WO2004070208A1 - Ventilation system with axial fan and integrated accelerator/deflector - Google Patents

Ventilation system with axial fan and integrated accelerator/deflector Download PDF

Info

Publication number
WO2004070208A1
WO2004070208A1 PCT/CA2004/000179 CA2004000179W WO2004070208A1 WO 2004070208 A1 WO2004070208 A1 WO 2004070208A1 CA 2004000179 W CA2004000179 W CA 2004000179W WO 2004070208 A1 WO2004070208 A1 WO 2004070208A1
Authority
WO
WIPO (PCT)
Prior art keywords
ventilation system
axial fan
housing
accelerating
casing
Prior art date
Application number
PCT/CA2004/000179
Other languages
French (fr)
Inventor
Ghislain Lauzon
Original Assignee
Ghislain Lauzon
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
Priority claimed from CA002418636A external-priority patent/CA2418636A1/en
Application filed by Ghislain Lauzon filed Critical Ghislain Lauzon
Publication of WO2004070208A1 publication Critical patent/WO2004070208A1/en
Priority to US11/198,327 priority Critical patent/US20060024183A1/en

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/05Shafts or bearings, or assemblies thereof, specially adapted for elastic fluid pumps
    • F04D29/056Bearings
    • F04D29/059Roller bearings
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04DNON-POSITIVE-DISPLACEMENT PUMPS
    • F04D29/00Details, component parts, or accessories
    • F04D29/40Casings; Connections of working fluid
    • F04D29/52Casings; Connections of working fluid for axial pumps
    • F04D29/54Fluid-guiding means, e.g. diffusers
    • F04D29/541Specially adapted for elastic fluid pumps
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F7/00Ventilation
    • F24F7/007Ventilation with forced flow

