WO2007116415A1 - Round window with rotatable discs having air holes - Google Patents

Round window with rotatable discs having air holes Download PDF

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Publication number
WO2007116415A1
WO2007116415A1 PCT/IN2006/000303 IN2006000303W WO2007116415A1 WO 2007116415 A1 WO2007116415 A1 WO 2007116415A1 IN 2006000303 W IN2006000303 W IN 2006000303W WO 2007116415 A1 WO2007116415 A1 WO 2007116415A1
Authority
WO
WIPO (PCT)
Prior art keywords
round
door
sheets
holes
fitted
Prior art date
Application number
PCT/IN2006/000303
Other languages
French (fr)
Original Assignee
Puthiyaveedu, Mohammed, Ibrahim
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Puthiyaveedu, Mohammed, Ibrahim filed Critical Puthiyaveedu, Mohammed, Ibrahim
Priority to AU2006341929A priority Critical patent/AU2006341929A1/en
Priority to MX2008013731A priority patent/MX2008013731A/en
Publication of WO2007116415A1 publication Critical patent/WO2007116415A1/en

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates
    • F24F13/10Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers
    • F24F13/105Air-flow control members, e.g. louvres, grilles, flaps or guide plates movable, e.g. dampers composed of diaphragms or segments
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B7/00Special arrangements or measures in connection with doors or windows
    • E06B7/02Special arrangements or measures in connection with doors or windows for providing ventilation, e.g. through double windows; Arrangement of ventilation roses
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B1/00Border constructions of openings in walls, floors, or ceilings; Frames to be rigidly mounted in such openings
    • E06B1/006Border constructions of openings in walls, floors, or ceilings; Frames to be rigidly mounted in such openings of curvilinear outline

