Boltless module support structures and boltless module attachment method
11402058 · 2022-08-02
Assignee
Inventors
Cpc classification
F24S2025/6008
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24S25/632
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24S25/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24S80/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24S2025/6007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24S2025/80
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24S25/67
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24S2025/023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F24S25/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The present invention provides a boltless module mounting system and a method of installing a boltless module. The system includes at least one module frame containing a module laminate, at least one support structure having support rails, and multiple boltless mounting components. The mounting components attach the module frame to the support rails. The present invention also provides a boltless module mounting system including at least one module having posts and at least one support structure with support rails. The support rails have receiving slots with a receiving hole and two or more slide slots. The posts interlock with the receiving slots. The method includes aligning multiple boltless connectors, lowering a boltless module frame onto a support structure, and sliding the frame to interlock the boltless connectors.
Claims
1. A boltless module mounting system, comprising: a plurality of module frames configured to receive a module laminate therein, the plurality of module frames including at least a first module frame and a second module frame, the first module frame and the second module frame each including a panel slot for holding the module laminate, wherein the panel slot of the first module frame opposes the panel slot of the second module frame when a bottom plate of the first module frame and a bottom plate of the second module frame are stacked upon one another; at least one support structure having a support rail; a plurality of boltless mounting components operative to attach the plurality of module frames to the support rail of the at least one support structure, the plurality of boltless mounting components operative to attach both the first module frame and the second module frame to the support rail when stacked upon one another; and at least one electrically conductive grounding connector extending through the plurality of module frames and the at least one support structure and coupling the plurality of module frames to the at least one support structure.
2. The boltless module mounting system of claim 1, wherein the boltless mounting components are selected from the group consisting of: interlocking posts and receiving slots, interlocking rail tabs, and combinations thereof.
3. The boltless module mounting system of claim 1, wherein the plurality of module frames comprise a plurality of posts and the support rail comprises a plurality of receiving slots.
4. The boltless module mounting system of claim 1, wherein the plurality of module frames comprise a plurality of receiving slots and the support rail comprises a plurality of posts.
5. The boltless module mounting system of claim 1, wherein the plurality of module frames comprise module tabs and the support rail comprises rail tabs, and wherein the module tabs are operative to interlock with the rail tabs.
6. The boltless module mounting system of claim 1, wherein the boltless mounting components comprise interlocking posts and receiving slots, said receiving slots having a modified keyhole conformation with two slide slots extending in opposite directions from a receiving hole.
7. The boltless module mounting system of claim 1, wherein the at least one support structure includes a plurality of support rails comprising at least a first rail having a plurality of receiving slots and at least a second rail having a plurality of posts.
8. The boltless module mounting system of claim 1, wherein the at least one electrically conductive grounding connector is selected from the group consisting of: a pin, a screw, a rivet, and combinations thereof.
9. The boltless module mounting system of claim 8, wherein the at least one electrically conductive grounding connector both maintains alignment and provides an electrical ground connection between the plurality of module frames and the at least one support structure.
10. The boltless module mounting system of claim 1, wherein the boltless mounting components comprise interlocking posts and receiving slots, said receiving slots having a modified keyhole conformation with two slide slots extending in perpendicular directions from a receiving hole.
11. A boltless module mounting system, comprising: a plurality of module frames each comprising one or more insertion holes, the one or more module frames including at least a first module frame and a second module frame, the first module frame and the second module frame each including a panel slot for holding a solar cell, wherein the panel slot of the first module frame opposes the panel slot of the second module frame when a bottom plate of the first module frame and a bottom plate of the second module frame are stacked upon one another, and wherein an insertion hole of the first module frame aligns with an insertion hole of the second module frame when the bottom plate of the first module frame and the bottom plate of the second module frame are stacked upon one another; at least one support structure comprising a support rail with one or more posts corresponding to the one or more insertion holes; and at least one electrically conductive grounding connector extending through the plurality of module frames and the at least one support structure and coupling the plurality of module frames to the at least one support structure, wherein the posts are operative to interlock with the insertion holes.