Definitions

  • the present invention generally relates to fans used in a residential, commercial, industrial and institutional context. More precisely, the invention relates to a new ventilation system with an axial fan and, preferably, an integrated accelerator/deflector.
  • the fan motor In standard ventilation systems, in particular those used in bathrooms, the fan motor is always fixed to a support, either on an inner ventilator wall opposite the air inlet or on a wall adjacent to the inlet. Such a configuration causes turbulence problems in the fluid flow to be evacuated as well as creating phenomena of air bac flow and noise. Another problem associated with standard ventilation systems arises from the transmission of vibrations from the motor to its support structure, with the noise generated by this transmission.
  • French patent FR 1255721 teaches a ventilator suspension system, particularly for kitchen ventilators, for which reductions in noise during its operation is a very important feature.
  • This invention describes a suspension system that allows significant tangential motion of the axial fan motor which is suspended in a surrounding structure, while reducing axial motion of the fan motor, thus significantly reducing the noise being output from the ventilator.
  • German patent DE 91 08 745 U1 discloses a motor support system comprising a holding body made of rubber-elastic material with a surrounding ring part which spans around an intermediate bush surrounding a stator of an electric motor and holds in on a motor holder.
  • three arm parts are additionally provided which are uniformly distributed along the circumference, are molded onto the ring part and cause an additional support between the motor housing and the intermediate bush.
  • a first original feature of the present invention resides principally in the positioning and use of an axial fan which is fixed to the housing of the ventilator being used to evacuate the air (or other gaseous fluid).
  • Another original feature of this invention resides in that the air or gaseous fluid must flow through an accelerator/deflector integrated to the ventilator housing and either mounted within or outside the housing, in order to improve the flow towards the ventilator outlet.
  • the invention provides a ventilation system for an air or gaseous fluid comprising a housing having an inlet and an outlet, an axial fan and an accelerating/deflecting structure.
  • the axial fan comprises a casing attached to the housing.
  • the axial fan further comprises a motor mounted within the casing and blades also mounted within the casing to generate a flow of said fluid in an axial direction.
  • the accelerating/deflecting structure is devised and positioned to reorient the flow generated by the axial fan in a direction transverse to said axial direction.
  • the accelerating/deflecting structure can either be mounted upstream or downstream of the axial fan.
  • the accelerating/deflecting structure can either be mounted within or outside the housing.
  • the present invention eliminates the backflow and air leak problems through a positioning of the axial fan which is assembled between two walls of the ventilator housing and using a sealing element between the fan and the housing.
  • This type of assembly when used in combination with an accelerator/deflector integrated to the housing, improves the fluid flow through the ventilator and therefore results in improved performance with respect to the ventilating capacity of the system.
  • the accelerator/deflector improves the efficiency in terms of flow (in ft 3 /min) at the outlet of the ventilator, as it decreases turbulence in the flow.
  • the ventilation system according to the present invention offers performances several times superior to those obtained with prior art systems used in the above- mentioned fields for the removal of air from enclosed spaces. Furthermore, this system facilitates removal of undesirable particulate matter including mould, bacteria, solvent vapours, toxic gases, pesticides, foul odours, carbon monoxide, cooking residues, and dust. Moreover, when used, for example, in combination with VentiflexTM-type ducting which is known as a flexible, lightweight, durable ducting specifically designed to optimise the conveying of large volumes of air, safely and cleanly, performance is exceptional. The system has been designed to operate in different environments of varying temperature and humidity.
  • the system according to the present invention not only results in improved performance with respect to overall air flow, but also results in remarkable acoustic qualities surpassing those of existing ventilation systems under similar conditions.
  • the noise level of the ventilator of the present invention does not increase proportionally with an increase in the airflow going through it.
  • the ventilation system according to the invention does not require any maintenance or cleaning during all of its useful life, while existing systems tend to get dirty with dust and residues floating in the air. Moreover, the system is not vulnerable to corrosion in normal operating conditions in the presence of humid air in a washroom or any chemical fume produced by an industrial process, contrary to existing ventilation systems.
  • Figure 1 is a perspective view of a ventilation system according to a first preferred embodiment of the invention wherein an accelerator/deflector is mounted outside the ventilator housing;
