US2028253A - Insulation pad and construction - Google Patents

Insulation pad and construction Download PDF

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US2028253A
US2028253A US481830A US48183030A US2028253A US 2028253 A US2028253 A US 2028253A US 481830 A US481830 A US 481830A US 48183030 A US48183030 A US 48183030A US 2028253 A US2028253 A US 2028253A
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insulation
sleeve
mat
liner
flanges
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US481830A
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Allen L Spafford
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Wood Conversion Co
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Wood Conversion Co
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/62Insulation or other protection; Elements or use of specified material therefor
    • E04B1/74Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls
    • E04B1/76Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls specifically with respect to heat only
    • E04B1/7654Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls specifically with respect to heat only comprising an insulating layer, disposed between two longitudinal supporting elements, e.g. to insulate ceilings
    • E04B1/7658Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls specifically with respect to heat only comprising an insulating layer, disposed between two longitudinal supporting elements, e.g. to insulate ceilings comprising fiber insulation, e.g. as panels or loose filled fibres
    • E04B1/7662Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls specifically with respect to heat only comprising an insulating layer, disposed between two longitudinal supporting elements, e.g. to insulate ceilings comprising fiber insulation, e.g. as panels or loose filled fibres comprising fiber blankets or batts
    • E04B1/7666Connection of blankets or batts to the longitudinal supporting elements
    • E04B1/767Blankets or batts with connecting flanges
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S220/00Receptacles
    • Y10S220/09Receptacles insulating materials
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T428/00Stock material or miscellaneous articles
    • Y10T428/24Structurally defined web or sheet [e.g., overall dimension, etc.]
    • Y10T428/2419Fold at edge
    • Y10T428/24215Acute or reverse fold of exterior component
    • Y10T428/24231At opposed marginal edges

Definitions

  • Balsam Wool Flexible insulation of the type known as Balsam Wool is being used extensively. It is provided to the user inrolls of varying widths,
  • edges are exposed for entry of moisture or water into the mat itself.
  • the present invention overcomes these diificulties. It permitsusing thicker insulation and eliminates thedifficulty in securing the rear liner.
  • the presence of the flange eliminates the practical necessity of using strips or lath to secure the material, and permits gluing or cementing it in place by a cement on the flange. Glue "or cement may be easily shipped with the material in a container in the core of the package, or
  • One object of the present invention is the provision of a tubular envelope for an insulation core.
  • Another object of the invention is the provision of a flat sleeve containing an insulation core secured to the sleeve, and'means onthe sleeve for mounting the unit.
  • Another object of the invention is the provision of liners for flexible insulation which extend from the edges of the insulation filter as flanges for securing the insulation unit inplace.
  • Still another object of the invention is the provision of a laminatedflexible insulation material.
  • Another object of the invention is the provision of a structure combining all the above named features of the invention.
  • Fig. 2 shows a laminated form of the invention mounted between studs, the view being a cross-section of the structure.
  • Fig. 3 is a cross-sectional view of a laminated form of the invention with intermediate liners.
  • Fig. 4 is a cross-sectional view of a laminated form of structure without intermediate liners, and with slightly rigid edges.
  • Fig. 5 represents a tapered form.
  • Fig. 6 represents a modified form with a flange not flush with a face.
  • Fig. 7 is a perspective view of one form of installation of insulation between studs.
  • Figs. 8 and 9 are perspective views of modified- .types of installation.
  • a core of flexible insulation material preferably an elongated, strip ll! of Balsam Wool, or felted wood fibers, having a width substantially equal to the distance between studding for which the insulation is particularly designed.
  • a liner ll preferably of a size equal to the pad.
  • the liner H may be paper or other closed fabric, prefer- .jecting flanges l3 of flexible material on both edges of the structure.
  • the sheet I2 is made sufllciently wide to permit using the extreme ends thereof as a seal to the liner II at zones l4. Thisprovides a double thickness of flange with a fold l5, and a section l6 which is preferably cemented to the edge of mat III.
  • the flanged liner I2 is preferably coated on its interior face with an adhesive, such as hot asphalt, in order to permit securing it to the mat l0, folding it, and cementing it into the described form in practically oneoperation, as in a continuous machine.
  • Prepared glue fllms I1 and I8 to be wetted or treated may be placed on any part of the flanges, being preferably on the rear side and on the face 16.
  • one flller or mat I0 between the facial liners I may have laminations of fillers or mats and may separate the mat units by liners which maybe and are preferably attached to each filler or mat.- Adjacent liners may be cemented together or they may be free as will appear hereinafter.
