Patent classifications
F26B5/00
CLEANING APPARATUS AND CLEANING METHOD
Clamping an axially extending workpiece along a center axis and cleaning a shaft portion and an end to clean and dry the workpiece in a short period of time. A cleaning apparatus for cleaning the workpiece, including a cleaning chamber having a first side wall and a second side wall, a cleaning station including a cleaning axis, a cleaning nozzle, a first clamping device arranged on the first side wall, a second clamping device arranged on the second side wall, and a drying station including a drying axis, a drying nozzle, a second clamping device arranged on the second side wall, and a turn table having two regions arranged in a 180 degree rotational symmetry. The turn table arranges one of the two regions is arranged in the cleaning station, and the other in the drying station.
CLEANING APPARATUS AND CLEANING METHOD
Clamping an axially extending workpiece along a center axis and cleaning a shaft portion and an end to clean and dry the workpiece in a short period of time. A cleaning apparatus for cleaning the workpiece, including a cleaning chamber having a first side wall and a second side wall, a cleaning station including a cleaning axis, a cleaning nozzle, a first clamping device arranged on the first side wall, a second clamping device arranged on the second side wall, and a drying station including a drying axis, a drying nozzle, a second clamping device arranged on the second side wall, and a turn table having two regions arranged in a 180 degree rotational symmetry. The turn table arranges one of the two regions is arranged in the cleaning station, and the other in the drying station.
CLEANING APPARATUS AND CLEANING METHOD
A cleaning apparatus capable of clamping an axially extending workpiece on a center axis and cleaning an end portion and a shaft portion of the workpiece is provided. The cleaning apparatus includes a cleaning chamber having a first side wall and a second side wall, a top plate, a lifter configured to move the top plate upward or downward between a cleaning position and a retracted position, a first slide shaft reciprocable along a cleaning axis, a first clamp shaft that abuts a workpiece, a first clamp drive device that reciprocates the first slide shaft, a motor that rotates the first clamp shaft, a second slide shaft reciprocable along the cleaning axis, a second clamp shaft that abuts the workpiece, a second clamp drive device that reciprocates the second slide shaft, and a cleaning nozzle.
APPARATUS AND METHODS FOR DRYING A SHEET OF MATERIAL
An air knife for discharging a stream of gas onto a sheet of material. The air knife includes a main body including an inlet portion and an outlet portion, and a plurality of inlet ports. The inlet portion defines a plenum. The outlet portion defines an exit orifice in fluid communication with the plenum. The inlet ports project from the inlet portion and each inlet port comprises a passageway in fluid communication with the plenum. In some embodiments, the inlet ports project from a rear, or trailing, wall of the main body. In other embodiments, the outlet portion terminates at an exit face in which the exit orifice is formed, with a tip region of the outlet portion forming a taper angle of not more than 90 degrees in extension to the exit face.
APPARATUS AND METHODS FOR DRYING A SHEET OF MATERIAL
An air knife for discharging a stream of gas onto a sheet of material. The air knife includes a main body including an inlet portion and an outlet portion, and a plurality of inlet ports. The inlet portion defines a plenum. The outlet portion defines an exit orifice in fluid communication with the plenum. The inlet ports project from the inlet portion and each inlet port comprises a passageway in fluid communication with the plenum. In some embodiments, the inlet ports project from a rear, or trailing, wall of the main body. In other embodiments, the outlet portion terminates at an exit face in which the exit orifice is formed, with a tip region of the outlet portion forming a taper angle of not more than 90 degrees in extension to the exit face.
Vibrating Portable Drainage System for Bulk Granular Materials
A plurality of modular units are connected together on a slightly sloped drainage field with a perforated header pipe at the lower side conveying water away from the drainage system. An impermeable flexible liner cushioned on both sides is located below the modular units. The modular units are each made up of rigid boxes that have connecting cross slots at the bottom thereof and vertical perforations there through. The rigid boxes are lined with a drainage fabric that is site specific and have an expanded geosynthetic material therein, which is held in place when filled with porous granular material. High flexural strength mats are connected together over the tops of the modular units. An air inlet pipe connects air to the cross slots, down the sloped drainage field, to the header pipe to drain water from the bulk granular material resting on the high flexural strength mats. Some of the modular units have a pneumatic vibrator connected to a source of pressurized air. The entire system may be quickly disassembled, moved to a different location, and reassembled with the number of modular units being changed according to the circumstances.
Vibrating Portable Drainage System for Bulk Granular Materials
A plurality of modular units are connected together on a slightly sloped drainage field with a perforated header pipe at the lower side conveying water away from the drainage system. An impermeable flexible liner cushioned on both sides is located below the modular units. The modular units are each made up of rigid boxes that have connecting cross slots at the bottom thereof and vertical perforations there through. The rigid boxes are lined with a drainage fabric that is site specific and have an expanded geosynthetic material therein, which is held in place when filled with porous granular material. High flexural strength mats are connected together over the tops of the modular units. An air inlet pipe connects air to the cross slots, down the sloped drainage field, to the header pipe to drain water from the bulk granular material resting on the high flexural strength mats. Some of the modular units have a pneumatic vibrator connected to a source of pressurized air. The entire system may be quickly disassembled, moved to a different location, and reassembled with the number of modular units being changed according to the circumstances.
Portable suit and helmet dryer
A portable dryer for suits and helmets includes a housing; a motor driving one or more blowers; a first air duct for directing air from the one or more blowers into a helmet, the housing configured to receive the helmet over an outlet of the first air duct; and a pair of second rotatable air ducts each for directing air from the one or more blowers into a separate leg of a suit, the second pair of rotatable air ducts spaced from the first air duct so as not to interfere with the outlet of the first air duct. The rotatable air ducts may be replaced with flexible tubing. An optional suitcase may contain the suit and helmet dryer and include a telescoping pole on which to hang a suit to be dried.
INFORMATION PROCESSING DEVICE, AND METHOD OF VENTILATING INFORMATION PROCESSING DEVICE
The present technology relates to an information processing device and a method of ventilating an information processing device, which are able to prevent getting sweaty and damp when the information processing device is worn. The information processing device is to be worn by a user and includes a main body portion having a contact surface that is brought into contact with a skin of the user, and a groove that crosses the contact surface. The present technology is able to be applied to a wearable device of a type such as a wrist-band type, an earphone type, a neckband type, an eyeglasses type, a watch type, a bracelet type, a neckless type, a headset type, or a head-mount type.
INFORMATION PROCESSING DEVICE, AND METHOD OF VENTILATING INFORMATION PROCESSING DEVICE
The present technology relates to an information processing device and a method of ventilating an information processing device, which are able to prevent getting sweaty and damp when the information processing device is worn. The information processing device is to be worn by a user and includes a main body portion having a contact surface that is brought into contact with a skin of the user, and a groove that crosses the contact surface. The present technology is able to be applied to a wearable device of a type such as a wrist-band type, an earphone type, a neckband type, an eyeglasses type, a watch type, a bracelet type, a neckless type, a headset type, or a head-mount type.