Claims
- 1. A propeller fan, characterized in thatwhen coordinates in a cylindrical coordinate system having a z axis as a rotation axis of the propeller fan are (r, θ, z), a curved shape defined by a r coordinate value, a θ coordinate value and a z coordinate value indicated in tables 1 and 2 below is determined as a base shape of a surface of a blade of said propeller fan, the surface of the blade of said propeller fan being configured by a curved surface obtained by enlarging or reducing said base shape in at least one of r, θ and z directions, said tables 1 and 2 defined as follows: TABLE 1θr0.0420.0830.1250.1670.2080.250.2920.3330.3750.4 0.1450.1810.2140.2460.2760.3040.3290.3530.1370.1640.1900.2140.2370.2610.2840.3070.450.0850.1340.1760.2150.2490.2800.3100.3370.3630.0800.1180.1520.1830.2110.2390.2650.2910.3170.5 0.0740.1240.1680.2090.2460.2820.3150.3450.3750.0610.1050.1440.1790.2110.2420.2710.3000.3280.550.0440.1020.1530.2000.2420.2820.3190.3540.3860.0360.0870.1330.1740.2110.2460.2790.3100.3400.6 0.0770.1370.1900.2380.2830.3250.3640.3990.0650.1200.1680.2110.2500.2860.3200.3520.650.0500.1190.1800.2340.2850.3310.3740.4130.0430.1050.1600.2100.2540.2950.3320.3670.7 0.0960.1670.2280.2830.3330.3790.4220.0870.1520.2100.2610.3070.3490.3870.750.0720.1520.2220.2840.3390.3890.4350.0650.1370.2010.2580.3080.3540.3950.8 0.0430.1330.2120.2820.3460.4020.4520.0400.1190.1910.2550.3110.3610.4080.850.1140.2030.2820.3500.4100.4650.1030.1830.2520.3130.3690.4190.9 0.0930.1930.2780.3510.4150.4730.0860.1740.2500.3170.3760.4310.950.1800.2740.3520.4200.4800.1650.2510.3240.3870.444θr0.4170.4580.50.5420.5830.6250.6670.7080.750.4 0.3750.3950.4140.4290.4380.3290.3500.3710.3920.4140.450.3880.4120.4330.4520.4660.4740.3410.3650.3870.4090.4300.4530.5 0.4020.4280.4530.4750.4940.5080.5150.3550.3810.4050.4280.4500.4730.4980.550.4170.4450.4730.4980.5210.5400.5540.5590.3690.3970.4240.4490.4730.4970.5220.5490.6 0.4330.4640.4940.5220.5490.5730.5930.6060.3840.4140.4430.4710.4980.5240.5500.5770.650.4500.4840.5170.5470.5770.6050.6300.6500.6630.4000.4330.4640.4940.5240.5520.5800.6070.6370.7 0.4620.5010.5380.5720.6040.6340.6620.6880.7090.4230.4570.4890.5210.5510.5800.6080.6360.6640.750.4780.5190.5580.5950.6290.6620.6920.7200.7460.4350.4730.5100.5440.5770.6080.6380.6660.6930.8 0.4980.5410.5820.6210.6590.6940.7260.7560.7850.4500.4900.5290.5670.6040.6380.6700.7000.7290.850.5140.5600.6040.6460.6860.7250.7610.7930.8210.4660.5100.5520.5930.6320.6700.7050.7360.7640.9 0.5260.5750.6210.6660.7090.7510.7910.8260.8580.4810.5280.5720.6150.6570.6990.7370.7720.8020.950.5350.5860.6350.6810.7260.7690.8110.8500.8840.4960.5460.5940.6400.6850.7280.7690.8070.840θr0.7920.8330.8750.9170.95810.7 0.7230.6960.750.7690.7840.7220.7530.8 0.8090.8290.8450.7540.7790.8090.850.8480.8730.8950.9070.9130.7900.8160.8400.8640.8930.9 0.8850.9080.9300.9490.9630.9690.8290.8520.8750.8970.9190.9430.950.9140.9390.9600.9760.9900.9970.8690.8940.9160.9360.9570.979BOSS RATIO ν = 0.35 TABLE 2rθz0.3830.6410.4530.4460.4660.6600.4870.4800.5690.7240.5770.5710.6970.8140.7210.7140.8590.9840.9230.9160.9241.0340.9840.9780.9720.9810.9980.9910.9930.9100.9850.9771.0000.8380.9530.9461.0000.7570.9000.8931.0000.6780.8290.8231.0000.5390.6800.6741.0000.4030.5150.5091.0000.3340.4150.4111.0000.2600.2790.2751.0000.2090.1570.1540.9720.1810.0920.0900.9460.1700.0770.0750.8770.1470.0510.0490.8470.1380.0440.0420.8080.1250.0380.0370.7620.1100.0330.0310.7280.0980.0280.0260.7040.0900.0260.0240.6800.0790.0230.0220.6410.0620.0150.0130.5840.0340.0060.0040.5210.0140.0270.020
- 2. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface obtained by enlarging or reducing the base shape according to claim 1 in at least one of r, θ and z directions.
