Method for producing a turbine engine part, and resulting mould and intermediate blank

US9969035B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9969035-B2
Application numberUS-201415106124-A
CountryUS
Kind codeB2
Filing dateDec 9, 2014
Priority dateDec 20, 2013
Publication dateMay 15, 2018
Grant dateMay 15, 2018

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

The invention relates to a method for producing multiple metal turbine engine parts, comprising steps consisting in: a) casting a metal alloy in a mold in order to produce a blank ( 3 ); and b) machining the blank in order to produce the parts, characterized in that the blank obtained by casting is a solid polyhedron having first and second sides ( 30 a, 30 b ) and third and fourth sides ( 30 c, 30 d ), in which the third and fourth sides extend between the first and second sides, flaring apart from the first side towards the second side, first at a first angle and subsequently at a second larger angle, and said at least one part is machined in the blank.

First claim

Opening claim text (preview).

The invention claimed is: 1. A method for producing at least one metal turbine engine part, comprising: casting a metal alloy in a mould in order to produce a blank; and machining the blank in order to produce the at least one part, wherein the blank obtained by casting is an externally solid polyhedron having only eight external sides, including first, second, third, and fourth sides, the third and fourth sides extending between the first and second sides and flaring apart from the first side towards the second side, first at a first angle and subsequently, from a break of slope, at a second larger angle larger than the first angle, and said at least one part is machined in the blank. 2. The method according to claim 1 , wherein the blank is externally defined by first and second truncated pyramids, so that external sides of the blank are defined by said first and second truncated pyramids, the first and second truncated pyramids each having a larger base and a smaller base, each base having a surface, the surface of the larger base exceeding the surface of the smaller base, the second truncated pyramid being an extension of the first truncated pyramid on the larger base of the first pyramid which exactly overlaps the smaller base of the second truncated pyramid. 3. The method according to claim 1 , wherein: said at least one part is a blade comprising a longitudinal axis and, along such axis, a root at a first end, a heel at a second end, and a curved section vane which extends there between and has a first convex side and a second concave side, and fifth and sixth sides of the blank each have a general shape of a first and a second trapezoid that extend in the same plane, each of said trapezoids having a larger base and a smaller base each having a surface, the surface of the larger base exceeding the surface of the smaller base, and one of said trapezoids extending the other of said trapezoids on the larger base of the first trapezoid which is contiguous to the smaller base of the second trapezoid. 4. A moulded blank, wherein the moulded blank comprises an externally solid polyhedron having only eight external sides, including first, second, third, and fourth sides, said third and fourth sides extending between the first and second sides and flaring apart from the first side towards the second side, first at a first angle and subsequently, from a break of slope, at a second angle larger than the first angle. 5. The moulded blank according to claim 4 , wherein the third and fourth sides each have a generally trapezoidal shape. 6. The moulded blank according to claim 4 , wherein the moulded blank has a plane of symmetry perpendicular to the first and second sides which are mutually parallel. 7. The moulded blank according to claim 4 , wherein: the first angle α ranges from 0° to 15°, the second angle γ is smaller than 120°, the third and fourth sides have a total flaring angle, between the first and second sides, which ranges from 1° to 15°, and the break of slope is located at less than 85%, from the shortest distance between the first and second sides, starting from the first side. 8. The moulded blank according to claim 4 , wherein: the moulded blank further comprises fifth and sixth sides, the third and fourth sides each have a generally trapezoidal shape, and the fifth and sixth sides each have a general shape of a first and a second trapezoid, each of said trapezoids having a larger base and a smaller base, each of said larger and smaller bases having a surface, the surface of the larger base exceeding the surface of the smaller base, and one of said trapezoids extending the other of said trapezoids, on the larger base of the first trapezoid which is contiguous to the smaller base of the second trapezoid. 9. A moulded blank, wherein the moulded blank is externally defined by first and second truncated pyramids, so that external sides of the blank are defined by said first and second truncated pyramids, each of said first and second truncated pyramids comprising a larger base and a smaller base, each of said larger and smaller bases having a surface, the surface of the larger base exceeding the surface of the smaller base, and the second truncated pyramid being an extension of the first truncated pyramid on the larger base of the first pyramid which exactly overlaps the smaller base of the second truncated pyramid, wherein a length of the moulded blank is delimited by the smaller base of the first truncated pyramid and the larger base of the second truncated pyramid. 10. A mould for implementing a method for producing at least one metal turbine engine part, comprising: casting a metal alloy in a mould in order to produce a blank; and machining the blank in order to produce the at least one part, wherein the blank obtained by casting is an externally solid polyhedron having only eight external sides, including first, second, third, and fourth sides, the third and fourth sides extending between the first and second sides and flaring apart from the first side towards the second side, first at a first angle and subsequently, from a break of slope, at a second larger angle larger than the first angle, and said at least one part is machined in the blank, the mould comprising at least one cavity for moulding therein a blank, the cavity comprising: first and second sides located at the opposite one from the other and respectively defining a bottom and an opening for entering a metal alloy into the cavity, and third and fourth sides, said third and fourth sides extending between the first and second sides and flaring apart from the second side towards the first side, first at a first angle and subsequently, from a break of slope, at a second angle larger than the first angle. 11. The mould according to claim 10 , wherein: the first angle (α) ranges from 0° to 15°, the second angle (γ) is smaller than 120°, the third and fourth sides have a total flaring angle, between the first and second sides, which ranges from 1° to 15°, and the break of slope is located at less than 85%, from the shortest distance between the first and second sides, starting from the first side. 12. A mould for implementing a method for producing at least one metal turbine engine part, comprising: casting a metal alloy in a mould in order to produce a blank; and machining the blank in order to produce the at least one part, wherein the blank obtained by casting is a solid polyhedron having first, second, third, and fourth sides, the third and fourth sides extending between the first and second sides and flaring apart from the first side towards the second side, first at a first angle and subsequently, from a break of slope, at a second larger angle larger than the first angle, and said at least one part is machined in the blank, the mould comprising at least one cavity for moulding therein a blank externally defined by first and second truncated pyramids, so that external sides of the blank are defined by said first and second truncated pyramids, each of said first and second truncated pyramids having a larger base and a smaller base, each of said larger and smaller bases having a surface, the surface of the larger base exceeding the surface of the smaller base, and the second truncated pyramid being an extension of the first truncated pyramid on the larger base of the first truncated pyramid which exactly overlaps the smaller base of the second truncated pyramid, wherein a length of the moulded blank is delimited by the smaller base of the first truncated pyramid and the larger base of the second truncated pyramid. 13. A mould for implementing a method for producin

Assignees

Inventors

Classifications

  • Selecting particular materials; {Particular measures relating thereto;} Measures against erosion or corrosion · CPC title

  • several moulds being disposed in a circle · CPC title

  • by using vacuum · CPC title

  • by its peculiarity of shape; of works of art {(cylinders, pistons B22D15/02)} · CPC title

  • B23P15/02Primary

    turbine or like blades from one piece · CPC title

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What does patent US9969035B2 cover?
The invention relates to a method for producing multiple metal turbine engine parts, comprising steps consisting in: a) casting a metal alloy in a mold in order to produce a blank ( 3 ); and b) machining the blank in order to produce the parts, characterized in that the blank obtained by casting is a solid polyhedron having first and second sides ( 30 a, 30 b ) and third and fou…
Who is the assignee on this patent?
Snecma
What technology area does this patent fall under?
Primary CPC classification B23P15/02. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue May 15 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).