IP Library Granted Patent US 10,060,080
Granted Patent B2
US 10,060,080 · App. 15/646,912 · Granted Aug 28, 2018

Void reducing asphalt membrane composition, method and apparatus for asphalt paving applications

Inventors: Anthony J. Kriech (Indianapolis, IN); Herbert L. Wissel (Indianapolis, IN); Timothy P. Reece (Indianapolis, IN); Marvin Keller Exline (Terre Haute, IN)
Assignee: Heritage Research Group
E01C11/02C08K3/0033C08K3/013C08K3/36C08K5/09C08L91/06C08L93/00C08L95/00C08L101/12E01C7/18E01C7/30E01C7/32E01C7/325E01C11/24C08K2003/2227C08L2555/50C08L2555/60C08L2555/80C08L2555/84
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Quick Facts
Patent No.
US 10,060,080
App. No.
15/646,912
Granted
Aug 28, 2018
Kind
B2
Abstract

A void reducing asphalt membrane composition for asphalt pavements that includes: an asphalt binder; an elastomeric polymer; a wax modifier; and at least one of: i) fumed silica or fumed alumina; and ii) a saponified fatty acid and a resin acid gelling compound. The composition is resistant to flow when applied and migrates into hot mix asphalt in the area of the longitudinal joint to reduce air voids to 7% or less and reduce water permeability. The composition becomes tack-free quickly after application. The composition bonds to asphalt, concrete, brick, stone and metal.

Claims (22)

1. A method of reducing air voids in a discrete portion of an asphalt pavement which comprises:

providing an asphalt membrane composition that comprises:

an asphalt binder,

an elastomeric polymer,

a wax modifier, and

at least one of fumed silica or fumed alumina;

applying a discrete band of the asphalt membrane composition on a surface to be paved with a hot mix asphalt;

paving over the surface and discrete band of asphalt membrane composition with a hot mix asphalt to form a pavement; and

allowing the asphalt membrane composition to migrate into the hot mix asphalt and reduce air voids in the pavement by migrating into the hot mix asphalt.

2. A method of reducing air voids in a discrete portion of an asphalt pavement according to claim 1 , wherein the asphalt binder comprises 85 to 97 wt. % of the asphalt membrane composition.

3. A method of reducing air voids in a discrete portion of an asphalt pavement according to claim 1 , wherein the surface to be paved comprises at least one of asphalt, concrete, brick, stone or metal.

4. A method of reducing air voids in a discrete portion of an asphalt pavement according to claim 1 , wherein discrete band of asphalt membrane composition is positioned beneath a joint formed in the pavement.

5. A method of reducing air voids in a discrete portion of an asphalt pavement according to claim 4 , wherein the pavement extends in a longitudinal direction and the joint formed in the pavement extends in the longitudinal direction.

6. A method of reducing air voids in a discrete portion of an asphalt pavement according to claim 4 wherein the joint is formed between two adjacent hot mix asphalt passes.

7. A method of reducing air voids in a discrete portion of an asphalt pavement according to claim 6 , wherein the pavement extends in a longitudinal direction and the joint formed in the pavement extends in the longitudinal direction.

8. A method of reducing air voids in a discrete portion of an asphalt pavement according to claim 1 , wherein the air voids are reduced to 7% or lower.

9. A method of reducing air voids in a discrete portion of an asphalt pavement according to claim 1 , wherein the asphalt membrane composition further comprises at least one of a saponified fatty acid and a resin acid gelling compound.

10. A method of reducing air voids in a discrete portion of an asphalt pavement according to claim 1 , wherein the discrete band of the asphalt membrane composition has a thickness that ranges from 1/16 to ⅜ inches.

11. A method of reducing air voids in a discrete portion of an asphalt pavement according to claim 1 , wherein asphalt membrane composition is formulated to include 85 to 97 wt. % of the asphalt binder, 1 to 6 wt. % of the elastomeric polymer and 1 to 5 wt. % of the wax modifier.

12. A method of reducing air voids in a discrete portion of an asphalt pavement according to claim 1 , wherein the total amount of fumed silica and fumed alumina in the asphalt membrane composition is 1 to 10 wt. %.

13. A method of reducing air voids in a discrete portion of an asphalt pavement according to claim 9 , wherein the total amount of the saponified fatty acid and the resin acid gelling compound in the asphalt membrane composition is up to 3 wt. %.

14. A method of reducing air voids in a discrete portion of an asphalt pavement according to claim 1 , wherein the asphalt membrane composition is applied to the surface to be paved by coating, rolling, spraying or a combination thereof.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 23, 2021
From: HERITAGE RESEARCH GROUP
To: HERITAGE RESEARCH GROUP, LLC
Reel/Frame 057264/0328 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 9, 2019
From: KRIECH, ANTHONY J.; WISSEL, HERBERT L.; REECE, TIMOTHY P.; EXLINE, MARVIN KELLER
To: HERITAGE RESEARCH GROUP
Reel/Frame 048834/0763 →
Continuity (4)
Continuation 15064819 · Mar 9, 2016
Provisional Application 62302335 · Mar 2, 2016
Provisional Application 62130293 · Mar 9, 2015
Related Publication 20170306569A1 · Oct 26, 2017