  • Fig. 2 shows a unit in which two mats 20 and 2
  • Each mat has an interior liner, such as waterproofed creped paper secured to the mat, as indicated at 28 and 29, but the interior liners, or the mat laminations, are! unattached at their opposing faces.
  • a unit according to this construction may be made slightly wider than the space between studs, for example as at 30, (to which it may be glued or cemented) so that upon insertion the unit will bow as illustrated and form an air space 3
  • a sheet of rigid material such as corrugated board 32 may be placed between the laminations having a width nearly equal to the distance between the studs and therefore less than the width of the spasms laminations. By reason of these relations the board may be freely inserted from the end of a length and need not be incorporated in the structure in the process of manufacture. The board 32 will give rigidity where this feature is desired.
  • the bowing of the laminated structure imparts a lateral pressure against the studs 29 and 30 and more effectively seals the joints.
  • Figs. 3 to 6 multi-ply units are illustrated with more than two laminations and with other features.
  • the structure is similar to that in Fig. 1.
  • Three mats 35, 3B and 31 are included in the package or tubular envelope formed by sealing the exterior liners 38 and 39, with provision of flanges.” coextensive with the surface of liner 39.
  • and 42 are shown between the mats, each being cemented to the adjacent mat. Asphalted paper is suitable.
  • Fig. 4 three mats 4
  • Rigidity may be imparted to the unit by placing more rigid material such as chip-board along the edges.
  • the exterior liners 44 and 45 are secured together as heretofore described to form the tubular envelope, but the edges are reinforced by angular lengths of chip-board.
  • the middle section 46 lies adjacent the edges of the mats and defines the width.
  • Another section 4'I forms a square edge with section 46 and protectsthe corner.
  • the front liner 45 extends sufliciently beyond section 4i to be .sealed to back liner 44.
  • the ordinarily flexible flange formed by the fold in front liner 45 may be stiffened by incorporating a section 48 of the chip-board between the two thicknesses'of the liner 45.
  • the stiffening sections 48-464'l are preferably integral.
  • the filler may vary in flexibility from the rigid corrugated board to the universally flexible fiber mat, without in any way departing from the broadest features of this invention.
  • Fig. 5 a modified form of Fig. 4 is shown.
  • and 52 are preferably related like those in Fig. 3, but they may be related like those in Fig. 4, or like the layers of Fig. 2. They are successively narrower from front to rear and provide a tapered or bevelled edge length of insulation.
  • Chip board or other stiffening means 53 is contained within the enveloping liners as in Fig. 4 and defines a flat substantial inclined surface from rear to front.
  • the stiffening means is represented as a threesectioned length having one section 54 contained in the flange formed by the fold in the front facing.
  • FIG. 6 a modified form is shown in which flanges 58 are formed at the edges rearwardly of the front face.
  • Front liner 59 is first carried around corner 60, then part way up the side to a point 6
  • flanges 58 may be located either flush with the front face, or
  • the material from which the mounting flange is constructed is not necessarily integral with and an extension of one of the facing liners.
  • the tubular envelope carrying the two mounting flanges may be pieced wherever it is desirable and flanges may be attached to the envelope by other means than by the disclosed integral construction.
  • Fig. '7 two studs 18 and II as in a wall have a strip of flanged envelope insulation 12 mounted therebetween.
  • the pieces 13 represent what may be the outside boards on a house,
  • the insulation 12 is placed deep into the recess between studs 18 and II and lies against the boarding.
  • Each flange 14 on the insulation lies on the inside surface of the studs and may be secured thereto as by glue or otherwise, but preferably by a strip I5 nailed to the stud at suitable intervals.
  • spaced studs 16 and H carry a wall board covering 18 behind which a section of insulation 19 is tucked into the recess between the studs, with its one surface 80 abutting the wall board.
  • lie between the wall board and the stud and the securing of the 1.
  • Insulation comprising in combination a flexible flat core of insulating material, a liner cemented to one face of the core, and a liner cemented to and covering the other face of the core, one liner being wider than the core and projecting beyond two opposite edges of the core, each of the projecting parts of said liner being folded upon itself along a line intermediate the bounds of the projecting portion to provide a flange, and the extreme edge of each projecting portion passing across the edge of the core and being cemented to the other liner.