Definitions

  • the present invention relates to a door less door window and a process to manufacture the same and more specifically it relates to a window to be fitted in a house or in any commercial building.
  • This invention is related to the manufacture of windows with the higher degree of perfection and having more security and less expensive. These windows are suited to any type of building and structures.
  • the main object of this invention is to give full satisfaction to the users with lesser investment.
  • This invention of door less door windows is suited for all types of building and structures and capable of manufacturing in any design. It also occupies lesser space when compared to the present ordinary windows and can be manufactured at lesser cost than the present one. The door less door windows are user friendly and offers higher degree of security while operating these windows.
  • a round iron sheet with holes having more thickness is fixed on the full around frames_and the wheel with hole having lesser thickness will rotate freely. But wheel with lesser thickness will rotate only at a distance of 57cm (distance of the gap) because the magnetic piece pointing towards the outer portion of the inner channel having lesser breadth is standard between the gap at a distance of 7 mm depth when it is rotated like this, the magnetic piece on the outer portion of the hole wheel with lesser thickness will touch at a side of the gap at a distance of 57 cm and standard due to the magnetic force. Likewise, if the wheel with lesser thickness is rotated on the other direction, it will touch on the outer side of the holes wheel with lesser thickness in order to rotate in both directions or to open and close the window. If it is rotated on the right side with the handle, the holes wheel with lesser thickness will come straight with the air holes on the wheels with more thickness.
  • Door less door windows can be fitted to any building or structure with lesser cost and to give more perfection and security by utilizing lesser space in any design.
  • Door less door windows can be manufactured in stainless steel.
  • the window can be fitted in the houses, hospitals, prayer halls.
  • Figure 1 shows two round sheets.
  • Figure 2 shows the air holes construction in one of the round sheets.
  • Figure 3 is a perspective view of door less door window.
  • Figure 4 shows the fitting of a bearing in the window of the present invention.
  • Figure 5 shows the door less door window fitted with an iron rod.
  • Figure 6 shows the semi-circular frames without channels.
  • Figure 7 shows the semi-circular frames with channels.
  • Figure 8 shows the frames fitted with iron leaves.
  • Figure 9 shows the working of door less door window.
  • Figure 10 shows the entire view of the present invention.
  • Figure 11 shows another view of the invention wherein door less door window is fitted in the wall of a building.
  • FIG 12, 13 and 14 show different views of the frames of the invention.
  • Figure 15 is another view of the invention. DETAILED DESCRIPTION OF THE INVENTION;
  • Air holes are to be constructed in a particular size in both the round iron sheets.
  • first round is to be made with 10 cm breadth and hole is to be made is to be made in this round in the space covering 44 degrees.
  • the second hole is to be made with the gap covering 44 degrees. 4 such holes are to be made in the first round. Then in between holes there will be 4 such vacant spaces covering space of 46 degrees without holes. (See Figure — 2).
  • Second round is to be constructed with 10 cm breadth leaving apart 1 cm form the first round.
  • there should be 4 holes covers the space of 44 degrees and 4 vacant spaces covering the space of 46 degrees without holes.
  • 3 rd , 4 th , 5 th , and 6 th rounds are to be made in the same manner.
  • the holes are made in such a manner so that the vacant spaces without holes available in the second round should come below the 4 holes in the first round. Or, 4 holes available in the second round should come between the 4 vacant spaces without holes in the first round. Likewise, 6 rounds are to be completed. (See Figure — 3). When the rounds come downwards, the length and measurement of the holes and the length and measurements of the vacant space without holes will decrease depending on the decrease in the circumference of the rounds. But, the breadth will be equal or when it comes downwards from the outer portion the space available for one degree will decrease as the circumference of the rounds decreases.
  • No.6406 NBC ball bearing (3 cm hole on the center of the bearing) with an outer diameter of 9 cm and with a height of 2.3 cm (23mm) should be erected as seating on the outer portion of the round with 2 cm depth. Then the bearing will completely enter the round and will be pointing towards 3 mm of the second side. (See Figure - 5)
  • 2 channels are to be constructed leaving apart 2 mm from the center portion of the two semi- circled frames on both sides.
  • the first channel should be with 1 cm breadth and 1 cm depth and the second channel should be with 7 mm breadth and 12 mm depth.
  • Another inner channel with 7 mm breadth and 6 mm depth and 57 cm length is to be constructed in the channel having 7 mm breadth x 12 mm depth on the center portion of any one of the two frames. (See Figure - 8)
  • Iron leaf are to be fitted pointing towards the outer portion of the frames at the same breadth and thickness of the frame with 15 cm height on the two semicircles. Holes with 10 mm diameter are to be made in these above mentioned 4 iron leaves.
  • the two hole wheels (sheet with holes) fixed on the bearings should be kept on one of the two semi-circled frames kept in a flat position (wheels with 1 cm thickness should be placed on the big channel wheel with 1 cm breadth and 1 cm depth and wheel with 5 mm thickness should be place on the small channel (with 7 mm breadth andl2 mm depth).
  • the 2 nd semi- circled frame should be kept downwards on top of the two hole wheels erected.
  • the space (without holes) between the holes if the 1 st sheet (big wheel in the big channel and the small wheel in the small channel).
  • the magnetic piece with 6 mm height fitted on the other side of the 2 nd wheel will be pointing outwards on the outer portion of the wheel with lesser thickness.
  • This magnet should be kept inside the inner channel constructed with 57 cm length and 7 mm breadth and 6 mm depth. Then the wheel with more thickness should be welded and fitted tight to the channel with more breadth.
  • the leafs with holes on both the sides of the frames will be joined together. Then 10mm nuts and bolts should be fixed on the 4 holes (See Figure - 13)
  • the wheel with holes having more thickness is fixed on the full round frames and the wheel with holes having lesser thickness will rotate freely. But wheel with lesser thickness will rotate only at a distance of 57 cm (distance of the inner channel) because the magnet fixed on the 2 nd wheel, which is pointing to the inner channel having 57cm_length i is the stranded between the gaps at a distance of 7 mm depth.
  • the second wheel can only rotate at a maximum distance covering a space with hole of the first wheel.
  • the magnetic force on the second portion of the second wheel will touch at one side of the gap at a distance of 57 cm and stranded due to the magnetic force.
  • the second channel if it is rotated on the other direction, it will touch on the other side of the gap.
  • a knob or a handle is fixed on the right hand side or the left hand side of the second wheel in order to rotate in both directions or to open and close the window. If it is rotated on the right side with the handle second wheel will rotate at a distance of 57 cm (the distance of a hole) and the air holes on the second wheel will come straight with the air holes on the first wheel. When it is rotated with the knob or handle at a distance of 57 cm on the left hand side, the air holes on the second wheel will come straight to the space without holes on the first wheels, and the air holes will be closed.
  • Door less door window can be manufactured in both in steel and wood. It cannot be manufactured in stainless steel. The window can be fitted in the houses, hospitals, prayer halls etc.
  • Air holes with various designs can be manufactured in place of air holes constructed on the wheels in cone shape. Windows with various circumferences - both small and big - can also be manufactured. But the number and measurements of the holes will vary depending on the size of the rounds (See Figure - 15)

