IP Library › Granted Patent US 10,240,819
Granted Patent B2
US 10,240,819 · App. 14/858,717 · Granted Mar 26, 2019

Node, apparatus, system and method regarding a frame support for solar mirrors

Inventors: Craig Roy Werner (Lake Forest, IL); John Funai (Lake in the Hills, IL); Nicholas Palladino (Chicago, IL)
Assignee: Werner Extrusion Solutions LLC
F24S25/16B21C23/10B21C23/14F16B9/02F24S23/74F24S25/00F24S25/13F24S25/65F24S30/425E04B1/19E04B1/1903F24S2023/874F24S2025/014F24S2030/134F24S2030/14Y02E10/45Y02E10/47Y10T29/49826Y10T29/49947Y10T403/34Y10T403/44
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Quick Facts
Patent No.
US 10,240,819
App. No.
14/858,717
Granted
Mar 26, 2019
Kind
B2
Abstract

A method for producing a node for solar mirror frame having the steps of placing an aluminum billet having a diameter of less than 13 inches into a die. There is the step of extruding the billet through the die so an extrusion is formed having an elongate portion to which a structural element is attached, and a fin extending radially outward from the elongate portion where at least 5% of the volume of the fin is replaced by at least a single void extending essentially in parallel with the elongate portion, the elongate portion and the fin having a circle diameter of less than 12 inches; and cutting the extrusion to form the node.

Claims (12)

1. A method for producing a node for a support frame comprising the step of:

placing an aluminum billet having a diameter of less than 13 inches into a die; and

extruding the billet through the die with a 10 inch diameter extrusion press so an extrusion is formed having an elongate portion to which a structural element is attached, and a fin extending radially outward from the elongate portion where at least 5% of the volume of the fin is replaced by at least a single void extending essentially in parallel with the elongate portion, the elongate portion and the fin having a circle diameter of less than 10 inches and sustaining a 12,000 lb. compressive or tensile force with; and cutting the extrusion to form the node, the fin has a hole through which a fastener extends to fasten the structural element to the fin, the hole disposed so the fastener extends perpendicular to the fin.

2. The method as described in claim 1 wherein the fin has a first leg and extends outward from the elongate portion, and a second leg that extends outward from the elongate portion and adjacent to the first leg with the void disposed between the first and second legs.

3. The method as described in claim 2 wherein the fin has a third leg that is connected to the first and second legs and the first leg is in spaced relation with the second leg.

4. The method as described in claim 3 wherein the first, second and third legs form essentially a rectangular cross-section or the first, second and third legs form a guided insertion system.

5. The method as described in claim 4 wherein the first leg has a hole and the second leg has a hole which aligns with the hole of the first leg and through which a fastener extends to fasten a strut end piece to the fin.

6. The method as described in claim 5 wherein the fin has a notch at its ends to avoid interference with the strut end piece attached to the strut.

7. The method as described in claim 6 wherein the elongate portion is solid.

8. The method as described in claim 7 wherein the elongate portion has a rectangular cross section.

9. The method as described in claim 8 wherein the elongate portion and the fins have a circle diameter of less than 12 inches.

10. The method as described in claim 9 wherein the circle diameter is less than 8 inches.

Continuity (8)
Division 14133150 · Dec 18, 2013
Division 13135137 · Jun 27, 2011
Continuation In Part 12927812 · Nov 24, 2010
Continuation In Part 12798757 · Apr 10, 2010
Continuation In Part 12587043 · Oct 1, 2009
Continuation In Part 12583787 · Aug 26, 2009
Provisional Application 61190573 · Aug 29, 2008
Related Publication 20160010897A1 · Jan 14, 2016
Cited By (1)
US 12,429,251