  • Insulation comprising in combination two superimposed lengths of flexible cores of insulation material, a liner secured to each of the abutting faces of the cores, a flat elongated open-ended sleeve containing said cores, said liners being uncemented to each other, whereby the cores are free to bow and separate with edgewise compression of the enveloped cores,
  • Insulation comprising in combination a flat mat of fibrous material, a. tubular envelope containing said mat, flanges projecting from said envelope in the vicinity of the edges of the mat, said flanges being formed of two thicknesses of the envelope adjacent a. fold therein, and stiffening means between the said two thicknesses of the envelope.
  • Insulation comprising in combination a flat mat of fibrous material, a tubular envelope containing said mat, flanges projecting from said envelope in the vicinity of the edges of the mat, said flanges being formed of two thicknesses of the envelope adjacent a fold therein, and stiffening means between the said two thicknesses of the envelope, said stiffening meansbeing extended within the envelope from the flange to cover a portion of the edge of the mat.
  • Insulation comprising in combination a flat mat of fibrous material, a tubular envelope containing said mat, flanges projecting from said envelope in the vicinity of the edges of the mat, said flanges being formed of two thicknesses of the envelope adjacent a fold therein,
  • stiffening means between the said two thicknesses of the envelope, said stiffening means being extended within the envelope from the flange to cover a portion of the edge of the mat, and being bent at a corner of the mat thereby having a portion on one face of the mat.
  • Insulation comprising in combination a flexible elongated flat sleeve which is stretchable in the direction of its length, a stretchable insulating core housed in said sleeve and secured thereto, and external mounting flanges in the vicinity of two opposite edges of said sleeve.
  • Insulation comprising in combination a flat elongated sleeve of crepe'd sheet material, a flexible stretchable insulation core housed in said sleeve and secured thereto, and external mounting flanges in the vicinity of two opposite edges of said sleeve.
  • Insulation comprising in combination a flat open-ended sleeve, two separate insulating cores housed within said sleeve, each core being adhesively united to an interior face of .said sleeve,
  • Insulation comprising in combination a flat open-ended sleeve, two separate insulating cores housed within said sleeve, each core being adhesively united to an interior face of said sleeve, flat separating means removably mounted between said two cores, and external mounting flanges in the vicinity of two opposite edges of said sleeve.
  • Insulation comprising in combination a flat open-ended sleeve, and two facially separable insulating cores housed within said sleeve, each core being adhesively united to an interior face of said sleeve.
  • Insulation comprising in combination a flat open-ended sleeve, two separate insulating cores housed within said sleeve, each core being adhesively united to an interior face of said sleeve, and flat separating means removably held between said two cores.
  • Insulation comprising in combination a flat open-ended sleeve, two separate insulating cores housed within said sleeve, each core being adhesively united to an interior. face of said sleeve, and rigid fiat separating means adapted to be inserted endwise of the sleeve between said two cores.
  • An insulation structure comprislzw two adjacent and separable flat flexible insulation cores in separable tace-to-iface relation, and an.
  • open-ended tubular sleeve closely encompassing said two cores, whereby compression edgewise of the cores, and lengthwise 01' the sleeve, causes thegtwo cores to bow and separate i'orming more rigid unit.

Description

Jan. 21,1 1936. A,.'| ;/$PAFFORD 2,028,253
INSULATION numb CONSTRUCTION Filed Sept. 15, 1930 2 Sheets- -Sheet 1 A :59 I R/lLS QWOFOZ/ y 1, dffiwww ty w dqg.
A. L. sPAFFoRb msu'mmon PAD AND CONSTRUCTION Jan. 2i, 1936.
Filed Sap t. 15, 193:)
2-Sheets-Sheet 2 Patented Jan. 21 1936 I UNITED STA S PATENT OFFICE INSULATION PAD AND CONSTRUCTION Allen L. Spafford, Cloquet, Minn., assi'gnor to The Wood Conversion Company, Cloquet, Minn., a corporation of Delaware Application September 15, 1930, "Serial No. 481,830 g 13 Claims. (01. 154-44) The present invention relates to insulation material and constructions, and has special reference to flexible insulation which can be rolled, such as pads or wadding that may also be tucked into position and readily secured.
Flexible insulation of the type known as Balsam Wool is being used extensively. It is provided to the user inrolls of varying widths,
and is usually not over one inch in thickness.
terial is tucked in between studs or rafters, the
edges are exposed for entry of moisture or water into the mat itself.