  • Figure 2 shows a cut perspective view of a ventilation system according to a second preferred embodiment of the invention wherein an accelerator/deflector is mounted within the ventilation system housing;
  • FIG 3 shows a cut perspective view of a ventilation system according to a third preferred embodiment of the invention wherein an accelerator/deflector similar to the one shown in Figure 1 is mounted within the ventilation system housing;
  • Figure 4 is an exploded view of the axial fan used in the ventilation system shown in the previous figures;
  • Figure 5 is a cut side view of the ventilation system shown in Figure 1 ;
  • Figure 6 is a cut side view of the ventilation system shown in Figure 2.
  • the ventilation system (10) for air or other gaseous fluids comprises a housing (12) through which the air or fluid flows.
  • An axial fan (16) is fixed to the housing (12).
  • the ventilation system (10) also comprises an accelerator/deflector (18) used to improve the air or fluid flow through the housing (12).
  • FIG. 2 shows another type of ventilation system (10) according to a second preferred embodiment of the invention, wherein the accelerator/deflector (18) is mounted within the ventilation system housing (12).
  • FIG 3 shows a cut perspective view of a ventilation system (10) according to a third preferred embodiment of the invention, wherein an accelerator/deflector (18) similar to the one shown in Figure 1 is mounted within the ventilation system housing (12).
  • the axial fan (16) comprises a motor (20) in which two sets of ball bearings (24 and 26) are installed on either end of the drive shaft (22) which transmits the motor power.
  • This type of motor assembly creates a better dynamic equilibrium when the motor is running.
  • this type of motor assembly decreases significantly problems related to bending moments in standard motor assemblies that have rotor blades placed at one of the extremities of the drive shaft. This accentuates problems due to the forces which sometime overcome the elastic limits of the materials used in such motor assemblies and thus lead to irreparable plastic deformations which are responsible for the premature wear of different components, including the ball bearings, the rotor blades and even the drive shaft.
  • the motor (20) comprises a stator (28) and a rotor (30). Blades (32) for the fan are attached directly to the rotor (30) and are built as a single unit. When assembled with the stator (28), this type of assembly results in improved dynamic stability as radial and axial forces are reduced and the useful lifetime of components is increased compared to existing products.
  • a spring element (34) is placed between the two sets of ball bearings (24 and 26) which creates a constant tensile axial force and results in improved stability.
  • the ball bearings (24 and 26) are tightly installed to create a proper radial balancing effect and therefore a better dynamic equilibrium effect for rotational speeds varying between 400 and 10 000 rpm.
  • a motor casing (36) covers all the motor (16) components.
  • the motor casing (36) comprises support arms (38) which link the center of the casing (35) holding the motor (16) assembly to the external part (40) of the casing (36).
  • a sealing element (42) is installed around the periphery (44) of the casing (36). With the motor casing (36) installed in the ventilator housing (12), the sealing element (42) is the principal contact element between the fan (16) and the external wall (14) of the housing (12). This type of assembly eliminates air leaks from the housing (12) as well as decreases the transmission of vibrations from the moving parts of the motor (16) to the housing (12). • ⁇
  • FIGS 5 and 6 are cut side views of the ventilation systems shown in Figures 1 and 2 respectively. These figures illustrate the common aspects between the two systems according to preferred embodiments of the present invention.
  • the ventilation system (10) comprises a housing (12) having an inlet (50) and an outlet (52), an axial fan (16) and an accelerating/deflecting structure (18).
  • the axial fan (16) comprises a casing (36) attached to the housing (12).
  • the axial fan (16) further comprises a motor (20) mounted within the casing (36) and blades (32) also mounted within the casing (36) to generate a flow of said fluid in an axial direction.
  • the accelerating/deflecting structure (18) in both cases is devised and positioned to orient the flow generated by the axial fan (16) in a direction transverse to said axial direction.
  • the locations of the axial fan and the accelerator/deflector are reversed with respect to each other.
  • the accelerating/deflecting structure is mounted upstream of the axial fan, instead of downstream as described in the previous embodiments.
  • the system in accordance with a preferred embodiment of this invention shown in the drawings is generally made of metallic materials. However, the invention is not limited to that type of material. The system can thus be manufactured from different plastics, composite materials or various alloys. Furthermore, the shape of the axial fan motor, the motor casing, the shape of the accelerator/deflector, the shape of the housing and the rotor blade shapes are elements among others that could be modified without departing from the scope of the present invention.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Structures Of Non-Positive Displacement Pumps (AREA)