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Specific Sealing Or Ventilating Devices For Doors And Windows (AREA)

Abstract

A window to be fitted in a wall, comprising two round sheets, fitted with a magnet in one of the sheets pointing outwards, each having air holes at 44 degrees leaving space at 46 degrees in each of the sheets towards the center of the sheets, a ball bearing fixed at the center portion of one sheet to join the sheets fitted as a seating on the outer portion of the round, two semi-circular frames having at least two channels in them with iron leaves pointing outwards of the frames. The window is suited for all types of building and structures and capable of manufacturing in any design. It also occupies lesser space when compared to the present ordinary windows and can be manufactured at lesser cost than the present one. The window is user friendly and offers higher degree of security while operating these windows.

Description

ROUND WINDOW WITH ROTATABLE DISCS HAVING AIR HOLES
FIELD OF INVENTION:
The present invention relates to a door less door window and a process to manufacture the same and more specifically it relates to a window to be fitted in a house or in any commercial building.
BACKGROUND OF INVENTION:
In the modern world, when buildings are constructed, expenses have to be curtailed and maximum usage of space with the availability of finance have to be utilized for the construction of a suitable house. To achieve this objective, one has to take utmost care with the assistance of technical experts in the field. Here comes a novelty window less expensive and fulfills the dream of common man. That is Door less Door window.006.
Normally, windows have to be opened and closed by putting the hands outside. This is not secure from many points of view. For example, for ladies wearing ornaments. Doorless door windows are not opened and closed like the ordinary windows, which are closed by putting the hands outside. Doorless door windows are operated by knobs and handles.
The difficulties faced when the windows are kept open inside the rooms and porticos will not be affected while fitting these windows. Moreover, the space required for doorless door windows are much lesser than what is required by the ordinary windows. That is to say, less space is occupied by doorless door windows than the ordinary windows.
The capacity to carry weight is relatively more in respect of door less door windows compared with ordinary windows, since the top portion of these windows are in the form of arch and hence concentration of weight at one point can easily be avoided.
This is much beautiful and has got novelty. It is user friendly too. Dies for the door less door windows are made in cast iron using moulding machines and the windows are manufactured by concreting.
AU the more, the expenses required for the manufacturing of door less door windows will be only 50% of the cost required for the ordinary windows.
This invention is related to the manufacture of windows with the higher degree of perfection and having more security and less expensive. These windows are suited to any type of building and structures. The main object of this invention is to give full satisfaction to the users with lesser investment.
This invention of door less door windows is suited for all types of building and structures and capable of manufacturing in any design. It also occupies lesser space when compared to the present ordinary windows and can be manufactured at lesser cost than the present one. The door less door windows are user friendly and offers higher degree of security while operating these windows.
THE OBJECT OF INVENTION:
1. User friendly.
2. High security
3. Consumption of lesser space
4. Viable
5. Less expensive
6. Adaptable to any design
SUMMARY OF INVENTION:
A round iron sheet with holes having more thickness is fixed on the full around frames_and the wheel with hole having lesser thickness will rotate freely. But wheel with lesser thickness will rotate only at a distance of 57cm (distance of the gap) because the magnetic piece pointing towards the outer portion of the inner channel having lesser breadth is standard between the gap at a distance of 7 mm depth when it is rotated like this, the magnetic piece on the outer portion of the hole wheel with lesser thickness will touch at a side of the gap at a distance of 57 cm and standard due to the magnetic force. Likewise, if the wheel with lesser thickness is rotated on the other direction, it will touch on the outer side of the holes wheel with lesser thickness in order to rotate in both directions or to open and close the window. If it is rotated on the right side with the handle, the holes wheel with lesser thickness will come straight with the air holes on the wheels with more thickness.
