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公开(公告)号:US20190292107A1
公开(公告)日:2019-09-26
申请号:US15926632
申请日:2018-03-20
Applicant: GOODRICH CORPORATION
Inventor: Christopher T. Kirkpatrick , James Warren Rudolph
IPC: C04B35/83 , C01B32/956 , C01B32/194 , C01B32/168 , C04B35/524 , F16D69/02
Abstract: A method of treating a carbon/carbon composite is provided. The method may include infiltrating a carbonized fibrous structure with hydrocarbon gas to form a densified fibrous structure. The method may include treating the densified fibrous structure with heat at a first temperature range from about 1600 to about 2400° C. to form a heat treated densified fibrous structure. The method may include infiltrating the heat treated densified fibrous structure with silicon to form a silicon carbide infiltrated fibrous structure.
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公开(公告)号:US10017887B2
公开(公告)日:2018-07-10
申请号:US15077585
申请日:2016-03-22
Applicant: Goodrich Corporation
Inventor: Christopher T. Kirkpatrick
CPC classification number: D04H18/04 , D04H1/492 , D04H3/002 , D04H3/11 , F16D65/12 , F16D65/126 , F16D65/127 , F16D2200/0052 , F16D2250/00
Abstract: A water entanglement system having a first rotatable surface comprises a first water jet which may be configured to water-entangle a preform in situ. The water-entanglement system may comprise a second rotatable surface disposed proximate the first rotatable surface. The second rotatable surface may comprise a second water jet configured to water-entangle the preform in situ. The first rotatable surface may be oriented substantially parallel to the second rotatable surface.
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公开(公告)号:US20170275795A1
公开(公告)日:2017-09-28
申请号:US15077585
申请日:2016-03-22
Applicant: Goodrich Corporation
Inventor: Christopher T. Kirkpatrick
CPC classification number: D04H18/04 , D04H1/492 , D04H3/002 , D04H3/11 , F16D65/12 , F16D65/126 , F16D65/127 , F16D2200/0052 , F16D2250/00
Abstract: A water entanglement system having a first rotatable surface comprises a first water jet which may be configured to water-entangle a preform in situ. The water-entanglement system may comprise a second rotatable surface disposed proximate the first rotatable surface. The second rotatable surface may comprise a second water jet configured to water-entangle the preform in situ. The first rotatable surface may be oriented substantially parallel to the second rotatable surface.
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公开(公告)号:US09315261B2
公开(公告)日:2016-04-19
申请号:US13927963
申请日:2013-06-26
Applicant: Goodrich Corporation
Inventor: Christopher T. Kirkpatrick
CPC classification number: F16D65/127 , B64C25/42 , B64C25/44 , F16D55/36 , F16D65/02 , F16D65/092 , F16D65/12 , F16D65/123 , F16D2055/0058 , F16D2065/1316 , F16D2065/1356 , F16D2065/1372 , F16D2065/1376 , F16D2065/1392
Abstract: Friction disks, such as rotors and stators, including keyed wear liners are disclosed. The friction disks may include a core and a replaceable wear liner coupled to each side of the core. The wear liners may include a plurality of keys which engage key notches in the core. The key notches may prevent the wear liners from rotating with respect to the core in response to a shear force, such as a force applied during braking.
Abstract translation: 公开了诸如转子和定子的摩擦盘,包括带键式耐磨衬垫。 摩擦盘可以包括连接到芯的每一侧的芯和可更换的耐磨衬垫。 磨损衬垫可以包括接合芯中的关键凹口的多个键。 关键槽口可以防止磨损衬垫响应于诸如在制动期间施加的力的剪切力而相对于芯部旋转。
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公开(公告)号:US08978843B2
公开(公告)日:2015-03-17
申请号:US13726752
申请日:2012-12-26
Applicant: Goodrich Corporation
Inventor: Christopher T. Kirkpatrick , Robert Fiala
CPC classification number: B60T1/065 , F16D55/36 , F16D65/0006 , F16D65/12 , F16D2055/0058 , F16D2065/132 , F16D2065/1328
Abstract: An annular-shaped disk half of a split friction disk assembly for a disk brake system. The disk half includes a friction surface and a non-friction surface. The friction surface is at an axial end of the disk half. The non-friction surface is at an axial end of the disk half on a side opposite of the friction surface. The non-friction surface includes a contact surface and a non-contact surface. The non-contact surface is recessed from the contact surface.