Abstract

A ventilation system for an air or gaseous fluid has a housing having an inlet (50) and an outlet (52), an axial fan (16) and an accelerating/deflecting structure (18). The axial fan has a casing (36) attached to the housing. Moreover, the axial fan (16) has a motor mounted within the casing and blades (32) also mounted within the casing to generate a flow of said fluid in an axial direction. The accelerating/deflecting structure (18) is devised and positioned to orient the flow generated by the axial fan (16) in a direction transverse to said axial direction. The accelerating/deflecting structure (18) can either be mounted upstream or downstream of the axial fan (16). Furthermore, the accelerating/deflecting structure (18) can either be mounted within or outside the housing.

Description

VENTILATION SYSTEM WITH AXIAL FAN AND INTEGRATED ACCELERATOR/DEFLECTOR
FIELD OF THE INVENTION
The present invention generally relates to fans used in a residential, commercial, industrial and institutional context. More precisely, the invention relates to a new ventilation system with an axial fan and, preferably, an integrated accelerator/deflector.
BACKGROUND OF THE INVENTION
In standard ventilation systems, in particular those used in bathrooms, the fan motor is always fixed to a support, either on an inner ventilator wall opposite the air inlet or on a wall adjacent to the inlet. Such a configuration causes turbulence problems in the fluid flow to be evacuated as well as creating phenomena of air bac flow and noise. Another problem associated with standard ventilation systems arises from the transmission of vibrations from the motor to its support structure, with the noise generated by this transmission.
French patent FR 1255721 teaches a ventilator suspension system, particularly for kitchen ventilators, for which reductions in noise during its operation is a very important feature. This invention describes a suspension system that allows significant tangential motion of the axial fan motor which is suspended in a surrounding structure, while reducing axial motion of the fan motor, thus significantly reducing the noise being output from the ventilator.
German patent DE 91 08 745 U1 discloses a motor support system comprising a holding body made of rubber-elastic material with a surrounding ring part which spans around an intermediate bush surrounding a stator of an electric motor and holds in on a motor holder. In this construction, three arm parts are additionally provided which are uniformly distributed along the circumference, are molded onto the ring part and cause an additional support between the motor housing and the intermediate bush.
Most ventilators used in washrooms rely on propeller or centrifugal fans to create the required airflow through the ventilator.
Unfortunately, prior art devices in this field frequently are prone to premature clogging and corrosion, while having disappointing performances in terms of ventilating capacity.
In spite of the teachings of prior art, the above-described problems and issues with standard ventilation systems remain. Thus there still exists a need for a ventilation system which can better avoid the existing problems of turbulence, backflow, noise and vibration as well as the problems of premature clogging and corrosion.
SUMMARY OF THE INVENTION
It is an object of the invention to provide a new ventilation system with an axial fan and, preferably, an integrated accelerator/deflector.
Even though the system described hereinafter and shown in the following drawings is essentially an air ventilation system designed for washrooms, it can also be used in other fields including audio-video systems, home appliances, ventilation systems, heating/refrigeration, kitchens, air conditioning, as well as ventilation systems made to forcibly evacuate smoke, heat or different gases or residues. A first original feature of the present invention resides principally in the positioning and use of an axial fan which is fixed to the housing of the ventilator being used to evacuate the air (or other gaseous fluid). Another original feature of this invention resides in that the air or gaseous fluid must flow through an accelerator/deflector integrated to the ventilator housing and either mounted within or outside the housing, in order to improve the flow towards the ventilator outlet.
More specifically, the invention provides a ventilation system for an air or gaseous fluid comprising a housing having an inlet and an outlet, an axial fan and an accelerating/deflecting structure. The axial fan comprises a casing attached to the housing. The axial fan further comprises a motor mounted within the casing and blades also mounted within the casing to generate a flow of said fluid in an axial direction. The accelerating/deflecting structure is devised and positioned to reorient the flow generated by the axial fan in a direction transverse to said axial direction. The accelerating/deflecting structure can either be mounted upstream or downstream of the axial fan. Furthermore, the accelerating/deflecting structure can either be mounted within or outside the housing.
The present invention eliminates the backflow and air leak problems through a positioning of the axial fan which is assembled between two walls of the ventilator housing and using a sealing element between the fan and the housing. This type of assembly, when used in combination with an accelerator/deflector integrated to the housing, improves the fluid flow through the ventilator and therefore results in improved performance with respect to the ventilating capacity of the system. The accelerator/deflector improves the efficiency in terms of flow (in ft3/min) at the outlet of the ventilator, as it decreases turbulence in the flow.
The ventilation system according to the present invention offers performances several times superior to those obtained with prior art systems used in the above- mentioned fields for the removal of air from enclosed spaces. Furthermore, this system facilitates removal of undesirable particulate matter including mould, bacteria, solvent vapours, toxic gases, pesticides, foul odours, carbon monoxide, cooking residues, and dust. Moreover, when used, for example, in combination with Ventiflex™-type ducting which is known as a flexible, lightweight, durable ducting specifically designed to optimise the conveying of large volumes of air, safely and cleanly, performance is exceptional. The system has been designed to operate in different environments of varying temperature and humidity.
The system according to the present invention not only results in improved performance with respect to overall air flow, but also results in remarkable acoustic qualities surpassing those of existing ventilation systems under similar conditions. In addition, as opposed to systems that currently exist in the market, the noise level of the ventilator of the present invention does not increase proportionally with an increase in the airflow going through it.
