WO2016157476A1 - Ventilateur de ventilation - Google Patents

Ventilateur de ventilation Download PDF

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Publication number
WO2016157476A1
WO2016157476A1 PCT/JP2015/060374 JP2015060374W WO2016157476A1 WO 2016157476 A1 WO2016157476 A1 WO 2016157476A1 JP 2015060374 W JP2015060374 W JP 2015060374W WO 2016157476 A1 WO2016157476 A1 WO 2016157476A1
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WO
WIPO (PCT)
Prior art keywords
ventilation fan
flange
protective cover
back surface
wind tunnel
Prior art date
Application number
PCT/JP2015/060374
Other languages
English (en)
Japanese (ja)
Inventor
秀肇 大和
喜弘 加川
小林 大祐
裕允 山内
Original Assignee
三菱電機株式会社
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 三菱電機株式会社 filed Critical 三菱電機株式会社
Priority to JP2017509092A priority Critical patent/JP6239191B2/ja
Priority to PCT/JP2015/060374 priority patent/WO2016157476A1/fr
Publication of WO2016157476A1 publication Critical patent/WO2016157476A1/fr

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F7/00Ventilation
    • F24F7/04Ventilation with ducting systems, e.g. by double walls; with natural circulation
    • F24F7/06Ventilation with ducting systems, e.g. by double walls; with natural circulation with forced air circulation, e.g. by fan positioning of a ventilator in or against a conduit
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F7/00Ventilation
    • F24F7/04Ventilation with ducting systems, e.g. by double walls; with natural circulation
    • F24F7/06Ventilation with ducting systems, e.g. by double walls; with natural circulation with forced air circulation, e.g. by fan positioning of a ventilator in or against a conduit
    • F24F7/10Ventilation with ducting systems, e.g. by double walls; with natural circulation with forced air circulation, e.g. by fan positioning of a ventilator in or against a conduit with air supply, or exhaust, through perforated wall, floor or ceiling