12. A method of installing a boltless module, comprising: providing a plurality of boltless module frames configured to receive a module therein, each of the plurality of boltless module frames comprising a plurality of boltless connectors, the plurality of boltless module frames including at least a first boltless module frame and a second boltless module frame, the first boltless module frame and the second boltless module frame each including a panel slot for holding the module; providing a support structure with a support rail and a plurality of boltless connectors; stacking a bottom plate of the first boltless module frame upon a bottom plate of the second boltless module frame such that the panel slot of the first boltless module frame opposes the panel slot of the second boltless module frame; aligning the plurality of boltless connectors; placing the first boltless module frame and the second boltless module frame in a stacked configuration onto the support rail of the support structure; interlocking the plurality of boltless connectors; and coupling the first boltless module frame and the second boltless module frame to the support structure with an electrically conductive grounding connector extending through the boltless module frames and the support structure.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(14) The following detailed description is of the best currently contemplated modes of carrying out exemplary embodiments of the invention. The description is not to be taken in a limiting sense but is made merely for the purpose of illustrating the general principles of the invention, since the scope of the invention is best defined by the appended claims.
(15) As used herein, a solar panel is generally referred to as a “module,” a collection of modules is referred to as a “panel,” a collection of panels is referred to as a “table,” and a collection of tables is referred to as an “array.”
(16) Broadly, one embodiment of the present invention is a boltless module mounting system, comprising interlocking stud and slot components on the module and support structure or interlocking flanges on the module and support structure.
(17) In some embodiments, the inventive solar frame comprises a receiving slot and the inventive support structure comprises a stud corresponding to the frame slot. The stud may be provided on a C or Z rail or a C or Z channel, for example. Alternatively, the frame may be provided with a stud and the support structure may be provided with a receiving slot. In some cases, the stud may be provided directly on the module. In any case, the frame may be held in place by gravitational force, obviating the need for torquing. The receiving slot may be further provided with a notch to further secure the alignment of the frame and support structure and held in place by a cap on the post or rivet. In this method, modules are held in place by gravity during installation and further secured by the post cap/slot alignment when the panels are subject to uplift from prevailing winds
(18) The studs may be fabricated in or on the panel frame or support structure by a manufacturing step selected from the group consisting of stamp, crimp, rivet, swage, and combinations thereof. The studs may be manufactured with a cap, head or hat that mechanically prevents the panel frame from separating from the support structure once in position. The receiving slot may be stamped or punched into the frame or the support structure. Preferably, a locking screw, pin or rivet may be provided to prevent the stud from sliding out of the slot due to updrafts from strong winds.
(19) In another embodiment, interlocking flanges may secure the panel frame to the support structure and preserve its alignment. The flanges or tabs may be formed in or on the panel frames and support structure rails by a method selected from the group consisting of stamp, weld, swage, screw, glue, and combinations thereof. The flange may also be described as a frame lip, a frame edge, or rail.
(20) Module support structures are generally manufactured from metal, although the material of manufacture is not particularly limited. In some embodiments, module support structures may feature rivets or slot and stud combinations and structures such as shelving may be assembled using slot and stud components. A stud may also be described as a post, boss, rod, pin, rivet, protuberance, or swage fitting. The studs may be manufactured with a head or hat that mechanically prevents the panel frame from separating from the support structure once in position.
(21) The slot of the present invention may be a type selected from the group consisting of a keyhole slot, a modified keyhole slot with a second slide slot 90° around a receiving hole from a first slide slot, and 180° around the receiving hole from the first slide slot. The dual slide keyhole slot may be particularly useful for structures which may have a slide slot aligned at an angle from the vertical position or for structures that may have a portrait orientation and a landscape orientation. The slot may also be described as a notch, opening, or groove.
(22) In some aspects of the invention, the module frame and/or support structure may be provided with a pin, screw, and/or rivet to provide electrical grounding. A pin, screw, rivet, or rivet pin may additionally provide anti-theft security. Use of pins, screws, and/or rivets assures proper module to support structure grounding without need for additional torquing.
(23) In some aspects of the invention, one or more studs may be hollow and may be provided with a rivet passing therethrough. The rivet may preferably ground the frame and/or module to the support structure.
(24) In some cases, each module frame may interlock with an adjacent frame, thereby reducing the number of underlying support structure rails required in the system.
(25) Furthermore, the boltless concept may be extended to the entirety of the support structure, thereby reducing the number of required bolts for the assembly.
(26) None of the embodiments of the invention preclude the use of bolts in addition to the slot and stud or interlocking flange connections.
(27) Referring to
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(30) In some embodiments, a frame rail 10 and a reverse frame rail 52 may be installed together on the same support rail 24, as shown in
(31) It should be understood, of course, that the foregoing relates to exemplary embodiments of the invention and that modifications may be made without departing from the spirit and scope of the invention as set forth in the following claims.