The present day usage of flexible insulation shows. the desirability and a demand for insulation thicker than one, inch. Flexible fillers or mats of such greater thickness are more difficult to make, to handle and to install. For one reason, an exposed. edge of a fibrousmat greater than one inch thick is more-easily damaged and hence a ragged edge is likely to result, with imperfect insulation about the edges of the material. 1
In using the older type of Balsam Wool insulation (about 1 inch thick, orless), the tucking in of the sheet draws back the rear paper liner, which is on the outside of the curve, so that it is not readily caught and supported vby the laths which are usually employed to fasten it. If thicker insulation of the same type is employed this difficulty is even more pronounced. The use of strips or lath to hold the older type of Balsam Wool blanket is a practical necessity, and requires of the user a supply of lath as well as a supply of blanket. It is not easy or desirable to ship these companion materials together.
The present invention overcomes these diificulties. It permitsusing thicker insulation and eliminates thedifficulty in securing the rear liner. The provision of a flange on the unit, in the form of a portion of a tubular envelope enclosing the insulation, eliminates from consideration the actual securing of the rear liner.
The presence of the flange eliminates the practical necessity of using strips or lath to secure the material, and permits gluing or cementing it in place by a cement on the flange. Glue "or cement may be easily shipped with the material in a container in the core of the package, or
' it may be applied as a film on the flange to be wetted or treated.
One object of the present invention is the provision of a tubular envelope for an insulation core.
Another object of the invention is the provision of a flat sleeve containing an insulation core secured to the sleeve, and'means onthe sleeve for mounting the unit.
Another object of the invention is the provision of liners for flexible insulation which extend from the edges of the insulation filter as flanges for securing the insulation unit inplace.
Still another object of the invention is the provision of a laminatedflexible insulation material.
Another object of the invention is the provision of a structure combining all the above named features of the invention.
Other objects of the invention are to employ the new insulation material in novel mountings as walls, floors or ceilings, to effect a wind proof and water-proof construction with material which is easily, quickly and economically applied.
In the accompanying drawings I have illusthe endwise appearance.
Fig. 2 shows a laminated form of the invention mounted between studs, the view being a cross-section of the structure.
Fig. 3 is a cross-sectional view of a laminated form of the invention with intermediate liners.
Fig. 4 is a cross-sectional view of a laminated form of structure without intermediate liners, and with slightly rigid edges.
Fig. 5 represents a tapered form.
Fig. 6 represents a modified form with a flange not flush with a face.
Fig. 7 is a perspective view of one form of installation of insulation between studs.
Figs. 8 and 9 are perspective views of modified- .types of installation.
The invention may be readily explained by reference to a simple and practical embodiment thereof as shown in Fig. 1. In making such a. structure I may use a core of flexible insulation material preferably an elongated, strip ll! of Balsam Wool, or felted wood fibers, having a width substantially equal to the distance between studding for which the insulation is particularly designed. I prefer to use a strip Ill of mat which has no liners, and thereto apply such types of liner as conditions may require. To one face of the mat in I apply a liner ll, preferably of a size equal to the pad. The liner H may be paper or other closed fabric, prefer- .jecting flanges l3 of flexible material on both edges of the structure. The sheet I2 is made sufllciently wide to permit using the extreme ends thereof as a seal to the liner II at zones l4. Thisprovidesa double thickness of flange with a fold l5, and a section l6 which is preferably cemented to the edge of mat III. In manufacture, the flanged liner I2 is preferably coated on its interior face with an adhesive, such as hot asphalt, in order to permit securing it to the mat l0, folding it, and cementing it into the described form in practically oneoperation, as in a continuous machine. Prepared glue fllms I1 and I8 to be wetted or treated may be placed on any part of the flanges, being preferably on the rear side and on the face 16.
In place of using one flller or mat I0 between the facial liners I may have laminations of fillers or mats and may separate the mat units by liners which maybe and are preferably attached to each filler or mat.- Adjacent liners may be cemented together or they may be free as will appear hereinafter.
Fig. 2 shows a unit in which two mats 20 and 2| are sealed into a tubular envelope comprising a liner 22 on rear mat 20 and a liner 23 on the front mat 2|, the front liner having extended folded flanges 24 and 25 which extend to and lap over the rear'liner 22 and are secured thereto at regions 26 and 21. Each mat has an interior liner, such as waterproofed creped paper secured to the mat, as indicated at 28 and 29, but the interior liners, or the mat laminations, are! unattached at their opposing faces. A unit according to this construction may be made slightly wider than the space between studs, for example as at 30, (to which it may be glued or cemented) so that upon insertion the unit will bow as illustrated and form an air space 3| between the laminations. If desired a sheet of rigid material such as corrugated board 32 may be placed between the laminations having a width nearly equal to the distance between the studs and therefore less than the width of the spasms laminations. By reason of these relations the board may be freely inserted from the end of a length and need not be incorporated in the structure in the process of manufacture. The board 32 will give rigidity where this feature is desired. The bowing of the laminated structure imparts a lateral pressure against the studs 29 and 30 and more effectively seals the joints.