Definitions

  • the present invention relates to a ventilation fan that is installed indoors on a wall or ceiling of a building and sucks indoor air and exhausts it to the outside through a blower pipe.
  • a ventilation fan that is inserted and attached to a blower pipe such as a pipe or duct that communicates indoors and outdoors at an attachment part such as a wall or ceiling of a building, and ventilates the room air by venting the room air outside the room.
  • a ventilation fan includes a cylindrical wind tunnel inserted into a blower pipe and a blower in which a propeller type impeller rotates in the wind tunnel.
  • a flange projecting in the radial direction is continuously provided on the outer periphery of the indoor opening of the cylindrical wind tunnel.
  • Such ventilation fan is generally fixed to an attachment portion such as a wall or a ceiling using attachment parts such as wood screws.
  • Patent Document 1 discloses that a holding structure that can be mounted by a pillow portion that addresses a base portion of an attachment component and a guard portion that surrounds the distal end portion of the attachment component is configured on the back surface of the flange.
  • Patent Document 2 discloses a holding portion that is integrally provided on the back side of the flange portion and holds the mounting screw before use so as to protrude from the end surface on the wall surface side of the flange portion.
  • the wood screw holding structure when the wood screw holding structure has an undercut, the wood screw holding structure can be manufactured using a slide core mold.
  • the slide core method when the slide core method is adopted, the structure of the mold becomes complicated, and the mold manufacturing cost becomes expensive. Therefore, in order to suppress the mold manufacturing cost, it is conceivable to configure the wood screw holding structure as a structure in which an opening hole is formed in a portion corresponding to the undercut of the wood screw holding structure in the main body flange.
  • the present invention has been made in view of the above, and obtains a ventilation fan having a holding structure for holding a mounting part for mounting at an installation place without opening an opening hole in the flange and having improved outside air intrusion resistance. For the purpose.
  • the present invention includes a cylindrical wind tunnel, a flange that is connected to a peripheral edge portion of a suction port on the front side of the wind tunnel, and extends radially.
  • a ventilating fan that is attached to an indoor mounting portion, and is attached to the back surface of the flange, and includes a main body frame having a rising portion that is connected to the rear surface and protrudes toward the back side, and a blower that has an impeller that rotates in the wind tunnel.
  • a protective cover that covers the electrical connection component provided from the back side and is attached to the back side of the main body frame, and an attachment component holding that is formed on the back side of the protective cover and that is used for mounting the ventilation fan And a section.
  • a ventilation fan having a holding structure for holding a mounting part for mounting at an installation place without opening an opening hole in the flange and having improved outside air invasion resistance.
  • the schematic longitudinal cross-sectional view which shows the state which installed the ventilation fan concerning embodiment of this invention in the ventilation pipe
  • the perspective view of the outdoor side of the ventilation fan concerning embodiment of this invention The disassembled perspective view of the outdoor side of the ventilation fan concerning embodiment of this invention
  • the perspective view which showed the state which accommodated the control board high electrical current part in the main body of the ventilation fan concerning embodiment of this invention The perspective view which showed the control board weak electric part and sensor of the ventilation fan concerning embodiment of this invention
  • the schematic cross section which showed the connection state of the control board strong power part and relay line of the ventilation fan concerning embodiment of this invention
  • the schematic cross section which showed the connection state of the control board weak electricity part and relay line of the ventilation fan concerning embodiment of this invention The schematic cross section which showed the connection state of the control board weak electricity part and relay line of the ventilation fan concerning embodiment of this invention
  • maintenance part provided in the protective cover of the ventilation fan concerning embodiment of this invention The top view which showed the state which fixed the wood screw to the holding
  • the perspective view of the outdoor side of the other ventilation fan concerning this Embodiment The disassembled perspective view of the outdoor side of the other ventilation fan concerning this Embodiment
  • FIG. 1 is a schematic longitudinal sectional view showing a state in which a ventilation fan 1 according to an embodiment of the present invention is installed on a blower pipe 7.
  • FIG. 2 is a perspective view of the outdoor side 5 of the ventilation fan 1 according to the embodiment of the present invention.
  • FIG. 3 is an exploded perspective view of the outdoor side 5 of the ventilation fan 1 according to the embodiment of the present invention, and is an exploded perspective view showing a state in which the protective cover 80 is removed from the ventilation fan 1.
  • the relationship of the size of each component may be different from the actual one.
  • the ventilation fan 1 As shown in FIGS. 1 to 3, the ventilation fan 1 according to the present embodiment is installed by being inserted from the indoor side 4 into the indoor side 4 of the installation place such as the wall or ceiling of the building.
