IMPELLER OF CENTRIFUGAL COMPRESSOR, CENTRIFUGAL COMPRESSOR INCLUDING THE IMPELLER, AND METHOD FOR PRODUCING THE IMPELLER
20240200569 ยท 2024-06-20
Assignee
Inventors
Cpc classification
F04D29/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B23P15/04
PERFORMING OPERATIONS; TRANSPORTING
B23C3/18
PERFORMING OPERATIONS; TRANSPORTING
F04D29/324
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
An impeller of a centrifugal compressor includes: a plurality of blades each of which has a leading edge, a trailing edge, a pressure surface and a suction surface extending between the leading edge and the trailing edge, and a shroud-side end and a hub-side end defining the pressure surface and the suction surface together with the leading edge and the trailing edge. The pressure surface and the suction surface are each configured such that a blade element connecting the shroud-side end and the hub-side end is linear. The trailing edge is configured such that an outer diameter at the shroud-side end is larger than an outer diameter at the hub-side end, the trailing edge having a convex shape with respect to an imaginary straight line connecting the shroud-side end and the hub-side end in the trailing edge.
Claims
1. An impeller of a centrifugal compressor, comprising: a plurality of blades each of which has a leading edge, a trailing edge, a pressure surface and a suction surface extending between the leading edge and the trailing edge, and a shroud-side end and a hub-side end defining the pressure surface and the suction surface together with the leading edge and the trailing edge, wherein the pressure surface and the suction surface are each configured such that a blade element connecting the shroud-side end and the hub-side end is linear, and wherein the trailing edge is configured such that an outer diameter at the shroud-side end is larger than an outer diameter at the hub-side end, the trailing edge having a convex shape with respect to an imaginary straight line connecting the shroud-side end and the hub-side end in the trailing edge.
2. The impeller of the centrifugal compressor according to claim 1, wherein the trailing edge has a curved convex shape with respect to the imaginary straight line.
3. The impeller of the centrifugal compressor according to claim 1, wherein the trailing edge includes at least two linear portions.
4. The impeller of the centrifugal compressor according to claim 3, wherein the at least two linear portions include: a shroud-side linear portion extending from the shroud-side end toward the hub-side end; and a hub-side linear portion extending from the hub-side end toward the shroud-side end, and wherein the shroud-side linear portion has a constant outer diameter.
5. A centrifugal compressor, comprising: the impeller according to claim 1.
6. A method for producing an impeller of a centrifugal compressor, the impeller including a plurality of blades each of which has a leading edge, a trailing edge, a pressure surface and a suction surface extending between the leading edge and the trailing edge, and a shroud-side end and a hub-side end defining the pressure surface and the suction surface together with the leading edge and the trailing edge, the method comprising a step of forming each of the plurality of blades, wherein the step of forming each of the plurality of blades includes: a step of line cutting the pressure surface and the suction surface such that a blade element connecting the shroud-side end and the hub-side end is linear; and a step of forming the trailing edge by removing a part of the blade, such that the trailing edge has a convex shape with respect to an imaginary straight line connecting the shroud-side end and the hub-side end in the trailing edge.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
DETAILED DESCRIPTION
[0016] Hereinafter, an impeller of a centrifugal compressor and a method for producing the impeller according to the embodiments of the present disclosure will be described with reference to the drawings. The embodiments each indicate one aspect of the present disclosure, do not intend to limit the disclosure, and can optionally be modified within a range of a technical idea of the present disclosure.
[0017] An impeller according to some embodiments of the present disclosure described below will be described by taking an impeller provided in a centrifugal compressor of a turbocharger as an example. However, the centrifugal compressor in the present disclosure is not limited to the centrifugal compressor of the turbocharger, and may be any centrifugal compressor operating independently. In the following description, a fluid compressed by the centrifugal compressor is air. However, the fluid can be replaced with any fluid.