In Figs. 3 to 6 multi-ply units are illustrated with more than two laminations and with other features. In Fig. 3 the structure is similar to that in Fig. 1. Three mats 35, 3B and 31 are included in the package or tubular envelope formed by sealing the exterior liners 38 and 39, with provision of flanges." coextensive with the surface of liner 39. Separating liners 4| and 42 are shown between the mats, each being cemented to the adjacent mat. Asphalted paper is suitable.
In Fig. 4 three mats 4|, 42 and 43 are piled together without separating liners, the single lines indicating the absence of separating means. Rigidity may be imparted to the unit by placing more rigid material such as chip-board along the edges. In the present instance the exterior liners 44 and 45 are secured together as heretofore described to form the tubular envelope, but the edges are reinforced by angular lengths of chip-board. The middle section 46 lies adjacent the edges of the mats and defines the width. Another section 4'I forms a square edge with section 46 and protectsthe corner. The front liner 45 extends sufliciently beyond section 4i to be .sealed to back liner 44. If desired, the ordinarily flexible flange formed by the fold in front liner 45 may be stiffened by incorporating a section 48 of the chip-board between the two thicknesses'of the liner 45. The stiffening sections 48-464'l are preferably integral.
Although I have illustrated several forms of insulation units which are flexible in all directions, and one form (Fig.2) which is substantially rigid by reason of the one layer of corrugated insulating filler, it is to be understood that the invention is not limited to flexibility in the filler. The flexibility in two directions is desirable and advantageous. The one direction of flexibility which permits a strip to be rolled for shipping, and for convenience in installing. is
the more important feature of the flexibility. It
is to be understood therefore that the filler may vary in flexibility from the rigid corrugated board to the universally flexible fiber mat, without in any way departing from the broadest features of this invention.
In Fig. 5 a modified form of Fig. 4 is shown. Laminated mats 58, 5| and 52 are preferably related like those in Fig. 3, but they may be related like those in Fig. 4, or like the layers of Fig. 2. They are successively narrower from front to rear and provide a tapered or bevelled edge length of insulation. Chip board or other stiffening means 53 is contained within the enveloping liners as in Fig. 4 and defines a flat substantial inclined surface from rear to front. The stiffening means is represented as a threesectioned length having one section 54 contained in the flange formed by the fold in the front facing.
. In Fig. 6 a modified form is shown in which flanges 58 are formed at the edges rearwardly of the front face. Front liner 59 is first carried around corner 60, then part way up the side to a point 6|, here located about midway of the thickness, and thence outwardly to 62 where it is folded upon itself and preferably cemented to itself, until it again reaches the mat at 63, from which point it continuesaround corner 64 for sealing at 65 to rear liner 66.
. It is to be understood that flanges 58 may be located either flush with the front face, or
flush with the rear face, and they-maybelo- ,l
It is also to be understood that the material from which the mounting flange is constructed is not necessarily integral with and an extension of one of the facing liners. The tubular envelope carrying the two mounting flanges may be pieced wherever it is desirable and flanges may be attached to the envelope by other means than by the disclosed integral construction.
The numerous embodiments above described will permit of a multiplicity of methods of mounting the material in structures. They are particularly adapted and in practice are constructed for mounting between studs of standard spacing. They are suitable for use behind wall board coverings or behind lath and plaster. They are particularly constructed to reduce labor in installation.
In Fig. '7 two studs 18 and II as in a wall have a strip of flanged envelope insulation 12 mounted therebetween. The pieces 13 represent what may be the outside boards on a house,
- or equivalent covering. The insulation 12 is placed deep into the recess between studs 18 and II and lies against the boarding. Each flange 14 on the insulation lies on the inside surface of the studs and may be secured thereto as by glue or otherwise, but preferably by a strip I5 nailed to the stud at suitable intervals.
