Patent classifications
F16B19/08
PUNCH RIVET AND METHOD FOR PRODUCING A PUNCH-RIVETED JOINT
A punch rivet for joining two workpieces, has a head and a shank. The shank is a hollow shank with a shank internal diameter (D3), a shank external diameter (D1) and a shank end face. On the shank end face is a ring cutting edge with the diameter (D4) that is smaller than the shank external diameter (D1) but greater than the shank internal diameter (D3). The ring cutting edge is radially spaced both from the shank external diameter (D1) and from the shank internal diameter (D3) by at least 20% of the radial shank wall thickness (M5). And the ratio D3/D1 of shank internal diameter D3 to shank external diameter D1 is smaller than 0.6.
PUNCH RIVET AND METHOD FOR PRODUCING A PUNCH-RIVETED JOINT
A punch rivet for joining two workpieces, has a head and a shank. The shank is a hollow shank with a shank internal diameter (D3), a shank external diameter (D1) and a shank end face. On the shank end face is a ring cutting edge with the diameter (D4) that is smaller than the shank external diameter (D1) but greater than the shank internal diameter (D3). The ring cutting edge is radially spaced both from the shank external diameter (D1) and from the shank internal diameter (D3) by at least 20% of the radial shank wall thickness (M5). And the ratio D3/D1 of shank internal diameter D3 to shank external diameter D1 is smaller than 0.6.
Snap rivets for securing printed circuit board assemblies
A system includes a computing system, a snap rivet, and a printed circuit board assembly (PCBA). The computing system includes a chassis. The snap rivet includes a rivet and a cap, and the cap is secured to the chassis. The PCBA includes a pin base. The pin base has a washer portion with a hole. The pin base is configured to receive the cap through the hole. The cap protrudes through the hole and mechanically engages the rivet to secure the PCBA to the chassis. The snap rivet provides for tool-less installation and removal of the PCBA from the chassis of the computing system.
Snap rivets for securing printed circuit board assemblies
A system includes a computing system, a snap rivet, and a printed circuit board assembly (PCBA). The computing system includes a chassis. The snap rivet includes a rivet and a cap, and the cap is secured to the chassis. The PCBA includes a pin base. The pin base has a washer portion with a hole. The pin base is configured to receive the cap through the hole. The cap protrudes through the hole and mechanically engages the rivet to secure the PCBA to the chassis. The snap rivet provides for tool-less installation and removal of the PCBA from the chassis of the computing system.
Multilayer component assembly for automobiles
An automotive aluminum alloy component assembly includes a first vehicle component defining a first joint region and a first cutout. The assembly also includes a second vehicle component defining a second joint region. The assembly also includes a third vehicle component defining a third joint region. Portions of the first and third joint region sandwich the second joint region. A first self-piercing rivet is disposed within the second and third components and aligned with the first cutout.
FASTENER WITH RETAINING PORTION
A fastener is provided. The fastener includes a fastening portion configured to fasten a body; and a retaining portion configured to retain a portion of the body after the fastening portion is fastened to the body. The fastener apparatus may be used to attach composite body materials to a vehicle.
FASTENER WITH RETAINING PORTION
A fastener is provided. The fastener includes a fastening portion configured to fasten a body; and a retaining portion configured to retain a portion of the body after the fastening portion is fastened to the body. The fastener apparatus may be used to attach composite body materials to a vehicle.
Rivet module and joining structure and method using the same
A rivet module is provided to join at least two sheets of base materials in a solid state, the rivet module including: i) a shank portion to be mounted on a reciprocal and rotatable joining tool; ii) a base material friction portion that is integrally connected to the shank portion and drills through the base materials as the joining tool causes the base material friction portion to be rotated while applying pressure to the base materials; and iii) a base material fastening portion that is fixedly fitted to the shank portion, supports the base material friction portion, and is fastened to the base materials through a thread formed on the outer peripheral surface thereof.
Self-piercing rivet and self-piercing riveting method and self-piercing riveted joint
A self-piercing rivet for connecting high-strength steels. The rivet having a head which has a head diameter (DH); a shank which has a shank diameter (DS); and, located at the foot end of the shank opposite the head, the shank has radially outward a flat surface section and radially inward an axial recess defining an axial depth (LB). The ratio of axial depth (LB) of the recess to the shank diameter (DS) is smaller than 0.3.
INJECTION MOLDED RIVET-STYLE FASTENER AND HOUSING WITH SNAP ASSEMBLY FUNCTIONALITY ALONG WITH AN INJECTION MOLDING PROCESS FOR PRODUCING SUCH A RIVET WITHOUT AN UNDERCUT FEATURE
The present invention discloses a fastener assembly having an engaging portion with a projecting stem which is interiorly hollowed over at least an intermediate extending range. The stem includes a solid end most extending portion. A receiving portion is provided with an inner rim defined edge, a diameter of an aperture between the rim edge being less than a diameter of an inserting portion of the stem. Upon forcible passage of the solid end of the fastener past the narrowed rim edge, an intermediate hollowed interior portion of the stem aligning with the narrowed rim edge and exhibiting a controlled collapse against said rim edge in order to anchor the portions together.