System and method for positioning at least one spacer in a longitudinal pipe
10343348 · 2019-07-09
Assignee
Inventors
- Gérard Ollivier (Orvault, FR)
- Olivier Gueno (Saint Malo de Guersac, FR)
- Laurent Harel (Montoir de Bretagne, FR)
Cpc classification
F16L43/001
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C66/5221
PERFORMING OPERATIONS; TRANSPORTING
F16L7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C65/02
PERFORMING OPERATIONS; TRANSPORTING
F16L9/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29K2027/18
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23P21/00
PERFORMING OPERATIONS; TRANSPORTING
B29C65/00
PERFORMING OPERATIONS; TRANSPORTING
F16L9/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a system for positioning at least one spacer in a longitudinal pipe having an outer duct and an inner duct mounted in said outer duct, the system including a bracing module configured to maintain a pipe longitudinally along an axis while maintaining positioning clearance between the inner duct and the outer duct, and an insertion module having a pusher member, guided longitudinally along said axis, that is configured to move at least one spacer in the positioning clearance of the longitudinal pipe.
Claims
1. A system for positioning at least one spacer in a longitudinal pipe having an outer duct and an inner duct mounted in said outer duct, the system including: a bracing module configured to maintain a pipe longitudinally along an axis X while maintaining positioning clearance between the inner duct and the outer duct for creating an inner-space between the inner duct and the outer duct; an insertion module having a pusher member with a pushing end, guided longitudinally along said axis, that is sized and shaped to move at least one spacer in the inner-space between the inner duct and the outer duct from a first position in the inner-space to a second position in the inner-space; wherein the outer duct has a front end and a rear end, the bracing module includes a front bracing member and a rear bracing member each with a body that are suitable for cooperating with the front end and the rear end of the outer duct, respectively; and wherein the rear bracing member comprises a first die cavity with an inside diameter for receiving the outer duct and a second die cavity having an open structure with a radius for receiving the inner duct but not the outer duct.
2. The system according to claim 1, wherein said pusher member has an annular section for receiving the inner duct.
3. The system according to claim 1, wherein the insertion module includes a plurality of guide members distributed longitudinally along the axis X to guide the pusher member.
4. The system according to claim 1, wherein the insertion module includes means for driving the pusher member.
5. The system according to claim 1, wherein the insertion module includes stop means configured to limit the movement of the pusher member.
6. The system according to claim 1, wherein the second die cavity has a U-shape facing vertically upward, away from a ground surface.
7. The system according to claim 1, wherein the inner duct has a front end and a rear end, said front end of said inner duct extending externally beyond the front end of the outer duct and said rear end of said inner duct extending externally beyond the rear end of the outer duct, and wherein the rear bracing member of the bracing module limits movement of the rear end of the outer duct and the rear end of the inner duct along the axis X.
8. A system for positioning at least one spacer in a longitudinal pipe having an outer duct and an inner duct mounted in said outer duct, the system including: a bracing module configured to maintain a pipe longitudinally along an axis X while maintaining positioning clearance between the inner duct and the outer duct for creating an inner-space between the inner duct and the outer duct; an insertion module having a pusher member with a pushing end, guided longitudinally along said axis, that is sized and shaped to move at least one spacer in the inner-space between the inner duct and the outer duct from a first position in the inner-space to a second position in the inner-space; wherein the insertion module comprises a driving part with a front end having driving part outside diameter and a driving part inside diameter and said bracing module comprises a front bracing member and a rear bracing member, wherein said front bracing member comprises a stop part having an inside diameter sized and shaped to accommodate an outer duct and said rear spacing member comprises a front die cavity and a rear die cavity and wherein the front and rear die cavities having different diameters.
9. The system according to claim 8, wherein the front bracing member is fixed along the axis X and the rear bracing member is movable along the axis X to accommodate a length of a longitudinal pipe.
10. The system according to claim 8, further comprising a cutting module, said cutting module being structured for cutting a spacer, said spacer being sized and shaped to locate in an inner-space of a pipe having an outer duct and an inner duct.
11. The system according to claim 8, wherein the rear die cavity has a smaller diameter than the front die cavity.
12. The system according to claim 4, wherein the means for driving the pusher member comprises a driving wheel connected to a driving part by a belt, a motorized component, or a pinion and rack system.
13. The system according to claim 7, wherein a first spacer made from a polymer material is located in the inner-space between the outer duct and the inner duct at a first position inside the inner-space and a second spacer made from a polymer material is located in the inner-space at a second position inside the inner-space.
14. A system for positioning at least one spacer in a longitudinal pipe having an outer duct and an inner duct mounted in said outer duct, the system including: a bracing module configured to maintain a pipe longitudinally along an axis X while maintaining positioning clearance between the inner duct and the outer duct for creating an inner-space between the inner duct and the outer duct; an insertion module having a pusher member with a pushing end, guided longitudinally along said axis, that is sized and shaped to move at least one spacer in the inner-space between the inner duct and the outer duct from a first position in the inner-space to a second position in the inner-space; and wherein the pushing end of the insertion module is located in the inner-space and in contact with the at least one spacer.
15. The system according to claim 14, wherein the bracing module comprises a front bracing member fixed along the axis X and a rear bracing member movable along the axis X to accommodate a length of a longitudinal pipe.
