Patent classifications
F26B2210/12
VOLATILE ORGANIC COMPOUND RECOVERY DEVICE AND RECOVERY METHOD
A recovery device for a volatile organic compound is a device for recovering the volatile organic compound in a coating drying oven which dries a coating film of a workpiece coated with a water-soluble coating. The coating drying oven includes: an evaporation zone in which moisture of the workpiece is evaporated; and a curing zone to cure the coating film. The recovery device includes: a first take-out passage for taking out first furnace air in the evaporation zone; a second take-out passage for taking out second furnace air in the curing zone; a mixing chamber configured to mix the first furnace air and the second furnace air to obtain mixed air; and a cooling recovery unit configured to cool the mixed air and recover, as a condensate, the volatile organic compound contained in the mixed air, together with the moisture.
Sub-frame cleaning and blow-drying device
The present disclosure relates to a sub-frame cleaning and blow-drying device, comprising a rack, a water tank, a bottom lifting assembly, supporting assemblies, a top lifting assembly, a rotating assembly, an expanding and cleaning-off assembly and a blow-drying device. Expanding assemblies expand to be connected with vehicle body mounting holes, compressed air is blown into the vehicle body mounting holes by air outlets and is blown into a cavity of a sub-frame to clean off aluminum scraps and residual sand in the cavity of the sub-frame, the rotating assembly drives the expanding and cleaning-off assembly and the sub-frame to do rotation movement to perform secondary cleaning, so that the aluminum scraps and the sand remaining inside the cavity can be cleaned off, and the sub-frame cleaning and blow-drying device can be flexibly adjusted by a position adjusting assembly according to different types of sub-frames and is strong in universality.
SYSTEM AND METHOD FOR CONTROLLING A CURING PROCESS
A curing system is included. The curing system includes a display, a first radiation emitter lamp, and a control system. The control system is operatively coupled the first radiation emitter lamp. The control system includes a processor configured to present, on the display, a first bake cycle, the bake cycle comprising a curve having at least two points. The processor is further configured to receive user input to adjust the at least two points by moving the points within a graph. The processor is additionally configured to emit radiation via the first radiation emitter lamp by following the bake cycle.
Blower system for blowing fluid off of a passing vehicle
Described is a blower system. The blower system includes one or more blowers. Each blower has an intake for providing air into an air chamber which houses an impeller. A gate covers each intake. Each gate is movable between a closed position in which it is pulled against the intake and an open position in which the gate is lifted off of the intake. A controller system is included that is operable for causing the gates to move from the closed to the open position when a vehicle is present or approaching and cause the gates to return to the closed position when no vehicle is present or leaving.
Temperature control device for surface-treated objects such as vehicle parts
A temperature control device for surface-treated objects such as vehicle parts, having a temperature control chamber, in which a surface-treated object can be temperature-controlled, a high-boiler exhaust air flow having high-boiling organic compounds from the temperature control chamber, and a combustion unit for the thermal aftertreatment of the high-boiler exhaust air flow. A device for the pyrolysis of the high-boiler exhaust air flow is also provided. A method for controlling the temperature of a surface-treated object having such a temperature control device is also provided.
Drying apparatus, system and method for use in an automated vehicle cleaning system
The present disclosure relates to an improved drying apparatus, system and method for use in an automated vehicle cleaning system. Specifically, an improved drying apparatus, system and method is provided, which includes a series of components resulting in combined sound reducing features and incorporating sound absorbing acoustic materials creating a quiet technology system. The present disclosure provides a drying apparatus with an overall lower decibel level, without sacrificing air flow and efficiency in the drying of a vehicle.
Treatment installation and method for treating workpieces
In order to provide a treatment installation for treating workpieces that is of simple construction and enables optimised workpiece treatment, it is proposed that the treatment installation should include a treatment chamber and a conveying device, by means of which the workpieces are suppliable to the treatment chamber, are removable from the treatment chamber, and/or are conveyable through the treatment chamber in a conveying direction.
Painting and drying booth
A painting and drying booth includes at least one surface-mounted luminaire having a frame with a box body that defines a compartment provided with a front opening, an electromagnetic radiation source in the compartment, a mobile screen, at least one actuation device to move the screen; the actuation device is of articulated parallelogram type in such a way to move the screen with a roto-translation movement, during which the screen always lies on the same plane.
Directional air apparatuses, system, and methods of using the same
The present invention relates to accelerated directional airflows for use in, preferably, paint booths. Specifically, the present invention relates to apparatuses, systems, and methods of using the same that create an accelerated directional airflow while eliminating the requirement of having multiple vents, nozzles, hoses, and the like. Even more specifically, the present invention controls airflow more efficiently, requires fewer parts, and costs less to use and maintain. Specifically, the accelerated directional airflows are useful in paint booths for drying painted parts and for ventilation.
SEPARATING DEVICE AND TREATMENT SYSTEM
In order to create a device for minimizing a fluid exchange between adjacent spaces, which is of simple construction and enables an efficient fluidic separation of two adjacent spaces, it is proposed that the device preferably comprises the following: a nozzle device, by means of which a separating fluid stream is introducible into a transition region between the adjacent spaces; and a moveable cover element, by means of which a connecting opening connecting the two adjacent spaces to each other is coverable or closeable at least in sections.