CA1161879A - Roof flashing structures - Google Patents
Roof flashing structuresInfo
- Publication number
- CA1161879A CA1161879A CA000376547A CA376547A CA1161879A CA 1161879 A CA1161879 A CA 1161879A CA 000376547 A CA000376547 A CA 000376547A CA 376547 A CA376547 A CA 376547A CA 1161879 A CA1161879 A CA 1161879A
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- Prior art keywords
- housing
- annular
- wall
- skirt
- channel
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired
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Abstract
TITLE: IMPROVEMENTS IN ROOF FLASHING STRUCTURES
ABSTRACT
A roof flashing structure of the type having a generally flat plate with an upstanding housing integrally attached thereto can be improved by forming the upmost periphery of said housing such that it has an inner wall and an outer wall with a channel in between these walls.
An elastomeric sealing member has a support wall with a plurality of annular pipe sealing flanges extending from said support wall. Also attaching to the support wall is a skirt which extends downward from the annular wall.
The skirt is shaped and dimensioned to mimic the shape of the interior of the channel. The skirt is attached to the channel via mechanical locking passageways in conjunction with a thermal bonding. The thermal bond is formed by a process wherein the elastomeric sealing member is molded into the housing using a compatible plastic for the housing and a compatible rubbery material for the sealing member,
ABSTRACT
A roof flashing structure of the type having a generally flat plate with an upstanding housing integrally attached thereto can be improved by forming the upmost periphery of said housing such that it has an inner wall and an outer wall with a channel in between these walls.
An elastomeric sealing member has a support wall with a plurality of annular pipe sealing flanges extending from said support wall. Also attaching to the support wall is a skirt which extends downward from the annular wall.
The skirt is shaped and dimensioned to mimic the shape of the interior of the channel. The skirt is attached to the channel via mechanical locking passageways in conjunction with a thermal bonding. The thermal bond is formed by a process wherein the elastomeric sealing member is molded into the housing using a compatible plastic for the housing and a compatible rubbery material for the sealing member,
Description
TITLE: IMPROVEMENTS IN ROOF FLAS~IMG STRUCTURES
CROSS REFERENCE TO RELATED APPLICATIO~S
This application is related to my prior U.S. Patent No. 4,010,573.
BACKGROUND OF T~E INVE~TION
~ roof flashing structure is improved by shaping the uppermost periphery of the housing of the flashing such that an elastomeric sealing member can be molded onto the housing and be retained therein by a combina-lo tion of both a mechanical lock and a thermal bond.
In my prior Patent No. 4,010,578 I described certain roof ~lashing structureE~ having features which provide them with advantages not found in the old type of flashing structures made of sheet metal and which were sealed to a pipe with calking or other mastic-type materials~ While my prior roof flashing structures axe improvements over the sheet me~al-type previously used it has been found that the plumbers and other construc~
tion personnel who install them have a tendancy to dislodge the sealing rings from the housing during installation thereof.
For adequate service the housing of a roof flashing structure must be ~ormed of a sti~f, resilient material which will mainta~n its proper shape during both the cold o~ winter and the heat of summer. However, the sealing member must be formed o~ a flexible material which can conform with and form a tight seal against the surface of the pipe which moves within the seal as it expands and contracts~
The prior roo~ flashing structures simply do not `` 1 ~
meet the criteria wherein the housing and the sealing member must be formed of different types of materials because of their functions and the criteria of a one piece structure having no separate parts which can be lost or dislodged from one another by overzealous con-struction personnel.
SUMMARY OF THE INVENTION
In view of the above it is considered that there exists a need for a roof flashing structure wherein the housing is formed of a rigid material and the sealing member is formed of an elastomeric material, but both materials are integrated together into a single struc-ture. It is, therefore, a broad object of this inven-tion to fulfill this need~ It is a further object of this invention to provide a structure fitting the cri-teria of the previous sentence which additionally, be-cause of design characteristics, can be mass produced by molding and thus be maintained as an economically priced construction item.