16. The system according to claim 14, further comprising a cutting module, said cutting module being structured for cutting a spacer, said spacer being sized and shaped to locate in an inner-space of a pipe having an outer duct and an inner duct.
17. The system according to claim 14, wherein the bracing module has a rear bracing member comprising a front die cavity and a rear die cavity and wherein the rear die cavity has a smaller diameter than the front die cavity.
18. The system according to claim 14, wherein a first spacer made from a polymer material is located in an inner-space between an outer duct and an inner duct at a first position inside the inner-space and a second spacer made from a polymer material is located in the inner-space at a second position inside the inner-space.
Description
DESCRIPTION OF THE FIGURES
(1) The invention will be better understood upon reading the following description, provided solely as an example, and in reference to the appended drawings, in which:
(2)
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(14) It must be noted that the figures describe the invention in detail in order to implement the invention, said figures may of course be used to better define the invention if applicable.
DETAILED DESCRIPTION OF THE INVENTION
(15) Below, a system will be described for positioning at least one spacer in a fuel pipe for an aircraft in order to sinter said pipe without risk of damage.
(16) As illustrated in
(17) As will be described below, the outer longitudinal duct 21 is shorter than the inner longitudinal duct 22 so that the latter extends protruding from each end of the outer longitudinal duct 21.
(18) In reference to
(19) In reference to
(20) As illustrated in
(21) The bracing members 5, 6 are mounted in the support table 103, the front bracing member 5 being stationary in order to be positioned precisely relative to the insertion module 4 while the rear bracing member 6 is positioned to adapt to the length of the pipe 2. The front bracing member 5 includes a stop part 23 adapted to block the translation of the outer duct 21 forward as illustrated in
(22) As illustrated in
(23) In reference to
(24) In reference more particularly to
(25) In other words, owing to the bracing members 5, 6, the bracing module 3 braces the pipe 2 along the axis X in order to keep the ducts 21, 22 substantially coaxial relative to one another.
(26) Preferably, in reference to
(27) In reference to
(28) Preferably, the pusher member 7 is made from carbon so as to have greater rigidity in order to remain longitudinally aligned when it is inserted while only being maintained by one of its ends.
(29) The pusher member 7 includes a driving part 70 that assumes, in this example, the form of a tongue mounted at the front end 7a of the pusher member 7. In reference to
(30) As illustrated in
(31) In reference to
(32) In reference to
(33) In this example, the stop means assume the form of a stop member 41 mounted in the movement axis of the driving part 70 of the pusher member 7 in order to prevent any backward movement past the position of the stop member 41. Preferably, the stop member 41 is mounted movably in said support table 103 so as to be able to modify the longitudinal insertion position of the spacer in the pipe 2.
(34) We will now describe one embodiment of a method for positioning a spacer in a pipe 2. In reference to
(35) In reference to
(36) Advantageously, in reference to
(37) Still in reference to
(38) As illustrated in
(39) The method includes a step for adjusting the position of the stop member 41 on the table 103 in order to determine the longitudinal position of the spacer 1 in the pipe 2 relative to the front end 21a of the outer duct 21, i.e., relative to the front bracing member 5 whose axial position is preferably stationary relative to the table 103.
(40) In reference to
(41) During the driving, the pusher member 7 is guided along the axis X in the orifices 81 of the guide members 8. The driving part 70 of the pusher member 7 moves in a circulation slot 82 of each guide member 8 and is thus not stopped by the guide members 8.
(42) During the driving, the rear end 7b of the pusher member 7 comes into contact with the spacer 1 and moves it gradually and in a controlled manner in the functional clearance J, i.e., between the inner duct 22 and the outer duct 21 at the front bracing member 5. The pusher member 7 comes into contact with the entire front annular edge of the spacer 1, which guarantees regular movement. Although the pusher member 7 is only maintained at its front end during the insertion, it remains aligned along the axis X due to the rigidity of its carbon body.
(43) When the driving part 70 of the pusher member 7 comes into contact with the stop member 41, the spacer 1 is situated in the desired longitudinal position in the pipe 2. The pusher member 7 is then moved in the opposite direction to remove it from the pipe 2. The pipe 2, in which the spacer 1 is positioned, can be removed from the bracing module 3 in order to undergo a sintering step, the spacer 1 damping the mechanical sintering stresses to protect the ducts 21, 22.
(44) Advantageously, when the spacer 1 is only partially inserted into the pipe 2, the removable sections 10 can be removed given that the outer duct 21 ensures maintenance of the spacer 1 around the periphery of the inner duct 22. Alternatively, during the insertion of the spacer 1 into the pipe 2, the removable connections 10 maintaining the spacer 1 come into contact with the outer duct 21 and translate on the spacer 1 until extending over the pusher member 7. In other words, the removable connections 10 are not inserted into the pipe 2.
(45) Preferably, several spacers are successively inserted into a same pipe 2 in different longitudinal positions in order to form a pipe 2 including several sintered portions.
(46) Owing to the invention, several spacers 1 can be placed quickly and reproducibly in a pipe 2, which saves time and thus limits the overall cost of the operations prior to the sintering. Furthermore, since the positioning of the spacers 1 is precise, the sintering is done optimally.