- 3. The propeller fan according to claim 1, characterized in thatwhen a diameter of said propeller fan is D, a height in said z direction is h and an expansion angle of said blade is λ, r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (1) below using three-dimensional coordinate values indicated in said tables 1 and 2, θ1=c×θ+d (deg) z1u=eu×zu+fu (mm) z1d=ed×zd+fd (mm) (a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant) wherein a=D2 b=0 c=λ d: optional h=eu≧ed fu≧fd: optional}(1)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 4. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (1) recited in claim 3.
- 5. The propeller fan according to claim 1, characterized in thatwhen a diameter of said propeller fan is D, a height in said z direction is h and the number of blades is n; r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (2) below using three-dimensional coordinate values indicated in said tables 1 and 2, r1=a×r+b (mm) θ1=c×θ+d (deg) z1u=eu×zu+fu (mm) z1d=ed×zd+fd (mm) (a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant) wherein a=D2 b=0 c=360n d: optional h=eu≧ed fu≧fd: optional}(2)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 6. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (2) recited in claim 5.
- 7. The propeller fan according to claim 1, characterized in thatwhen the diameter of said propeller fan is D and the height in said z direction is h, r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (3) below using three-dimensional coordinate values indicated in said tables 1 and 2, r1=a×r+b (mm) θ1+c×θ+d (deg) z1u=eu×zu+fu (mm) z1d=ed×zd+fd (mm) (a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant) wherein a=D2 b=0 c=24007×hD d: optional h=eu≧ed fu≧fd: optional}(3)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 8. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (3) recited in claim 7.
- 9. The propeller fan according to claim 1, characterized in thatsaid propeller fan comprises a boss portion, and when a diameter of said propeller fan is D, a boss ratio which is a ratio of the diameter of said propeller fan to a diameter of said boss portion is ν, a height in said z direction is h, and an expansion angle of said blade is λ, r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (4) below using three-dimensional coordinate values indicated in said tables 1 and 2, r1=a×r+b (mm) θ1=c×θ+d (deg) z1u=eu×zu+fu (mm) z1d=ed×zd+fd (mm) (a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant) wherein a=1013D(1-v) b=-1013D(1-v)×0.35+vD2 c=λ d: optional h=eu≧ed fu≧fd: optional}(4)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 10. A die for molding the propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (4) recited in claim 9.
- 11. The propeller fan according to claim 1, characterized in thatsaid propeller fan comprises a boss portion, and when a diameter of said propeller fan is D, a boss ratio which is a ratio of the diameter of said propeller fan to a diameter of said boss portion is ν, a height in said z direction is h, and the number of blades is n, r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (5) below using three-dimensional coordinate values indicated in said tables 1 and 2, r1=a×r+b (mm) θ1=c×θ+d (deg) z1u=eu×zu+fu (mm) z1d=ed×zd+fd (mm) (a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant) wherein a=1013D(1-v) b=-1013D(1-v)×0.35+vD2 c=360n d: optional h=eu≧ed fu≧fd}(5)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 12. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (5) recited in claim 11.