<Configuration of Centrifugal Compressor According to Embodiment of Present Disclosure>
[0018] As shown in
<Configuration of Impeller of Centrifugal Compressor According to Embodiment of Present Disclosure>
[0019]
[0020] The trailing edge 4b is configured such that an outer diameter Rac at the shroud-side end 4c is larger than an outer diameter Rad at the hub-side end 4d. Further, the trailing edge 4b has a convex shape with respect to an imaginary straight line IL connecting the shroud-side end 4c and the hub-side end 4d in the trailing edge 4b. The convex shape of the trailing edge 4b with respect to the imaginary straight line IL may be a curved convex shape as shown in
<Method for Producing Impeller of Centrifugal Compressor According to Embodiment of Present Disclosure>
[0021] Next, a method for producing the impeller 3 according to an embodiment of the present disclosure will be described. Since the method is the same as a method for producing an ordinary impeller except for an operation of forming the blade 4, the operation of forming the blade 4 will be described in detail below.
[0022] As shown in
[0023] Since the pressure surface 8 and the suction surface 9 are formed by line cutting, an end edge 4b on a trailing edge side of the blade 4 after line cutting is linear so as to connect the shroud-side end 4c and the hub-side end 4d. Thus, after the pressure surface 8 and the suction surface 9 undergo line cutting, the trailing edge 4b is formed by removing a part of the blade 4 such that the trailing edge 4b has a convex shape with respect to the imaginary straight line IL connecting the shroud-side end 4c and the hub-side end 4d. A part of the blade 4 can be removed by any method, and may be removed by, for example, a lathe.
[0024] Thus, since the blade 4 is formed by removing a part of the end edge 4b on the trailing edge side of the blade 4 after the pressure surface 8 and the suction surface 9 undergo line cutting, it is possible to shorten a cutting work time. If the convex shape of the trailing edge 4b is formed from two or more linear portions as shown in
<Operation of Centrifugal Compressor According to Embodiment of Present Disclosure>
[0025] Next, an operation of the centrifugal compressor 1 according to an embodiment will be described. As shown in
[0026] As shown in
[0027] By contrast, in the centrifugal compressor 1, since the trailing edge 4b has the curved convex shape, a flow f on the shroud side of an air flow F passing through the trailing edge 4 is less inclined to the hub side than the air flow F of the centrifugal compressor 100. Thus, the air flow F is less biased toward the hub than the air flow F of the centrifugal compressor 100, and as a result, the separation P is unlikely to occur on the shroud side. Thus, it is possible to suppress that the air flow F having passed through the trailing edge 4b is biased toward the hub on the high flow rate side in particular, and to reduce the possibility of the separation P occurring on the shroud side. Accordingly, it is possible to suppress the decrease in efficiency of the centrifugal compressor 1 on the high flow rate side.
[0028] In the centrifugal compressor 1 in
[0029] The contents described in the above embodiments would be understood as follows, for instance. [0030] [1] An impeller of a centrifugal compressor according to one aspect includes: a plurality of blades (4) each of which has a leading edge (4a), a trailing edge (4b), a pressure surface (8) and a suction surface (9) extending between the leading edge (4a) and the trailing edge (4b), and a shroud-side end (4c) and a hub-side end (4d) defining the pressure surface (8) and the suction surface (9) together with the leading edge (4a) and the trailing edge (4b). The pressure surface (8) and the suction surface (9) are each configured such that a blade element (BE) connecting the shroud-side end (4c) and the hub-side end (4d) is linear. The trailing edge (4b) is configured such that an outer diameter (R+c) at the shroud-side end (4c) is larger than an outer diameter (R+d) at the hub-side end (4d), the trailing edge (4b) having a convex shape with respect to an imaginary straight line (IL) connecting the shroud-side end (4c) and the hub-side end (4d) in the trailing edge (4b).
[0031] With the impeller of the centrifugal compressor of the present disclosure, since the outer diameter of the trailing edge at the shroud-side end is larger than the outer diameter of the trailing edge at the hub-side end, it is possible to increase the pressure ratio. Further, since the trailing edge has the convex shape with respect to the imaginary straight line connecting the shroud-side end and the hub-side end in the trailing edge, it is possible to suppress that the flow having passed through the trailing edge is biased toward the hub on the high flow rate side, and to reduce the possibility of the separation occurring on the shroud side. Accordingly, it is possible to suppress the decrease in efficiency on the high flow rate side. Furthermore, since the pressure surface and the suction surface are each configured such that the blade element connecting the shroud-side end and the hub-side end is linear, the pressure surface and the suction surface can be line cut, making it possible to shorten the cutting work time. [0032] [2] An impeller of a centrifugal compressor according to another aspect is the impeller of the centrifugal compressor as defined in [1], where the trailing edge (4b) has a curved convex shape with respect to the imaginary straight line (IL).