  • the ceiling 6 is the mounting location.
  • the ventilation fan 1 includes a main body 2 in which a blower 20 is attached to a resin-made main body frame 10 having a cylindrical air channel 11 inserted into a blower pipe 7 that allows communication between the room and the outside. And a design grill 3 attached and fixed by claw fitting or the like.
  • the blower pipe 7 is a pipe.
  • the left side of FIG. 1 is referred to as “front side”
  • the right side of FIG. 1 is referred to as “back side”.
  • the main body frame 10 is made of resin and has a cylindrical wind tunnel 11 inserted into the blower pipe 7.
  • An opening 12 that is a suction port for sucking air into the wind tunnel 11 is opened on the front side of the wind tunnel 11, that is, the indoor side, and the peripheral portion 13 of the opening 12 in the wind tunnel 11 is configured in a bell mouth shape.
  • a front surface structure is integrally formed on the peripheral portion 13.
  • the front structure includes a square-shaped flange 14 projecting from the peripheral edge portion 13 toward the outer side in the radial direction of the wind tunnel 11, and a rising portion 15 erected from the edge on the outer side in the radial direction of the flange 14 toward the rear surface side.
  • the back surface of the main body frame 10 is formed in a concave shape by the wind tunnel 11, the peripheral edge portion 13, the flange 14 and the rising portion 15, and various members can be stored in the concave region.
  • the rising portion 15 is provided with two attachment portions 17 having long holes 16 at opposing positions, and each of the long holes 16 is an attachment hole (not shown) formed on the front surface of the flange 14. It is connected to.
  • the blower 20 includes a propeller-type impeller 21 and a fan motor 22 that has a rotating shaft 23 and rotates the impeller 21.
  • the blower 20 is attached to the back side of the wind tunnel 11 of the main body frame 10.
  • the fan motor mounting portion 24 is provided on the back side of the wind tunnel 11 at intervals in the circumferential direction of the wind tunnel 11 and has four legs 25 extending rearward along the center line direction of the wind tunnel 11 and each leg.
  • the bridge part 26 connected so that it may extend toward the radial inside of the wind tunnel 11 from the edge part of the part 25, and the motor cover 27 supported by the bridge part 26 at the center of the wind tunnel 11 are provided.
  • the four leg portions 25 are all located on the radially inner side of the outer periphery of the wind tunnel 11.
  • the fan motor 22 is screwed so that the rotation shaft 23 protrudes from the tip of the motor cover 27 onto the center line of the wind tunnel 11.
  • the impeller 21 is mounted on the rotary shaft 23 in a state of being included in the wind tunnel 11. As the fan motor 22 operates and the rotating shaft 23 rotates, the impeller 21 rotates in the wind tunnel 11.
  • a mounting spring 28 that extends toward the outside in the radial direction of the wind tunnel 11 is attached to the bridge portion 26 that is connected to one of the four legs 25.
  • the attachment spring 28 is provided with a warp in order to hold the main body 2 in the blower pipe 7 by the expanding elastic force in the radial direction.
  • the attachment spring 28 is used for temporarily fixing the main body 2 before the main body 2 is fixed to the attachment portion with a wood screw.
  • the ventilation fan may be attached without inserting the main body into the air duct and using the wood spring due to the expansion elasticity of the leaf spring, but it is generally performed by fixing the main body to the attachment portion with the wood screw. .
  • the design grill 3 is configured to cover the flange 14 and the rising portion 15 which are the front structure of the main body frame 10 from the front side.
  • the design grill 3 includes a shutter portion 30 that opens the wind tunnel 11 when the ventilation fan 1 is in operation and closes the wind tunnel 11 when the ventilation fan 1 is stopped, and a spring 31 that closes the shutter portion 30.
  • the design grill 3 is detachably attached and fixed to the main body 2 by a fixing method such as claw fitting, and the design grill 3 can be easily cleaned by removing it.
  • a rod 33 for opening the shutter unit 30 is attached to the front side of the main body 2.
  • An electric motor 32 for opening the shutter unit 30 is attached to the back side of the main body 2.
  • a wire (not shown) attached to the electric motor 32 is drawn out from the opening (not shown) provided in the main body 2 to the front side of the main body 2.
  • the movement of the rod 33 can be controlled by winding the wire by the electric motor 32 or drawing the wire.
  • the rod 33 pushes the shutter unit 30 from the outdoor side 5 to the indoor side 4, thereby opening the shutter unit 30 and opening the wind tunnel 11. Further, when the operation of the ventilation fan 1 is stopped, the shutter portion 30 is closed by the reaction force of the spring 31 provided on the design grill 3.
  • a power supply unit 34 is accommodated in a region near the left corner on the upper side of the main body 2.
  • the power supply unit 34 supplies AC power supplied from an external power supply outside the ventilation fan 1 to the fan motor 22 and the electric motor 32 via a relay line (not shown).
  • a relay line (not shown).
  • FIG. 4 is a perspective view showing a state where the control board high-voltage unit 40 is housed in the main body 2 of the ventilation fan 1 according to the embodiment of the present invention.
  • FIG. 5 is a perspective view showing the control board light-electricity section 50 and the sensor 70 of the ventilation fan 1 according to the embodiment of the present invention.
