EP4180591A1 - Facade frame for timber frame construction - Google Patents
Facade frame for timber frame construction Download PDFInfo
- Publication number
- EP4180591A1 EP4180591A1 EP22207476.7A EP22207476A EP4180591A1 EP 4180591 A1 EP4180591 A1 EP 4180591A1 EP 22207476 A EP22207476 A EP 22207476A EP 4180591 A1 EP4180591 A1 EP 4180591A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- frame
- strip
- stretch
- facade
- circumferential wall
- 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.)
- Granted
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Classifications
-
- E—FIXED CONSTRUCTIONS
- E06—DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
- E06B—FIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
- E06B1/00—Border constructions of openings in walls, floors, or ceilings; Frames to be rigidly mounted in such openings
- E06B1/04—Frames for doors, windows, or the like to be fixed in openings
- E06B1/34—Coverings, e.g. protecting against weather, for decorative purposes
- E06B1/342—Reveal covering members disposed alongside of a window frame
-
- E—FIXED CONSTRUCTIONS
- E06—DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
- E06B—FIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
- E06B1/00—Border constructions of openings in walls, floors, or ceilings; Frames to be rigidly mounted in such openings
- E06B1/62—Tightening or covering joints between the border of openings and the frame or between contiguous frames
- E06B2001/628—Separate flexible joint covering strips; Flashings
Definitions
- the present invention relates to a facade frame for timber frame construction, the facade frame comprising a frame, the frame comprising:
- Timber frame construction is a well-known construction method for manufacturing buildings, where use is made of facade frame manufactured in a factory which are assembled into a building at a construction site.
- a chambranle In order to place windows an doors, a chambranle is place in the facade fram at the construction site, after which a glas panel or door is placed in the chambranle. This is a time consuming step in the assembly of buildings, and sich a chambranle is a relatively expensive part of the building.
- a facade frame according to the preamble is characterized in that the inner side of the frame comprises a first stretch adjacent to the circumferential wall, and
- a glass panel or door can directly be placed against the third strip of the profile beam at the factory, so no chambranle needs to be placed in the facade frame.
- the building can therefore be assembled more quickly.
- the absence of a chambranle furthermore contributes to a better isolation of the building the facade frame is incorporated into, and the second stretch of the outer side of the frame and the circumferential wall are protected against weather influences.
- Inner side is intended to refer to a first side meant to be placed at the inside of the building after placing the facade frame in a building.
- Outer side is intended to refer to a second side meant to be placed at the outside of the building after placing the facade frame in a building.
- the opening in the facade frame can extend to the bottom side of the frame.
- the resilient element allows the second strip and the third strip to move away from each other, so the profile beam can be opened temporarily, and the profile beam can be placed such that the projection extends into the groove and the second strip covers the second stretch of the inner side of the frame.
- the outer side of the frame is for example covered with stone strips.
- the resilient element is formed integrally with the first, second and third strip and is formed by a fourth strip and a fifth strip which are each at a longitudinale side are mutually connected in the longitudinal direction along a connecting line and extend parallel to each other, and wherein the other longitudinal side of the fourth strip is connected with the longitudinal side of the third strip which extends adhacent to the second strip, and wherein the other longitudinale side of the fifth strip is connected to the longitudinale side of the second strip extending adjacent to the third strip.
- the third strip and the fourth strip extend in the same plane.
- the second strip and the fifth strip extend under a right angle.
- the profile beam is an aluminium profile beam.
- An aluminium profile beam protects the second stretch of the outer side of the frame and the circumferential wall better against weather influences and is easy to maintain.
- three or four profile beams are attached to the groove of the opening.
- the three or four profile beams are mutually placed at an angle of 90 degrees in the groove.
- the frame is a softwood frame.
- the present invention also relates to building, wherein the building comprises a facade frame according to any of the claims 1 - 8.
- the building is a house.
- the present invention also relates to method for manufacturing a facade frame, the method comprising the steps of:
- the present invention also relates to method for manufacturing a building, the method comprising the steps of:
- Placing the glaass panel or door against the profile beam can be done at the location at a distance of the construction site, or at the construction site.
