This application is based on Japanese Patent Application No. 2002-373933 filed on Dec. 25, 2002, the disclosure of which is incorporated herein by reference.
The present invention relates to a centrifugal blower for a vehicle air conditioner.
With regard to a centrifugal blower, a centrifugal fan is generally housed in a scroll casing. The scroll casing includes a suction scroll wall, a motor scroll wall that is parallel with the suction scroll wall, and a peripheral wall connecting the peripheries of the suction scroll wall and the motor scroll wall. The suction side wall defines a suction port in a central position and forms a bell mouth on the periphery of the suction port. A motor is fixed to the central portion of the motor scroll wall. Also, the scroll casing forms a scroll passage between the periphery of the centrifugal fan and the peripheral wall. A radial dimension of the scroll passage increases toward an air downstream position. The scroll casing forms a blowing outlet at the downstream position of the scroll passage. The blowing port connects to a blowing duct. Further, the blowing duct connects to an air conditioner duct of an air conditioner unit.
With regard to a centrifugal blower disclosed in JP-A-5-195995, as shown in
Further, as shown in
The present invention is made in view of the foregoing matter and it is an object of the present invention to provide a centrifugal blower capable of reducing noise by restricting a primary air flow discharging from a centrifugal fan and a secondary air flow in a scroll passage from interfering with each other.
According to a centrifugal blower of the present invention, a centrifugal fan is housed in a scroll casing and driven by a motor. The centrifugal fan includes a boss portion, a plurality of blades arranged on the periphery of the boss portion in parallel with an axial direction, and a shroud connecting the ends of the blades. The shroud defines a fan inlet port through which air is sucked in the centrifugal fan and the blades defines discharging ports through which air is discharged in a radially outward direction. The motor is connected to the boss portion. The scroll casing includes a first scroll wall defining a casing suction port, a second scroll wall opposed to the first scroll wall, and a peripheral wall connecting the first scroll wall and the second scroll wall. The centrifugal fan is disposed in the scroll casing such that the fan inlet port is adjacent to the casing suction port. The motor is fixed to the second scroll wall. The scroll casing defines a blowing passage space between the discharging ports of the centrifugal fan and the peripheral wall and into which air discharged from the centrifugal fan flows. At least one of the first scroll wall and the second scroll wall protrudes in the axial direction at a position corresponding to the blowing passage space. The blowing passage space and the a space provided in the protruded portion defines a scroll air passage. The centrifugal blower further includes a directing member disposed at a position that a primary flow discharging from the discharging ports of the centrifugal fan merges with a secondary flow that is caused in the scroll air passage so that one of the primary flow and the secondary flow is directed to be in parallel to the other.
Accordingly, it is possible to reduce pressure loss within a large air passage space of the centrifugal blower. Further, noise is reduced. Preferably, the directing member is provided by a fin in a form of annular plate disposed in the protruded portion of the scroll air passage. Alternatively the fin can be connected to at least one of the boss portion and the shroud or connected to the periphery of the blades. Further, the fin can be inclined or curved for facilitating creation of the secondary flow. Instead of the fin, the directing member can be provided by a rim formed in the inside of the protruded portion of the scroll air passage.
Other objects, features and advantages of the present invention will become more apparent from the following detailed description made with reference to the accompanying drawings, in which like parts are designated by like reference numbers and in which:
Embodiments of the present invention will be described hereinafter with reference to the drawings.
Referring to
As shown in
The fan 4 includes a boss portion 41, a plurality of blades 42 and a shroud 43. The boss portion 41 is connected to a rotation shaft 31 of the fan motor 3. The middle portion of the boss portion 41 protrudes toward the suction port 21 in a form of substantially dome. The blades 42 are arranged on the periphery of the boss portion 41 at predetermined intervals with respect to a rotation axis. The blades 42 are parallel with the rotation axis. The top ends of the blades 42 connect to the shroud 43. The shroud 43 has an annular shape and defines a fan suction port (inlet port) 44 on the inner periphery of the annular shape for sucking air in an axial direction. The fan 4 defines air discharging ports 45 on the outer periphery, that is between the outer peripheral ends of the blades 42 for blowing air in a radial direction.
