Abstract:
A system for protecting stored goods (50) in a storage room (1), comprises one or more storage constructions (2) formed by one or more pesticide treated nets (30, 31), capable of enclosing the stored goods (50), wherein the storage construction (2) further comprises a support frame (10), means for suspending the support frame (35), means for opening and closing at least one section (13) of the storage construction (2) while the support frame (10) is in a suspended state, and means for avoiding an overall structural collapse (32) if a net (30, 31) gets entangled. The system is particularly useful for the storage of tobacco, coffee, dried fruits, cocoa, nuts, tea, cereals and spices
Abstract:
A honeycomb body includes an inlet end side and an outlet end side. Metal sheets are wound, intertwined and/or layered into a multiplicity of sheet metal layers being at least partially structured to form channels leading from the inlet end side to the outlet end side. Edges of at least some of the sheet metal layers have cutouts formed therein at the inlet end side and/or the outlet end side, resulting in a fissured structure of the inlet end side and/or the outlet end side. As a result, only the smooth metal sheets or only the structured metal sheets or both can be provided with the cutouts. Additionally, at least some of the metal sheets can be made of a porous material, in particular compressed metal fibers. Deposition of soot particles on the end sides of the honeycomb body is, to a large extent, prevented due to the cutouts.
Abstract:
A system for protecting stored goods in a storage room, having one or more storage constructions formed by one or more pesticide treated nets (30, 31), capable of enclosing the stored goods, where the storage construction further includes a support frame, means for suspending the support frame, means for opening and closing at least one section of the storage construction while the support frame is in a suspended state, and means for avoiding an overall structural collapse if a net gets entangled. The system is particularly useful for the storage of tobacco, coffee, dried fruits, cocoa, nuts, tea, cereals and spices.
Abstract:
A honeycomb body includes an inlet end side and an outlet end side. Metal sheets are wound, intertwined and/or layered into a multiplicity of sheet metal layers being at least partially structured to form channels leading from the inlet end side to the outlet end side. Edges of at least some of the sheet metal layers have cutouts formed therein at the inlet end side and/or the outlet end side, resulting in a fissured structure of the inlet end side and/or the outlet end side. As a result, only the smooth metal sheets or only the structured metal sheets or both can be provided with the cutouts. Additionally, at least some of the metal sheets can be made of a porous material, in particular compressed metal fibers. Deposition of soot particles on the end sides of the honeycomb body is, to a large extent, prevented due to the cutouts.
Abstract:
A catalyst carrier body has a geometrical longitudinal axis, a honeycomb body and a housing. A corrugated casing with an outer side and an inner side is disposed between the honeycomb body and the housing. The corrugated casing is connected to the housing at attachment sections on the outer side thereof by brazing. The attachment sections lie substantially on a common circumferential line and have the narrowest possible width in direction of a longitudinal axis. The attachment sections have an overall surface area permitting them to securely hold the honeycomb body under operating conditions. A high retention degree for the connection between the honeycomb body and housing can thus be achieved even with a shrinking of the diameter of the honeycomb body at end sides during the service life thereof.
Abstract:
A method for manufacturing a catalyst carrier body includes producing a honeycomb body having at least partially structured layers forming channels through which a fluid can flow. The honeycomb body has an external extent formed at least partially by ends of the layers. At least one corrugated casing and a housing are also produced. The honeycomb body is inserted into the corrugated casing and the corrugated casing with the honeycomb body is inserted into the housing with the housing at least partially surrounding the honeycomb body. The housing is calibrated by reducing at least an internal contour of the housing and preferably also a profile of the corrugated casing. The honeycomb body is connected to the housing with the corrugated casing disposed between the honeycomb body and the housing. A catalyst carrier body produced by the method is also provided.
Abstract:
An apparatus for dermatological treatments has a base equipment 10 to which differing application heads 14 can be connected, selectively via flexible conduits 12, for the purpose of applying radiation, in particular of an LED and of a laser or of a high-energy flashbulb.
Abstract:
A method for manufacturing a catalyst carrier body includes producing a honeycomb body having at least partially structured layers forming channels through which a fluid can flow. The honeycomb body has an external extent formed at least partially by ends of the layers. At least one corrugated casing and a housing are also produced. The honeycomb body is inserted into the corrugated casing and the corrugated casing with the honeycomb body is inserted into the housing with the housing at least partially surrounding the honeycomb body. The housing is calibrated by reducing at least an internal contour of the housing and preferably also a profile of the corrugated casing. The honeycomb body is connected to the housing with the corrugated casing disposed between the honeycomb body and the housing. A catalyst carrier body produced by the method is also provided.
Abstract:
A catalyst carrier body has a geometrical longitudinal axis, a honeycomb body and a housing. A corrugated casing with an outer side and an inner side is disposed between the honeycomb body and the housing. The corrugated casing is connected to the housing at attachment sections on the outer side thereof by brazing. The attachment sections lie substantially on a common circumferential line and have the narrowest possible width in direction of a longitudinal axis. The attachment sections have an overall surface area permitting them to securely hold the honeycomb body under operating conditions. A high retention degree for the connection between the honeycomb body and housing can thus be achieved even with a shrinking of the diameter of the honeycomb body at end sides during the service life thereof.
Abstract:
A method for manufacturing a catalyst carrier body includes producing a honeycomb body having at least partially structured layers forming channels through which a fluid can flow. The honeycomb body has an external extent formed at least partially by ends of the layers. At least one corrugated casing and a housing are also produced. The honeycomb body is inserted into the corrugated casing and the corrugated casing with the honeycomb body is inserted into the housing with the housing at least partially surrounding the honeycomb body. The housing is calibrated by reducing at least an internal contour of the housing and preferably also a profile of the corrugated casing. The honeycomb body is connected to the housing with the corrugated casing disposed between the honeycomb body and the housing. A catalyst carrier body produced by the method is also provided.