- the present invention relates to profile beam for placing a window or door, the profile beam being a subtantially U-shaped profile beam, wherein the U-shaped profile beam comprises:
- Fig. 1a shows a longitudinal cross section of a facade frame 100 according to the invention.
- the facade frame 100 comprises a frame 110 of for example softwood having an inner side 111, an outer side 112 and an opening 113 extending from the inner side 111 to the outer side 112.
- the opening 113 is defined by a circumferential wall 114 (see also fig. 1b ).
- the outer side of the frame 110 is for example provided with stone strips 199.
- a substantially U-shaped profile beam 120 of for example aluminium is attached in the frame 110, against which a glass panel 131 of a window 130, or for example three glass panels 131 of a window 130 separated by intermediate stops 132, can be placed.
- the window 130 is then clamped against the profile beam 120 by means of a stop 133 provided in the frame 110.
- the facade frame 100 can be manufactured at any location at a distance from the construction site, such as a factory, and transported to the construction site where it can be assembled in a building.
- the window 130 or for example a door can then directly be placed in the facade frame 100 against the profile beam 120 without the need of first placing a chambranle. It is also possible to place the window 130 or door in the facade frame 100 already at the location ata distance from the construction site, and the transport the facade frame 100 as a whole to the construction site to incorporate it in a building.
- Fig. 1b shows a detail of fig. 1a of the substantially U-shaped profile beam 120 attached in the frame 110.
- the inner side 111 of the frame 110 compises a first stretch 115 adjacent to the circumferential wall 114 and the outer side 112 of the frame 110 comprises a second stretch 116 adjacent to the circumferential wall 114.
- the second stretch 116 is provided with a groove 117.
- the U-shaped profile beam 120 comprises a first strip 121, a second strip 122 and a third strip 123.
- the second strip 122 comprises a projection 125 extending towards the first strip 121.
- the profile beam 120 is placed with the projection 125 into the groove 117, such that the first strip 121 of the profile beam 120 covers the first stretch 115 of the inner side 111, the second strip 122 of the profile beam 120 covers the second stretch 116 of the outer side 112, and the third strip 123 covers at least a part of the circumferential wall 114.
- the third strip 123 is connected to the second strip 122 by means of a resilient element 126. In this way, the second strip 122 and the third strip 123 can be moved away from each other when placing the profile beam 120, such that the profile beam 120 can be placed such that the projection 125 of the second strip 122 extends into the groove 117 and the first strip 121 covers the first stretch 115 of the inner side 111.
- the resilient element 126 is formed integrally with the first, second and third strip and is formed by a fourth administratde strip 127 and a fifth strip 128 which each are mutually connected at a longitudinal side in the longitudinal direction along a connection line and extend parallel to each other.
- the other longitudinal side of the fourth strip 127 is connected with the longitudinal side of the third strip 123 extending adjacent to the second strip 122, the third strip 123 and the fourth strip 127 extending in the same plane.
- the other longitudinal side of the fifth strip 128 is connected to the longitudinal side of the second strip 122 extending adjacent to the third strip 123, the second strip 122 and the fifth strip 128 extending under a right angle.
- the resilient element 126 forms a frame extending outwards which can cover and protect the top side of the outer cladding, for example the stone strips 199 attached to the frame 110, against mechanical damage and weather influences.
Landscapes
- Engineering & Computer Science (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Load-Bearing And Curtain Walls (AREA)
- Door And Window Frames Mounted To Openings (AREA)
Abstract
Description
- The present invention relates to a facade frame for timber frame construction, the facade frame comprising a frame, the frame comprising:
- an inner side,
- an outer side, and
- an opening extending from the outer side to the inner side, wherein the opening opening is defined by a circumferential wall extending from the outer side to the inner side.
- Timber frame construction is a well-known construction method for manufacturing buildings, where use is made of facade frame manufactured in a factory which are assembled into a building at a construction site.
- In order to place windows an doors, a chambranle is place in the facade fram at the construction site, after which a glas panel or door is placed in the chambranle. This is a time consuming step in the assembly of buildings, and sich a chambranle is a relatively expensive part of the building.
- It is an objective of the present invention to provide a facade frame for timer woord construction by means of which a building can be manufactured faster and cheaper.