In addition to the above-mentioned advantages, the ventilation system according to the invention does not require any maintenance or cleaning during all of its useful life, while existing systems tend to get dirty with dust and residues floating in the air. Moreover, the system is not vulnerable to corrosion in normal operating conditions in the presence of humid air in a washroom or any chemical fume produced by an industrial process, contrary to existing ventilation systems.
BRIEF DESCRIPTION OF THE DRAWINGS
The present invention and its advantages will be more easily understood after reading the following non-restrictive description of preferred embodiments thereof, made with reference to the following drawings in which:
Figure 1 is a perspective view of a ventilation system according to a first preferred embodiment of the invention wherein an accelerator/deflector is mounted outside the ventilator housing; Figure 2 shows a cut perspective view of a ventilation system according to a second preferred embodiment of the invention wherein an accelerator/deflector is mounted within the ventilation system housing;
Figure 3 shows a cut perspective view of a ventilation system according to a third preferred embodiment of the invention wherein an accelerator/deflector similar to the one shown in Figure 1 is mounted within the ventilation system housing;
Figure 4 is an exploded view of the axial fan used in the ventilation system shown in the previous figures;
Figure 5 is a cut side view of the ventilation system shown in Figure 1 ; and
Figure 6 is a cut side view of the ventilation system shown in Figure 2.
DESCRIPTION OF A PREFERRED EMBODIMENT OF THE INVENTION
In the first preferred embodiment of the invention shown in Figures 1 and 5, the ventilation system (10) for air or other gaseous fluids comprises a housing (12) through which the air or fluid flows. An axial fan (16) is fixed to the housing (12). The ventilation system (10) also comprises an accelerator/deflector (18) used to improve the air or fluid flow through the housing (12).
Figure 2 shows another type of ventilation system (10) according to a second preferred embodiment of the invention, wherein the accelerator/deflector (18) is mounted within the ventilation system housing (12).
Figure 3 shows a cut perspective view of a ventilation system (10) according to a third preferred embodiment of the invention, wherein an accelerator/deflector (18) similar to the one shown in Figure 1 is mounted within the ventilation system housing (12).
As shown in Figure 4, the axial fan (16) comprises a motor (20) in which two sets of ball bearings (24 and 26) are installed on either end of the drive shaft (22) which transmits the motor power. This type of motor assembly creates a better dynamic equilibrium when the motor is running. Moreover, this type of motor assembly decreases significantly problems related to bending moments in standard motor assemblies that have rotor blades placed at one of the extremities of the drive shaft. This accentuates problems due to the forces which sometime overcome the elastic limits of the materials used in such motor assemblies and thus lead to irreparable plastic deformations which are responsible for the premature wear of different components, including the ball bearings, the rotor blades and even the drive shaft. Also as shown in figure 4, the motor (20) comprises a stator (28) and a rotor (30). Blades (32) for the fan are attached directly to the rotor (30) and are built as a single unit. When assembled with the stator (28), this type of assembly results in improved dynamic stability as radial and axial forces are reduced and the useful lifetime of components is increased compared to existing products. In addition, a spring element (34) is placed between the two sets of ball bearings (24 and 26) which creates a constant tensile axial force and results in improved stability. The ball bearings (24 and 26) are tightly installed to create a proper radial balancing effect and therefore a better dynamic equilibrium effect for rotational speeds varying between 400 and 10 000 rpm.
A motor casing (36) covers all the motor (16) components. The motor casing (36) comprises support arms (38) which link the center of the casing (35) holding the motor (16) assembly to the external part (40) of the casing (36). A sealing element (42) is installed around the periphery (44) of the casing (36). With the motor casing (36) installed in the ventilator housing (12), the sealing element (42) is the principal contact element between the fan (16) and the external wall (14) of the housing (12). This type of assembly eliminates air leaks from the housing (12) as well as decreases the transmission of vibrations from the moving parts of the motor (16) to the housing (12). • ■
Figures 5 and 6 are cut side views of the ventilation systems shown in Figures 1 and 2 respectively. These figures illustrate the common aspects between the two systems according to preferred embodiments of the present invention. In both cases, the ventilation system (10) comprises a housing (12) having an inlet (50) and an outlet (52), an axial fan (16) and an accelerating/deflecting structure (18). The axial fan (16) comprises a casing (36) attached to the housing (12). The axial fan (16) further comprises a motor (20) mounted within the casing (36) and blades (32) also mounted within the casing (36) to generate a flow of said fluid in an axial direction. The accelerating/deflecting structure (18) in both cases is devised and positioned to orient the flow generated by the axial fan (16) in a direction transverse to said axial direction.
In an alternate preferred embodiment, the locations of the axial fan and the accelerator/deflector are reversed with respect to each other. In this configuration, the accelerating/deflecting structure is mounted upstream of the axial fan, instead of downstream as described in the previous embodiments.
The system in accordance with a preferred embodiment of this invention shown in the drawings is generally made of metallic materials. However, the invention is not limited to that type of material. The system can thus be manufactured from different plastics, composite materials or various alloys. Furthermore, the shape of the axial fan motor, the motor casing, the shape of the accelerator/deflector, the shape of the housing and the rotor blade shapes are elements among others that could be modified without departing from the scope of the present invention.
A system as shown has been manufactured from the following materials and has proved to offer the following performance characteristics:
Figure imgf000010_0001
Figure imgf000011_0001
Although the present invention has been explained hereinabove by way of a preferred embodiment thereof, it should be pointed out that any modifications to this preferred embodiment within the scope of the appended claims is not deemed to alter or change the nature and scope of the present invention. The great rigidity, stability, durability, high capacity and low noise output qualities of this new system makes it an interesting product for use in several fields as described above.