Door less door windows can be fitted to any building or structure with lesser cost and to give more perfection and security by utilizing lesser space in any design. Door less door windows can be manufactured in stainless steel. The window can be fitted in the houses, hospitals, prayer halls.
BRIEF DESCRIPTION OF THE ACCOMPNYING DRAWINGS:
Figure 1 shows two round sheets.
Figure 2 shows the air holes construction in one of the round sheets.
Figure 3 is a perspective view of door less door window.
Figure 4 shows the fitting of a bearing in the window of the present invention.
Figure 5 shows the door less door window fitted with an iron rod.
Figure 6 shows the semi-circular frames without channels.
Figure 7 shows the semi-circular frames with channels.
Figure 8 shows the frames fitted with iron leaves.
Figure 9 shows the working of door less door window.
Figure 10 shows the entire view of the present invention.
Figure 11 shows another view of the invention wherein door less door window is fitted in the wall of a building.
Figure 12, 13 and 14 show different views of the frames of the invention.
Figure 15 is another view of the invention. DETAILED DESCRIPTION OF THE INVENTION;
ROUND SHEETS
A round iron sheet with 469 cm circumference, 1 cm metal thickness and another round iron sheet with the same circumference and 5 mm metal thickness, in any one side of the outer portion of the second iron sheet, a magnet with 6 mm height, 5 mm breadth is to be fitted pointing outside. (See Figure - 1)
Air holes are to be constructed in a particular size in both the round iron sheets. For this purpose, (the two round sheets with 469 cm circumference have to be divided equally between 360 degrees from the outer portion of the two round iron sheets) first round is to be made with 10 cm breadth and hole is to be made is to be made in this round in the space covering 44 degrees. After leaving with a gap covering 46 degrees, the second hole is to be made with the gap covering 44 degrees. 4 such holes are to be made in the first round. Then in between holes there will be 4 such vacant spaces covering space of 46 degrees without holes. (See Figure — 2).
Second round is to be constructed with 10 cm breadth leaving apart 1 cm form the first round. In the second round also, there should be 4 holes covers the space of 44 degrees and 4 vacant spaces covering the space of 46 degrees without holes. 3rd, 4th, 5th, and 6th rounds are to be made in the same manner.
The holes are made in such a manner so that the vacant spaces without holes available in the second round should come below the 4 holes in the first round. Or, 4 holes available in the second round should come between the 4 vacant spaces without holes in the first round. Likewise, 6 rounds are to be completed. (See Figure — 3). When the rounds come downwards, the length and measurement of the holes and the length and measurements of the vacant space without holes will decrease depending on the decrease in the circumference of the rounds. But, the breadth will be equal or when it comes downwards from the outer portion the space available for one degree will decrease as the circumference of the rounds decreases.
FITTING OF BEARINGS
After constructing 6 round holes with 1 cm thickness in the first round sheet, a hole with 9 cm diameter is to be constructed in the center of the 7th round, a ring is to be constructed with
1 cm breadth and same diameter of the hole on one outer side of the sheet in line with the hole and the outer side mouth per turn is to be closed.
No.6406 NBC ball bearing (3 cm hole on the center of the bearing) with an outer diameter of 9 cm and with a height of 2.3 cm (23mm) should be erected as seating on the outer portion of the round with 2 cm depth. Then the bearing will completely enter the round and will be pointing towards 3 mm of the second side. (See Figure - 5)
After constructing 6 round holes in the same manner on the second round sheet with less thickness, an iron rod with 3 cm diameter and 23 mm height is to be constructed on the center of the 7th round. (See Figure - 6)
FRAME
Now, there should be frame for the two round sheets. For this, a frame with 234 Vz cm length and 23 cm breadth each and two semi-circle portions is to be constructed in an iron leaf with
2 cm metal thickness. (See Figure - 7)
2 channels are to be constructed leaving apart 2 mm from the center portion of the two semi- circled frames on both sides. The first channel should be with 1 cm breadth and 1 cm depth and the second channel should be with 7 mm breadth and 12 mm depth. Another inner channel with 7 mm breadth and 6 mm depth and 57 cm length is to be constructed in the channel having 7 mm breadth x 12 mm depth on the center portion of any one of the two frames. (See Figure - 8)
