Abstract:
The invention relates to de-icing of a wind turbine plant comprising a rotor with at least one rotor blade. The at least one rotor blade comprises at least one area with electrical conductive nano particles forming an electrical conductive area on the rotor blade. The invention also relates to a method for manufacturing a rotor blade for a wind turbine plant and the rotor blade as such and use of nano particles for rotor blades.
Abstract:
A trawl system comprises a trawl (5) which is pulled under the sea surface during fishing, the trawl (5) comprising a front opening and two sides, the system further comprising two vessels (1, 13) connected to respective sides of the trawl (5) for the purpose of pulling it. One vessel is an unmanned, submerged trawl pulling vessel (13), and the other vessel is a surface vessel (1) floating on the sea.
Abstract:
The invention relates to a stool specimen collector adapted for mounting on a water closet, which stool specimen collector comprises a substantially funnel-shaped stool guidance element with a hole and fixation means adapted for releasable fixation of a stool container. In a second aspect a method for obtaining a stool specimen by use of a stool specimen collector is provided.
Abstract:
A weather shield for a skylight window comprising a dome portion sur- rounded by and extending into a skirt member, inner edges of said skirt member forming a skirt plane, said dome portion having an apex, a cross-sectional plane normal to said skirt plane extending through said apex, the apex projected onto said skirt plane defining a point A posi- tioned a distance AB in said cross-sectional plane from a point B of said inner edges, said apex being positioned in an apex height H from said point A, said dome portion has a height h greater than or equal to 0.6H from a point C at a distance of 0.2AB from said point B towards said point A.
Abstract:
The screening device comprises a tubular element with an axis of rotation and rotatable in relation to a shaft device. It further comprises a screening body with one end secured to said tubular element and a free opposite end, which on rotation of said tubular element is adapted to move between a first position, in which the screening body is completely rolled up on said tubular element, and a second position, in which the screening body extends over said aperture in order to screen it. A drive unit for driving said tubular element comprises a motor connected to said tubular element and said shaft device such as to provide said rotation of said tubular element in relation to said shaft device. A control unit controls operation of said motor and comprises a printed circuit board with an electronic motion sensor. Said printed circuit board is located in a fixed position in relation to said axis of rotation of said tubular element and/or in relation to said shaft device.
Abstract:
A support stand for a portable aiming device having a first (12,13) and a second (14,15) pair of legs and a first (10) and a second (11) support member, wherein the first and second support members (10, 11) are configured to support a front part or rear part of said portable aiming device, respectively, and wherein each pair of legs has a left leg and a right leg, wherein a pivoting movement of one of the legs of the first pair of legs relative to a first hinge axis of a first hinge device (101) in a first direction causes the first hinge device to pivot the other leg of the first pair of legs relative to a second hinge axis of the first hinge device in a second, opposite direction.
Abstract:
A transparent lid sheet (S) for being punched to a transparent sheet lid (2) to be attached to a container (1), specifically either a polyethylene terephtalate, a polypropylene or polystyrene container (1 ) or a container (1) comprising either a polyethylene terephtalate, polypropylene or polystyrene surface layer, to produce a package, said lid sheet (S) comprising a transparent base layer (4), which comprises a transparent polyethylene terephtalate layer (4a) with a transparent barrier coating or barrier layer (4b) coated onto the polyethylene terephtalate layer, the base layer (4) having a first major surface (4c) substantially coinciding with an outer major surface of the barrier coating (4b), and a top layer (5) providing a welding layer (5b, 5c) for welding the sheet lid (2) to the container (1), the top layer (5) preferably being provided at or coinciding with the first major surface (4c).
Abstract:
Disclosed is a packaging sheet for packaging of cheese, in particular white moulded soft cheese. The packaging sheet comprises: an inner surface and an outer surface of the packaging sheet, said inner surface being configured for facing the cheese in a packaged use position of the packaging sheet; a paper layer with a first surface and a second surface; a coloured layer provided on a first surface of the paper layer, an outer surface of the coloured layer establishing said outer surface of the packaging sheet; and a polymer layer with a water vapour transmission rate of at least 300 g/m2/24 hours at 38°C and 90 % atmospheric humidity. The polymer layer being coated on the second surface of the paper layer with a first surface of the polymer layer facing the paper layer and a second surface of the polymer layer establishing said inner surface of the packaging sheet.
Abstract translation:公开了用于包装奶酪的包装片,特别是白色模制软奶酪。 包装片包括:包装片的内表面和外表面,所述内表面构造成在包装片的包装使用位置面对奶酪; 具有第一表面和第二表面的纸层; 设置在纸层的第一表面上的着色层,着色层的外表面,形成包装纸的外表面; 以及在38℃和90%大气湿度下水蒸气透过率至少为300g / m 2/24小时的聚合物层。 聚合物层被涂覆在纸层的第二表面上,聚合物层的第一表面面向纸层,聚合物层的第二表面建立包装纸的内表面。
Abstract:
A transport unit comprising a mineral wool plate package with at least two mineral wool plates (2), the mineral wool plate package having a top surface, a bottom surface and two opposed side surfaces extending in a width and a height of the mineral wool plate package, and two separate feet (3, 4) positioned at a distance from each other, manufactured from an insulating material and arranged at the bottom surface, forming ground supports adapted to carry and support the package when the transport unit is positioned on the ground (5), the feet (3,4) in that position keeping the mineral wool plates (2) at a distance from the ground such as to make it possible for a fork of a fork-lift or like lifting device to be inserted between the feet to lift up the transport unit, each foot (3, 4) comprises a lower part (8) and an upper part (7), the lower part extending shorter towards the closer of the side surfaces such as to form a step (9a, 9b) between the lower part (8) and the upper part (7), which step extends in the width direction of the mineral wool plate package to form a lifting strap space adapted to accommodate a respective lifting strap (10, 11) for lifting up the transport unit.
Abstract:
The valve comprises a housing with an upstream inlet, a valve inlet for communicating with a downstream flow, and a valve outlet. A pressure maintaining arrangement comprises a diaphragm and a valve member movable along an axis of the valve, the valve member setting itself in a balance between the upstream pressure on the one hand and the downstream pressure as well as a spring force on the other hand. The valve member comprises a circumferentially extending skirt (9) facing the valve seat (12). The skirt (9) comprises an abutment surface (17) facing an opposing surface (17a). An inner corner formed between said abutment surface (17) and an inner surface (18) of the skirt (9) is chamfered or establishes a non-linear transition (19) between the abutment surface (17) and the inner surface (18), said chamfer or transition (19) extending less than a distance (A) of 0.1 mm from the inner surface (18) in a direction towards the abutment surface (17) and less than a distance (B) of 0.1 mm from the abutment surface (17) in a direction towards the inner surface (18).