[0033] With such configuration, it is possible to achieve the same effect as the impeller of the centrifugal compressor as defined in [1]. [0034] [3] An impeller of a centrifugal compressor according to still another aspect is the impeller of the centrifugal compressor as defined in [1], where the trailing edge (4b) includes at least two linear portions (LP1, LP2).
[0035] With such configuration, the cutting time of the blades can be shortened as compared with the case where the trailing edge has the curved convex shape. [0036] [4] An impeller of a centrifugal compressor according to yet another aspect is the impeller of the centrifugal compressor as defined in [3], where the at least two linear portions include: a shroud-side linear portion (LP1) extending from the shroud-side end (4c) toward the hub-side end (4d); and a hub-side linear portion (LP2) extending from the hub-side end (4d) toward the shroud-side end (4c), and the shroud-side linear portion (LP1) has a constant outer diameter.
[0037] With such configuration, since the shroud-side linear portion has the constant outer diameter, as compared with the configuration where the outer diameter of the trailing edge decreases from the shroud-side end toward the hub-side end, the portion where the outer diameter of the impeller is large (shroud-side linear portion) increases. Thus, it is possible to increase the pressure ratio, and it is possible to further increase the flow to the shroud side. [0038] [5] A centrifugal compressor according to one aspect includes: the impeller (3) as defined in any one of [1] to [4].
[0039] With the centrifugal compressor of the present disclosure, it is possible to increase the pressure ratio, it is possible to suppress the decrease in efficiency on the high flow rate side, and it is possible to shorten the cutting work time in producing the impeller. [0040] [6] A method for producing an impeller of a centrifugal compressor according to one aspect, the impeller (3) including a plurality of blades (4) each of which has a leading edge (4a), a trailing edge (4b), a pressure surface (8) and a suction surface (9) extending between the leading edge (4a) and the trailing edge (4b), and a shroud-side end (4c) and a hub-side end (4d) defining the pressure surface (8) and the suction surface (9) together with the leading edge (4a) and the trailing edge (4b), the method includes a step of forming each of the plurality of blades (4). The step of forming each of the plurality of blades (4) includes: a step of line cutting the pressure surface (8) and the suction surface (9) such that a blade element (BE) connecting the shroud-side end (4c) and the hub-side end (4d) is linear; and a step of forming the trailing edge (4b) by removing a part of the blade (4), such that the trailing edge (4b) has a convex shape with respect to an imaginary straight line (IL) connecting the shroud-side end (4c) and the hub-side end (4d) in the trailing edge (4b).
[0041] With the method for producing the impeller of the centrifugal compressor of the present disclosure, since the outer diameter of the trailing edge at the shroud-side end is larger than the outer diameter of the trailing edge at the hub-side end, it is possible to increase the pressure ratio. Further, since the trailing edge has the convex shape with respect to the imaginary straight line connecting the shroud-side end and the hub-side end in the trailing edge, it is possible to suppress that the flow having passed through the trailing edge is biased toward the hub on the high flow rate side, and to reduce the possibility of the separation occurring on the shroud side. Accordingly, it is possible to suppress the decrease in efficiency on the high flow rate side. Furthermore, since the pressure surface and the suction surface can be line cut, it is possible to shorten the cutting work time.
REFERENCE SIGNS LIST
[0042] 1 Centrifugal compressor [0043] 3 Impeller [0044] 4 Blade [0045] 4a Leading edge [0046] 4b Trailing edge [0047] 4c Shroud-side end [0048] 4d Hub-side end [0049] 8 Pressure surface [0050] 9 Suction surface [0051] BE Blade element [0052] IL Imaginary straight line [0053] R.sub.4e Outer diameter of trailing edge at shroud-side end [0054] R.sub.4d Outer diameter of trailing edge at hub-side end