Patent classifications
F16B43/00
SELF-SEALING FASTENERS, BUILDING PANELS, SYSTEMS, AND METHODS
Self-sealing fasteners and associated building panels, systems, and methods are provided. In one aspect, a fastener includes an elongated fastener body with an external surface extending between the first end and the second end, and a coating material disposed on at least a portion the external surface. In another aspect, a fastener includes an elongated fastener body with an external surface extending between the first end and the second end, and a polymer annulus surrounding at least a portion of the external surface of the of the elongated fastener body at or adjacent the head of the fastener.
Fasteners
A fastener comprising a polymer composition [composition (C)] comprising at least one polyaryletherketone polymer [(PAEK) polymer], and at least one nitride (NI) of an element having an electronegativity (ε) of from 1.3 to 2.5, as listed in <<Handbook of Chemistry and Physics>>, CRC Press, 64.sup.th edition, pages B-65 to B-158, based on the total weight of the composition (C).
Fasteners
A fastener comprising a polymer composition [composition (C)] comprising at least one polyaryletherketone polymer [(PAEK) polymer], and at least one nitride (NI) of an element having an electronegativity (ε) of from 1.3 to 2.5, as listed in <<Handbook of Chemistry and Physics>>, CRC Press, 64.sup.th edition, pages B-65 to B-158, based on the total weight of the composition (C).
Fastening element and fastening assembly
A fastening assembly includes a fastening element extending along a central axis between a first and a second end. The fastening element includes a head section extending from the second end along the central axis and engageable by a tool, such as a hexagonal head. A protruding cylindrically shaped section has a smaller diameter than the head section. A flanged section is arranged between the head section and the protruding cylindrically shaped section. The fastening element on the cylindrically shaped section includes an engaging section. A first portion of the engaging section is positioned at a distance from the surface of the flanged section facing the first end, such that a locking washer will be stopped from reaching the surface of the flanged section if introduced on the cylindrically shaped section with its smaller central diameter in the direction of the engaging section.
Fastening element and fastening assembly
A fastening assembly includes a fastening element extending along a central axis between a first and a second end. The fastening element includes a head section extending from the second end along the central axis and engageable by a tool, such as a hexagonal head. A protruding cylindrically shaped section has a smaller diameter than the head section. A flanged section is arranged between the head section and the protruding cylindrically shaped section. The fastening element on the cylindrically shaped section includes an engaging section. A first portion of the engaging section is positioned at a distance from the surface of the flanged section facing the first end, such that a locking washer will be stopped from reaching the surface of the flanged section if introduced on the cylindrically shaped section with its smaller central diameter in the direction of the engaging section.
Locking Cams Assembly and Method
The assembly solves a frequent problem when aligning one machine to another machine. Typically, the machine to be aligned has very little clearance in the hold-down bolt holes, and running out of adjustment space while aligning is common. This assembly uses cams in enlarged holes in the machine feet. The cams not only allow the machine to be aligned with holes already drilled into a fixed bedplate, but after the machine is set on the bedplate, also allows the machine to be moved more than twice as much as is now permitted. This allows it to be easily aligned with another piece of equipment that is already fixed in place. The assembly also makes dowelling unnecessary, because the cams are locked into place with a set screw to prevent the machine from moving.
Locking Cams Assembly and Method
The assembly solves a frequent problem when aligning one machine to another machine. Typically, the machine to be aligned has very little clearance in the hold-down bolt holes, and running out of adjustment space while aligning is common. This assembly uses cams in enlarged holes in the machine feet. The cams not only allow the machine to be aligned with holes already drilled into a fixed bedplate, but after the machine is set on the bedplate, also allows the machine to be moved more than twice as much as is now permitted. This allows it to be easily aligned with another piece of equipment that is already fixed in place. The assembly also makes dowelling unnecessary, because the cams are locked into place with a set screw to prevent the machine from moving.
BOLT ASSEMBLY
Aspects of the disclosure regard a bolt assembly which comprises a bolt extending in a longitudinal direction through a flange connection, the bolt comprising a first portion and a second portion, the first portion comprising a threaded section at a first side of the flange connection and the second portion comprising a head portion at a second side of the flange connection. The bolt assembly further comprises a nut screwed on the threaded section and a spacer arranged between the nut and the flange connection or between the head portion and the flange connection. The bolt is comprised of a titanium alloy.
BOLT ASSEMBLY
Aspects of the disclosure regard a bolt assembly which comprises a bolt extending in a longitudinal direction through a flange connection, the bolt comprising a first portion and a second portion, the first portion comprising a threaded section at a first side of the flange connection and the second portion comprising a head portion at a second side of the flange connection. The bolt assembly further comprises a nut screwed on the threaded section and a spacer arranged between the nut and the flange connection or between the head portion and the flange connection. The bolt is comprised of a titanium alloy.
INTEGRATED BONDING MID CLAMP DEVICE, SYSTEM, AND METHOD FOR SOLAR PANEL MOUNTING AND GROUNDING
Disclosed herein is an integrated bonding mid clamp device for solar panel mounting and grounding, as well as a related system and method. The integrated bonding mid clamp includes a deformable toothed washer for breaking an anodized layer of a solar panel frame. The deformable toothed washer is capable of deforming to avoid obstructing proper contact between the mid clamp and the solar panel frame.