Claims

1. A ventilation system for an air or gaseous fluid comprising: a housing having an inlet and an outlet; an axial fan; and an accelerating/deflecting structure, wherein the axial fan comprises a casing attached to the housing, a motor mounted within the casing and blades also mounted within the casing to generate a flow of said fluid in an axial direction, and wherein the accelerating/deflecting structure is devised and positioned to orient the flow generated by the axial fan in a direction transverse to said axial direction.
2. A ventilation system according to claim 1 wherein the accelerating/deflecting structure is mounted downstream of the axial fan.
3. A ventilation system according to claim 1 wherein the accelerating/deflecting structure is mounted upstream of the axial fan.
4. A ventilation system according to any one of claims 1 to 3 wherein the accelerating/deflecting structure is mounted within the housing.
5. A ventilation system according to any one of claims 1 to 3 wherein the accelerating/deflecting structure is mounted outside the housing.
6. The ventilation system according to any one of claims 1 to 5 wherein the axial fan motor further comprises a stator and a rotor and wherein the blades are integrated to the rotor to form a single component.
7. The ventilation system according to any one of claims 1 to 6 wherein the axial fan motor comprises a drive shaft surrounded by a spring element and a set of ball bearings located at both ends of the spring element.
8. The ventilation system according to any one of claims 1 to 7 wherein a sealing medium is located at the interface where the housing and the axial fan casing are attached to each other.
9. Use of the ventilation system according to any one of claims 1 to 8 for ventilation of a washroom.
10. Use of the ventilation system according to any one of claims 1 to 8 for ventilation of audio-video systems and home appliances.
11. Use of the ventilation system according to any one of claims 1 to 8 for ventilation in air conditioning systems.
12. Use of the ventilation system according to any one of claims 1 to 8 for evacuation of smoke, heat, gases and residues from rooms.
PCT/CA2004/000179 2003-02-10 2004-02-10 Ventilation system with axial fan and integrated accelerator/deflector WO2004070208A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US11/198,327 US20060024183A1 (en) 2003-02-10 2005-08-08 Ventilation system with axial fan and integrated accelerator/deflector