In accordance with these objects and others which will become apparent from the remainder of this specifi-cation a roof flashing structure of the type used to ~orm a seal between a roof and a pipe extending through a roof which utilizes a ~lat plate having a centralized opening of a larger dimension than the pipe and an upstanding tapered housing having an internal dimens~on larger than said pipe, said housing extending upwardly from said plate and said centralized hole in said plate forming the lowermost opening in said housing is im-proved by having the uppermost periphery of said housing containing a generally upwardly opening annular channel means dividing said uppermost periphery into an inner annular support means and an outer annular support means; a resilient elastomeric annular sealing means having a generally upstanding annular wall with an annu-lar skirt means projecting downward from said annular wall means and a plurality of sealing flanges extending circularly around said wall and projecting radially toward the center of said sealing means, said flanges each being independently capable of engaging with and forming a seal with said pipe is attached to said hous-ing by said annular skirt means fitting into said annu-lar channel means such that said skirt means fits within said inner and said outer annular support means and said annular skirt means is thermally bonded to at least said inner annular support means which lock the sealing means to said housing preventing said sealing means from sepa-rating from said housing.
Further, one or the other of said annular support means, perferably said inner support means, can include a plurality of passageway means which can mechanically lock with a plurality of projections formed on the surface of said skirt means of said sealing member.
Along with the mechanical locking achieved between the projections and the passageways a thermal bond can also be formed between the passageways and the projections.
In the preferred method of constructing the roof flashing structures of this invention the housing member is molded using one die and after molding is separated from said die and placed in association with a second die which will define portions of the shape of the sealing member. The sealing member is then molded di-rectly onto the housing and during this process both a mechanical lock which is formed because of the shape of the housing and the sealing member and a thermal or chemical lock which is formed because of the compatibil-ity of the individual materials forming the housing and the sealing member are achieved.
8~
BRIEF DESCRIPTION OF T~E DRAWINGS
This invantion will be better understood when taken in conjunction with the drawing wherein:
Fig~ 1 is a side elevational Yiew in section show-ing the roof flashing structure of the invention in place on a roof shown in phantom and including a pipe extending through the flashing structure also in phan-tom;
Fig. 2 is a side elevational view in section about the lines 2-2 of Fig. 1 showing the uppermost portion of the housing in greater detail;
Fig, 3 is a projectional view in section of the uppermost portion of the housing prior to attachment of the sealing member to the housing.
The invention shown in the drawing and described in the specification is cons~ructed to incorporate certain principles and concepts as are set forth and defined in the claims appended to this specification. Those skilled in the art to which this invention pertains will realize that these principles and concepts could be utilized in a number o~ embodimerlts somewhat differently appearing and differently constructed from the preferred embodiment illustrated in the specification and draw-ings. For this reason this invention is to be construed in view o~ the claims and is not to be construed as being limited to the exact embodiment illustrated.
DETAILED DESCRIPTION
The roof flashing structure 10 o~ the invention has a ~lat plate 12 having a central hole or opening 14 to which is attached a housing member 16. The flat plate 12 fits flush to the subroofing 18 and shingles or othar roofing material 20 are appropriately attached as illus-~ 3 ~ 7 9 trated in Fig. 1. The housing 16 projects upwardly from the plate 12 at an angle which is slightly oblique to a line perpendicular to th~ plate 12~
The structure 10 is useful on a variety of roofs having different pitches because of the angle the hous-ing 16 makes with the plate 12. As seen Fig. 1 the right side of thP housing 16 is almost perpendicular to the plate 12 while the left side is at approximately a forty-five degree angle. If the pipe 22 projects through a flat roof, then the pipe 22 would be approxi-mately colinear with the righ~ hand side of the housing lS, that is the perpendicular side. If the roof to which the ~tructure 10 was attached was as steep as a forty-five degree angle (a slope of a degree not usually encountered) then the pipe 22 would be colinear with the left hand side of the housing 22, Because of this wide variation in angles ~or which the structure 10 i5 useful the sealing member 24 must be able to adapt to the contours of the pipe 22 and form a watertight seal through a variety of angles between the pipe 2~ and the housing 16.
The sealing member ~4 is generally constructed having an essentially upstanding wall 2~ which has a series of sealing flanges 28, 30 and 32 projecting inwardly from the wall 26 toward the center of the sealing member 24. Preferably the lowermost of these flanges 32 extends .inwardly toward the center of the sealing member 24 to a lesser degree than the middle of these flanges 30 which in turn also extends inwardly toward the center to a lesser degree than the uppermost of these flanges 28~ This offsetting of the flanges 28 through 32 insures that a weatherproof tight seal is formed between the sealing member 24 and the pipe 22 no matter what angle the pipe 22 is in respect to the 8 ~ ~
sealing member 24.