The scroll casing 2 forms a blowing passage 50, in a form of scroll, between the outer periphery of the fan 4 defining the discharging ports 45, and the outer peripheral wall 24. A dimension of the blowing passage 50 with respect to the radial direction increases in a flow direction of air in the blowing passage 50. Also, the scroll casing 2 defines a blowing port 26 at the downstream end of the blowing passage 50. The blowing port 26 connects to the upstream end of the air conditioner duct 11. Further, the scroll casing 2 defines an upper enlarged passage space 5A and a lower enlarged passage space 5B on an upper side and lower side of the blowing passage 50, thereby to define a scroll passage 5. That is, a dimension of the scroll passage 5 is larger than the dimension of the discharging ports 45 with respect to the axial direction.
Specifically, the upper scroll wall 22 consists of a circular middle portion 27, an inner peripheral wall 51 and an upper protruding portion 53. The circular middle portion 27 has a diameter approximate to the outer diameter of the fan 4. The inner peripheral wall 51 rises from the outer peripheral end of the circular middle portion 27. The upper protruding portion 53 extends from the upper end of the inner peripheral wall 51 in the radial direction. Similarly, the lower scroll wall 23 consists of a circular middle portion 28 having a diameter approximate to the outer diameter of the fan 4, an inner peripheral wall 52 that extends from the outer peripheral end of the circular middle portion 28, and a lower protruding portion 54 that extends from the lower end of the inner peripheral wall 52 in the radial direction.
The inner peripheral wall 51, the upper protruding portion 53 and the upper portion of the outer peripheral wall 24 form a substantially rectangular shaped cross-section and define the upper enlarged passage space 5A therein. Similarly, the inner peripheral wall 52, the lower protruding portion 54, and the lower portion of the peripheral wall 24 form a substantially rectangular shaped cross-section and define the lower enlarged passage space 5B therein.
When the fan 4 rotates, air is sucked from the suction port 21 and the fan inlet port 44 and is then blown from the discharging ports 45 into the scroll passage 5. The discharging air defines a discharging flow (primary flow) T. In the scroll passage 5, the discharged air flows toward the outlet port 26 while causing a secondary flow F. Specifically, in the scroll passage 5, the air collides with the outer peripheral wall 24 and changes its flow direction upward and downward toward the upper enlarged passage space 5A and the lower enlarged passage space 5B. Further, the air turns along the upper protruding portion 53 and the lower protruding portion 54 toward the center, thereby causing the secondary flow F.
In the embodiment, the suction scroll wall 22 and the motor scroll wall 23 includes fins 6 that project into the scroll passage 5 from the respective circular middle portions 27, 28. Here, the fins 6 function as a directing member that directs the secondary flow F to be in parallel with the direction of the discharging flow T. Therefore, the fins 6 restrict the secondary flow F from colliding with the discharging flow T. As a result, noise due to interference of the discharging flow T and the secondary flow F is reduced. Further, pressure loss is restricted.
Referring to
The first and second fins 61, 62 direct the secondary flow F in the direction parallel with the direction of the discharging flow T. Accordingly, the first and second fins 61, 62 provide advantageous effects similar to those of the first embodiment. As shown in
Referring to
Referring to
Alternatively, the fin 6 can be curved as shown in
Referring to
The fan motor 3, the fan 4 and the lower scroll wall 23 are joined as a sub-assembly. Then, the sub-assembly is joined to the upper scroll wall 22, and therefore the centrifugal blower 1 is assembled. Accordingly, assembling workability of the centrifugal blower 1 improves and therefore the maintenance of the centrifugal blower 1 is easy. Further, the moldability of the scroll casing 2 improves.
Referring to
Referring to
Referring to
The ninth embodiment can be modified as shown in
In addition to the above embodiments, the centrifugal blower 1 can be provided with variable combinations of the above described embodiments. For example, the fin 68 of the eighth embodiment can be inclined or curved in the manner similar to that of the seventh embodiment. Further, the fin 68 can have thick portion at its peripheral ends to increase strength.
The present invention should not be limited to the disclosed embodiment, but may be implemented in other ways without departing from the spirit of the invention.
Number | Date | Country | Kind |
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2002-373933 | Dec 2002 | JP | national |
Number | Name | Date | Kind |
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2330938 | Williams | Oct 1943 | A |
6575701 | Kamiya et al. | Jun 2003 | B2 |
Number | Date | Country |
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61-200494 | Dec 1986 | JP |
1-193099 | Aug 1989 | JP |
5-195995 | Aug 1993 | JP |
Number | Date | Country | |
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20040131465 A1 | Jul 2004 | US |