  • FIG. 6 is a schematic cross-sectional view showing a connection state between the control board high voltage section 40 and the relay line 60 of the ventilation fan 1 according to the embodiment of the present invention.
  • FIG. 7 is a schematic cross-sectional view showing a connection state between the control board low-voltage part 50 and the relay line 60 of the ventilation fan 1 according to the embodiment of the present invention.
  • FIG. 8 is a schematic cross-sectional view showing a connection state between the control board low-voltage part 50 and the relay line 61 of the ventilation fan 1 according to the embodiment of the present invention.
  • FIG. 9 is a schematic cross-sectional view showing a connection state between the sensor 70 and the relay wire 61 of the ventilation fan 1 according to the embodiment of the present invention.
  • the ventilation fan 1 is control judgment information used for judgment in the control of the operation of the ventilation fan 1, such as the presence or absence of a person in the room, the movement of a person in the room, the humidity in the room, the temperature in the room, the concentration of a specific gas in the room, and the like.
  • the control board and the sensor 70 are mounted in order to detect the state information and automatically switch the operation, stop, strong operation, and weak operation of the ventilation fan 1 based on the detection result.
  • As a control board it has the control board high electric current part 40 and the control board low electric current part 50 which are shown in FIG.
  • the control board high power unit 40 is a power supply board that is an inverter circuit board that converts AC power supplied from an external power source (not shown) outside the ventilation fan 1 into DC power. AC power may be directly supplied from the external power source to the control board high voltage unit 40, or AC power may be supplied from the external power source via the power source unit 34. When an alternating current is supplied from the power supply unit 34 to the control board high voltage unit 40, the power supply unit 34 and the control board high voltage unit 40 are electrically connected by a relay line (not shown).
  • the control board high power unit 40 is housed in a protective case 41 and is used in a state covered with the protective case 41.
  • the protective case 41 protects the control board high-voltage unit 40 from water droplets and dust, and can prevent external influence when a short circuit occurs in the control board high-voltage unit 40.
  • the control board high voltage unit 40 is housed in a right corner vicinity region on the upper side of the main body 2 on the back surface of the flange 14 in a state of being covered with the protective case 41.
  • the control board high power unit 40 is electrically connected to the control board low power unit 50 via a relay line 60 that is a lead wire.
  • the control board high power unit 40 supplies DC power generated from the AC power to the control board light power unit 50 via the relay line 60.
  • the control board high power unit 40 is provided with a connector 40 a for connecting to the relay line 60.
  • the control board light power section 50 is provided with a connector 50 a for connecting to the relay line 60.
  • connectors 60 a are provided at both ends of the relay line 60. Then, the control board high power section 40 and the relay line 60 are electrically connected by connecting the connector 40a and the connector 60a, and the control board low power section 50 and the relay line 60 are connected by connecting the connector 50a and the connector 60a.
  • the relay line 60 connected to the connector 40 a of the control board high-voltage unit 40 is drawn out from a notch provided on one side surface of the protective case 41.
  • the control board low-power unit 50 is a control unit that performs control to automatically switch the operation, stop, strong operation, and weak operation of the ventilation fan 1 based on the detection data of the sensor 70.
  • the control board light-electricity part 50 is comprised by the circuit board carrying a microcomputer.
  • the control board light power unit 50 uses DC power supplied from the control board high power unit 40 via the relay line 60 as a power source.
  • control board light current section 50 is housed in the lower side of the main body 2 on the back surface of the flange 14 in the direction in which the relay line 60 is pulled out from the control board high power section 40.
  • the control board low-power unit 50 and the sensor 70 can transmit and receive various types of information via the relay line 61. Further, the control board low-power unit 50 supplies a part of the DC power supplied from the control board high-voltage unit 40 via the relay line 60 to the sensor 70 via the relay line 61. The sensor 70 uses DC power supplied from the control board low power unit 50 via the relay line 61 as a power source.
  • control board low-power unit 50 sets the indoor humidity, the indoor temperature, and the concentration of the specific gas in the room, which are threshold values when automatically switching the operation of the ventilation fan 1 based on the detection result of the sensor 70.
  • a setting unit 51 for changing the value is provided.
  • the control board light electrical unit 50 calculates the set values of the room humidity, the room temperature, and the concentration of the specific gas in the room by a predetermined calculation process.
  • the control board weak electric power part 50 uses this calculation result as a threshold value, and switches the operation
  • the control board low-power unit 50 includes an operation state switching unit 52 that can change the operation state to continuous operation-sensor automatic operation-operation stop.
  • the sensor 70 is provided with a connector 70 a for connecting to the relay line 61.