Extending downward from the upstanding wall 26 of sealing member 24 is an annular skirt 34. The skirt 34 extends obliquely such that its bottom~most periphery forms a larger circle than a circle formed by the locus of a point located near where skirt 34 attaches to the upstanding wall 26. This oblique angle at which the skirt extends is approximately colinear with the sides of the hosing 16.
The uppermost periphery 36 of the housing, as best seen in Fig. 3, is divided into two walls, an inner wall 38 and an outer wall 40. The walls 38 and 40 are sepa-rated by a channel 42. The shape of the skirt 34 of the sealing member 24 exactly mimics the shape of the chan-nel 42 because of the process wherein the sealing member 24 ls formed as hereinafter described. Extending around the inner wall 38 are a plurality of passageways collec-tively identified by the numeral 44. These passageways 44 extend clear through the inner wall 38 and form a passageway between the channel 42 and the interior o~
housing.
In constructing the structure 10 the housing in-cluding the plate 12 and the inner and outer walls 38 and 40 are molded using suitable molding techniques standard in the art as a one-piece integral unit. This unit is then associated with a proper die in a molding machine and the sealing member 24 is then molded onto the preformed housing. Thus the shape of the skirt 34 is dictated by the shape of the channel 42 and during the molding operation projections or tabs of the mate-rial from which the sealing member 24 is formed are molded into the passageways 44 to form a plurality of tabs or projections 46 which are molded into the pas-sageways 44. This pro~ess both mechanically locks the sealing member 24 to the housing 16 in addition to forming a thermal bond between the material of the housing 16 and the sealing member 24.
Preferably the housing 16 is molded of a thermal plastic such as a polyethylene base TPR thermal plastic.
The sealing member 24 is preferably molded of a poly-ethylene elastomeric materialO Since both of these materials have a polyethylene base they are compa~ible with each other and when subjected to heat during the molding of sealing member 24 the two members become bonded to ~ach other in what could loosely be charac-terized as a "vulcanization~ like process. Not only is the sealing member24 attached to the housing 16 via the interlocking of the projectionæ 46 with passageways 44, but additionally a thermal formed seal is achieved be-tween the skirt 34 and ~.he outer wall 40 and the points along the inner wall 38 around the passageways ~4.
In addition to the method of attaching the sealing member 24 to the housing 16 the shape of the sealing member 24 is such that it contr:lbutes ~o the longevity of the roof flashing structure 10 when actually in-stalled. The upper flange 28 makes an angle slightly larger than a ninety degree angle with the upstanding wall 26. The upstanding wall 26 itself projects upward-ly beyond the uppermost periphery 36 of the housing 14.
When the flange 28 seals against the pipe 22 this seal is the highest point between the structure 10 and the pipe 22. Any dust or grit which accumulates on the exposed surfaces o~ either flange 28 or upstanding wall 26 will immediately be washed away ~rom the pipe 22 when the pipe is exposed to rain or snow, etc. or be blown away by wind. Because of the shape of the sealing member 2~ in respect to the uppermost portion 36 of the housing 16 tnere is no recess or creYice for grit to accumulate in. Other prior used roo~ flashing struc-1 J 6 ~ 8 7 ~
i tures generally have the sealing member recessed within the housing. Dust and grit would therefore tend to accumulate within this recess and would not be washed away by water or blown away by wind. As a pipe expands and contracts when subjected to heat and cold it moves within the sealing member. If dust and grit are re-tained in any kind of recess between the pipe and seal-ing member, contraction of the pipe down through the sealing member drags these particles of dust and grit into the space between the pipe and the sealing member thus destroying the efficiency of the sealing member.
Because the uppermost flange 28 of the roof flashing structure 10 is not recessed dust and grit tend not accumulate on it and thus this dust and grit are not pulled into the space between the pipe 22 and ~he seal-ing member24 with the contractions of the pipe22.
CROSS REFERENCE TO RELATED APPLICATIO~S
This application is related to my prior U.S. Patent No. 4,010,573.