Iron leaf are to be fitted pointing towards the outer portion of the frames at the same breadth and thickness of the frame with 15 cm height on the two semicircles. Holes with 10 mm diameter are to be made in these above mentioned 4 iron leaves.
There should be one iron leaf without holes each without holes at both ends of the frames pointing outwards without with the same breadth, thickness and length (See Figure — 9)
FITTINGS
Two iron sheets with 6 rounds and holes are to be joined with bearing. The shaft (iron rod ) erected on the center portion of the second round sheet (with 5mm thickness is to be pushed inside the hole with two cm diameter of the bearing fixed at the center portion of the iron sheet (with 1 cm thickness) and to be fitted tightly.
Since the bearing are pointing outwards, sheets will stand at a distance of 3 mm without touching each other. After fixing in this manner, if the 1st sheet is erected, the 2nd sheet (with hole) will rotate freely on the bearing.
When it is rotated as such, if the holes of the 2nd sheet come in straight line with space with holes of the 1st sheet, wind and light will pass trough the holes. But if the holes of the 2nd sheet come in straight line with space (without holes) of the 1st sheet, the air holes will be closed and wind and light will be blocked. Holes will be completely closed because the length and breadth of the space (without holes) between the holes are more than the length and breadth of the holes. This is the principle behind the working of the door less door window. (See Figure - 11) The two hole wheels (sheet with holes) fixed on the bearings should be kept on one of the two semi-circled frames kept in a flat position (wheels with 1 cm thickness should be placed on the big channel wheel with 1 cm breadth and 1 cm depth and wheel with 5 mm thickness should be place on the small channel (with 7 mm breadth andl2 mm depth). The 2nd semi- circled frame should be kept downwards on top of the two hole wheels erected. The space (without holes) between the holes if the 1st sheet (big wheel in the big channel and the small wheel in the small channel). When it is kept as above, the magnetic piece with 6 mm height fitted on the other side of the 2nd wheel will be pointing outwards on the outer portion of the wheel with lesser thickness. This magnet should be kept inside the inner channel constructed with 57 cm length and 7 mm breadth and 6 mm depth. Then the wheel with more thickness should be welded and fitted tight to the channel with more breadth. When it is fixed in this manner, the leafs with holes on both the sides of the frames will be joined together. Then 10mm nuts and bolts should be fixed on the 4 holes (See Figure - 13)
WORKING
The wheel with holes having more thickness is fixed on the full round frames and the wheel with holes having lesser thickness will rotate freely. But wheel with lesser thickness will rotate only at a distance of 57 cm (distance of the inner channel) because the magnet fixed on the 2nd wheel, which is pointing to the inner channel having 57cm_lengthi is the stranded between the gaps at a distance of 7 mm depth. In other words the second wheel can only rotate at a maximum distance covering a space with hole of the first wheel. When it is rotated like this, the magnetic force on the second portion of the second wheel will touch at one side of the gap at a distance of 57 cm and stranded due to the magnetic force. Likewise, if the second channel is rotated on the other direction, it will touch on the other side of the gap. A knob or a handle is fixed on the right hand side or the left hand side of the second wheel in order to rotate in both directions or to open and close the window. If it is rotated on the right side with the handle second wheel will rotate at a distance of 57 cm (the distance of a hole) and the air holes on the second wheel will come straight with the air holes on the first wheel. When it is rotated with the knob or handle at a distance of 57 cm on the left hand side, the air holes on the second wheel will come straight to the space without holes on the first wheels, and the air holes will be closed.
Door less door window can be manufactured in both in steel and wood. It cannot be manufactured in stainless steel. The window can be fitted in the houses, hospitals, prayer halls etc.
Air holes with various designs can be manufactured in place of air holes constructed on the wheels in cone shape. Windows with various circumferences - both small and big - can also be manufactured. But the number and measurements of the holes will vary depending on the size of the rounds (See Figure - 15)