- To this end, a facade frame according to the preamble is characterized in that the inner side of the frame comprises a first stretch adjacent to the circumferential wall, and
- the outer side of the frame comprises a second stretch adjacent to the circumferential wall, which second stretch comprises a groove, wherein a substantiall U-shaped pofile beam covers the first stretch,
- the second stretch and at least a part of the circumferential wall, the U-shaped profiel beam comprising:
- a first strip, covering the first stretch,
- a second strip, covering the second stretch, and comprising at least a projection extending towards the first strip, which projection extends into the groove of the second stretch, and
- a third strip connected to the second strip by means of a resilient element and covering at least a part of the circumferential wall.
- In this way, a glass panel or door can directly be placed against the third strip of the profile beam at the factory, so no chambranle needs to be placed in the facade frame. The building can therefore be assembled more quickly. The absence of a chambranle furthermore contributes to a better isolation of the building the facade frame is incorporated into, and the second stretch of the outer side of the frame and the circumferential wall are protected against weather influences.
- "Inner side" is intended to refer to a first side meant to be placed at the inside of the building after placing the facade frame in a building.
- "Outer side" is intended to refer to a second side meant to be placed at the outside of the building after placing the facade frame in a building.
- In case of a door opening, the opening in the facade frame can extend to the bottom side of the frame.
- The resilient element allows the second strip and the third strip to move away from each other, so the profile beam can be opened temporarily, and the profile beam can be placed such that the projection extends into the groove and the second strip covers the second stretch of the inner side of the frame.
- The outer side of the frame is for example covered with stone strips.
- According to an embodiment, the resilient element is formed integrally with the first, second and third strip and is formed by a fourth strip and a fifth strip which are each at a longitudinale side are mutually connected in the longitudinal direction along a connecting line and extend parallel to each other, and wherein the other longitudinal side of the fourth strip is connected with the longitudinal side of the third strip which extends adhacent to the second strip, and wherein the other longitudinale side of the fifth strip is connected to the longitudinale side of the second strip extending adjacent to the third strip.
- According to an embodiment, the third strip and the fourth strip extend in the same plane.
- According to an embodiment, the second strip and the fifth strip extend under a right angle.
- According to an embodiment, the profile beam is an aluminium profile beam.
- An aluminium profile beam protects the second stretch of the outer side of the frame and the circumferential wall better against weather influences and is easy to maintain.
- According to an embodiment, three or four profile beams are attached to the groove of the opening.
- According to an embodiment, the three or four profile beams are mutually placed at an angle of 90 degrees in the groove.
- According to an embodiment, the frame is a softwood frame.
- The present invention also relates to building, wherein the building comprises a facade frame according to any of the claims 1 - 8.
- According to an embodiment, the building is a house.
- The present invention also relates to method for manufacturing a facade frame, the method comprising the steps of:
- manufacturing a frame of a facade frame, the frame comprising:
- an inner side,
- an outer side, and
- an opening extending from the outer side to the inner side, wherein the opening is defined by a circumferential wall extending from the outer side to the inner side, wherein the inner side of the frame comprises a first stretch adjacent to the circumferential wall, and
- the outer side of the frame comprises a second stretch adjacent to the circumferential wall,
- the step of manufacturing a frame of a facade frame comprising:
- forming a groove in the second stretch of the outer side of the frame, and
- attaching a substantially U-shaped profile beam in the groove, the substantially U-shaped profile beam covering the first stretch, the second strook and at least a part of the circumferential wall,
- the U-shaped profile beam comprising:
- a first strip, covering the first stretch,
- a second strip covering the second stretch, and comprising at least a projection extending towards the first strip, the projection extending into the groove of the second stretch, and
- a third strip connected to the second strip by means of a resilient element and covering at least a part of the circumferential wall,
- to provide a facade frame according to any of the claims 1 - 8.