BACKGROUND OF T~E INVE~TION
~ roof flashing structure is improved by shaping the uppermost periphery of the housing of the flashing such that an elastomeric sealing member can be molded onto the housing and be retained therein by a combina-lo tion of both a mechanical lock and a thermal bond.
In my prior Patent No. 4,010,578 I described certain roof ~lashing structureE~ having features which provide them with advantages not found in the old type of flashing structures made of sheet metal and which were sealed to a pipe with calking or other mastic-type materials~ While my prior roof flashing structures axe improvements over the sheet me~al-type previously used it has been found that the plumbers and other construc~
tion personnel who install them have a tendancy to dislodge the sealing rings from the housing during installation thereof.
For adequate service the housing of a roof flashing structure must be ~ormed of a sti~f, resilient material which will mainta~n its proper shape during both the cold o~ winter and the heat of summer. However, the sealing member must be formed o~ a flexible material which can conform with and form a tight seal against the surface of the pipe which moves within the seal as it expands and contracts~
The prior roo~ flashing structures simply do not `` 1 ~
meet the criteria wherein the housing and the sealing member must be formed of different types of materials because of their functions and the criteria of a one piece structure having no separate parts which can be lost or dislodged from one another by overzealous con-struction personnel.
SUMMARY OF THE INVENTION
In view of the above it is considered that there exists a need for a roof flashing structure wherein the housing is formed of a rigid material and the sealing member is formed of an elastomeric material, but both materials are integrated together into a single struc-ture. It is, therefore, a broad object of this inven-tion to fulfill this need~ It is a further object of this invention to provide a structure fitting the cri-teria of the previous sentence which additionally, be-cause of design characteristics, can be mass produced by molding and thus be maintained as an economically priced construction item.
In accordance with these objects and others which will become apparent from the remainder of this specifi-cation a roof flashing structure of the type used to ~orm a seal between a roof and a pipe extending through a roof which utilizes a ~lat plate having a centralized opening of a larger dimension than the pipe and an upstanding tapered housing having an internal dimens~on larger than said pipe, said housing extending upwardly from said plate and said centralized hole in said plate forming the lowermost opening in said housing is im-proved by having the uppermost periphery of said housing containing a generally upwardly opening annular channel means dividing said uppermost periphery into an inner annular support means and an outer annular support means; a resilient elastomeric annular sealing means having a generally upstanding annular wall with an annu-lar skirt means projecting downward from said annular wall means and a plurality of sealing flanges extending circularly around said wall and projecting radially toward the center of said sealing means, said flanges each being independently capable of engaging with and forming a seal with said pipe is attached to said hous-ing by said annular skirt means fitting into said annu-lar channel means such that said skirt means fits within said inner and said outer annular support means and said annular skirt means is thermally bonded to at least said inner annular support means which lock the sealing means to said housing preventing said sealing means from sepa-rating from said housing.
Further, one or the other of said annular support means, perferably said inner support means, can include a plurality of passageway means which can mechanically lock with a plurality of projections formed on the surface of said skirt means of said sealing member.
Along with the mechanical locking achieved between the projections and the passageways a thermal bond can also be formed between the passageways and the projections.
In the preferred method of constructing the roof flashing structures of this invention the housing member is molded using one die and after molding is separated from said die and placed in association with a second die which will define portions of the shape of the sealing member. The sealing member is then molded di-rectly onto the housing and during this process both a mechanical lock which is formed because of the shape of the housing and the sealing member and a thermal or chemical lock which is formed because of the compatibil-ity of the individual materials forming the housing and the sealing member are achieved.
8~
BRIEF DESCRIPTION OF T~E DRAWINGS
This invantion will be better understood when taken in conjunction with the drawing wherein:
Fig~ 1 is a side elevational Yiew in section show-ing the roof flashing structure of the invention in place on a roof shown in phantom and including a pipe extending through the flashing structure also in phan-tom;
Fig. 2 is a side elevational view in section about the lines 2-2 of Fig. 1 showing the uppermost portion of the housing in greater detail;
Fig, 3 is a projectional view in section of the uppermost portion of the housing prior to attachment of the sealing member to the housing.
The invention shown in the drawing and described in the specification is cons~ructed to incorporate certain principles and concepts as are set forth and defined in the claims appended to this specification. Those skilled in the art to which this invention pertains will realize that these principles and concepts could be utilized in a number o~ embodimerlts somewhat differently appearing and differently constructed from the preferred embodiment illustrated in the specification and draw-ings. For this reason this invention is to be construed in view o~ the claims and is not to be construed as being limited to the exact embodiment illustrated.