Claims

I claim: -
1. A door less door window to be fitted in a wall, comprising two round sheets, fitted with a magnet in one of the sheets pointing outwards, having air holes at 44 degrees leaving space at 46 degrees in each of the sheets towards the center of the sheets, a ball bearing fixed at the center portion of a sheet and to join the sheets fitted as a seating on the outer portion of the round, two semi-circular frames having at least two channels in them with iron leaves pointing outwards of the frames.
2. The door less door window as claimed in claiml wherein one round sheet is having a lesser thickness than the other round sheet.
3. The door less door window as claimed in claiml wherein at least 4 air holes are made in each sheet at one round and having at least 6 rounds towards center portion of the sheets.
4. The door less door window as claimed in claim 1 wherein the length and measurement of the holes will decrease on the decrease in circumference of the rounds.
5. The door less door window as claimed in claim 1 wherein the ball bearing is pointing towards 3 mm on the other side of the round sheet.
6. The door less door window as claimed in claim 1 wherein iron rod is constructed on the center of 7th round.
7. The door less door window as claimed in claiml wherein the 1st channel comprises of lesser measurements in breadth and depth as compared with the 2nd channel.
8. The door less door window as claimed in claim 1 wherein the 1st round sheet of lesser thickness is fitted on the 1st channel of lesser measurements and 2nd round sheet is fitted on the 2nd channel of higher measurements.
9. The door less door window as claimed in claiml wherein the 2nd round sheet with more thickness is fixed permanently on the 2nd channel of higher measurements and the leaves with holes on both the sides of the frames are joined together.
10. The door less door window as substantially shown and described with the accompanying drawings and description.
PCT/IN2006/000303 2006-04-25 2006-08-23 Round window with rotatable discs having air holes WO2007116415A1 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
AU2006341929A AU2006341929A1 (en) 2006-04-25 2006-08-23 Round window with rotatable discs having air holes
MX2008013731A MX2008013731A (en) 2006-04-25 2006-08-23 Round window with rotatable discs having air holes.

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
IN750/CHE/2006 2006-04-25
IN750CH2006 2006-04-25

Publications (1)

Publication Number Publication Date
WO2007116415A1 true WO2007116415A1 (en) 2007-10-18

Family

ID=37745831

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/IN2006/000303 WO2007116415A1 (en) 2006-04-25 2006-08-23 Round window with rotatable discs having air holes

Country Status (3)

Country Link
AU (1) AU2006341929A1 (en)
MX (1) MX2008013731A (en)
WO (1) WO2007116415A1 (en)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1755784A (en) * 1927-04-13 1930-04-22 Karl Schumacher Ceiling vent
DE507080C (en) * 1929-04-27 1930-09-12 Heinrich Kuckuck Exhaust and ventilation rosette for rooms
DE1097111B (en) * 1956-05-23 1961-01-12 Forenede Jernstoberier Aktiese Round slide for regulating the air flow, especially in high pressure ventilation systems
FR2087220A7 (en) * 1970-05-12 1971-12-31 Barel Pierre
FR2749876A3 (en) * 1996-06-12 1997-12-19 Curvados Tecnicos Sl Circular bulls eye sliding window with aluminium frame

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1755784A (en) * 1927-04-13 1930-04-22 Karl Schumacher Ceiling vent
DE507080C (en) * 1929-04-27 1930-09-12 Heinrich Kuckuck Exhaust and ventilation rosette for rooms
DE1097111B (en) * 1956-05-23 1961-01-12 Forenede Jernstoberier Aktiese Round slide for regulating the air flow, especially in high pressure ventilation systems
FR2087220A7 (en) * 1970-05-12 1971-12-31 Barel Pierre
FR2749876A3 (en) * 1996-06-12 1997-12-19 Curvados Tecnicos Sl Circular bulls eye sliding window with aluminium frame

Also Published As

Publication number Publication date
MX2008013731A (en) 2009-04-16
AU2006341929A1 (en) 2007-10-18

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