  • the control board light power section 50 is provided with a connector 50 b for connecting to the relay line 61.
  • connectors 61 a are provided at both ends of the relay line 61. Then, the sensor 70 and the relay line 61 are electrically connected by connecting the connector 70a and the connector 61a, and the control board low-voltage part 50 and the relay line 61 are electrically connected by connecting the connector 50b and the connector 61a. Connected. As a result, the control board low power unit 50 and the sensor 70 are electrically connected via the relay line 61.
  • the sensor 70 for detecting the movement of the person, the humidity in the room, the temperature in the room, and the concentration of the specific gas in the room is housed in the rear side of the flange 14 at a position next to the housing part of the control board low-power unit 50. Further, by providing the connector 50b on the side of the sensor 70 in the control board low-power section 50, the control board low-power section 50 and the sensor 70 can be connected by the short-length relay line 61, thereby reducing the cost of the relay line 61. In addition, the wiring work of the relay line 61 can be facilitated.
  • control board high-power section 40, the control board low-power section 50, and the sensor 70 are fixed to the back surface of the flange 14 by a protective cover 80 that covers them from the back side, and are insulated from the outside.
  • the relay line 60 and the relay line 61 are also covered with a protective cover 80 and insulated from the outside.
  • the relay line connecting the control board high voltage unit 40 and the power supply unit 34 is also covered with the protective cover 80 from the outside. Insulated.
  • the protective cover 80 is attached to the back surface side of the main body frame 10 so as to cover the electronic components and the electrical connection components arranged on the back surface of the flange 14 and protect these members.
  • the protective cover 80 By attaching the protective cover 80 to the back side of the main body 2, it is possible to reduce the amount of foreign matters such as water droplets and dust on the electronic components and electrical connection components arranged in the region covered with the protective cover 80.
  • the control board can be insulated from the outside, and the electronic component and the electrical connection component can be prevented from being damaged.
  • control board high power unit 40, the control board light power unit 50, the sensor 70, and the relay lines 60 and 61 can be covered with one protective cover 80, standardization of parts, reduction of the number of parts used, and reduction of mold cost, The effect of shortening the assembly work time can be obtained.
  • the protective cover 80 includes a plurality of claw portions 80a and hook portions 80c provided on the outer periphery of the protective cover 80, and is provided on the main body 2 side to engage with the claw portions 80a and the hook portions 80c. It is attached to the main body 2 by nail fitting by being hooked on the hook portion 2a and the claw portion 2b to be joined, and is fixed to the back surface of the flange 14.
  • a plurality of hooks 2 a are provided on the rising portion 15 in the main body 2.
  • a plurality of claw portions 2b are provided on a partition plate 18 provided to protrude from the flange 14 to the back side.
  • the protective cover 80 attached to the main body 2 has at least a part of the surface on the flange 14 side in contact with the control board high-voltage part 40, the control board low-voltage part 50, and the sensor 70.
  • the part 50 and the sensor 70 can be fixed to the back surface of the flange 14 from the back surface side.
  • the protective cover 80 does not protrude from the end face of the rising portion 15 when attached to the main body 2. That is, although the back surface of the protective cover 80 has irregularities, the position of the back surface side of the protective cover 80 attached to the main body 2 in the direction perpendicular to the flange 14 is the same position as the end surface of the rising portion 15 or the rising portion. It is located closer to the flange 14 than the end face of 15. Thereby, when the ventilation fan 1 is attached to the ceiling 6, the main body frame 10 does not float from the ceiling 6.
  • the portions covering the area where the relay line 60, which is an electrical connection component, is disposed are the control board high-voltage unit 40 and the control board light-power, which are electronic components. It is located closer to the flange 14 than the part covering the portion 50.
  • FIG. 10 is a perspective view showing the holding portion 91 provided in the protective cover 80 of the ventilation fan 1 according to the embodiment of the present invention.
  • FIG. 11 is a perspective view showing a state in which the wood screw 90 is fixed to the holding portion 91 provided in the protective cover 80 of the ventilation fan 1 according to the embodiment of the present invention.
  • FIG. 12 is a top view showing the holding portion 91 provided in the protective cover 80 of the ventilation fan 1 according to the embodiment of the present invention.
  • FIG. 13 is a top view showing a state in which the wood screw 90 is fixed to the holding portion 91 provided in the protective cover 80 of the ventilation fan 1 according to the embodiment of the present invention.
  • the holding portion 91 includes a screw head holding portion 91a, a protruding portion 91b, a screw center holding portion 91c, a first rib 91d, a second rib 91e, and a screw tip holding portion 91f.