- The present invention also relates to method for manufacturing a building, the method comprising the steps of:
- manufacturing a frame of a facade frame at a location at a distance from the construction site,
the frame comprising:- an inner side,
- an outer side, and
- an opening extending from the outer side to the inner side, wherein the opening is defined by a circumferential wall extending from the outer side to the inner side,
- transporting a frame of the facade frame obtained in the previous step to the construction site,
- assembling the facade frame at the construction site to provide a building, wherein the inner side of the frame comprises a first stretch adjacent to the circumferential wall, and
- the outer side of the frame comprises a second stretch adjacent to the circumferential wall,
- the step of manufacturing a frame of a facade frame at a location at a distance from the construction site comprising:
- forming a groove in the second stretch of the outer side of the frame, and
- attaching a substantially U-shaped profile beam in the frame, the substantially U-shaped profile beam comprising:
- a first strip, covering the first stretch,
- a second strip covering the second stretch, and comprising at least a projection extending towards the first strip, the projection extending into the groove of the second stretch, and
- a third strip connected to the second strip by means of a resilient element, to provide a facade frame according to any of the claims 1-8, and
- the method further comprising:
- placing a glass panel or door against the profile beam.
- Placing the glaass panel or door against the profile beam can be done at the location at a distance of the construction site, or at the construction site.
- Finally, the present invention relates to profile beam for placing a window or door, the profile beam being a subtantially U-shaped profile beam, wherein the U-shaped profile beam comprises:
- a first strip,
- a second strip comprising at least a projection extending towards the first strip, and
- a third strip connected to the second strip by means of a resilient element.
- The present invention will now be illustrated with reference to the drawing where
-
Fig. 1a shows a longitudinal cross section of a facade frame ; and -
Fig. 1b shows a detail offig. 1a . -
Fig. 1a shows a longitudinal cross section of afacade frame 100 according to the invention. Thefacade frame 100 comprises aframe 110 of for example softwood having aninner side 111, anouter side 112 and anopening 113 extending from theinner side 111 to theouter side 112. Theopening 113 is defined by a circumferential wall 114 (see alsofig. 1b ). The outer side of theframe 110 is for example provided with stone strips 199. - A substantially
U-shaped profile beam 120 of for example aluminium is attached in theframe 110, against which aglass panel 131 of awindow 130, or for example threeglass panels 131 of awindow 130 separated byintermediate stops 132, can be placed. Thewindow 130 is then clamped against theprofile beam 120 by means of astop 133 provided in theframe 110. - The
facade frame 100 can be manufactured at any location at a distance from the construction site, such as a factory, and transported to the construction site where it can be assembled in a building. Thewindow 130 or for example a door can then directly be placed in thefacade frame 100 against theprofile beam 120 without the need of first placing a chambranle. It is also possible to place thewindow 130 or door in thefacade frame 100 already at the location ata distance from the construction site, and the transport thefacade frame 100 as a whole to the construction site to incorporate it in a building. -
Fig. 1b shows a detail offig. 1a of the substantiallyU-shaped profile beam 120 attached in theframe 110. - The
inner side 111 of theframe 110 compises afirst stretch 115 adjacent to thecircumferential wall 114 and theouter side 112 of theframe 110 comprises asecond stretch 116 adjacent to thecircumferential wall 114. Thesecond stretch 116 is provided with agroove 117. - The
U-shaped profile beam 120 comprises afirst strip 121, asecond strip 122 and athird strip 123. Thesecond strip 122 comprises aprojection 125 extending towards thefirst strip 121. Theprofile beam 120 is placed with theprojection 125 into thegroove 117, such that thefirst strip 121 of theprofile beam 120 covers thefirst stretch 115 of theinner side 111, thesecond strip 122 of theprofile beam 120 covers thesecond stretch 116 of theouter side 112, and thethird strip 123 covers at least a part of thecircumferential wall 114. - The
third strip 123 is connected to thesecond strip 122 by means of aresilient element 126. In this way, thesecond strip 122 and thethird strip 123 can be moved away from each other when placing theprofile beam 120, such that theprofile beam 120 can be placed such that theprojection 125 of thesecond strip 122 extends into thegroove 117 and thefirst strip 121 covers thefirst stretch 115 of theinner side 111. - The
resilient element 126 is formed integrally with the first, second and third strip and is formed by afourth vierde strip 127 and afifth strip 128 which each are mutually connected at a longitudinal side in the longitudinal direction along a connection line and extend parallel to each other. The other longitudinal side of thefourth strip 127 is connected with the longitudinal side of thethird strip 123 extending adjacent to thesecond strip 122, thethird strip 123 and thefourth strip 127 extending in the same plane. The other longitudinal side of thefifth strip 128 is connected to the longitudinal side of thesecond strip 122 extending adjacent to thethird strip 123, thesecond strip 122 and thefifth strip 128 extending under a right angle. In this way theresilient element 126 forms a frame extending outwards which can cover and protect the top side of the outer cladding, for example the stone strips 199 attached to theframe 110, against mechanical damage and weather influences.
