Cable return pulley and cable transportation system comprising such a pulley
09682713 ยท 2017-06-20
Assignee
Inventors
Cpc classification
F16H55/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H55/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B61B12/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
B61B12/00
PERFORMING OPERATIONS; TRANSPORTING
B61B12/02
PERFORMING OPERATIONS; TRANSPORTING
F16H55/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A cable transportation system cable return pulley has a hub, which is configured to rotate about an axis of rotation and has a plurality of lateral coupling sides lying along respective coplanar straight lines crosswise to the axis of rotation; and a main body, which is coupled to the hub, has an annular seat configured to house the cable, and a quantity of sectors equal to the quantity of lateral coupling sides of the hub, and wherein each sector is coupled to the hub and to the adjacent sectors solely along two of the straight lines.
Claims
1. A cable transportation system cable return pulley comprising: a hub configured to rotate about an axis of rotation, said hub including a quantity of at least three lateral coupling sides, each of said sides lying along a respective straight line, each of said respective straight lines being crosswise to the axis of rotation; and a main body coupled to the hub, said main body including: an annular seat configured to house a cable, and a quantity of sectors equal to the quantity of lateral coupling sides of the hub, wherein each sector is coupled to the hub and to two adjacent sectors along two of said straight lines.
2. The cable transportation system cable return pulley of claim 1, wherein said straight lines are perpendicular.
3. The cable transportation system cable return pulley of claim 1, wherein the main body includes at least two substantially identical sectors.
4. The cable transportation system cable return pulley of claim 1, wherein each of the sectors are substantially identical.
5. The cable transportation system cable return pulley of claim 1, wherein the quantity of sectors is four.
6. The cable transportation system cable return pulley of claim 1, wherein each sector has: a curved outer edge in which said annular seat is formed; and an inner edge extending substantially along the two of said straight lines.
7. The cable transportation system cable return pulley of claim 6, wherein the inner edge of at least one of the sectors defines at least one recess.
8. The cable transportation system cable return pulley of claim 1, wherein each sector defines at least part of at least one hole.
9. The cable transportation system cable return pulley of claim 1, wherein the annular seat includes a bottom wall lined with a layer of an elastomer material.
10. A cable transportation system comprising: two turnaround stations, at least one of the turnaround stations having a return pulley including: a hub configured to rotate about an axis of rotation, said hub including a quantity of at least three lateral coupling sides, each of said sides lying along a respective straight line, each of said respective straight lines being crosswise to the axis of rotation, and a main body coupled to the hub, said main body including: an annular seat configured to house a cable, and a quantity of sectors equal to the quantity of lateral coupling sides of the hub, wherein each sector is coupled to the hub and to two adjacent sectors along two of said straight lines; and at least one haul cable extending between the two turnaround stations.
11. The cable transportation system of claim 10, wherein said straight lines are perpendicular.
12. The cable transportation system of claim 10, wherein the main body includes at least two substantially identical sectors.
13. The cable transportation system of claim 10, wherein each of the sectors are substantially identical.
14. The cable transportation system of claim 10, wherein the quantity of sectors is four.
15. The cable transportation system of claim 10, wherein each sector has: a curved outer edge in which said annular seat is formed; and an inner edge extending substantially along the two of said straight lines.
16. The cable transportation system of claim 15, wherein the inner edge of at least one of the sectors defines at least one recess.
17. The cable transportation system of claim 10, wherein each sector defines at least part of at least one hole.
18. The cable transportation system of claim 10, wherein the annular seat includes a bottom wall lined with a layer of an elastomer material.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) A non-limiting embodiment of the present disclosure will be described by way of example with reference to the attached drawings, in which:
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DETAILED DESCRIPTION
(9) Referring now to the example embodiments of the present disclosure illustrated in
(10) Pulley 1 is configured to rotate about an axis of rotation A, and is driven by a drive member 2 (of which only the shaft is shown in the drawings) connected to pulley 1 by a transmission.
(11) More specifically, pulley 1 comprises a hub 3 coupled to drive member 3; and a main body 4 fixed to hub 3.
(12) Main body 4 comprises a substantially circular outer edge 5 having a seat 6 (
(13) As shown in
(14) In certain embodiments, face 10 of layer 9 has a groove 11 configured to house the cable (not shown in the drawings).
(15) As shown in
(16) In certain embodiments, hub 3 is substantially in the form of a square cross, and has four identical lateral coupling sides 14, which are coupled to main body 4 in use.
(17) Lateral coupling sides 14 lie along respective coplanar straight lines a, b, c, d crosswise to axis of rotation A.
(18) In the non-limiting example in
(19) In this example embodiment, each lateral coupling side 14 has a coupling flange 15.
(20) Main body 4 comprises a plurality of sectors 20 coupled to one another.
(21) In the non-limiting example described and shown herein, sectors 20 are four in quantity or number and substantially identical.
(22) Each sector 20 has a curved outer edge 21, in which cable seat 6 is formed; and an inner edge 22.
(23) In this example embodiment, each sector 20 has at least one hole 23; and two recesses 24 located along inner edge 22. Hole 23 and recesses 24 reduce the structural weight of each sector 20, making each sector relatively easier to handle and transport, and relatively cheaper to produce.
(24) As shown in
(25) In this example embodiment, openings 25 are substantially right-triangle-shaped with rounded vertices.
(26) With particular reference to
(27) First contact portion 28 and second contact portion 29 of inner edge 22 are aligned along the same axis D, and third contact portion 30 extends along an axis E.
(28) Axis D and axis E form an angle substantially equal to that formed by the straight lines along which lie the adjacent lateral coupling sides to which sector 20 is to be coupled. In the non-limiting example in
(29) Each contact portion 28, 29, 30 has a respective coupling flange 31, 32, 33.
(30) In actual use, coupling flange 31 is coupled to coupling flange 33 of the adjacent sector 20; coupling flange 32 is coupled to respective coupling flange 15 of hub 3; and coupling flange 33 is coupled to coupling flange 31 of the adjacent sector 20.
(31) In certain embodiments, coupling flanges 31, 32, 33 and 15 are coupled by bolts (not shown in the drawings).
(32) In a variation not shown, the inner edge has no recesses, so therefore has only two contact portions, which in use extend along the two straight lines along which the respective lateral coupling sides lie.
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(37) It is understood that the hub may have a polygonal cross section with any quantity or number of sides. The main body comprises as many sectors as the sides of the hub. When the hub cross section is in the form of an equilateral polygon, the sectors are identical; whereas, in the case of a non-equilateral polygon, the sectors differ in shape and size according to the size and location of the sides of the polygon.
(38) Clearly, changes may be made to the pulley and system as described herein without, however, departing from the scope of the accompanying Claims. That is, various changes and modifications to the presently disclosed embodiments will be apparent to those skilled in the art. Such changes and modifications can be made without departing from the spirit and scope of the present subject matter and without diminishing its intended advantages. It is therefore intended that such changes and modifications be covered by the appended claims.