FLUID SUPPLY CONDUIT AND METHOD FOR PROVIDING SUCH A CONDUIT
20190178422 ยท 2019-06-13
Inventors
- Edgar Batista (Moissy-Cramayel, FR)
- Nelson Caetano (Moissy-Cramayel, FR)
- Lore Marie Ricquemaque (Moissy-Cramayel, FR)
Cpc classification
F01D5/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D9/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2250/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L9/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L9/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02C7/222
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L9/047
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2260/60
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L2201/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16L9/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01D9/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A method for providing a fluid supply conduit configured to pass through a constrained environment, including providing a circular section tube of appropriate dimensions, die stamping the circular section tube so as to obtain an oblong section tube of oval section, providing a plurality of external stiffeners of hollowed out shape adapted to the external dimensions of the oblong section tube, assembling the external stiffeners around a portion of the section of the oblong section tube.
Claims
1. A fluid supply conduit configured to pass through a constrained environment, comprising: at least one oblong section tube having a substantially oval section, and a plurality of external stiffeners of hollowed out shape with a U-shaped section adapted to encircle the oval section tube over a portion of its section, the plurality of external stiffeners being distributed over a length of said tube, two successive external stiffeners being positioned head to tail around the oblong section tube such that a pair of successive stiffeners forms an alternating banding around said tube.
2. The fluid supply conduit according to claim 1, wherein each external stiffener comprises a variable thickness, said variable thickness being greater around the most stressed zones of the oblong section tube and thinner around the least stressed zones of the oblong section tube.
3. The fluid supply conduit according to claim 2, wherein the oblong section tube comprises circular zones and linear zones, the variable thickness of the stiffener increases from a linear zone up to a circular zone.
4. A turbojet engine including a constrained environment traversed by a fluid supply conduit according to claim 1.
5. A method for providing a supply conduit according to claim 1, comprising: providing a circular section tube of appropriate dimensions; die stamping the circular section tube so as to obtain an oblong section tube; providing a plurality of external stiffeners of hollowed out shape adapted to the external dimensions of the oblong section tube, and assembling the external stiffeners around a portion of the section of the oblong section tube, two successive stiffeners being positioned head to tail around the oblong section tube such that the two successive external stiffeners form an alternating banding around said tube.
6. The method according to claim 5, wherein the assembling of the external stiffeners on the oblong section tube comprises an operation of fastening by welding, brazing, bonding or shrink fitting.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0029] Other benefits and characteristics of the invention will become clear on reading the description, illustrated by the figures in which:
[0030]
[0031]
[0032]
[0033]
[0034]
DETAILED DESCRIPTION
[0035] An exemplary embodiment of a fluid supply conduit intended to pass through a constrained environment and an example of the method making it possible to manufacture such a conduit are described in detail hereafter, with reference to the appended drawings. These examples illustrate the characteristics and benefits of the invention. It is however recalled that the invention is not limited to these examples.
[0036] In the figures, identical elements are marked by identical references. For questions of legibility of the figures, the size scales between the represented elements are not respected.
[0037]
[0038] The supply conduit of
[0039] Between the input 140 and output 130 points, the supply conduit 100 comprises an oblong section tube 110 obtained by die stamping of a circular section tube. Die stamping is a manufacturing technique that consists in forming a part by deforming, after heating or at room temperature, a metal or alloy material. In the invention, a conventional circular section tube is formed, for example hot, in oblong section tube shape by means of a matrix bearing in hollows the shape of the oblong section tube. The oblong section tube 110 obtained by die stamping is a tube in one piece, without welding, which has a substantially oval, or elliptical, section as represented in
[0040] The fact of being weld-free enables the oblong section tube of the invention to not comprise any zone of least resistance due to reductions in mechanical capacities in the welding zones, in comparison with assemblies by welding between edges. The oblong section tube 110 may thus be manufactured with a regular thickness and be relatively thinfor example of the order of 0.6 to 0.9 mmwhich makes it possible to limit the bulk of the oblong section tube.
[0041] It will be understood that, apart from the thickness of the oblong section tube, the bulk of the oblong section tube 110 may also be modulated by modifying the stretching of the oval of its section.
[0042] The fluid supply conduit 100 comprises, in addition to the oblong section tube 110, a plurality of external stiffeners 120 distributed over the length of the oblong section tube 110 and ensuring resistance to high pressures caused by the circulation of the fluid. In the example of
[0043] According to an embodiment of the invention, each external stiffener 120 is mounted outside of the oblong section tube 110 so as to encircle partially the oblong section tube. This external mounting of the oblong section tube makes it possible that the presence of stiffeners does not affect the internal passage section of the tube and thus the flow rate of the fluid within the tube. Each external stiffener 120 has a hollowed out shape, suited to receive a portion of a circular zone 111 of the oblong section tube 110. Thus, each external stiffener 120 may have overall a horseshoe shaped profile encircling at least one part of the circular zone of the oblong section tube 110. In a more precise manner, an external stiffener 120 is a part, for example made of metal or alloy, of which the inner section, referenced S120 in
[0044] The inner section S120 of the external stiffener 120 may have, for example, the shape of a U of which the base 121 surrounds a portion of the circular zone 111 of the oblong section tube 110 and of which the legs 122 follow a portion of the linear zone 112 of the oblong section tube.
[0045] A supply conduit according to an embodiment of the invention may be manufactured by producing on the one hand the oblong section tube 110 and on the other hand the external stiffeners 120. As represented in
[0046] Such a method 200, in which the external stiffeners are manufactured independently of the oblong section tube and mounted laterally enables late assembly of the two elements, notably assembly after foundry steps. It enables, moreover, a lower failure rate than that of supply conduits with internal stiffeners. This also makes it possible to stiffen a partial oblong zone in the case of a tube where the two ends are circular and the central zone is oblong, which would be impossible to install with a 360 stiffener.
[0047] The external stiffeners 120 may have an identical thickness over their whole length. In other words, when they have a U-shape, the legs and the base of the U of each stiffener may be of same thickness. According to certain embodiments, such as those represented in
[0048] According to certain embodiments, the external stiffeners 120 are regularly distributed over the length of the oblong section tube 110. According to other embodiments, the external stiffeners are distributed irregularly along the oblong section tube, as a function for example of the parts present in the constrained environment, such as the fastening device 150.
[0049] Whether they are distributed regularly or irregularly, the external stiffeners 120 may be positioned by pairs along the oblong section tube 110. Indeed, as represented in
[0050]
[0051] The oblong character of the tube of the supply conduit of the invention ensures a different flexibility in the different planes (XY, XZ and YZ), which facilitates the putting in place of the conduit in the constrained environment EC, despite the presence of the external stiffeners which slightly increases the flexural rigidity.
[0052] Although described through a certain number of examples, alternatives and embodiments, the fluid supply conduit according to the invention includes various alternatives, modifications and improvements which appear in an obvious manner to those skilled in the art, it being understood that these alternatives, modifications and improvements form part of the scope of the invention.