Claims (13)
- A facade frame (100) for timber frame construction, the facade frame (100) comprising a frame (110), the frame (110) comprising:- an inner side (111),- an outer side (112), and- an opening (113) extending from the outer side (112) to the inner side (111), wherein the opening opening (113) is defined by a circumferential wall (114) extending from the outer side (112) to the inner side (111), characterized in that the inner side (111) of the frame (110) comprises a first stretch (115) adjacent to the circumferential wall (114), andthe outer side (112) of the frame (110) comprises a second stretch (116) adjacent to the circumferential wall (114), which second stretch (116) comprises a groove (117),wherein a substantiall U-shaped pofile beam (120) covers the first stretch (115), the second stretch (116) and at least a part of the circumferential wall (114),the U-shaped profiel beam (120) comprising:- a first strip (121), covering the first stretch (115),- a second strip (122), covering the second stretch (116), and comprising at least a projection (125) extending towards the first strip (121), which projection (125) extends into the groove (117) of the second stretch (116), and- a third strip (123) connected to the second strip (122) by means of a resilient element (126) and covering at least a part of the circumferential wall (114).
- The facade frame (100) according to claim 1, wherein the resilient element (126) is formed integrally with the first, second and third strip (123) and is formed by a fourth strip (127) and a fifth strip (128) which are each at a longitudinale side are mutually connected in the longitudinal direction along a connecting line and extend parallel to each other, and wherein the other longitudinal side of the fourth strip (127) is connected with the longitudinal side of the third strip (123) which extends adhacent to the second strip (122), and wherein the other longitudinale side of the fifth strip (128) is connected to the longitudinale side of the second strip (122) extending adjacent to the third strip (123).
- The facade frame (100) according to claim 2, wherein the third strip (123) and the fourth strip (127) extend in the same plane.
- The facade frame (100) according to any of the claims 2 or 3, wherein the second strip (122) and the fifth strip (128) extend under a right angle.
- The facade frame (100) according to any of the preceding claims, wherein the profile beam (120) is an aluminium profile beam (120).
- The facade frame (100) according to any of the preceding claims, wherein three or four profile beams are attached to the groove (117) of the opening (113).
- The facade frame (100) volgens conclusie 5, wherein the three or four profile beams are mutually placed at an angle of 90 degrees in the groove (117).
- The facade frame (100) according to any of the preceding claims, wherein the frame (110) is a softwood frame (110).
- Building, characterized in that the building comprises a facade frame (100) according to any of the claims 1-8.
- The building according to claim 9, wherein the building is a house.
- Method for manufacturing a facade frame (100), the method comprising the steps of:- manufacturing a frame (110) of a facade frame (100), the frame (110) comprising:- an inner side (111),- an outer side (112), and- an opening (113) extending from the outer side (112) to the inner side (111), wherein the opening (113) is defined by a circumferential wall (114) extending from the outer side (112) to the inner side (111), characterized in that the inner side (111) of the frame (110) comprises a first stretch (115) adjacent to the circumferential wall (114), andthe outer side (112) of the frame (110) comprises a second stretch (116) adjacent to the circumferential wall (114),the step of manufacturing a frame (110) of a facade frame (100) comprising:- forming a groove (117) in the second stretch (116) of the outer side (112) of the frame (110), and- attaching a substantially U-shaped profile beam (120) in the groove (117), the substantially U-shaped profile beam (120) covering the first stretch (115), the second strook (116) and at least a part of the circumferential wall (114),the U-shaped profile beam (120) comprising:- a first strip (121), covering the first stretch (115),- a second strip (122) covering the second stretch (116), and comprising at least a projection (125) extending towards the first strip (121), the projection (125) extending into the groove (117) of the second stretch (116), and- a third strip (123) connected to the second strip (122) by means of a resilient element (126) and covering at least a part of the circumferential wall (114),to provide a facade frame (100) according to any of the claims 1-8.
