Abstract:
A tool for roughening a borehole surface. The tool includes a coupling portion for clamping the tool; a tool head for machining the borehole surface; and an extraction duct. The coupling portion is disposed at a first end of a tool shank and the tool head at an opposite, second end of the tool shank. The tool head has a cutter disposed circumferentially on the tool heat The tool head has a slit, which passes through from one side to the other and which, starting from an end face of the tool head, extends axially along a longitudinal axis of the tool. The extraction duct extends at least partly axially along the longitudinal axis of the tool for extraction of drilling dust. The extraction duct, starting from the end face of the tool head, extends inside the tool shank and discharges circumferentially into a connecting opening in the tool shank.
Abstract:
An extrusion device (11) for compound-containing containers (6), including a receiving chamber (12) for the container (6), a piston rod (13) which is displaceable relative to the receiving chamber (12), a motor (21) for moving the piston rod (13), a trigger member (26) for generating a control signal in response to actuation of the trigger member (26), and a control unit (31) for controlling the motor (21) is provided. The control unit (31) has a power module for connecting the motor (21) to a power supply (19), and a separate signal input which is electrically connected to the trigger member (26). The power module connects the motor (21) to the power supply (19) when the corresponding control signal is present at this signal input. A method for controlling such an extrusion device (11) is also provided.
Abstract:
A tool for roughening a borehole surface. The tool includes a coupling portion for clamping the tool in a drilling machine; and a tool head for machining the borehole surface, where the tool head comprises a cutter that is circumferentially disposed on the tool head, and where the tool head has at least one slit, which passes through from one side to the other and which, starting from an end face of the tool head, and extends axially along a longitudinal axis of the tool.
Abstract:
A support foot (10) for applying and distributing forces to a pressure-sensitive substrate, including a baseplate (12) for placement onto the substrate and a holder (18) which is joined to the baseplate (12) and to which the connecting parts (32, 72) can be attached, whereby the holder (18) has a first receptacle (20) for a first connecting part (72) and a second receptacle (22) for a second connecting part (32). A stand system has at least one support foot (10) and at least one, especially C-shaped, mounting rail that is inserted into a receptacle (20, 22, 24) and that is prevented by a fastener (56) from being pulled out of the holder (18).
Abstract:
A support foot (10) for applying and distributing forces to a pressure-sensitive substrate, including a baseplate (12) for placement onto the substrate and a holder (18) which is joined to the baseplate (12) and to which the connecting parts (32, 72) can be attached, whereby the holder (18) has a first receptacle (20) for a first connecting part (72) and a second receptacle (22) for a second connecting part (32). A stand system has at least one support foot (10) and at least one, especially C-shaped, mounting rail that is inserted into a receptacle (20, 22, 24) and that is prevented by a fastener (56) from being pulled out of the holder (18).