In Fig. 8 spaced studs 16 and H carry a wall board covering 18 behind which a section of insulation 19 is tucked into the recess between the studs, with its one surface 80 abutting the wall board. The flanges 8| lie between the wall board and the stud and the securing of the 1. Insulation comprising in combination a flexible flat core of insulating material, a liner cemented to one face of the core, and a liner cemented to and covering the other face of the core, one liner being wider than the core and projecting beyond two opposite edges of the core, each of the projecting parts of said liner being folded upon itself along a line intermediate the bounds of the projecting portion to provide a flange, and the extreme edge of each projecting portion passing across the edge of the core and being cemented to the other liner.
2. Insulation comprising in combination two superimposed lengths of flexible cores of insulation material, a liner secured to each of the abutting faces of the cores, a flat elongated open-ended sleeve containing said cores, said liners being uncemented to each other, whereby the cores are free to bow and separate with edgewise compression of the enveloped cores,
and mounting flanges projecting from the sleeve in the vicinity of the edges thereof, the insulation being thus provided in a length adapted for crosswise severing.
3. Insulation comprising in combination a flat mat of fibrous material, a. tubular envelope containing said mat, flanges projecting from said envelope in the vicinity of the edges of the mat, said flanges being formed of two thicknesses of the envelope adjacent a. fold therein, and stiffening means between the said two thicknesses of the envelope. 1
4. Insulation comprising in combination a flat mat of fibrous material, a tubular envelope containing said mat, flanges projecting from said envelope in the vicinity of the edges of the mat, said flanges being formed of two thicknesses of the envelope adjacent a fold therein, and stiffening means between the said two thicknesses of the envelope, said stiffening meansbeing extended within the envelope from the flange to cover a portion of the edge of the mat.
. 5. Insulation comprising in combination a flat mat of fibrous material, a tubular envelope containing said mat, flanges projecting from said envelope in the vicinity of the edges of the mat, said flanges being formed of two thicknesses of the envelope adjacent a fold therein,
and stiffening means between the said two thicknesses of the envelope, said stiffening means being extended within the envelope from the flange to cover a portion of the edge of the mat, and being bent at a corner of the mat thereby having a portion on one face of the mat.
6. Insulation comprising in combination a flexible elongated flat sleeve which is stretchable in the direction of its length, a stretchable insulating core housed in said sleeve and secured thereto, and external mounting flanges in the vicinity of two opposite edges of said sleeve.
'7. Insulation comprising in combination a flat elongated sleeve of crepe'd sheet material, a flexible stretchable insulation core housed in said sleeve and secured thereto, and external mounting flanges in the vicinity of two opposite edges of said sleeve.
8. Insulation comprising in combination a flat open-ended sleeve, two separate insulating cores housed within said sleeve, each core being adhesively united to an interior face of .said sleeve,
and external mounting flanges in the vicinity of two opposite edges of i said sleeve.
. 9. Insulation 'comprising in combination a flat open-ended sleeve, two separate insulating cores housed within said sleeve, each core being adhesively united to an interior face of said sleeve, flat separating means removably mounted between said two cores, and external mounting flanges in the vicinity of two opposite edges of said sleeve.
'10. Insulation comprising in combination a flat open-ended sleeve, and two facially separable insulating cores housed within said sleeve, each core being adhesively united to an interior face of said sleeve.
11. Insulation comprising in combination a flat open-ended sleeve, two separate insulating cores housed within said sleeve, each core being adhesively united to an interior face of said sleeve, and flat separating means removably held between said two cores.
12. Insulation comprising in combination a flat open-ended sleeve, two separate insulating cores housed within said sleeve, each core being adhesively united to an interior. face of said sleeve, and rigid fiat separating means adapted to be inserted endwise of the sleeve between said two cores.
. 13. An insulation structure comprislzw two adjacent and separable flat flexible insulation cores in separable tace-to-iface relation, and an.
open-ended tubular sleeve closely encompassing said two cores, whereby compression edgewise of the cores, and lengthwise 01' the sleeve, causes thegtwo cores to bow and separate i'orming more rigid unit.
, ALLEN L. BPAFFORD.