- Method for manufacturing a building, the method comprising the steps of:- manufacturing a frame (110) of a facade frame (100) at a location at a distance from the construction site,
the frame (110) comprising:- an inner side (111),- an outer side (112), and- an opening (113) extending from the outer side (112) to the inner side (111), wherein the opening (113) is defined by a circumferential wall (114) extending from the outer side (112) to the inner side (111),- transporting a frame of the facade frame obtained in the previous step to the construction site,- assembling the facade frame (100) at the construction site to provide a building, characterized in that the inner side (111) of the frame (110) comprises a first stretch (115) adjacent to the circumferential wall (114), andthe outer side (112) of the frame (110) comprises a second stretch (116) adjacent to the circumferential wall (114),the step of manufacturing a frame (110) of a facade frame (100) at a location at a distance from the construction site comprising:- forming a groove (117) in the second stretch (116) of the outer side (112) of the frame (110), and- attaching a substantially U-shaped profile beam (120) in the frame (110), the substantially U-shaped profile beam comprising:- a first strip (121), covering the first stretch (115),- a second strip (122) covering the second stretch (116), and comprising at least a projection (125) extending towards the first strip (121), the projection (125) extending into the groove (117) of the second stretch (116), and- a third strip (123) connected to the second strip (122) by means of a resilient element (126), to provide a facade frame (100) according to any of the claims 1-8, andthe method further comprising:- placing a glass panel (131) or door against the profile beam (120). - Profile beam (120) for placing a window or door, the profile beam (120) being a subtantially U-shaped profile beam (120), characterized in that the U-shaped profile beam (120) comprises:- a first strip (121),- a second strip (122) comprising at least a projection (125) extending towards the first strip (121), and- a third strip (123) connected to the second strip (122) by means of a resilient element (126).
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| NL2029747A NL2029747B1 (en) | 2021-11-15 | 2021-11-15 | Facade skeleton for timber frame construction |
Publications (3)
| Publication Number | Publication Date |
|---|---|
| EP4180591A1 true EP4180591A1 (en) | 2023-05-17 |
| EP4180591C0 EP4180591C0 (en) | 2024-11-06 |
| EP4180591B1 EP4180591B1 (en) | 2024-11-06 |
Family
ID=80685465
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP22207476.7A Active EP4180591B1 (en) | 2021-11-15 | 2022-11-15 | Facade frame for timber frame construction |
Country Status (2)
| Country | Link |
|---|---|
| EP (1) | EP4180591B1 (en) |
| NL (1) | NL2029747B1 (en) |
Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| FR2518157A1 (en) * | 1981-12-11 | 1983-06-17 | France Confort Prout Freres Sa | External frame for window aperture - extends from existing frame across layer of insulation applied to external wall |
| US5669192A (en) * | 1996-04-26 | 1997-09-23 | Benjamin Obdyke Incorporated | Cladding for door and window frames |
| US6125605A (en) * | 1998-04-03 | 2000-10-03 | Young; Robert H. | Cladding for trim members used on buildings |
| US20020088189A1 (en) * | 2001-01-05 | 2002-07-11 | Takashi Honda | Overhanging member |
-
2021
- 2021-11-15 NL NL2029747A patent/NL2029747B1/en active
-
2022
- 2022-11-15 EP EP22207476.7A patent/EP4180591B1/en active Active
Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| FR2518157A1 (en) * | 1981-12-11 | 1983-06-17 | France Confort Prout Freres Sa | External frame for window aperture - extends from existing frame across layer of insulation applied to external wall |
| US5669192A (en) * | 1996-04-26 | 1997-09-23 | Benjamin Obdyke Incorporated | Cladding for door and window frames |
| US6125605A (en) * | 1998-04-03 | 2000-10-03 | Young; Robert H. | Cladding for trim members used on buildings |
| US20020088189A1 (en) * | 2001-01-05 | 2002-07-11 | Takashi Honda | Overhanging member |
Also Published As
| Publication number | Publication date |
|---|---|
| NL2029747B1 (en) | 2023-06-09 |
| EP4180591C0 (en) | 2024-11-06 |
| EP4180591B1 (en) | 2024-11-06 |
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