- 13. The propeller fan according to claim 1, characterized in thatsaid propeller fan comprises a boss portion, and when a diameter of said propeller fan is D, a boss ratio which is a ratio of the diameter of said propeller fan to a diameter of said boss portion is ν, and a height in said z direction is h, r, θ, z coordinates (r1, θ1, z1d) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (6) below using three-dimensional coordinate values indicated in said tables 1 and 2, r1=a×r+b (mm) θ1=c×θ+d (deg) z1u=eu×zu+fu (mm) z1d=ed×zd+fd (mm) (a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant) wherein a=1013D(1-v) b=-1013D(1-v)×0.35+vD2 c=24007×hD d: optional h=eu≧ed fu≧fd: optional}(6)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 14. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (6) recited in claim 13.
- 15. A fluid feeding device, comprising:a blower having a propeller fan recited in any one of claims 1, 3, 5, 7, 9, 11 and 13, and a drive motor driving the propeller fan.
- 16. A propeller fan, characterized in thatwhen coordinates in a cylindrical coordinate system having a z axis as a rotation axis of the propeller fan are (r, θ, z), a curved shape defined by a r coordinate value, a θ coordinate value and a z coordinate value indicated in table 101 below is determined as a base shape of a surface of a blade of said propeller fan, the surface of the blade of said propeller fan being configured by a curved surface obtained by enlarging or reducing said base shape in at lease one of r, θ and z directions, said table 101 defined as follows: TABLE 101θr0.0420.0830.1250.1670.2080.250.2920.3330.3750.4170.4580.50.30.1900.2150.2380.2610.2840.3070.3290.3500.3710.3900.1680.1840.2010.2180.2340.2520.2700.2880.3080.327 0.350.1460.1800.2100.2380.2660.2920.3180.3420.3650.3870.4090.1260.1500.1740.1970.2200.2430.2670.2900.3140.3370.3590.40.0870.1320.1700.2050.2380.2700.3000.3280.3550.3800.4050.4280.0760.1100.1420.1720.2010.2290.2570.2840.3100.3360.3610.384 0.450.0690.1160.1600.2010.2380.2740.3070.3390.3680.3960.4230.4480.0550.0980.1370.1730.2070.2390.2700.2990.3280.3550.3820.4070.50.0420.0990.1500.1960.2390.2780.3150.3500.3820.4130.4420.4690.0330.0840.1310.1730.2120.2470.2800.3120.3430.3730.4010.428 0.550.0100.0790.1380.1900.2380.2820.2920.3600.3950.4280.4590.4890.0060.0670.1210.1700.2130.2520.2890.3230.3560.3870.4180.4470.60.0560.1220.1800.2330.2810.3260.3670.4050.4410.4750.5070.0460.1070.1620.2110.2560.2960.3340.3690.4030.4350.466 0.650.0290.1020.1670.2260.2780.3260.3700.4110.4500.4870.5220.0230.0930.1570.2140.2640.3090.3510.3890.4250.4590.4910.70.0820.1560.2210.2780.3290.3760.4190.4600.4990.5350.0740.1470.2100.2660.3160.3610.4030.4430.4800.515 0.750.0580.1390.2120.2760.3330.3850.4310.4740.5150.5540.0510.1300.2010.2630.3190.3690.4140.4560.4960.5350.80.1230.2040.2750.3380.3940.4440.4910.5340.5750.1140.1920.2610.3220.3760.4260.4720.5150.556 0.850.1070.1970.2740.3410.4010.4550.5040.5500.5940.0980.2210.2580.3240.3820.4350.4850.5310.5740.90.0870.1870.2710.3430.4060.4630.5150.5640.6100.0810.1760.2560.3260.3880.4440.4960.5450.591 0.950.1750.2680.3460.4130.4720.5260.5770.6250.1660.2560.3310.3960.4540.5080.5590.607θr0.5420.5830.6250.6670.7080.750.7920.8330.8750.9170.95810.30.4090.4270.4430.4560.4650.4680.3460.3650.3840.4030.4220.444 0.350.4280.4460.4590.4650.3810.4020.4230.4450.40.4490.4660.4790.4850.4070.4280.4490.472 0.450.4710.4910.5060.5160.4300.4530.4750.4970.50.4940.5180.5380.5530.5600.4530.4770.5010.5240.549 0.550.5170.5430.5680.5880.6030.4750.5020.5270.5520.5780.60.5370.5660.5940.6180.6390.6540.4960.5250.5530.5800.6060.634 