DETAILED DESCRIPTION
The roof flashing structure 10 o~ the invention has a ~lat plate 12 having a central hole or opening 14 to which is attached a housing member 16. The flat plate 12 fits flush to the subroofing 18 and shingles or othar roofing material 20 are appropriately attached as illus-~ 3 ~ 7 9 trated in Fig. 1. The housing 16 projects upwardly from the plate 12 at an angle which is slightly oblique to a line perpendicular to th~ plate 12~
The structure 10 is useful on a variety of roofs having different pitches because of the angle the hous-ing 16 makes with the plate 12. As seen Fig. 1 the right side of thP housing 16 is almost perpendicular to the plate 12 while the left side is at approximately a forty-five degree angle. If the pipe 22 projects through a flat roof, then the pipe 22 would be approxi-mately colinear with the righ~ hand side of the housing lS, that is the perpendicular side. If the roof to which the ~tructure 10 was attached was as steep as a forty-five degree angle (a slope of a degree not usually encountered) then the pipe 22 would be colinear with the left hand side of the housing 22, Because of this wide variation in angles ~or which the structure 10 i5 useful the sealing member 24 must be able to adapt to the contours of the pipe 22 and form a watertight seal through a variety of angles between the pipe 2~ and the housing 16.
The sealing member ~4 is generally constructed having an essentially upstanding wall 2~ which has a series of sealing flanges 28, 30 and 32 projecting inwardly from the wall 26 toward the center of the sealing member 24. Preferably the lowermost of these flanges 32 extends .inwardly toward the center of the sealing member 24 to a lesser degree than the middle of these flanges 30 which in turn also extends inwardly toward the center to a lesser degree than the uppermost of these flanges 28~ This offsetting of the flanges 28 through 32 insures that a weatherproof tight seal is formed between the sealing member 24 and the pipe 22 no matter what angle the pipe 22 is in respect to the 8 ~ ~
sealing member 24.
Extending downward from the upstanding wall 26 of sealing member 24 is an annular skirt 34. The skirt 34 extends obliquely such that its bottom~most periphery forms a larger circle than a circle formed by the locus of a point located near where skirt 34 attaches to the upstanding wall 26. This oblique angle at which the skirt extends is approximately colinear with the sides of the hosing 16.
The uppermost periphery 36 of the housing, as best seen in Fig. 3, is divided into two walls, an inner wall 38 and an outer wall 40. The walls 38 and 40 are sepa-rated by a channel 42. The shape of the skirt 34 of the sealing member 24 exactly mimics the shape of the chan-nel 42 because of the process wherein the sealing member 24 ls formed as hereinafter described. Extending around the inner wall 38 are a plurality of passageways collec-tively identified by the numeral 44. These passageways 44 extend clear through the inner wall 38 and form a passageway between the channel 42 and the interior o~
housing.
In constructing the structure 10 the housing in-cluding the plate 12 and the inner and outer walls 38 and 40 are molded using suitable molding techniques standard in the art as a one-piece integral unit. This unit is then associated with a proper die in a molding machine and the sealing member 24 is then molded onto the preformed housing. Thus the shape of the skirt 34 is dictated by the shape of the channel 42 and during the molding operation projections or tabs of the mate-rial from which the sealing member 24 is formed are molded into the passageways 44 to form a plurality of tabs or projections 46 which are molded into the pas-sageways 44. This pro~ess both mechanically locks the sealing member 24 to the housing 16 in addition to forming a thermal bond between the material of the housing 16 and the sealing member 24.
Preferably the housing 16 is molded of a thermal plastic such as a polyethylene base TPR thermal plastic.
The sealing member 24 is preferably molded of a poly-ethylene elastomeric materialO Since both of these materials have a polyethylene base they are compa~ible with each other and when subjected to heat during the molding of sealing member 24 the two members become bonded to ~ach other in what could loosely be charac-terized as a "vulcanization~ like process. Not only is the sealing member24 attached to the housing 16 via the interlocking of the projectionæ 46 with passageways 44, but additionally a thermal formed seal is achieved be-tween the skirt 34 and ~.he outer wall 40 and the points along the inner wall 38 around the passageways ~4.
