IP Library › Granted Patent US 11,515,831
Granted Patent B2
US 11,515,831 · App. 17/088,183 · Granted Nov 29, 2022

Mount assemblies with chemical flashings

Inventors: Martin John Affentranger, Jr. (Paso Robles, CA); William Stanley Arbuckle (Paso Robles, CA); Brian David Peterson (Santa Cruz, CA); Daniel Edward Ryan (Scotts Valley, CA)
Assignee: Sunrun Inc.
H02S20/23F16J15/022F16M13/02F16M2200/08
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Quick Facts
Patent No.
US 11,515,831
App. No.
17/088,183
Filed
Nov 3, 2020
Granted
Nov 29, 2022
Kind
B2
Art Unit
3633
USPC
52/173.3
Abstract

Chemical flashings for track assemblies and mount assemblies employed in solar power installations are disclosed. In some embodiments, a track assembly having a base, a pair of rails, a sealant receiving cavity and a round groove extending into the base from the bottom of the base, and a compressible round seal disposed within the base extending past the bottom is disclosed. In some embodiments, a mount assembly having a vertical structure, a sealant receiving cavity and a round groove extending into the base from the bottom of the base, a compressible round seal disposed within the base extending past the bottom, and an excess sealant cavity is disclosed.

Claims (37)

1. A mount assembly, comprising:

a base with a top surface, a bottom surface, a vertical structure extending upwards and away from the top surface, a plurality of ports, and a plurality of apertures extending between the top surface and the bottom surface; and

a compressible seal with a plurality of openings configured to receive sealant and form a plurality of sealant-receiving cavities when placed against a cavity-forming surface, wherein

the compressible seal includes a plurality of slots, such that

a portion of the sealant pre-filling the plurality of sealant-receiving cavities prior to an application of a tightening force to a plurality of fasteners positioned within the plurality of apertures is forced through the plurality of slots and into the plurality of ports as the tightening force is being applied.

2. The mount assembly of claim 1 , wherein the base includes a downwardly extending wall forming a perimeter within which the compressible seal is placed when placed against the cavity-forming surface.

3. The mount assembly of claim 1 , wherein the cavity-forming surface is the bottom surface of the base.

4. The mount assembly of claim 1 , further comprising:

a sealant backer with a bottom surface, where

the cavity-forming surface is the bottom surface of the sealant backer.

5. The mount assembly of claim 1 , further comprising:

a sealant backer with a plurality of openings, where

the sealant being forced through the plurality of slots and into the plurality of ports passes through the plurality of openings of the sealant backer.

6. The mount assembly of claim 1 , wherein the sealant being forced into the plurality of ports is further forced into a plurality of channels as the tightening force is being applied.

7. The mount assembly of claim 6 , wherein

the vertical structure includes a plurality of vents, and

the sealant being forced into a plurality of channels is further forced out the plurality of vents as the tightening force is being applied.

8. A method for securing a mount assembly to a surface, comprising:

positioning the mount assembly on the surface; and

applying a tightening force to a plurality of fasteners positioned within a plurality of apertures, where

the mount assembly includes a base with a top surface, a bottom surface, a vertical structure extending away from the top surface, a plurality of ports, and the plurality of apertures extending between the top surface and bottom surface; and

a compressible seal includes a plurality of openings configured to receive sealant and form a plurality of sealant-receiving cavities when placed against a cavity-forming surface, wherein

the compressible seal includes a plurality of slots, such that

a portion of the sealant pre-filling the plurality of sealant-receiving cavities prior to an application of a tightening force to a plurality of fasteners positioned within the plurality of apertures is forced through the plurality of slots and into the plurality of ports as the tightening force is being applied.

9. The method of claim 8 , wherein

the mount assembly includes a sealant backer with a plurality of openings, where

the sealant being forced through the plurality of slots and into the plurality of ports passes through the plurality of openings of the sealant backer.

10. The method of claim 8 , wherein the sealant being forced into the plurality of ports is further forced into a plurality of channels as the tightening force is being applied.

11. The method of claim 10 , wherein

the vertical structure includes a plurality of vents, and

the sealant being forced into a plurality of channels is further forced out the plurality of vents as the tightening force is being applied.

12. The method of claim 8 , further comprising:

positioning a sealant backer between the bottom surface of the mount assembly and the compressible seal, such that

the sealant being forced through the plurality of slots and into the plurality of ports passes through a plurality of openings of the sealant backer.

13. The method of claim 8 , wherein the base includes a downwardly extending wall forming a perimeter within which the compressible seal is placed when placed against the cavity-forming surface.

14. The method of claim 8 , wherein the cavity-forming surface is the bottom surface of the base.

15. The method of claim 8 , wherein the cavity-forming surface is a bottom surface of a sealant backer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 3, 2020
From: AFFENTRANGER, JR., MARTIN JOHN; ARBUCKLE, WILLIAM STANLEY; PETERSON, BRIAN DAVID; RYAN, DANIEL EDWARD
To: SUNRUN INC.
Reel/Frame 054259/0263 →
Continuity (3)
Continuation In Part 16994360 · Aug 14, 2020
Provisional Application 62988677 · Mar 12, 2020
Related Publication 20210285596A1 · Sep 16, 2021
Cited By (12)
US 1,133,872 US 12,206,355 US 12,231,076 US 12,286,994 US 12,331,525 US 12,368,405 US 12,428,844 US 12,463,580 US 12,474,014 US 12,494,627 US 12,562,674 US 12,749,882