  • the holding portion 91 is not provided in a region covering the control board high power unit 40 and the control board low power unit 50 which are electronic components, but is provided in a region covering the electrical connection component on the back surface 80b of the protective cover. That is, in the present embodiment, the holding portion 91 is provided on the back surface of the protective cover 80 that covers the region where the relay wire 60 that is an electrical connection component is disposed on the back surface of the flange 14.
  • the holding portion 91 is integrally formed with the protective cover 80 by injection molding.
  • the holding portion 91 holds the wood screw 90 with the extending direction of the wood screw 90 being parallel to the surface direction of the back surface of the flange 14.
  • the holding portion 91 sandwiches the central region in the extending direction of the wood screw 90 between the protruding portion 91b having the head 91g of the protruding portion and the screw center holding portion 91c, thereby moving the wood screw 90 in the vertical direction relative to the back surface 80b of the protective cover. Suppressed.
  • the surface of the back surface 80b of the protective cover in the wood screw 90 is improved by suppressing the movement in the direction.
  • the screw head holding portion 91a, the screw center holding portion 91c, the projection head 91g, and the screw tip holding portion 91f are arranged in a plane direction perpendicular to the extending direction of the wood screw 90 when the wood screw 90 is fixed to the holding portion 91.
  • the upper end portion on the outdoor 5 side of the screw head 90 b of the wood screw 90 having a disk shape is configured not to protrude from the end portion of the rising portion 15 of the main body 2 to the back side.
  • the screw head holding portion 91a, the screw center holding portion 91c, the projection head 91g, and the screw tip holding portion 91f are arranged such that when the wood screw 90 is fixed to the holding portion 91, the upper end portion of the screw head 90b is the body 2
  • the height position of the portion holding the wood screw 90 is adjusted so as not to protrude from the end of the rising portion 15 to the back side.
  • the upper end portion of the screw head 90b is a portion located on the most back side in the screw head 90b when the wood screw 90 is fixed to the holding portion 91. That is, in the direction perpendicular to the flange 14, the position of the upper end portion of the screw head 90 b is located at the same position as the end surface of the rising portion 15 or closer to the flange 14 than the end surface of the rising portion 15.
  • the screw head 90b comes into contact with the protective cover 80, the wood screw 90 is lifted from the predetermined arrangement position to the outdoor 5 side, and the upper end portion of the screw head 90b is raised from the main body 2. Protruding from the end of the portion 15 to the back side is conceivable.
  • a recess 91h that is recessed from the back side to the indoor side is formed in the protective cover 80 at a position facing the screw head 90b when the wood screw 90 is fixed to the holding portion 91 and its peripheral region. It is effective to provide it. In this case, a part of the screw head 90b on the protective cover 80 side is held in a state of entering the recess 91h.
  • the screw head 90b is adjusted by adjusting the height position of the portion for holding the wood screw 90 in the screw head holding portion 91a, the screw center holding portion 91c, the projection head 91g, and the screw tip holding portion 91f, and by providing the recess 91h. It is possible to make the position of the upper end of the flange 14 closer. Thereby, the screw head 90b protrudes from the end portion of the rising portion 15 of the main body 2 to the back side, and it is possible to prevent an injury caused by an operator or the like touching the wood screw 90 carelessly.
  • the screw head 90b comes into contact with the protective cover 80 due to the size of the screw head 90b, or an operator or the like carelessly touches the wood screw 90 to bring the wood screw 90 into contact with the protective cover 80. Due to this, it is possible to prevent the protective cover 80 from being damaged.
  • the recess 91h can be an opening. However, it is preferable to form a recess between the protective cover 80 and the flange 14 so that moisture and dust do not enter from the opening.
  • a convex shape may be provided at a position facing the screw head 90b when the wood screw 90 is fixed to the holding portion 91 and in the peripheral region.
  • the upper end portion of the screw head 90 b protrudes from the end portion of the rising portion 15 of the main body 2 to the back side. That is, the screw head holding portion 91a, the screw center holding portion 91c, the projection head 91g, and the screw tip holding portion 91f are arranged such that when the wood screw 90 is fixed to the holding portion 91, the upper end portion of the screw head 90b is the main body 2.
  • the height position of the portion that holds the wood screw 90 is configured to protrude from the end of the rising portion 15 to the back side.
  • the design grill 3 can be removed from the main body 2 during inspection after the ventilation fan 1 is attached.
  • a claw portion 80a for attaching the protective cover 80 to the main body 2 is provided around the holding portion 91 on the outer periphery of the protective cover 80, and this claw portion is also provided on the main body 2 side. It is preferable to provide the hook portion 2a at a position where the claw is fitted to 80a. Thereby, when an operator removes the wood screw 90 from the protective cover 80, it can be set as the structure where the nail
  • the position where the claw portion 80 a is formed is more preferably a position facing the holding portion 91 on the outer periphery of the protective cover 80.