0.650.5550.5860.6160.6440.6700.6920.7060.5220.5510.5800.6080.6350.6620.6900.70.5710.6050.6370.6680.6960.7230.7450.7600.5480.5800.6090.6370.6640.6910.7170.746 0.750.5920.6280.6620.6940.7240.7520.7770.7990.8150.5720.6070.6390.6700.6990.7240.7490.7740.8010.80.6140.6530.6890.7230.7540.7830.8110.8350.8540.8700.5950.6330.6690.7020.7310.7600.7870.8090.8300.855 0.850.6360.6760.7160.7520.7860.8150.8420.8670.8910.9100.9240.6170.6580.6970.7330.7650.7940.8190.8440.8670.8880.9070.90.6540.6970.7390.7790.8150.8470.8750.8990.9210.9410.9580.9700.6350.6780.7200.7600.7960.8270.8540.8780.8990.9200.9380.955 0.950.6710.7160.7590.8000.8390.8730.9030.9280.9500.9680.9840.9960.6540.7000.7430.7850.8230.8570.8860.9110.9330.9520.9700.987BOSS RATIO ν = 0.275
- 17. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface obtained by enlarging or reducing the base shape according to claim 16 in at least one of r, θ and z directions.
- 18. The propeller fan according to claim 16, characterized in thatwhen a diameter of said propeller fan is D, a height in said z direction is h and an expansion angle of said blade is λ, r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (101) below using three-dimensional coordinate values indicated in said table 101, r1=a×r+b (mm)θ1=c×θ+d (deg)z1u=eu×zu+fu (mm)z1d=ed×zd+fd (mm)(a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant)whereina=D/2b=0c=λd: optionalh=eu≧edfu≧fd: optional}(101)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 19. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (101) recited in claim 18.
- 20. The propeller fan according to claim 16, characterized in thatwhen a diameter of said propeller fan is D, a height in said z direction is h, and the number of blades is n, r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (102) below using three-dimensional coordinate values indicated in said table 101, r1=a×r+b (mm)θ1=c×θ+d (deg)z1u=eu×zu+fu (mm)z1d=ed×zd+fd (mm)(a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant)whereina=D/2b=0c=360/nd: optionalh=eu≧edfu≧fd: optional}(102)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 21. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (102) recited in claim 20.
- 22. The propeller fan according to claim 16, characterized in thatwhen a diameter of said propeller fan is D and a height in said z direction is h, r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (103) below using three-dimensional coordinate values indicated in said table 101, r1=a×r+b (mm)θ1=c×θ+d (deg)z1u=eu×zu+fu (mm)z1d=ed×zd+fd (mm)(a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant)whereina=D/2b=0c=24007×hDd: optionalh=eu≧edfu≧fd: optional}(103)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 23. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (103) recited in claim 22.
- 24. The propeller fan according to claim 16, characterized in thatsaid propeller fan comprises a boss portion, and when a diameter of said propeller fan is D, a boss ratio which is a ratio of the diameter of said propeller fan to a diameter of said boss portion is ν, a height in said z direction is h, and an expansion angle of said blade is λ, r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (104) below using three-dimensional coordinate values indicated in said table 101, r1=a×r+b (mm)θ1=c×θ+d (deg)z1u=eu×zu+fu (mm)z1d=ed×zd+fd (mm)(a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant)whereina=2029D(1-v)b=-2029D(1-v)×0.275+vD2c=λd: optionalh=eu≧edfu≧fd: optional}(104)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 25. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (104) recited in claim 24.