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
CA2,418,636 2003-02-10
CA002418636A CA2418636A1 (en) 2003-02-10 2003-02-10 Fan muffler
CA2,447,334 2003-10-31
CA002447334A CA2447334A1 (en) 2003-02-10 2003-10-31 Axial fan evacuation system with integrated accelerator/deflector

Related Child Applications (1)

Application Number Title Priority Date Filing Date
US11/198,327 Continuation US20060024183A1 (en) 2003-02-10 2005-08-08 Ventilation system with axial fan and integrated accelerator/deflector

Publications (1)

Publication Number Publication Date
WO2004070208A1 true WO2004070208A1 (en) 2004-08-19

Family

ID=32851602

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CA2004/000179 WO2004070208A1 (en) 2003-02-10 2004-02-10 Ventilation system with axial fan and integrated accelerator/deflector

Country Status (3)

Country Link
US (1) US20060024183A1 (en)
CA (1) CA2447334A1 (en)
WO (1) WO2004070208A1 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108571757A (en) * 2017-03-08 2018-09-25 博西华电器(江苏)有限公司 The photographic device and range hood of range hood

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2484385C2 (en) * 2011-06-15 2013-06-10 Российская академия сельскохозяйственных наук Государственное научное учреждение Всероссийский научно-исследовательский институт электрификации сельского хозяйства Российской академии сельскохозяйственных наук (ГНУ ВИЭСХ Россельхозакадемии) Deflector-fan
TWI517782B (en) * 2011-11-11 2016-01-11 華碩電腦股份有限公司 Heat dissipating module
FR3023877B1 (en) * 2014-07-16 2019-04-19 Alstom Transport Technologies VENTILATION DEVICE WITH REDUCED AXIAL SIZE
US10982863B2 (en) 2018-04-10 2021-04-20 Carrier Corporation HVAC fan inlet

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR1255721A (en) 1959-04-27 1961-03-10 Electrolux Ab Device for the suspension of a power unit and devices fitted with this device
US4152094A (en) * 1975-10-31 1979-05-01 Hitachi, Ltd. Axial fan
DE3710185A1 (en) * 1987-03-27 1988-10-13 Skf Gmbh Fixed bearing for a spindle which is installed in a housing and loaded in an axial direction
DE9108745U1 (en) 1991-07-16 1992-11-12 Robert Bosch Gmbh, 7000 Stuttgart Electric motor, in particular small motor for auxiliary motor vehicles
US20020031428A1 (en) * 2000-09-08 2002-03-14 Chien-Chung Li Adjustable and stable pre-loading device equipped fan
US6386845B1 (en) * 1999-08-24 2002-05-14 Paul Bedard Air blower apparatus
US6411509B1 (en) * 2000-04-07 2002-06-25 Delts Electronics, Inc. Tube-conducting fan assembly

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5862037A (en) * 1997-03-03 1999-01-19 Inclose Design, Inc. PC card for cooling a portable computer
US6122168A (en) * 1999-05-27 2000-09-19 Cheng; Henry Power supply
US6343011B1 (en) * 2000-08-03 2002-01-29 Lite-On Enclosure Inc. Screwless wind conduit positioning device
US6585485B2 (en) * 2001-05-23 2003-07-01 Sen-Yung Lee Air flow guide device on heat dispensing fan