  • the holding portion 91 is provided on the back surface of the protective cover 80, and the wood screw 90 can be fixed to the protective cover 80, so that an opening hole is provided in the flange 14 of the main body 2 for forming the holding structure of the wood screw 90. There is no need. This eliminates intrusion of outdoor air from the back side of the flange 14 to the indoor side through the opening hole of the flange 14, and prevents intrusion of outdoor air from the back side of the flange 14 to the indoor side when the ventilation fan 1 is stopped. Can be suppressed.
  • the ventilation fan 1 by suppressing the intrusion of outdoor air into the indoor side, when the ventilation fan 1 stops operating, the amount of condensation generated on the surfaces of the design grill 3 and the shutter unit 30 even when there is a large temperature difference between indoors and outdoors, such as in winter. Can be reduced. Therefore, in the ventilation fan 1, it is possible to improve the resistance to intrusion of outside air and the resistance to condensation.
  • the holding portion 91 when the holding portion 91 is realized, the above-described effect can be obtained even if the opening is formed in a part of the protective cover 80. For this reason, even when the holding part 91 has a structure having an undercut, the holding part 91 can be formed without adopting a slide core method, which makes the mold production expensive. Can be suppressed.
  • the holding portion 91 has a protruding portion head 91g, and thus has a structure having an undercut. For this reason, the holding portion 91 has a structure having an opening hole 91i in the lower region of the head 91g of the protruding portion of the protective cover 80 in order to produce the holding portion 91 without adopting a slide core method that makes the mold production expensive. Yes.
  • the lower region of the opening hole 91i is surrounded by the partition plate 18 as shown in FIG. 4, the entry of water droplets, dust and the like into the control board high power unit 40 and the control board light power unit 50 through the opening hole 91i is suppressed. Is done.
  • FIG. 14 is a perspective view of the outdoor side 5 of another ventilation fan according to the present embodiment.
  • FIG. 15 is an exploded perspective view of the outdoor side of another ventilation fan according to the present embodiment, and shows a state in which the protective cover 80 is removed.
  • FIG. 16 is a perspective view showing a state in which the closed end connector 100 is housed on the back surface of the main body 2 of another ventilation fan according to the present embodiment.
  • Other ventilating fans are different from the ventilating fan 1 described above in that the ventilating fan control function using a sensor is not mounted and the point that the closed vent connector 100 fixed to the closed end connector holder 101 is provided.
  • the basic structure is the same as that of the ventilation fan 1.
  • the state which attached the protective cover 80 to the other ventilation fan concerning this Embodiment is the same as FIG.
  • the above-described ventilation fan 1 has a structure without the control board high power unit 40, the control board low power unit 50, the sensor 70, the relay line 60, and the relay line 61.
  • a closed end connector holding portion 101 is provided in a region on the back surface of the flange 14 in which the control board high voltage portion 40 is housed in the ventilation fan 1, and the blower 20 and the power source are connected to the closed end connector holding portion 101.
  • the closed end connector 100 used in the above can be fixed.
  • the closed end connector holding part 101 includes three projecting parts 101 a provided to protrude from the back surface of the flange 14 of the main body 2.
  • the closed-end connector 100 is sandwiched and fixed between the two projecting portions 101a by being inserted between the two projecting portions 101a facing each other.
  • the closed end connector 100 held on the back surface of the flange 14 of the main body 2 the wiring work at the time of assembling the ventilation fan can be facilitated. Then, the closed end connector 100 is prevented from being detached from the closed end connector holding portion 101 by attaching the indoor side surface of the protective cover 80 to the end surface on the back side of the closed end connector holding portion 101.
  • the closed end connector 100 can be insulated from the outside while being fixed. Thereby, it is possible to prevent the relay line from being damaged even if the relay line arranged in the region covered by the protective cover 80 is not attached to the damage line such as a tube for preventing damage. Further, by attaching the protective cover 80 to the back side of the main body 2, the amount of foreign matters such as water droplets and dust on the relay line and other electrical connection parts arranged in the area covered by the protective cover 80 is reduced. Can do.
  • the holding portion 91 is provided on the back surface of the protective cover 80 so that the wood screw 90 can be fixed to the back surface of the protective cover 80. It is not necessary to provide an opening hole in the second flange 14. Thereby, intrusion of outdoor air from the rear side of the flange 14 to the indoor side when the operation of the ventilation fan 1 is stopped can be suppressed, and even when the temperature difference between the indoor and the outdoor such as in winter is large when the operation of the ventilation fan 1 is stopped. It is possible to improve the resistance to intrusion of outside air and the resistance to condensation.
  • the configuration described in the above embodiment shows an example of the contents of the present invention, and can be combined with another known technique, and can be combined with other configurations without departing from the gist of the present invention. It is also possible to omit or change the part.

