IP Library › Granted Patent US 8,726,608
Granted Patent B2
US 8,726,608 · App. 12/640,984 · Granted May 20, 2014

Apparatus and method for using board insulation as blown insulation

Inventors: Robert J. O'Leary (Newark, OH); Michelle Korwin-Edson (Pataskala, OH)
Assignee: Owens Corning Intellectual Capital, LLC
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Quick Facts
Patent No.
US 8,726,608
App. No.
12/640,984
Granted
May 20, 2014
Kind
B2
Abstract

Apparatus for processing board insulation into granules of loosefill insulation are provided. The apparatus includes an upper unit having inlet and outlet ends. The inlet end is configured to receive board insulation. The upper unit is configured to break the board insulation into small pieces. A lower unit is connected to the upper unit. The lower unit is configured to receive the small pieces of board insulation exiting the upper unit. The lower unit includes a plurality of conditioning mechanisms configured to condition the small pieces thereby resulting in granules of loosefill insulation. The lower unit further includes a distribution mechanism configured to distribute the granules of loosefill insulation into an airstream. A distribution hose is connected to the lower unit and configured to convey the granules from the apparatus to a building insulation cavity. The granules are configured for use as loosefill insulation within the building cavity.

Claims (25)

1. An apparatus for processing rigid board insulation into granules of loosefill insulation, the apparatus comprising:

an upper unit having a housing, the housing having an inlet end and an outlet end, the inlet end configured to receive rigid board insulation, the upper unit having a plurality of rollers with circumferential edges configured to break the rigid board insulation into small pieces, the small pieces configured to exit the upper unit through the outlet end;

a lower unit having a housing distinct from the upper unit housing, the lower unit housing removably connected to the upper unit housing, the lower unit configured to receive the small pieces of rigid board insulation exiting the outlet end of the upper unit, the lower unit including a plurality of rotating low speed conditioners positioned vertically above rotating high speed conditioners, the low speed conditioners are configured to further break the small pieces of rigid board insulation into smaller pieces of rigid board insulation and the high speed conditioners are configured to condition the smaller pieces of rigid board insulation, thereby resulting in granules of loosefill insulation having a desired average diameter, the lower unit further including a rotary valve configured to distribute the granules of loosefill insulation into an airstream provided by a blower; and

a distribution hose connected to the lower unit and configured to convey the granules of loosefill insulation from the apparatus to a building insulation cavity;

wherein the granules of loosefill insulation are configured for use as loosefill insulation within the building cavity,

wherein the combination of the low speed conditioners, high speed conditioners, rotary valve and blower are configured to operate on a single 110 volt, 15 amp power source.

2. The apparatus of claim 1 , wherein the inlet end of the upper unit is configured such that the major surfaces of the rigid board insulation are in a horizontal orientation when the rigid board insulation is fed into the inlet end.

3. The apparatus of claim 1 , wherein the upper unit includes a guide assembly configured to guide the rigid board insulation into the plurality of rollers.

4. The apparatus of claim 1 , wherein the granules of loosefill insulation have an average major dimension in a range of from about 0.125 inches to about 0.25 inches.

5. The apparatus of claim 1 , wherein the granules of loosefill insulation are substantially non-cohesive.

6. The apparatus of claim 1 , wherein the granules of loosefill insulation are substantially non-expanding.

7. The apparatus of claim 1 , wherein the small pieces of rigid board insulation exiting the upper unit have an average major dimension in a range of from about 1.00 inches to about 3.0 inches.

8. An apparatus for processing rigid board insulation into granules of loosefill insulation, the apparatus comprising:

an upper unit having a housing, the housing having an inlet end and an outlet end, the inlet end configured to receive rigid board insulation, the upper unit having a plurality of rollers with circumferential knife edges configured to break the rigid board insulation into small pieces, the small pieces configured to exit the upper unit through the outlet end;

a lower unit having a housing distinct from the upper unit housing, the lower unit housing removably connected to the upper unit housing, the lower unit configured to receive the small pieces of rigid board insulation exiting the outlet end of the upper unit, the lower unit including a plurality of rotating low speed conditioners positioned vertically above rotating high speed conditioners, the low speed conditioners are configured to further break the small pieces of rigid board insulation into smaller pieces of rigid insulation and the high speed conditioners, positioned downstream from the low speed conditioners, are configured to condition the smaller pieces of rigid insulation material, thereby resulting in granules of loosefill insulation having a desired average diameter, the lower unit further including a rotary valve configured to distribute the granules of loosefill insulation into an airstream, the rotary valve having a side inlet; and

a distribution hose connected to the lower unit and configured to convey the granules of loosefill insulation from the apparatus to a building insulation cavity;

wherein the granules of loosefill insulation are configured for use as loosefill insulation within the building cavity, and

wherein a choke is positioned between the high speed conditioners and the side inlet of the rotary valve, the choke configured to redirect larger pieces of rigid board insulation back to the low speed conditioners for further shredding.

9. The apparatus of claim 8 , wherein the rigid board insulation is in the form of pellets.

10. An apparatus for processing rigid board insulation into granules of loosefill insulation, the apparatus comprising:

a chute having a housing, the housing having an inlet end and an outlet end, the inlet end configured to receive rigid board insulation, the chute having a plurality of rollers with circumferential knife edges configured to break the rigid board insulation into small pieces, the small pieces configured to exit the chute through the outlet end;

a lower unit having a housing distinct from the chute housing, the lower unit housing removably connected to the chute housing, the lower unit configured to receive the small pieces of rigid board insulation exiting the outlet end of the chute, the lower unit including a plurality of rotating low speed conditioners positioned vertically above rotating high speed conditioners, the plurality of low speed and high speed conditioners are configured to condition the small pieces thereby resulting in granules of loosefill insulation;

a rotary valve positioned downstream from the plurality of low speed conditioners and high speed conditioners and configured to distribute the granules of loosefill insulation into an airstream, the rotary valve having a side inlet configured to receive the granules of loosefill insulation; and

a distribution hose connected to the distribution mechanism and configured to convey the granules of loosefill insulation from the apparatus to a building insulation cavity;

wherein a choke is positioned between the high speed conditioners and the side inlet of the rotary valve, the choke configured to redirect larger pieces of rigid board insulation back to the low speed shredders.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 30, 2012
From: O'LEARY, ROBERT J.; KORWIN-EDSON, MICHELLE
To: OWENS CORNING INTELLECTUAL CAPITAL, LLC
Reel/Frame 027614/0856 →
Continuity (1)
Related Publication 20110146176A1 · Jun 23, 2011