Pelton type wheel, with buckets with heels mechanically assembled to a hub, Associated manufacturing process.

The mechanical assembly of Pelton wheels from monobloc parts with a hub and clamping flange addresses the complexity and cost issues of one-piece casting, enhancing manufacturing efficiency and reducing downtime.

FR3166407A1Pending Publication Date: 2026-03-20MATALP
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Patent Information

Authority / Receiving Office
FR · FR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-09-19
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

The manufacturing of Pelton turbine wheels is complex and costly due to the use of one-piece casting with ferrous materials, leading to long supply times for hydroelectric power plants during maintenance and breakdowns.

Method used

A Pelton wheel is mechanically assembled from monobloc parts comprising a hub, clamping flange, and screws, with trapezoidal heel cross-sections for dovetail connection, and sealed with gaskets and caps to prevent infiltration and corrosion.

Benefits of technology

Facilitates easier, faster, and less expensive manufacturing, reducing downtime and costs for hydroelectric power plants.

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Abstract

Pelton-type wheel with buckets and heels mechanically assembled to a hub, and associated embodiment. The invention relates to a Pelton-type wheel (1) with a central axis (X) and comprising: - a hub (2); - a plurality of one-piece parts (3), each consisting of at least one bucket (30) extended by a heel (31) at one of its longitudinal ends and distributed around the periphery of the hub, with each heel bearing radially against a peripheral edge of the hub; - at least one clamping flange (4), bearing against at least one of the principal faces (21) of the hub and at least one of the lateral edges of the bucket heels; - a plurality of clamping screws (5), screwed into the hub, laterally clamping the flange against said at least one principal face of the hub and said at least one of the lateral edges of the bucket heels. Figure for the abstract: Fig. 1
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Description

Title of the invention: Pelton type wheel, with buckets with heels mechanically assembled to a hub, Associated method of embodiment. technical field

[0001] The present invention relates to the field of hydraulic turbines, intended for use in hydroelectric power plants, and more particularly to so-called Pelton turbines.

[0002] The present invention aims to facilitate the manufacture of a Pelton turbine wheel and to reduce the associated costs. Previous technique

[0003] A Pelton turbine comprises a rotating wheel, fitted with blades called "buckets" on its periphery, and one or more fixed injectors which send water, at very high speed, onto the buckets. The whole assembly is surrounded by a steel sheet cover designed to protect the wheel and to drain the water.

[0004] A so-called Pelton wheel has a general shape of a disc equipped with buckets each resembling a half nutshell, placed around the circumference.

[0005] Most often constructed in one piece, Pelton wheels are cast by casting, with ferrous materials highly alloyed with chromium and nickel.

[0006] The wheels consist of a central rim and peripheral buckets.

[0007] The molding or machining of these wheels is a complex and delicate operation, requiring numerous and costly metallurgical controls.

[0008] As a result, the manufacturing and therefore supply times to operators of hydroelectric power plants who would need them in case of maintenance and / or breakdown are long.

[0009] Consequently, there is a need to simplify the manufacture of Pelton-type wheels and to reduce the associated time and costs.

[0010] The general aim of the invention is then to meet at least part of this need. Description of the invention

[0011] To this end, the invention first relates to a Pelton-type wheel, with a central axis (X) and comprising:

[0012] - a hub;

[0013] - a plurality of monobloc parts, each consisting of at least one trough extended by a heel at one of its longitudinal ends and distributed around the periphery of the hub with each heel bearing radially against a peripheral edge of the hub;

[0014] - at least one clamping flange, bearing against at least one of the faces main hub and at least one of the lateral edges of the trough heels;

[0015] - a plurality of clamping screws, screwed into the hub by laterally tightening the flange against said at least one main face of the hub and said at least one of the lateral edges of the trough heels.

[0016] The screws are preferably fitted with anti-loosening washers of the cam-effect type such as those marketed under the reference Nord_Lock or other types of washers securing the tightening.

[0017] According to an advantageous embodiment, the Pelton wheel comprises a single clamping flange, one of the lateral edges of the trough heels being clamped and laterally supported against a lateral edge of the hub while the other of the lateral edges of the heels is clamped and laterally supported against the single clamping flange.

[0018] According to this mode, the cross-section of each trough heel is trapezoidal in shape so that the clamping of the flange constitutes a mechanical dovetail connection between each trough heel and the flange and the hub.

[0019] According to an advantageous embodiment, the Pelton wheel includes a sealing gasket arranged around each clamping screw and between the hub and the clamping flange. This prevents any liquid infiltration at the interface between the hub and the flange.

