IP Library Granted Patent US 10,533,572
Granted Patent B2
US 10,533,572 · App. 15/522,665 · Granted Jan 14, 2020

Blade unit for industrial fans

Inventors: Carlo Gallina (Pombia, IT); Nicola Romano (Pombia, IT)
Assignee: Cofimco S.R.L.
F04D29/34F04D25/08F04D29/388
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Quick Facts
Patent No.
US 10,533,572
App. No.
15/522,665
Granted
Jan 14, 2020
Kind
B2
Abstract

Described herein is a blade unit for industrial fans, which comprises: a blade; and a tubular bar, fixed on which is said blade and which has a root portion configured for being engaged by means for connecting said bar to the rotor of a fan. The unit is characterized in that it comprises a further bar mounted within said first tubular bar so as to present a first portion axially constrained to said first bar, and a second portion that is, instead, able to slide with respect to said first bar, in a condition of sliding friction, following upon a deformation due to bending of said first bar.

Claims (24)

1. A unit for industrial fans, comprising:

a blade;

a first tubular bar, fixed on which is said blade and which has a root portion configured for being engaged by means for connecting said first tubular bar to a rotor of a fan;

a further bar mounted within said first tubular bar so as to present a first portion constrained axially to said first tubular bar and a second portion that is instead able to slide with respect to said first tubular bar, in a condition of sliding friction, following upon a deformation due to bending of said first tubular bar.

2. The unit according to claim 1 , wherein said further bar is set at said root portion of said first tubular bar.

3. The unit according to claim 1 , wherein said first portion and said second portion of said further bar are set at a distance from one another, and define a first end and a second end of said bar, respectively.

4. The unit according to claim 3 , wherein the second portion is configured to axially slide with respect to said first tubular bar and an intermediate portion of said further bar set between said first and second portions directly faces, but is not in contact with, an inner surface of said first tubular bar, where an annular space is defined between the intermediate portion of said further bar and the inner surface of the first tubular bar.

5. The unit according to claim 1 , wherein said further bar is mounted within said first tubular bar according to an orientation whereby said second portion is closer to said blade than is said first portion.

6. The unit according to claim 1 , comprising a first bushing and a second bushing, which are fixed inside said first tubular bar and within which said first and second portions of said further bar are, respectively, received, wherein said first portion is fixed via connection means to said first bushing, whereas said second portion engages said second bushing and is configured to axially slide with respect to said first tubular bar.

7. The unit according to claim 1 , wherein said first tubular bar and/or said further bar is made of composite material by means of a pultrusion process.

8. The unit according to claim 7 , wherein said composite material is constituted by fibreglass reinforced with roving and/or carbon fibre.

9. The unit according to claim 6 , wherein said second portion engages said second bushing in a condition of play that ranges from 0 mm to 2 mm.

10. A unit for industrial fans, comprising:

a blade;

a first tubular bar, upon which is mounted said blade and which has a root portion configured to connect said first tubular bar to a rotor of a fan;

a further bar mounted within said first tubular bar, said further bar including a first portion mounted to said first tubular bar so as to be constrained axially and a second portion that is configured to slide with respect to said first tubular bar, in a condition of sliding friction, as said first tubular bar is deformed due to bending.

11. The unit according to claim 10 , wherein said further bar is set at said root portion of said first tubular bar.

12. The unit according to claim 10 , wherein said first portion and said second portion of said further bar are set at a distance from one another, and preferably define a first end and a second end of said bar, respectively.

13. The unit according to claim 12 , wherein the second portion is configured to axially slide with respect to said first tubular bar and an intermediate portion of said further bar set between said first and second portions directly faces, but is not in contact with, an inner surface of said first tubular bar, where an annular space is defined between the intermediate portion of said further bar and the inner surface of the first tubular bar.

14. The unit according to claim 10 , wherein said further bar is mounted within said first tubular bar according to an orientation whereby said second portion is closer to said blade than is said first portion.

15. The unit according to claim 10 , comprising a first bushing and a second bushing, which are fixed inside said first tubular bar and within which said first and second portions of said further bar are received, respectively, wherein said first portion is fixed to said first bushing, whereas said second portion engages said second bushing and is configured to axially slide with respect to said first tubular bar.

16. The unit according to claim 10 , wherein said first tubular bar and/or said further bar is made of composite material by means of a pultrusion process.

17. The unit according to claim 16 , wherein said composite material is constituted by fibreglass reinforced with roving and/or carbon fibre.

18. The unit according to claim 15 , wherein said second portion engages said second bushing in a condition of play that ranges from 0 mm to 2 mm.

Assignments (2)
CHANGE OF NAME Recorded Oct 27, 2025
From: COFIMCO S.R.L
To: COFIMCO S.P.A.
Reel/Frame 073269/0601 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2017
From: GALLINA, CARLO; ROMANO, NICOLA
To: COFIMCO S.R.L.
Reel/Frame 042479/0537 →
Priority Claims (1)
IT TO2014A0938 · Nov 11, 2014 · national
Continuity (1)
Related Publication 20170314569A1 · Nov 2, 2017