- 26. The propeller fan according to claim 16, characterized in thatsaid propeller fan comprises a boss portion, and when a diameter of said propeller fan is D, a boss ratio which is a ratio of the diameter of said propeller fan to a diameter of said boss portion is ν, a height in said z direction is h, and the number of blades is n, r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by the transformation formula (105) below using three-dimensional coordinate values indicated in said table 101, r1=a×r+b (mm)θ1=c×θ+d (deg)z1u=eu×zu+fu (mm)z1d=ed×zd+fd (mm)(a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant)whereina=2029D(1-v)b=-2029D(1-v)×0.275+vD2c=360/nd: optionalh=eu≧edfu≧fd: optional}(105)the surface of the blade of said propeller fan being configured by a curved surface defined by said r1, θ1, z1u) and said (r1, θ1, z1d).
- 27. A die for molding a propeller fan, characterized in thata surface of the portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (105) recited in claim 26.
- 28. The propeller fan according to claim 16, characterized in thatsaid propeller fan comprises a boss portion, when a diameter of said propeller fan is D, a boss ratio which is a ratio of the diameter of said propeller fan to a diameter of said boss portion is ν, and a height in said z direction is h, r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (106) below using three-dimensional coordinate values indicated in said table 101, r1=a×r+b (mm)θ1=c×θ+d (deg)z1u=eu×zu+fu (mm)z1d=ed×zd+fd (mm)(a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant)whereina=2029D(1-v)b=-2029D(1-v)×0.275+vD2c=24007×hDd: optionalh=eu≧edfu≧fd: optional}(106)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 29. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (106) recited in claim 28.
- 30. A fluid feeding device, comprising:a blower having a propeller fan recited in any one of claims 16, 18, 20, 22, 24, 26 and 28, and a drive motor driving the propeller fan.
- 31. A propeller fan, characterized in thatwhen coordinates in a cylindrical coordinate system having a z axis as a rotation axis of the propeller fan are (r, θ, z), a curved shape defined by a r coordinate value, a θ coordinate value and a z coordinate value indicated in table 201 below is determined as a base shape of a surface of a blade of said propeller fan, the surface of the blade of said propeller fan being configured by a curved surface obtained by enlarging or reducing said base shape in at least one of r, θ and z directions, said table 201 defined as follows: TABLE 201θr0.0420.0830.1250.1670.2080.250.2920.3330.3750.4170.4580.50.3 0.1910.2170.2410.2640.2880.3110.3330.3550.3760.3950.1680.1840.2000.2160.2330.2490.2670.2850.3040.3240.350.1470.1810.2120.2420.2700.2970.3220.3460.3700.3920.4130.1270.1500.1730.1960.2180.2410.2640.2870.3110.3340.3560.4 0.0880.1330.1720.2080.2420.2740.3040.3320.3590.3850.4090.4320.0760.1100.1410.1710.1990.2270.2540.2800.3070.3320.3570.3800.450.0700.1180.1620.2030.2410.2770.3110.3430.3730.4010.4270.4520.0550.0970.1360.1710.2040.2360.2660.2950.3240.3510.3770.4020.5 0.0420.1000.1510.1980.2410.2810.3190.3540.3860.4170.4460.4730.0330.0830.1300.1710.2090.2440.2770.3080.3390.3680.3970.4240.550.0100.0790.1390.1920.2400.2840.3250.3640.3990.4320.4630.4930.0070.0660.1200.1680.2110.2500.2860.3200.3520.3830.4140.4430.6 