In addition to the method of attaching the sealing member 24 to the housing 16 the shape of the sealing member 24 is such that it contr:lbutes ~o the longevity of the roof flashing structure 10 when actually in-stalled. The upper flange 28 makes an angle slightly larger than a ninety degree angle with the upstanding wall 26. The upstanding wall 26 itself projects upward-ly beyond the uppermost periphery 36 of the housing 14.
When the flange 28 seals against the pipe 22 this seal is the highest point between the structure 10 and the pipe 22. Any dust or grit which accumulates on the exposed surfaces o~ either flange 28 or upstanding wall 26 will immediately be washed away ~rom the pipe 22 when the pipe is exposed to rain or snow, etc. or be blown away by wind. Because of the shape of the sealing member 2~ in respect to the uppermost portion 36 of the housing 16 tnere is no recess or creYice for grit to accumulate in. Other prior used roo~ flashing struc-1 J 6 ~ 8 7 ~
i tures generally have the sealing member recessed within the housing. Dust and grit would therefore tend to accumulate within this recess and would not be washed away by water or blown away by wind. As a pipe expands and contracts when subjected to heat and cold it moves within the sealing member. If dust and grit are re-tained in any kind of recess between the pipe and seal-ing member, contraction of the pipe down through the sealing member drags these particles of dust and grit into the space between the pipe and the sealing member thus destroying the efficiency of the sealing member.
Because the uppermost flange 28 of the roof flashing structure 10 is not recessed dust and grit tend not accumulate on it and thus this dust and grit are not pulled into the space between the pipe 22 and ~he seal-ing member24 with the contractions of the pipe22.
Claims (12)
PROPERTY OR PRIVILEGE IS CLAIMED ARE DEFINED AS FOLLOWS:
1. A roof flashing structure used to form a seal between a roof and a pipe extending through the roof, of the type wherein a generally flat plate having a cen-tralized opening of a larger dimension than said pipe and an upstanding tapered housing having an internal dimension larger than said pipe are integrally formed of a rigid material such that said housing extends upward from said plate and said centralized hole in said plate forms the lowermost opening in said housing the improve-ment which comprises:
the uppermost periphery of said housing containing a generally upward opening annular channel means divid-ing said uppermost periphery into an inner annular sup-port means and an outer annular support means;
a resilient elastomeric annular sealing means hav-ing a generally upstanding annular wall and an annular skirt means projecting downward from said annular wall, said upstanding annular wall having a plurality of seal-ing flanges extending circularly around said wall and projecting radially toward the center of said sealing means, said flanges each being independently capable of engaging with and forming a seal with said pipe;
said annular skirt means fitting into said annular channel means so as to position said annular skirt means between said inner annular support means and said outer annular support means;
said annular skirt means being thermally bonded to at least said inner annular support means locking said annular sealing means in said annular channel means and maintaining said annular sealing means fixedly held in said uppermost periphery of said housing,
the uppermost periphery of said housing containing a generally upward opening annular channel means divid-ing said uppermost periphery into an inner annular sup-port means and an outer annular support means;
a resilient elastomeric annular sealing means hav-ing a generally upstanding annular wall and an annular skirt means projecting downward from said annular wall, said upstanding annular wall having a plurality of seal-ing flanges extending circularly around said wall and projecting radially toward the center of said sealing means, said flanges each being independently capable of engaging with and forming a seal with said pipe;
said annular skirt means fitting into said annular channel means so as to position said annular skirt means between said inner annular support means and said outer annular support means;
said annular skirt means being thermally bonded to at least said inner annular support means locking said annular sealing means in said annular channel means and maintaining said annular sealing means fixedly held in said uppermost periphery of said housing,
2, The roof flasing struc~ure of claim 1 wherein:
said inner annular support means comprlses an inner upstanding wall integrally formed with said housing and said outer annular support means comprises an outer upstanding support wall integrally formed with said housing;
said inner upstanding wall and said outer upstand-ing wall both being concentric about an axis passing longitudinally through said housing, said inner upstand-ing wall lying inside of said outer upstanding wall.
said inner annular support means comprlses an inner upstanding wall integrally formed with said housing and said outer annular support means comprises an outer upstanding support wall integrally formed with said housing;
said inner upstanding wall and said outer upstand-ing wall both being concentric about an axis passing longitudinally through said housing, said inner upstand-ing wall lying inside of said outer upstanding wall.
