Abstract:
Electrostatic precipitators, including wet electrostatic precipitators, having a bank of conductive tubes which receive a gas stream having entrained particulates and an electrode connected to an electric current, wherein the tubes each include an internal restriction creating a hydrostatic pressure more evenly distributing the gas flow between the tubes eliminating the requirement for flow distribution devices, such as air straighteners and perforated plates.
Abstract:
A system for automotive coating applications presents a paint supply source for delivering the paint to a powder destination. A paint line fluidly interconnects the paint supply source and powder destination. A compressed fluid source is separable from the paint line is designed for selectively introducing compressed fluid into the paint line in response to the blockage of the paint line and for generating compressed pressure in the paint line to permeate compressed fluid into the blockage. A pressure relief device fluidly communicates with the paint line for reducing compressed pressure in the paint line and evacuating the blockage from the paint line.
Abstract:
A valve stem installation system (10) includes a conveyor (24) for moving wheel (14). A controller (60) is adaptable for segmenting the wheel (14) into a plurality of sections (S1-S11). A detector (70) identifies and signals a general location of the aperture (12) to the controller (60) to identify a target section (S11) transmitted to the controller (60) by a first signal. A robotic manipulator (110, 112) is operably connected to the controller (60) and adaptable for inserting the valve stem into the aperture (12). A sensor (153) is connected to the robotic manipulator (110, 112) and is adaptable for visually identifying the target section (S11) and transmitting the general location of the aperture (12) within the target section by a second signal. The controller (60) generates a target signal transmitted to the robotic manipulator (110, 112) to increase the speed and accuracy of mating the valve stem into the aperture (12) in response to the target signal.
Abstract:
A pig traversable through a conduit to deliver a liquid, such as a coating material, having a resilient flexible, generally frustoconical sealing lip which is resiliently biased against an internal surface of the conduit and a resilient biasing member engaging and biased against an under surface of the sealing lip, biasing the sealing lip against an internal surface of the conduit. The disclosed embodiments of the resilient biasing member include annular coil springs and serpentine annular metal springs which may be U-shaped in cross-section, including a first leg received against the under surface of the sealing lip and a second leg received against the pig body portion.
Abstract:
A pig traversable through a conduit to deliver a liquid, such as a coating material, having a resilient flexible, generally frustoconical sealing lip which is resiliently biased against an internal surface of the conduit and a resilient biasing member engaging and biased against an under surface of the sealing lip, biasing the sealing lip against an internal surface of the conduit. The disclosed embodiments of the resilient biasing member include annular coil springs and serpentine annular metal springs which may be U-shaped in cross-section, including a first leg received against the under surface of the sealing lip and a second leg received against the pig body portion.
Abstract:
A system for automotive coating applications presents a paint supply source for delivering the paint to a powder destination. A paint line fluidly interconnects the paint supply source and powder destination. A compressed fluid source is separable from the paint line is designed for selectively introducing compressed fluid into the paint line in response to the blockage of the paint line and for generating compressed pressure in the paint line to permeate compressed fluid into the blockage. A pressure relief device fluidly communicates with the paint line for reducing compressed pressure in the paint line and evacuating the blockage from the paint line.
Abstract:
A valve stem installation system (10) includes a conveyor (24) for moving wheel rims (14). A detector (50) is cooperable with the conveyor (24) to detect size of the wheel rim (14) and a location of an aperture (12) of the wheel rim (14) to receive various valve stems (16, 18). Two robots (110, 112) are adaptable for matably moving the valve stem (16, 18) to the wheel rim (14). A controller (60) is operably communicated with the robots (110, 112) and the detector (50) for receiving a signal from the detector (50) as the detector (50) identifies configuration of the wheel rim (14) and then transmitting the signal to the robots (110, 112) thereby directing the robots (110, 112) to selectively engage the valve stem (16, 18) to be inserted into the aperture (12). An insertion tool (114) is connected to each robot (110, 112) to selectively engage the valve stem (16, 18) to interchangeably move and insert the valve stem (16, 18) into the aperture (12) in response to the signal received by the robot (110, 112) from the controller (60).