0.0560.1230.1820.2350.2830.3280.3700.4090.4450.4780.5110.0460.1060.1610.2090.2540.2940.3310.3660.3990.4310.4620.650.0280.1020.1680.2270.2790.3270.3720.4130.4520.4890.5250.0230.0930.1560.2130.2630.3080.3490.3870.4230.4560.4880.7 0.0820.1560.2210.2790.3300.3770.4200.4610.5000.5370.0740.1470.2100.2660.3150.3600.4020.4420.4790.5130.750.0580.1400.2120.2770.3340.3860.4320.4750.5160.5560.0510.1300.2000.2630.3180.3680.4130.4550.4950.5330.8 0.1230.2040.2760.3390.3950.4460.4920.5350.5760.1130.1910.2600.3200.3750.4250.4710.5140.5540.850.1080.1970.2750.3420.4020.4560.5060.5520.5950.0980.1830.2570.3220.3810.4340.4830.5290.5730.9 0.0870.1880.2720.3450.4080.4650.5170.5660.6120.0810.1750.2550.3250.3870.4430.4940.5430.5890.950.1750.2690.3470.4140.4730.5280.5780.6260.1660.2550.3300.3950.4530.5070.5570.606θr0.5420.5830.6250.6670.7080.750.7920.8330.8750.9170.95810.3 0.4140.4320.4470.4600.4680.4680.3430.3620.3810.4000.4210.4450.350.4330.4500.4610.4650.3770.3990.4210.4450.4 0.4530.4700.4820.4850.4030.4240.4470.4710.450.4750.4950.5100.5170.4260.4480.4710.4950.5 0.4990.5220.5410.5560.5610.4490.4730.4970.5210.5490.550.5210.5470.5710.5910.6050.4710.4980.5230.5490.5760.6 0.5410.5700.5970.6220.6420.6550.4920.5210.5490.5760.6030.6320.650.5580.5900.6200.6480.6730.6940.7070.5190.5480.5760.6040.6310.6590.6890.7 0.5730.6070.6400.6710.7000.7260.7470.7610.5460.5780.6070.6340.6610.6880.7150.7450.750.5940.6300.6640.6960.7260.7540.7800.8010.8160.5700.6050.6380.6680.6960.7210.7460.7710.8000.8 0.6160.6540.6910.7250.7560.7850.8130.8370.8560.8710.5940.6320.6670.7000.7300.7580.7850.8070.8280.8540.850.6370.6780.7170.7540.7880.8170.8440.8690.8930.9120.9250.6150.6560.6950.7310.7640.7920.8170.8420.8650.8860.9060.9 0.6560.6980.7400.7800.8160.8480.8760.9010.9230.9430.9590.9710.6340.6770.7190.7590.7940.8250.8530.8760.8970.9180.9370.9540.950.6720.7170.7600.8010.8400.8740.9040.9290.9510.9690.9850.9960.6530.6980.7420.7830.8220.8560.8850.9100.9320.9510.9690.986BOSS RATIO ν = 0.275
- 32. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface obtained by enlarging or reducing the base shape according to claim 31 in at least one of r, θ and z directions.
- 33. The propeller fan according to claim 31, characterized in thatwhen a diameter of said propeller fan is D, a height in said z direction is h and an expansion angle of said blade is λ, r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (201) below using three-dimensional coordinate values indicated in said table 201, r1=a×r+b (mm)θ1=c×θ+d (deg)z1u=eu×zu+fu (mm)z1d=ed×zd+fd (mm)(a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant)whereina=D/2b=0c=λd: optionalh=eu≧edfu≧fd: optional}(201)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 34. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (201) recited in claim 33.
- 35. The propeller fan according to claim 31, characterized in thatwhen a diameter of said propeller fan is D, a height in said z direction is h, and the number of blades is n, r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (202) below using three-dimensional coordinate values indicated in said table 201, r1=a×r+b (mm)θ1=c×θ+d (deg)z1u=eu×zu+fu (mm)z1d=ed×zd+fd (mm)(a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant)whereina=D/2b=0c=360/nd: optionalh=eu≧edfu≧fd: optional}(202)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 36. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (202) recited in claim 35.