3. The roof flashing structure of claim 2 wherein:
said annular channel means comprises a channel between said inner upstanding wall and said outer up-standing wall and said skirt means comprises an annular skirt member dimensioned to fit within said channel and sealing against both of said inner upstanding wall and said outer upstanding wall.
said annular channel means comprises a channel between said inner upstanding wall and said outer up-standing wall and said skirt means comprises an annular skirt member dimensioned to fit within said channel and sealing against both of said inner upstanding wall and said outer upstanding wall.
4. The roof flashing structure of claim 3 wherein:
said inner upstanding wall includes a plurality of passageways spaced around said inner upstanding wall, said passageways forming a plurality of openings between said annular channel and the interior of said housing;
said annular skirt including a plurality of projec-tion means equal in number to said passageways and spaced about said annular skirt in an array identical to the spacing of said passageways, said projection means fitting into and filling said passageways forming a mechanical bond between said annular skirt and said inner upstanding wall.
said inner upstanding wall includes a plurality of passageways spaced around said inner upstanding wall, said passageways forming a plurality of openings between said annular channel and the interior of said housing;
said annular skirt including a plurality of projec-tion means equal in number to said passageways and spaced about said annular skirt in an array identical to the spacing of said passageways, said projection means fitting into and filling said passageways forming a mechanical bond between said annular skirt and said inner upstanding wall.
5. The roof flashing structure of claim 4 wherein:
said housing including said inner and said outer support walls is formed of a polyethylene base thermal plastic and said resilient elastomeric sealing means is formed if a polyethylene base rubber such that when said polyethylene based rubber in a heated state contacts said polyethylene based plastic, upon cooling a bond is formed between said rubber and said plastic.
said housing including said inner and said outer support walls is formed of a polyethylene base thermal plastic and said resilient elastomeric sealing means is formed if a polyethylene base rubber such that when said polyethylene based rubber in a heated state contacts said polyethylene based plastic, upon cooling a bond is formed between said rubber and said plastic.
6. The roof flashing structure of claim 5 wherein:
said channel is V-shaped in cross-section and said inner upstanding wall and said outer upstanding wall both are upstanding essentially straight walls forming the sides of said V-shaped channel;
said annular skirt is V-shaped in cross-section having a shape exactly corresponding to the shape of said channel and fitting within said channel such that there is no void spaces between said skirt and said inner upstanding wall and said outer upstanding wall.
said channel is V-shaped in cross-section and said inner upstanding wall and said outer upstanding wall both are upstanding essentially straight walls forming the sides of said V-shaped channel;
said annular skirt is V-shaped in cross-section having a shape exactly corresponding to the shape of said channel and fitting within said channel such that there is no void spaces between said skirt and said inner upstanding wall and said outer upstanding wall.
7. The roof flashing structure of claim 6 wherein:
said plurality of sealing flanges are positioned one above another and the uppermost of these flanges meets with and is integrally formed with the uppermost periphery of said sealing means annular wall such that said uppermost flange and said annular wall form an angle with each other of at least ninety degrees.
said plurality of sealing flanges are positioned one above another and the uppermost of these flanges meets with and is integrally formed with the uppermost periphery of said sealing means annular wall such that said uppermost flange and said annular wall form an angle with each other of at least ninety degrees.
8. The roof flashing structure of claim 7 wherein:
at least said uppermost flange and the portion of said annular wall wherein said uppermost flange is attached project above the uppermost periphery of said housing.
at least said uppermost flange and the portion of said annular wall wherein said uppermost flange is attached project above the uppermost periphery of said housing.