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR1255721A (en) 1959-04-27 1961-03-10 Electrolux Ab Device for the suspension of a power unit and devices fitted with this device
US4152094A (en) * 1975-10-31 1979-05-01 Hitachi, Ltd. Axial fan
DE3710185A1 (en) * 1987-03-27 1988-10-13 Skf Gmbh Fixed bearing for a spindle which is installed in a housing and loaded in an axial direction
DE9108745U1 (en) 1991-07-16 1992-11-12 Robert Bosch Gmbh, 7000 Stuttgart Electric motor, in particular small motor for auxiliary motor vehicles
US6386845B1 (en) * 1999-08-24 2002-05-14 Paul Bedard Air blower apparatus
US6411509B1 (en) * 2000-04-07 2002-06-25 Delts Electronics, Inc. Tube-conducting fan assembly
US20020031428A1 (en) * 2000-09-08 2002-03-14 Chien-Chung Li Adjustable and stable pre-loading device equipped fan

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108571757A (en) * 2017-03-08 2018-09-25 博西华电器(江苏)有限公司 The photographic device and range hood of range hood
CN108571757B (en) * 2017-03-08 2021-06-08 博西华电器(江苏)有限公司 Range hood's camera device and range hood

Also Published As

Publication number Publication date
CA2447334A1 (en) 2004-08-10
US20060024183A1 (en) 2006-02-02

Similar Documents

Publication Publication Date Title
JP4366092B2 (en) Blower motor
KR100413177B1 (en) multi-blade centrifugal fan
CN101263304B (en) Blower for air handling equipment
EP3742056A1 (en) Range hood with vortex fan
CN201141660Y (en) Suspension machine of air conditioner
AU6107196A (en) Flexible impeller for a vacuum cleaner
WO2017060987A1 (en) Blower and air conditioning device provided with same
US20060024183A1 (en) Ventilation system with axial fan and integrated accelerator/deflector
US5285842A (en) Heat recovery ventilator
EP0926452A4 (en) Air conditioner
US20080134713A1 (en) Turbo fan and air conditioner having the same
US20060171804A1 (en) Fluid moving device
KR102322341B1 (en) Fan for Noise and Vibration Reduction and Air Conditioner with the Same
JP4978268B2 (en) Air conditioner
KR101348035B1 (en) Centrifugal fan, molding die, and fluid feeder
JP2003021356A (en) Air conditioner
JP4515154B2 (en) Air conditioner plug fan room
EP1865263A2 (en) Integrated fan assembly for cooling an oven
CN1168904C (en) Axial ventilation structure for motor of blower
JP4497398B2 (en) Air conditioner plug fan room
CN2288375Y (en) Exhaustor
WO2021049536A1 (en) Ventilation fan
EP1680629B1 (en) Ventilator
CN1641227A (en) Electric air-blowing machine
CN216080196U (en) Fresh air device and air conditioner

Legal Events

Date Code Title Description
AK Designated states

Kind code of ref document: A1

Designated state(s): AE AG AL AM AT AU AZ BA BB BG BR BW BY BZ CA CH CN CO CR CU CZ DE DK DM DZ EC EE EG ES FI GB GD GE GH GM HR HU ID IL IN IS JP KE KG KP KR KZ LC LK LR LS LT LU LV MA MD MG MK MN MW MX MZ NA NI NO NZ OM PG PH PL PT RO RU SC SD SE SG SK SL SY TJ TM TN TR TT TZ UA UG US UZ VC VN YU ZA ZM ZW

AL Designated countries for regional patents

Kind code of ref document: A1

Designated state(s): BW GH GM KE LS MW MZ SD SL SZ TZ UG ZM ZW AM AZ BY KG KZ MD RU TJ TM AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HU IE IT LU MC NL PT RO SE SI SK TR BF BJ CF CG CI CM GA GN GQ GW ML MR NE SN TD TG

121 Ep: the epo has been informed by wipo that ep was designated in this application
WWE Wipo information: entry into national phase

Ref document number: 11198327

Country of ref document: US

WWP Wipo information: published in national office

Ref document number: 11198327

Country of ref document: US

122 Ep: pct application non-entry in european phase