- 37. The propeller fan according to claim 31, characterized in thatwhen a diameter of said propeller fan is D and a height in said z direction is h, r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (203) below using three-dimensional coordinate values indicated in said table 201, r1=a×r+b (mm)θ1=c×θ+d (deg)z1u=eu×zu+fu (mm)z1d=ed×zd+fd (mm)(a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant)whereina=D/2b=0c=24007×hDd: optionalh=eu≧edfu≧fd: optional}(203)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 38. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (203) recited in claim 37.
- 39. The propeller fan according to claim 31, characterized in thatsaid propeller fan comprises a boss portion, and when a diameter of said propeller fan is D, a boss ratio which is a ratio of the diameter of said propeller fan to a diameter of said boss portion is ν, a height in said z direction is h, and an expansion angle of said blade is λ, r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (204) below using three-dimensional coordinate values indicated in said table 201, r1=a×r+b (mm) θ1=c×θ+d (deg) z1u=eu×zu+fu (mm) z1d=ed×zd+fd (mm) (a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant) wherein a=2029D(1-v) b=-2029D(1-v)×0.275+vD2 c=λ d: optional h=eu≧ed fu≧fd: optional}(204)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 40. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (204) recited in claim 39.
- 41. The propeller fan according to claim 31, characterized in thatsaid propeller fan comprises a boss portion, and when a diameter of said propeller fan is D, a boss ratio which is a ratio of the diameter of said propeller fan to a diameter of said boss portion is ν, a height in said z direction is h, and the number of blades is n, r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (205) below using three-dimensional coordinate values indicated in said table 201, r1=a×r+b (mm) θ1=c×θ+d (deg) z1u=eu×zu+fu (mm) z1d=ed×zd+fd (mm) (a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant) wherein a=2029D(1-v) b=-2029D(1-v)×0.275+vD2 c=360/n d: optional h=eu≧ed fu≧fd: optional}(205)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 42. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (205) recited in claim 41.
- 43. The propeller fan according to claim 31, characterized in thatsaid propeller fan comprises a boss portion, and when a diameter of said propeller fan is D, a boss ratio which is a ratio of the diameter of said propeller fan to a diameter of said boss portion is ν, and a height in said z direction is, r, θ, z coordinates (r1, θ1, z1u) defining a surface on a suction side of said blade and r, θ, z coordinates (r1, θ1, z1d) defining a surface on a blowing side of said blade are obtained by a transformation formula (206) below using three-dimensional coordinate values indicated in said table 201, r1=a×r+b (mm) θ1=c×θ+d (deg) z1u=eu×zu+fu (mm) z1d=ed×zd+fd (mm) (a,c,eu,ed: factor of proportionality;b,d,fu,fd: constant) wherein a=2029D(1-v) b=-2029D(1-v)×0.275+vD2 c=24007×hD d: optional h=eu≧ed fu≧fd: optional}(206)the surface of the blade of said propeller fan being configured by a curved surface defined by said (r1, θ1, z1u) and said (r1, θ1, z1d).
- 44. A die for molding a propeller fan, characterized in thata surface of a portion forming a surface of a blade of said propeller fan in the die is configured by a curved surface defined by the (r1, θ1, z1u) and the (r1, θ1, z1d) obtained by the transformation formula (206) recited in claim 43.
- 45. A fluid feeding device, comprising:a blower having a propeller fan recited in any one of claims 31, 33, 35, 37, 39, 41 and 43, and a drive motor driving the propeller fan.
Priority Claims (3)
Number |
Date |
Country |
Kind |
2000-202717 |
Jul 2000 |
JP |
|
2000-244268 |
Aug 2000 |
JP |
|
2000-256867 |
Aug 2000 |
JP |
|
Parent Case Info
This application is the national phase under 35 U.S.C. §371 of PCT International Application No. PCT/JP01/05777 which has an International filing date of Jul. 3, 2001, which designated the United States of America.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/JP01/05777 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO02/02950 |
1/10/2002 |
WO |
A |
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Number |
Name |
Date |
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A |
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Lohmann |
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A |
6287078 |
Min et al. |
Sep 2001 |
B1 |
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Number |
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61-65098 |
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JP |
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