9. A roof flashing structure used to form a seal between a roof and a pipe extending through the roof, of the type wherein a generally flat plate having a cen-tralized opening of a larger dimension than said pipe and an upstanding tapered housing having an internal dimension larger than said pipe are integrally formed of a rigid material such that said housing extends upward from said plate and said centralized hole in said plate forms the lowermost opening in said housing the improve-ment which comprises:
the uppermost periphery of said housing containing an upwardly opening annular channel circumscribing around said uppermost periphery and dividing said upper-most periphery into an outer peripheral wall and an inner wall;
said inner wall including a plurality of passage-ways spaced around said inner wall, said passageways forming a plurality of openings between said annular channels and the interior of said housing;
a resilient elastomeric sealing member having a generally upstanding annular wall and an annular skirt extending downwardly around said wall, said annular wall including a plurality of sealing flanges extending cir-cularly around said wall and projecting radially toward the center of said sealing member, said flanges each being independently capable of engaging with and forming a seal with said pipe;
said skirt including a plurality of projections equal in number and shape to said passageways, said projections projecting from said skirt toward the center of said sealing means;
said skirt fitting into said annular channel and said plurality of projections fitting into said passage-ways such that said sealing means is fixedly held in said channel by the interaction of said projections with said passageways.
the uppermost periphery of said housing containing an upwardly opening annular channel circumscribing around said uppermost periphery and dividing said upper-most periphery into an outer peripheral wall and an inner wall;
said inner wall including a plurality of passage-ways spaced around said inner wall, said passageways forming a plurality of openings between said annular channels and the interior of said housing;
a resilient elastomeric sealing member having a generally upstanding annular wall and an annular skirt extending downwardly around said wall, said annular wall including a plurality of sealing flanges extending cir-cularly around said wall and projecting radially toward the center of said sealing member, said flanges each being independently capable of engaging with and forming a seal with said pipe;
said skirt including a plurality of projections equal in number and shape to said passageways, said projections projecting from said skirt toward the center of said sealing means;
said skirt fitting into said annular channel and said plurality of projections fitting into said passage-ways such that said sealing means is fixedly held in said channel by the interaction of said projections with said passageways.
10. The roof flashing structure of claim 9 wherein:
said housing and said sealing means are formed from thermally compatible material such that when said seal-ing means in a heated state if fitted into said housing a thermal bond is formed upon cooling between said sealng means and aid housing.
said housing and said sealing means are formed from thermally compatible material such that when said seal-ing means in a heated state if fitted into said housing a thermal bond is formed upon cooling between said sealng means and aid housing.
11. A process for preparing the roof flashing structure of claim 1 which comprises:
injecting into a die a thermal plastic material so as to form a housing the uppermost periphery of which contains a generally upwardly opening annular channel dividing said uppermost periphery of said housing into an inner annular wall and an outer annular wall emoving said housing from said die;
locating said housing in a second die;
injecting said second die with a heated thermal elastomeric material to form a sealing means on the upper periphery of said housing;
removing said housing and said sealing means from said second die;
cooling said housing and said sealing means to form a bond between said housing and said sealing means.
injecting into a die a thermal plastic material so as to form a housing the uppermost periphery of which contains a generally upwardly opening annular channel dividing said uppermost periphery of said housing into an inner annular wall and an outer annular wall emoving said housing from said die;
locating said housing in a second die;
injecting said second die with a heated thermal elastomeric material to form a sealing means on the upper periphery of said housing;
removing said housing and said sealing means from said second die;
cooling said housing and said sealing means to form a bond between said housing and said sealing means.
12. The process of claim 11 wherein:
said thermal plastic material comprises a poly-ethlene thermal plastic and said thermal elastomeric material comprises a polyethylene thermal material.
said thermal plastic material comprises a poly-ethlene thermal plastic and said thermal elastomeric material comprises a polyethylene thermal material.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CA000376547A CA1161879A (en) | 1981-04-29 | 1981-04-29 | Roof flashing structures |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CA000376547A CA1161879A (en) | 1981-04-29 | 1981-04-29 | Roof flashing structures |
Publications (1)
Publication Number | Publication Date |
---|---|
CA1161879A true CA1161879A (en) | 1984-02-07 |
Family
ID=4119856
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CA000376547A Expired CA1161879A (en) | 1981-04-29 | 1981-04-29 | Roof flashing structures |
Country Status (1)
Country | Link |
---|---|
CA (1) | CA1161879A (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US7775005B2 (en) | 2006-10-26 | 2010-08-17 | Johnston Lorne G | Vent pipe covering system |
-
1981
- 1981-04-29 CA CA000376547A patent/CA1161879A/en not_active Expired
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US7775005B2 (en) | 2006-10-26 | 2010-08-17 | Johnston Lorne G | Vent pipe covering system |
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Date | Code | Title | Description |
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MKEX | Expiry |