Mid turbine frame for gas turbine engine
First Claim
1. A gas turbine engine having multi-stage turbines with a mid turbine frame disposed therebetween, the mid turbine frame comprising:
- an annular outer case connected to an engine casing; and
at least three load transfer spokes radially extending from a bearing supporting inner case to the outer case, the load transfer spokes each connected to the outer case at a spoke outer end by at least one fastener extending through the outer case and into the load transfer spoke, at least three of the outer ends of the at least three load transfer spokes received in respective openings forming recesses that defined in an inner side of the outer case, the openings each defined by radially-extending peripheral surfaces extending along and around corresponding radially-extending peripheral surfaces of the spoke outer ends, the opening and spoke peripheral surfaces extending substantially around an entire periphery of the spoke outer end, the opening and spoke peripheral surfaces configured to transfer to the outer case at least one of bending and torsion loads applied to the load transfer spoke.
1 Assignment
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Accused Products
Abstract
A mid turbine frame of a gas turbine engine includes an outer case which supports a spoke casing co-axially positioned therein. The spoke casing has load transfer spokes extending radially from an inner case and secured to the outer case. A load transfer device is provided to transfer load from the spokes to the outer case in addition to load transfer through a first group of fasteners securing the spokes to the outer case, thereby forming a secondary load transfer path from the spokes. The load transfer device includes an opening of the outer case into which at least some of the spokes are inserted.
197 Citations
20 Claims
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1. A gas turbine engine having multi-stage turbines with a mid turbine frame disposed therebetween, the mid turbine frame comprising:
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an annular outer case connected to an engine casing; and at least three load transfer spokes radially extending from a bearing supporting inner case to the outer case, the load transfer spokes each connected to the outer case at a spoke outer end by at least one fastener extending through the outer case and into the load transfer spoke, at least three of the outer ends of the at least three load transfer spokes received in respective openings forming recesses that defined in an inner side of the outer case, the openings each defined by radially-extending peripheral surfaces extending along and around corresponding radially-extending peripheral surfaces of the spoke outer ends, the opening and spoke peripheral surfaces extending substantially around an entire periphery of the spoke outer end, the opening and spoke peripheral surfaces configured to transfer to the outer case at least one of bending and torsion loads applied to the load transfer spoke. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10)
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11. A gas turbine engine having a mid turbine frame, the mid turbine frame comprising:
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an annular outer case connected to and provide a portion of an engine casing; an annular inner case co-axially disposed within the outer case, the inner case supporting at least one bearing of an engine main shaft; at least three load transfer spokes extending from the inner case to spoke outer ends, the outer ends connected to the outer case by a first group of fasteners extending through the outer case and into the at least three load transfer spokes, and wherein the outer ends of at least three of the at least three load transfer spokes are inserted in openings forming recesses defined in an inner side of the outer case, each said opening provided by a respective body mounted to an inner side of the case by a second group of fasteners. - View Dependent Claims (12, 13, 14, 15, 16, 17, 18, 19)
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20. A method of transferring loads from an outer end of load transfer spokes of a mid turbine frame of a gas turbine engine to an outer case to which the load transfer spokes are mounted, the load transfer spokes radially extending between the outer case and an inner bearing-supporting case, the method comprising:
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providing a first load transfer path though a plurality of fastener radially extending through the outer ease into an outer end of the load transfer spokes; and providing a second load transfer path for load transfer through a set of generally parallel radially-extending surfaces provided by radially extending walls of an opening forming a recess in the outer ease into which radially extending walls of one of the load transfer spokes has been inserted, the surfaces generally parallel to and opposing one another, wherein the second load path is activated upon at least one of bending and twisting of the load transfer spoke about the spoke outer end to thereby cause the opposed surfaces to contact the spoke outer end, a resulting load in the load transfer spoke being transferred to the outer case primarily through the second load transfer path.
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Specification