Abstract:
The present invention relates to a cutting device for use in cutting a collar which is mounted on a bolt in half, the cutting device comprising: ⋅a mouth (16) for receiving the portion of the collar (28) to be cut; ⋅a pair of jaws (17a, 17b) diametrically opposite one another and located within the mouth (16), each jaw (17a, 17b) being provided with a cutting blade (18), ⋅a driver (22) for moving at least one jaw (17a) relative to the other (17b) such that the collar (28) can be cut in half by the action of the jaws (17a, 17b) moving towards one another, and ⋅a guard (15) which, in use, prevents the cutting blade (18) from protruding beyond the mouth (16) and damaging a surface adjacent to the collar (28) to be cut in half.
Abstract:
A tool for removing a fastener head from a fastener includes a body that includes an alignment surface configured to couple substantially flush against a structural surface proximate the fastener head. A blade coupled to the body includes a tip configured to sever the fastener head from the fastener as the blade is moved in a first direction generally parallel to the alignment surface from a first blade position to a second blade position. The tool also includes a force transfer member coupled to the body for movement parallel to a longitudinal axis of the force transfer member. The longitudinal axis is oriented at an acute angle with respect to the first direction. The force transfer member is configured to move the blade from the first blade position to the second blade position in response to an impulse received by the force transfer member.
Abstract:
A method for fixing a plurality of workpieces via a hollow rivet element with an open setting end and a closed closing end. The method includes passing the rivet element through mutually aligned openings of the workpieces. The method also includes introducing a fluid, in particular air, under high pressure from the setting end of the rivet element in a hollow space of the rivet element. The method also includes plastically deforming and setting of the rivet element by the fluid at the closed closing end of the rivet element.
Abstract:
A guide assembly comprises a frame assembly, a plurality of clamping assemblies, and a head assembly. The clamping assemblies may be mountable to the frame assembly for attaching the frame assembly to a structure. The head assembly may be mountable to the frame assembly and may include a tool coupled to the head assembly. The tool assembly may be axially movable relative to the head assembly to cause the tool to exert a down force on the structure when the frame assembly is attached thereto.
Abstract:
A drilling-out aid device for assisting in drilling out a rivet, in particular a blind rivet, by a drilling tool, includes a proximal handle portion for handling the drilling-out aid device; a guide device for centrically guiding a drilling shaft of the drilling tool; a distal rivet-head receiving device for centrically orientating the drilling-out aid device on the head of the rivet to be drilled out; and a rivet-head pressing device, which is mounted displaceably in the longitudinal direction of the drilling-out aid device relative to the rivet-head receiving device to apply a centric gripping force to the head of the rivet to be drilled out.
Abstract:
A method is provided for destroying a blind fastener joining at least two parts. The blind fastener includes, but is not limited to a body situated in the holes provided in the joined parts, with a head at each end thereof, and portions of which protrude above the level of the holes. The method also includes, but is not limited to withdrawing the accessible head of the fastener, and creating a hole that passes through the fastener. An insertion device is configured to restrain the remainder of the fastener in the hole, which has an elongated body having a diameter smaller than or equal to that of the hole and an expandable head at one end thereof The insertion device for restraining the remainder of the fastener being immobilised or capable of only limited movement relative to the joined parts, and expelling the remainder of the fastener from the holes.
Abstract:
A method is disclosed for repairing a workpiece having two metal components riveted together. The workpiece has a discrepant joint caused by an improperly-installed-self-piercing rivet. The method includes, but is not limited to providing a repair rivet, positioning the repair rivet proximate the discrepant joint such that the repair rivet is substantially aligned with the improperly-installed-self-piercing rivet, and installing the repair rivet at substantially a same location on the workpiece as the improperly-installed-self-piercing rivet without removing the improperly-installed-self-piercing rivet.
Abstract:
A milling headstock for rivet stems includes a mouth for the introduction of the stem. A milling machine can be displaced towards the mouth by a previously established length, in order to trim the stem of the different rivets made in a piece. The mouth has a dimension equal to or less than the head of the rivet so that, after introducing the stem via the mouth, the latter at all times rests on the surface of the head of that rivet in such manner that the milling machine is then displaced through the previously established length.
Abstract:
An improved fastener removal apparatus is configured to remove a swaged fastener of the type having an elongated threaded pin and a collar, with the collar being swaged to the pin. The fastener removal apparatus includes a nose assembly that can be mounted to an actuator of the type having a base and a translatable piston. The nose assembly includes a threaded thimble and a cutting anvil that are translatable with respect to one another. The threaded thimble is threadably connectable with the pin. The cutting anvil includes a number blades that cuttingly engage the swaged collar when the thimble is connected with the pin and translated with respect to the cuffing anvil.
Abstract:
Spark erosion system for removing connection elements from a structure (W, 60), having a drill head (3) null(4)nullnull, a rotational drive (10) by means of which a tool is caused to rotate, a positioning system (15) for moving the tool as well as a process control (48) for controlling the overall system, the system comprising an energy unit (30) and an electric circuit, and in that, furthermore, the tool is a tube electrode (5) through whose interior (5a) a dielectric can be guided to the surface (61a) of the connection element (61) to be detached, which surface (61a) faces the interior (7a), in order to cause a voltage between the tube electrode (5) and the connection element (61) to be detached, for implementing a spark erosion.