Abstract:
A device for dispensing single components, in particular rivets of different shapes and sizes, wherein the rivets are conveyed to a riveting station one by one in a given direction along a path; the rivets are moved along and within an elastic sheath (11) by a pressure source (P); the device also includes a device for storing the components and includes a holder (24) for feeding the components one by one to the elastic sheath (11); the device provides for the uniform and steady feeding of rivets to riveting machines such as are used in the aircraft industry.
Abstract:
The invention relates to a device (D) for storing and dispensing parts (P) of the type that comprises a rigid parallelepiped container (100) receiving at least one winding of a flexible storage pipe (200), wherein at least one end (220) of said pipe (200) opens to the outside and said end (220) is provided with a dispensing head (300), while the other end (210) is supplied with movement fluid, characterized in that the pipe (200) used for storing the parts (P) is made of a polyether-based polyurethane of about 64 shore D.
Abstract:
A method of operating with a rivet is for the coupling and the tack riveting together of a first element and a second element. The method comprises positioning the rivet such that the rivet traverses two substantially coaxial openings arranged in the first and second elements to be assembled; pulling the mandrel to form a bulb on the second end; and resuming pulling of the mandrel, to cause a rupture of the sleeve at the bulb so as to permit removal, by way of the external surface of the first element, of the mandrel and of a first portion of the sleeve as well as the falling away of the portion of the bulb remaining on the external surface of the second element.
Abstract:
The invention relates to a method for making a rivet (R), of the type comprising, by deformation of the material of a substantially cylindrical metal segment, the operations of preforming a milled head (100) at the end of a rod (200), characterised in that it comprises, by deformation of the material (cold stamping) the following operations: creating a portion with a lower diameter (210) from the free end; creating a substantially cylindrical hollow core (220) for forming a tubular portion; preforming the hollow core (220) as a truncated cone; performing the lower diameter outer surface as a truncated cone. The invention also relates to the rivet obtained by said method.
Abstract:
The invention relates to a method for making a rivet (R), of the type comprising, by deformation of the material of a substantially cylindrical metal segment, the operations of preforming a milled head (100) at the end of a rod (200), characterised in that it comprises, by deformation of the material (cold stamping) the following operations: creating a portion with a lower diameter (210) from the free end; creating a substantially cylindrical hollow core (220) for forming a tubular portion; preforming the hollow core (220) as a truncated cone; performing the lower diameter outer surface as a truncated cone. The invention also relates to the rivet obtained by said method.
Abstract:
The invention concerns a blind rivet (R) of the type consisting of a deformable bushing (300) and a cleavable mandrel (400), the thus formed assembly being urged to be positioned and pass through the orifices (110 and 120) made substantially coaxial and provided in at least two elements (100 and 200) to be assembled. Said rivet is characterized in that the bushing (300) consists of one single piece but preformed to have a second end (320) in two parts (330 and 340) which, under the action of an axial load (arrow F), are cleaved apart so that one part of the bushing (330) moved by the tensile load of the mandrel (400) is urged to be opened around the fixed part of the bushing (340), the expansion of the mobile part (330) called sleeve being produced without folding. The invention also concerns a method for inserting such a rivet. The invention is applicable to rivet fixing.
Abstract:
The invention relates to a riveting element (R) for riveting parts which are made from composite materials (M1 and M2) and provided with a through-hole. The invention is characterized in that it consists of: a hollow bushing (200) including, at one end, a head (210) bearing on the surface of one of the parts to be assembled and a hollow rod (220); and a semi-tubular insert (100) including a first end (110) capable of being inserted into the hollow part of the bushing (200) and an open end (130) capable of deforming in order to form an enlarged base that bears on the surface of the other part that is to be assembled once the insert (100) is translatably locked inside the bushing (200). The invention also relates to the installation tool configured for one such element.
Abstract:
The invention relates to a method for installing a rivet (R, R′, R″, R2) for the purpose of assembling at least two elements (300, 400) through which a hole passes, in which the rivet (R) is positioned in said hole and is of the type comprising a head (100) coming to rest on the edge of the hole and a tubular or semi-tubular rod (200) of which the free open end (220) is deformed, for the purpose of creating a bearing surface, in which a snap (B, B′) ensures the deformation of said free end (220) by bringing the snap (B, B′) toward the first tool,remarkable in that it consists of interposing a film (500, 600, 700) of material between the snap (B, B′) and the end to be deformed during installation.The invention also relates to a corresponding rivet and installation tool.Applications: rivet installation.
Abstract:
Disclosed is blind rivet including a hollow sleeve, a crimping ring, and a mandrel, received by the hollow sleeve and by the crimping ring. The mandrel includes a head configured to bear against the sleeve, and a shank configured to receive a traction load from a tool. There is a breaking groove which breaks off when the traction load reaches a certain value. The breaking groove including a breaking groove bottom, a first breaking-groove-side extending from the breaking groove bottom toward the shank, a second breaking-groove-side extending from the breaking groove bottom towards the head. A first breaking-groove-side and a central axis of the mandrel define a first angle, and a second breaking-groove-side and the central axis define an angle greater than the first angle. An embrittlement groove is contiguous with the first breaking-groove-side.
Abstract:
Disclosed is a system of displacing a plurality of parts to be stocked and distributed, each part defining a first end and a second end. The system comprises a conduit, the conduit defining an interior to house an actuation fluid, an axis of displacement in the interior, and an interior surface; and a plurality of devices. Each device includes a periphery configured to contact the interior surface of the conduit and to move along the interior surface, a device first surface approximately perpendicular to the axis of displacement, the device first surface being subject to a pressure of the actuation fluid thereby subjecting the device to displacement in the conduit, a first device-end shaped to receive the first end of a corresponding first part in the plurality of parts, and a second device-end shaped to receive the second end of a corresponding second part in the plurality of parts. The second device-end defines a recess including a bottom surface intersected by the axis of displacement, the recess being configured to center the corresponding second part in the conduit. The device is positioned between the corresponding first part and the corresponding second part in the conduit.