Abstract:
A method of calibrating a three-dimensional measurement system having a plurality of cameras and at least one projector is provided. The method includes performing a full calibration for each camera/projector pair where the full calibration generates at least two sets of correction matrices. Subsequently, an updated calibration is performed for each camera/projector pair. The updated calibration changes less than all of the sets of correction matrices.
Abstract:
A container for food products has a handle (5) connected to a basket (2) by means of two coupling elements (8), which are welded to the basket (2) through relative openings (7; 15) of the handle (5), and are configured to elastically deform the relative openings (7; 15) due to a movement of the handle (5) from a rest position inside the basket (2) to an operating position outside the basket (2) and to lock the handle (5) to the basket (2) by interference.
Abstract:
Es werden ein Verfahren und eine Vorrichtung zum Verbinden von Kunststoffmantelrohren beschrieben. Nach dem Verschweißen der aneinanderstoßenden Mediumrohre (1) der Kunststoffmantelrohre wird eine Muffe (6) aus thermoplastischem Kunststoff induktiv auf die beiden Außenrohre (4) der Kunststoffmantelrohre aufgeschweißt. Vor dem Ausschäumen oder während des Ausschäumens des über der Verbindungsstelle der Mediumrohre (1) vorhandenen Hohlraumes (3) werden die Mediumrohre (1) induktiv erwärmt, um selbst bei kalter Witterung eine gute Qualität des Isolierschaumes zu gewährleisten. Bei der Vorrichtung zum Verbinden besitzt die Induktionsschweißvorrichtung mindestens ein weiteres Schweißband (8) zum induktiven Erwärmen der Mediumrohre. Bei einer anderen Ausführungsform hat die Induktionseinrichtung ein breites Schweißband, das mindestens einen Leiterbereich zum induktiven Verschweißen der Muffe (6) und mindestens einen Leiterbereich zum induktiven Erwärmen der Mediumrohre (1) umfasst.
Abstract:
A part where separator layers 48 of resin are laminated on each other with heat-resistant layers 49 interposed among them and a sheath (laminated sheet) 13 is laid on each side of the laminated separator layers is held, pressurized, and vibrated by a pressure vibrator 111 and a jig receiver 112. The pressure vibrator 111 and jig receiver 112 are provided with projections 121 that pressurize, vibrate, and break the heat-resistant layers 49, thereby melting and welding together the resin of the separator layers 48 at the broken part 200.
Abstract:
In a method for manufacturing a packed electrode, an electrode is set between two separation layers that are made of resin, a heat-resistant layer is set between at least one of the two separation layers and the electrode, the two separation layers, the electrode and the heat-resistant layer, an overlapped portion of the two separation layers overlapped with the heat-resistant layer interposed therebetween is pinched, pressed and heated by a pair of heat sealing chips at an outside of the electrode, and the two separation layers are fastened by destroying the heat-resistant layer at the overlapped portion that are pressed and heated. According to the above manufacturing method, man-hours required for stacking can be reduced by integrating the heat-resistant layer with the packed electrode.
Abstract:
A composite shaped product of the present invention is a joined body which is excellent in shock resistance, and which includes shaped products (B1) and (B2) which contain a carbon fiber and a thermoplastic resin, in which the shaped products (B1) and (B2) are disposed on both sides of a composite substrate (A) that contains a continuous fiber such as a polyester fiber and a thermoplastic resin so that the composite substrate (A) is interposed between the shaped products (B1) and (B2), and the shaped products (B1) and (B2) are heat-welded to each other at a joining portion (C) through a through hole (Dl) of the composite substrate (A).
Abstract:
A vehicle air-bag comprising first and second superimposed layers, the air-bag comprising at least one inflatable chamber defined between the first and second layers, the at least one inflatable chamber being substantially surrounded by regions of the first and second layers which are bonded together, and further comprising a masking layer which is provided between the first and second layers and is has a region which is substantially the same shape as the at least one inflatable chamber, and is not positioned between the first and second layers in the regions thereof which are bonded together.
Abstract:
A driving module 1 includes: a support member 5 fixed on a base substrate 8; a driven member 4 arranged so as to be movable back and forth in relation to the support member; driving means 10 for driving the driven member; and an exterior cover 11 attached so as to cover the support member, the driven member, and the driving means and attached and fixed to the base substrate. A projection piece 45 which is accommodated in a concave accommodation portion 50 is formed on the base substrate. The base substrate and the exterior cover are attached and fixed by an adhesive agent filled in a first filling region which is defined between a lateral inner wall 51 and the projection piece and a second filling region which is defined between an upper inner wall 52 and the projection piece. A lateral step portion 55 which is formed to be recessed in a state of being continuous to the lateral inner wall of the concave accommodation portion and to which the adhesive agent running out of the first filling region is guided is formed on the exterior cover.
Abstract:
A method is provided for making an edge-sealed fuel cell membrane electrode assembly comprising the steps of: i) providing a suitable membrane electrode assembly lay-up; ii) positioning a suitable annular layer of a thermoplastic; and iii) applying pressure and heat sufficient to melt impregnate the thermoplastic into the fluid transport layer or layers of the membrane electrode assembly lay-up and simultaneously bond the fluid transport layer or layers to the polymer electrolyte membrane of the membrane electrode assembly lay-up. The polymer electrolyte membrane of the membrane electrode assembly lay-up may be perforated in its outer sealing area. Membrane electrode assemblies made according to the method of the present invention are also provided.
Abstract:
The invention relates to a wiper arm (10), in particular for a motor vehicle, comprising at least one fixing part (12) that can be fixed to a shaft, a support part (14), to which a wiper blade can be fixed (16) and a spring part (18). The spring part (18) is configured as a bar spring, which connects the fixing part (12) to the support part (14). The fixing part (12) and the support part (14) are configured from plastic and the fixing part (12) and/or the support part (14) are fixed to the spring part (18) by means of a deformation. The invention also relates to methods for producing an inventive wiper arm, according to which the deformation connection is established by friction welding or ultrasonic welding.