[0020] According to an advantageous embodiment, the Pelton wheel includes a sealing cap fixed to each clamping screw head. The cap prevents the screws from coming into contact with liquid, thus reducing corrosion and the risk of leakage. The cap is preferably fixed by bonding with silicone, polyurethane sealant, or any other sealant in grooves provided for this purpose.

[0021] Advantageously, the hub includes a peripheral edge, of smaller diameter than its peripheral edge supporting the trough heels, adapted to center the clamping flange.

[0022] The constituent material of the hub and flange is preferably chosen from stainless steel, aluminum, bronze, cast iron, composite materials or an alloy based on at least one of these.

[0023] The constituent material of the one-piece parts of the troughs is preferably chosen from stainless steel, aluminum, bronze, cast iron, composite materials or an alloy based on at least one of these.

[0024] The invention also relates to a method for making a Pelton-type wheel, comprising the following steps:

[0025] i / produce by machining and / or 3D printing a plurality of monobloc parts each consisting of at least one trough extended by a heel protruding on one of its longitudinal sides;

[0026] ii / produce by forging and then machining a hub and at least one clamping flange;

[0027] iii / position the plurality of monobloc parts contiguously on a peripheral edge of the hub;

[0028] iv / lateral support of at least one clamping flange against a main face of the hub and one of the lateral edges of the trough heels;

[0029] v / tightening by screwing the flange against the main face of the hub and the lateral edge of the trough heels.

[0030] The invention finally relates to the use of a Pelton wheel, as described above, as a moving wheel of a hydraulic turbine of a hydroelectric power station.

[0031] Thus, the invention essentially consists of proposing a Pelton wheel mechanically assembled from monobloc parts integrating the buckets mounted on the periphery of a hub and then fixed by screwing a clamping flange onto the hub.

[0032] The advantages of the invention are numerous, among which we can mention a manufacturing process that is easier, faster and less expensive than a one-piece Pelton wheel made by molding and machining according to the state of the art.

[0033] Other advantages and features will become clearer upon reading the detailed description, given by way of illustration and not limitation, with reference to the following figures. Brief description of the drawings

[0034] [Fig-1] [Fig.1] is an exploded view of a Pelton type wheel according to the invention.

[0035] [Fig. 1 A] [Fig. 1 A] is a detail view along A of [Fig. 1], showing a part monobloc according to the invention, consisting of a bucket extended by a heel for the mechanical assembly of the Pelton wheel.

[0036] [Fig.2] [Fig.2] is a front view of the Pelton wheel according to [Fig.1], in mechanically assembled configuration.

[0037] [Fig.2A] [Fig.2A] is a longitudinal sectional view along AA of the Pelton wheel of [Fig.2].

[0038] [Fig.2B] [Fig.2B] is a detail view along B of [Fig.2A], showing the mechanical tightening of the flange by screw on a trough heel.

[0039] [Fig.3] [Fig.3] is a front view of a one-piece hub of a Pelton wheel according to Figures 1 and 2.

[0040] [Fig.3A] [Fig.3A] is a longitudinal sectional view along AA of the hub of [Fig.3].

[0041] [Fig.4] [Fig.4] is a front view of a clamping flange of a Pelton wheel according to figures 1 and 2.

[0042] [Fig.4A] [Fig.4A] is a longitudinal sectional view along AA of the clamping flange of [Fig.4]. Detailed description

[0043] The various figures show a Pelton wheel 1 with central axis X which is mechanically assembled according to the invention.

[0044] This Pelton wheel 1 first includes a machined hub 2 of axisymmetric shape which includes an outer peripheral edge 20, a main face 21, an inner peripheral edge 21 of smaller diameter than the outer edge 20 and a lateral edge 23 which is extended from the outer edge 20. In addition, a plurality of tapped holes 24 are regularly distributed angularly from the main face 21, parallel to the axis of the hub.

[0045] The wheel 1 also includes a plurality of one-piece parts 3, each consisting of at least one bucket 30 extended at one of its longitudinal ends by a heel 31. As illustrated, the cross-section of the heel 31 is trapezoidal.

[0046] All these one-piece parts 3 are distributed around the periphery of the hub with each heel 31 bearing radially against the outer peripheral edge 20 of the hub.

[0047] The wheel 1 also includes a single clamping flange 4 with a clamping portion 40 and a plurality of regularly spaced holes 41. The flange 4 is centered and guided on the inner peripheral edge 22 of the hub and laterally supported against the main face 21 of the hub. The clamping portion 41 is laterally supported against one of the lateral edges of the bucket heels 31.

[0048] A plurality of clamping screws 5 is screwed individually into each tapped hole 24 of the hub 2 through the holes 41 and with the screw heads bearing against the flange 4. Thus, the flange 4 is clamped laterally against the main face 21 of the hub and one of the lateral edges of the trough heels 31 which are therefore mechanically locked.

