can be utilized in order to test other types of filter elements in the system, when those other types of filter elements do not have the protrusion arrangement. Assemblies, methods of servicing, methods of installing, methods of use, and methods of retaining can be practiced.
APPARATUSES AND METHODS FOR COUPLING AND DECOUPLING A TOOL AND A TOOL RETAINER OF A ROTARY DRIVE SUB-ASSEMBLY
A tool-change station includes a base, and a first tool-change member that is rotatably coupled to the base. The first tool-change member includes a first tool-engagement portion, geometrically complementary with a tool-change-engagement portion of a tool of a rotary drive.