Abstract:
Embodiments provide systems, methods, and masking workstations for masking a planar substrate with a shield. The shield is configured to facilitate the removal of a waste portion of masking material from a portion of a planar substrate. In some cases the shield is placed adjacent to a substrate and a masking material is applied to the substrate and at least a portion of the shield. A waste portion is separated from the masking material and the shield removes the waste portion. Embodiments can be useful for masking only a portion of a planar substrate, including glass panes and glass units, for example.
Abstract:
The invention concerns a cutting device (1) for reducing the width of a ready-made roller blind blank (28) comprising a roller tube onto which a fabric has been wound. The cutting device (1) comprises a mandrel (13), which is adapted to be inserted into and hold an end to be cut of the roller tube, and a knife arrangement, which is adapted to circumferentially cut first the fabric wound on the roller tube and then the roller tube on the mandrel (13) such that the width of the ready-made roller blind blank (28) is reduced. The invention also concerns a ready-made roller blind blank (28), which comprises a roller tube, onto which a fabric has been wound and which is adapted to be cut by means of a cutting device (1) according to the invention. For this the roller blind blank (28) comprises a disposable wrapping, which bears a visible measurement scale along at least one end portion of the roller blind blank (28).
Abstract:
The present invention relates to an arrangement for loading a cargo space, including a transfer element (15) as part of a transfer apparatus (11) arranged to, together with load units (40) that may be arranged thereon, move into the cargo space (41) and out of it while the load units (40) remain in the cargo space (41), and means (28) for forming a protective wall (30) between a structure (42) defining the cargo space (41) and the load units (40). The forming of the protective wall (30) is synchronized with the movement of the transfer element (15). Furthermore, the invention also relates to an apparatus for forming a protective wall in a cargo space and a method for loading a cargo space.
Abstract:
Die vorliegende Erfindung betrifft ein Verbundglas mit mindestens einer chemisch vorgespannten Scheibe, mindestens umfassend eine erste Scheibe (1) und eine zweite Scheibe (2), welche über eine Zwischenschicht (3) miteinander verbunden sind, wobei - die erste Scheibe (1) eine chemisch vorgespannte Glasscheibe mit einer Dicke von kleiner oder gleich 2,1 mm ist, - die Zwischenschicht (3) mindestens eine thermoplastische Verbindungsschicht (6) und eine thermoplastische Trägerschicht (4) enthält und - die Trägerschicht (4) eine funktionelle Beschichtung (5) oder funktionelle Einlagerungen aufweist.
Abstract:
Described here is an integrated control system for crash-rated barriers and bollards, barrier products and software which will improve the operational safety characteristics of the barriers and ancillary equipment; identify potential security breaches of the barrier operating system, and predict potential failures in the system. Crash rated barriers and bollards are used to prevent a vehicle attempting to penetrate the secure perimeter of a facility with malicious intent. Installation and operation of crash rated barriers is utilized to protect both government, commercial and private facilities against such threats. Simultaneously it allows ingress and egress to the facility resulting in the end user having to determine tradeoffs for security versus safety. The barriers described here are designed and certified to withstand attacks from heavy vehicles traveling at high rates of speed. The system, products and software will allow for reporting of potential failures within the system while simultaneously using configurable control and activation of the equipment to override such failures and allow for safe and secure operation of the barrier system until maintenance or repairs can be performed.
Abstract:
Die Erfindung betrifft einen Garagentorgriff (10) zum Anbringen an einen Garagentorflügel (52) eines Garagentors zwecks Öffnen und Schließen durch Griffbetätigung, wobei ein Torgriff-Signalgeber (16) bei Betätigung des Garagentorgriffs (10) wenigstens ein Öffnungssignal für einen Garagentorantrieb (74) zum Öffnen des Garagentorflügels (52) aussendet. Weiter betrifft die Erfindung ein mit einem solchen Garagentorgriff (10) versehenes, seitlich zu öffnendes Tor, insbesondere Seitensektionaltor (50) mit Antrieb. Durch einen solchen Garagentorgriff (10) lässt sich durch Griffbetätigung eine Teilöffnung durchführen, wodurch eine Schlupftürfunktion realisiert wird, ohne dass eine eigens vorgesehene Schlupftür vorgesehen werden müsste.
Abstract:
A system for constructing a residential or commercial structure and/or retrofitting an existing structure provides a series of construction components employed that cooperate with standard construction materials to enhance the building structural integrity when subjected to destructive wind forces such as those commonly associated with hurricanes and tornados. The resultant strength of the structure is increased beyond what the standard construction materials were capable of on their own. The enhanced components further cooperate with standard construction materials to provide a secondary water sealing ability such that the typical veneer coverings of siding and/or shingles, which are typically required to provide a primary sealing system from water influent to the structure, are relegated to the role of cosmetics for the structure. The primary sealing ability of the shingles and/or the siding can be compromised in response to storm winds, yet the structure will remain watertight via the secondary sealing system.
Abstract:
A system for constructing a residential or commercial structure and/or retrofitting an existing structure provides a series of construction components employed that cooperate with standard construction materials to enhance the building structural integrity when subjected to destructive wind forces such as those commonly associated with hurricanes and tornados. The resultant strength of the structure is increased beyond what the standard construction materials were capable of on their own. The enhanced components further cooperate with standard construction materials to provide a secondary water sealing ability such that the typical veneer coverings of siding and/or shingles, which are typically required to provide a primary sealing system from water influent to the structure, are relegated to the role of cosmetics for the structure. The primary sealing ability of the shingles and/or the siding can be compromised in response to storm winds, yet the structure will remain watertight via the secondary sealing system.