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Cited By (31)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2528771A (en) * 1944-06-14 1950-11-07 Emil L Mustee Sectional casing for fluid heaters
US2584194A (en) * 1946-11-02 1952-02-05 Cooper C Drury Securing device
US2890499A (en) * 1956-07-25 1959-06-16 Earl F Cutler Insulation
US3012603A (en) * 1959-02-19 1961-12-12 Reynolds Tobacco Co R Apparatus and method for the manufacture of foil-paper laminates and corresponding product
US3226284A (en) * 1961-11-01 1965-12-28 V W Corp Wall board having compressible edge structure
EP0002170A2 (en) * 1977-09-26 1979-05-30 Knut Akesson Method of improving the thermal insulating ability of a building construction
US4182085A (en) * 1978-05-17 1980-01-08 Elson Jesse M Method and structure for insulating a wall or ceiling
US4184311A (en) * 1977-03-25 1980-01-22 Rood Leonard D Fire retardant insulation
US4546590A (en) * 1982-08-04 1985-10-15 Finch Harry E Partition wall system and components therefor
US4573298A (en) * 1981-03-23 1986-03-04 Thermal Design, Inc. Building insulation system
US4700521A (en) * 1986-04-28 1987-10-20 Cover Craig H Multilayered insulation batt for building structures
US4952441A (en) * 1988-02-09 1990-08-28 Union Camp Corporation Thermal insulation batt
US4967519A (en) * 1988-09-01 1990-11-06 Outer-Seal, Inc. Exterior interface sealing system
US5119605A (en) * 1988-02-28 1992-06-09 Sieber Steve C Exterior interface sealing system
US5277955A (en) * 1989-12-08 1994-01-11 Owens-Corning Fiberglas Technology Inc. Insulation assembly
US5318644A (en) * 1993-06-02 1994-06-07 Owens-Corning Fiberglas Technology Inc. Method and apparatus for making an insulation assembly
US5545279A (en) * 1992-12-30 1996-08-13 Hall; Herbert L. Method of making an insulation assembly
DE19618587A1 (en) * 1996-04-12 1997-10-16 Hufer Hans Peter Dipl Ing Fh Substructure used in wooden frame for roof of building
US5848509A (en) * 1995-08-31 1998-12-15 Certainteed Corporation Encapsulated insulation assembly
US6083603A (en) * 1998-01-30 2000-07-04 Owens Corning Fiberglas Technology, Inc. Flanged insulation assembly and method of making
US6110312A (en) * 1997-12-29 2000-08-29 Arnold; Gregory A. Process of making a seal and apparatus for sealing doublewide manufactured homes
WO2003043811A1 (en) * 2001-11-19 2003-05-30 Knauf Insulation Sa Encapsulated insulating product and method for making same
US20040031212A1 (en) * 2000-11-08 2004-02-19 Marjan Sircelj Insulation of slanting roof structures
US20060201089A1 (en) * 2005-03-09 2006-09-14 Duncan Richard S Spray foam and mineral wool hybrid insulation system
US20070003734A1 (en) * 2005-06-27 2007-01-04 Shumate Monroe W Reinforced insulation product and system suitable for use in an aircraft
US20070045469A1 (en) * 2005-08-23 2007-03-01 Shumate Monroe W Insulation product and system suitable for use in an aircraft
US20070210210A1 (en) * 2005-08-23 2007-09-13 Shumate Monroe W Reinforced insulation product and system suitable for use in an aircraft
US20080135683A1 (en) * 2006-12-08 2008-06-12 Airbus Deutschland Gmbh Thermal Insulating Element
US20190257077A1 (en) * 2011-10-17 2019-08-22 Mark A. Aspenson Building insulation system
US10400443B2 (en) * 2016-08-17 2019-09-03 Pratt Corrugated Holdings, Inc. Insulation batt
US10494809B2 (en) 2016-07-07 2019-12-03 Knauf Insulation, Inc. Insulative material and method for installation

Cited By (43)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2528771A (en) * 1944-06-14 1950-11-07 Emil L Mustee Sectional casing for fluid heaters
US2584194A (en) * 1946-11-02 1952-02-05 Cooper C Drury Securing device
US2890499A (en) * 1956-07-25 1959-06-16 Earl F Cutler Insulation
US3012603A (en) * 1959-02-19 1961-12-12 Reynolds Tobacco Co R Apparatus and method for the manufacture of foil-paper laminates and corresponding product
US3226284A (en) * 1961-11-01 1965-12-28 V W Corp Wall board having compressible edge structure
US4184311A (en) * 1977-03-25 1980-01-22 Rood Leonard D Fire retardant insulation
EP0002170A2 (en) * 1977-09-26 1979-05-30 Knut Akesson Method of improving the thermal insulating ability of a building construction