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Air Conditioning Control Device (AREA)
  • Ventilation (AREA)

Abstract

L'invention concerne un ventilateur de ventilation qui comprend : une soufflerie cylindrique ; un châssis de corps principal qui comprend une bride, qui est reliée à un bord périphérique d'un orifice d'entrée côté surface avant de la soufflerie et s'étend dans une direction radiale, et une partie montante qui est reliée à un bord de la bride et fait saillie vers un côté surface arrière ; et une soufflante (20) qui comprend un rotor (21) qui tourne à l'intérieur de la soufflerie. Le ventilateur de ventilation est monté sur une partie de montage intérieure. Le ventilateur de ventilation comprend en outre : un couvercle de protection (80) qui est monté côté surface arrière du châssis de corps principal et recouvre, depuis un côté surface arrière, un composant de connexion électrique qui est monté sur une surface arrière de la bride ; et une partie de support de composant de montage (91) qui est formée sur une surface arrière du couvercle de protection (80) et supporte un composant de montage qui est conçu pour monter le ventilateur de ventilation.
PCT/JP2015/060374 2015-04-01 2015-04-01 Ventilateur de ventilation WO2016157476A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
JP2017509092A JP6239191B2 (ja) 2015-04-01 2015-04-01 換気扇
PCT/JP2015/060374 WO2016157476A1 (fr) 2015-04-01 2015-04-01 Ventilateur de ventilation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/JP2015/060374 WO2016157476A1 (fr) 2015-04-01 2015-04-01 Ventilateur de ventilation

Publications (1)

Publication Number Publication Date
WO2016157476A1 true WO2016157476A1 (fr) 2016-10-06

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PCT/JP2015/060374 WO2016157476A1 (fr) 2015-04-01 2015-04-01 Ventilateur de ventilation

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JP (1) JP6239191B2 (fr)
WO (1) WO2016157476A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107289573A (zh) * 2017-08-16 2017-10-24 河南省建筑科学研究院有限公司 高层建筑断桥铝合金窗智能过滤换气装置

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0599466A (ja) * 1991-10-07 1993-04-20 Mitsubishi Electric Corp パイプ用換気扇
JPH0632943U (ja) * 1992-09-28 1994-04-28 松下精工株式会社 換気装置
US6435964B1 (en) * 2001-09-06 2002-08-20 Enlight Corporation Ventilation fan
JP3430033B2 (ja) * 1998-10-15 2003-07-28 松下エコシステムズ株式会社 パイプ用換気扇
JP3788195B2 (ja) * 2000-05-24 2006-06-21 三菱電機株式会社 換気装置
JP2009024903A (ja) * 2007-07-18 2009-02-05 Daikin Ind Ltd 空気調和機
US20130130612A1 (en) * 2011-11-18 2013-05-23 Robert G. Penlesky Ventilating system and method

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0599466A (ja) * 1991-10-07 1993-04-20 Mitsubishi Electric Corp パイプ用換気扇
JPH0632943U (ja) * 1992-09-28 1994-04-28 松下精工株式会社 換気装置
JP3430033B2 (ja) * 1998-10-15 2003-07-28 松下エコシステムズ株式会社 パイプ用換気扇
JP3788195B2 (ja) * 2000-05-24 2006-06-21 三菱電機株式会社 換気装置
US6435964B1 (en) * 2001-09-06 2002-08-20 Enlight Corporation Ventilation fan
JP2009024903A (ja) * 2007-07-18 2009-02-05 Daikin Ind Ltd 空気調和機
US20130130612A1 (en) * 2011-11-18 2013-05-23 Robert G. Penlesky Ventilating system and method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107289573A (zh) * 2017-08-16 2017-10-24 河南省建筑科学研究院有限公司 高层建筑断桥铝合金窗智能过滤换气装置

Also Published As

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JP6239191B2 (ja) 2017-11-29
JPWO2016157476A1 (ja) 2017-06-01

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