[0049] As illustrated, due to the complementary shapes with the trapezoidal section of the trough heels 31, the clamping portion 41 of the flange and the lateral edge 24 of the hub, the resulting mechanical connection is of the dovetail type, which further improves the positioning and mechanical locking of the monobloc parts 3 around the hub 2. The edges are preferably chamfered, in order to ensure optimal contact between the different bearing faces.

[0050] To perfect the sealing of the Pelton wheel 1 and prevent any infiltration of liquid into it, a sealing gasket 6 is arranged around each clamping screw 5 and between the hub 2 and the clamping flange 4.

[0051] In addition, a sealing cap 7 is fixed by bonding with silicone, polyurethane sealant or any other sealing fluid in the grooves provided for this purpose, on each clamping screw head.

[0052] To produce such a Pelton wheel 1, the following steps are carried out.

[0053] Step i / : produce a plurality of one-piece parts by machining and / or 3D printing 3.

[0054] Step ii / : produce by forging and then machining the hub 2 and the clamping flange 4.

[0055] Step iii / : position the plurality of monobloc parts 3 contiguously on the peripheral edge 20 of the hub 2.

[0056] Step iv / : lateral support of at least one clamping flange 4 against the main face 21 of the hub and one of the lateral edges of the heels 31 of the buckets.

[0057] Step v / : tightening the flange 4 by screwing the screws 5 into the hub 4 and through the flange 4 against the main face 21 of the hub and the lateral edge of the heels 31 of the buckets.

[0058] Other advantages and improvements may be made without departing from the scope of the invention.

[0059] The invention is not limited to the examples just described; in particular, features of the illustrated examples can be combined in unillustrated variants.

[0060] If in the illustrated example all the one-piece bucket parts are identical, the invention can be realized with one-piece parts which would be of different dimensions while allowing their close positioning around the hub.

Claims

Demands

1. Pelton type wheel (1), with central axis (X) and comprising: - a hub (2); - a plurality of one-piece parts (3) each consisting of at least one bucket (30) extended by a heel (31) at one of its longitudinal ends and distributed around the periphery of the hub with each heel bearing radially against a peripheral edge of the hub; - at least one clamping flange (4), bearing against at least one of the principal faces (21) of the hub and at least one of the lateral edges of the bucket heels; - a plurality of clamping screws (5), screwed into the hub by laterally clamping the flange against said at least one principal face of the hub and said at least one of the lateral edges of the bucket heels.

2. Pelton wheel according to claim 1, comprising a single clamping flange, one of the lateral edges of the trough heels being clamped and laterally supported against a lateral edge of the hub while the other of the lateral edges of the heels is clamped and laterally supported against the single clamping flange.

3. Pelton wheel according to claim 2, the cross section of each trough heel being trapezoidal in shape so that the flange clamping constitutes a mechanical dovetail joint between each trough heel and the flange and the hub.

4. Pelton wheel according to any one of the preceding claims, comprising a sealing gasket (6) arranged around each clamping screw and between the hub and the clamping flange.

5. Pelton wheel according to any one of the preceding claims, comprising a sealing cap (7) fixed on each clamping screw head.

6. Pelton wheel according to any one of the preceding claims, the hub comprising a peripheral edge (22), of smaller diameter than its peripheral support edge (20) of the trough heels, adapted to center the clamping flange.

7. Pelton wheel according to any one of the preceding claims, the constituent material of the hub and flange being selected from stainless steel, aluminum, bronze, cast iron, composite materials or an alloy based on at least one of these.

8. Pelton wheel according to any one of the preceding claims, the constituent material of the one-piece bucket parts being selected from stainless steel, aluminum, bronze, cast iron, composite materials or an alloy based on at least one of these.

9. Method for making a Pelton type wheel (1), comprising the following steps: i / producing by machining and / or 3D printing a plurality of one-piece parts (3) each consisting of at least one bucket (30) extended by a heel (31) projecting on one of its longitudinal sides; ii / producing by forging and then machining a hub (2) and at least one clamping flange (4); iü / positioning the plurality of one-piece parts contiguously on a peripheral edge (20) of the hub; iv / laterally supporting at least one clamping flange against a main face (21) of the hub and one of the lateral edges of the bucket heels; v / tightening by screwing the flange against the main face of the hub and the lateral edge of the bucket heels.

10. Use of a Pelton wheel (1) according to any one of claims 1 to 8, as a moving wheel of a hydraulic turbine of a hydroelectric power station.

Citation Information

Patent Citations

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    EP2275668A2

  • Turbine wheel and pelton turbine equipped with same

    US6443697B1

  • Pelton turbine wheel, method for making same and pelton turbine including such wheel

    US8540489B2