EP0002170A3 (en) * 1977-09-26 1979-08-22 Knut Akesson Method of improving the thermal insulating ability of a building construction
US4182085A (en) * 1978-05-17 1980-01-08 Elson Jesse M Method and structure for insulating a wall or ceiling
US4573298A (en) * 1981-03-23 1986-03-04 Thermal Design, Inc. Building insulation system
US4546590A (en) * 1982-08-04 1985-10-15 Finch Harry E Partition wall system and components therefor
US4700521A (en) * 1986-04-28 1987-10-20 Cover Craig H Multilayered insulation batt for building structures
US4952441A (en) * 1988-02-09 1990-08-28 Union Camp Corporation Thermal insulation batt
US5119605A (en) * 1988-02-28 1992-06-09 Sieber Steve C Exterior interface sealing system
US4967519A (en) * 1988-09-01 1990-11-06 Outer-Seal, Inc. Exterior interface sealing system
US5277955A (en) * 1989-12-08 1994-01-11 Owens-Corning Fiberglas Technology Inc. Insulation assembly
US5545279A (en) * 1992-12-30 1996-08-13 Hall; Herbert L. Method of making an insulation assembly
US5318644A (en) * 1993-06-02 1994-06-07 Owens-Corning Fiberglas Technology Inc. Method and apparatus for making an insulation assembly
US5848509A (en) * 1995-08-31 1998-12-15 Certainteed Corporation Encapsulated insulation assembly
DE19618587A1 (en) * 1996-04-12 1997-10-16 Hufer Hans Peter Dipl Ing Fh Substructure used in wooden frame for roof of building
DE19618587C2 (en) * 1996-04-12 2001-07-19 Kleemann Hufer Christin Process for erecting a substructure and suitable roof extension element
US6245179B1 (en) 1996-07-22 2001-06-12 Gregory A. Arnold Process of making a seal and apparatus for sealing doublewide manufactured homes
US6110312A (en) * 1997-12-29 2000-08-29 Arnold; Gregory A. Process of making a seal and apparatus for sealing doublewide manufactured homes
US6083603A (en) * 1998-01-30 2000-07-04 Owens Corning Fiberglas Technology, Inc. Flanged insulation assembly and method of making
US6221464B1 (en) 1998-01-30 2001-04-24 Bharat D. Patel Flanged insulation assembly and method of making
US20040031212A1 (en) * 2000-11-08 2004-02-19 Marjan Sircelj Insulation of slanting roof structures
WO2003043811A1 (en) * 2001-11-19 2003-05-30 Knauf Insulation Sa Encapsulated insulating product and method for making same
BE1014482A3 (en) * 2001-11-19 2003-11-04 Alcopor Knauf Technology Ag Encapsulated insulating material, comprises fibre mat with covered main and lateral surfaces and vapor-proof under layer
US20060053559A1 (en) * 2001-11-19 2006-03-16 Pierre Vantilt Encapsulated insulating product and method for making same
US20060201089A1 (en) * 2005-03-09 2006-09-14 Duncan Richard S Spray foam and mineral wool hybrid insulation system
US20070003734A1 (en) * 2005-06-27 2007-01-04 Shumate Monroe W Reinforced insulation product and system suitable for use in an aircraft
US7278608B2 (en) * 2005-06-27 2007-10-09 Johns Manville Reinforced insulation product and system suitable for use in an aircraft
US20070210210A1 (en) * 2005-08-23 2007-09-13 Shumate Monroe W Reinforced insulation product and system suitable for use in an aircraft
US20070045469A1 (en) * 2005-08-23 2007-03-01 Shumate Monroe W Insulation product and system suitable for use in an aircraft
US7367527B2 (en) * 2005-08-23 2008-05-06 Johns Manville Reinforced insulation product and system suitable for use in an aircraft
US7374132B2 (en) * 2005-08-23 2008-05-20 Johns Manville Insulation product and system suitable for use in an aircraft
US20080135683A1 (en) * 2006-12-08 2008-06-12 Airbus Deutschland Gmbh Thermal Insulating Element
US8079194B2 (en) * 2006-12-08 2011-12-20 Airbus Deutschland Gmbh Thermal insulating element
US20190257077A1 (en) * 2011-10-17 2019-08-22 Mark A. Aspenson Building insulation system
US10494809B2 (en) 2016-07-07 2019-12-03 Knauf Insulation, Inc. Insulative material and method for installation
US10400443B2 (en) * 2016-08-17 2019-09-03 Pratt Corrugated Holdings, Inc. Insulation batt
US10435884B2 (en) 2016-08-17 2019-10-08 Pratt Corrugated Holdings, Inc. Insulation batt
US10619346B2 (en) 2016-08-17 2020-04-14 Pratt Corrugated Holdings, Inc. Insulation batt

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