Abstract translation: 用于盘式制动系统的分离摩擦盘组件的环形盘半部。 盘半部包括摩擦表面和非摩擦表面。 摩擦表面位于盘半部的轴向端。 非摩擦表面在与摩擦表面相对的一侧的盘半轴上。 非摩擦表面包括接触表面和非接触表面。 非接触表面从接触表面凹陷。
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公开(公告)号:US20250154997A1
公开(公告)日:2025-05-15
申请号:US18506805
申请日:2023-11-10
Applicant: GOODRICH CORPORATION
Inventor: Christopher T. Kirkpatrick
IPC: F16D69/04 , F16D65/092
Abstract: A friction disk is provided. The friction disk includes a friction disk core, a first wear liner located over a first surface of the friction disk core, a second wear liner located over a second first surface of the friction disk core, a washer, and a rivet. The first wear liner and the second wear liner are coupled to the friction disk core via the rivet. The washer is configured to be positioned at a distal end of the rivet, such that, in response to the distal end of the rivet being upset forming an upset head, the upset head pushes against the washer thereby spreading a load of the upset head to at least one of the first wear liner or the second wear liner.
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公开(公告)号:US11788186B2
公开(公告)日:2023-10-17
申请号:US16819545
申请日:2020-03-16
Applicant: GOODRICH CORPORATION
Inventor: Christopher T. Kirkpatrick
CPC classification number: C23C16/045 , C23C16/042 , C23C16/26 , F16D65/126
Abstract: A seal plate disposable between a pair of preforms for chemical vapor infiltration is disclosed. The seal plate may include a plurality of first channels that extend completely through the seal plate and that are located between an inner annulus and outer annulus of the seal plate. The seal plate may further include a plurality of second channels that also extend completely through the seal plate and that are located also between an inner annulus and outer annulus. The first channels may differ from the second channels in at least one respect (e.g., the first channels may be of a different width than the second channels). The first channels may provide an inlet for the chemical vapor infiltration of the preform, while the second channels may provide an outlet for the chemical vapor infiltration of the preform.
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公开(公告)号:US11326250B2
公开(公告)日:2022-05-10
申请号:US16684301
申请日:2019-11-14
Applicant: GOODRICH CORPORATION
Inventor: Christopher T. Kirkpatrick
Abstract: A method of making a fibrous part is provided. The method may comprise forming a porous structure with an annular geometry. A first entrance channel and a second entrance channel may be formed with the entrance channels defined by a surface of the preform. The entrance channels may also extend in a radial direction from an inner diameter of the annular porous structure partially across the surface. An exit channel may be formed between the entrance channels and defined by the surface. The exit channel may extend in a radial direction from an outer diameter of the annular porous structure partially across the surface.
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公开(公告)号:US10450236B2
公开(公告)日:2019-10-22
申请号:US15714006
申请日:2017-09-25
Applicant: GOODRICH CORPORATION
Inventor: Christopher T. Kirkpatrick , Jean-Francois Le Costaouec , John Linck
IPC: C04B35/524 , C04B35/83 , F16D65/12 , F16D69/02 , C01B32/354 , C23C16/04 , C01F17/00 , C01G23/047 , C01G25/00
Abstract: A method of making a carbon-carbon composite part may comprise fabricating a fibrous preform comprising a fiber volume ratio of 25% or greater, heat treating the fibrous preform at a first temperature, infiltrating the fibrous preform with a first ceramic suspension, densifying the fibrous preform by chemical vapor infiltration (CVI) to form a densified fibrous preform, and heat treating the densified fibrous preform at a second temperature of 1600° C. or greater.
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公开(公告)号:US10081892B2
公开(公告)日:2018-09-25
申请号:US15245007
申请日:2016-08-23
Applicant: GOODRICH CORPORATION
Inventor: Christopher T. Kirkpatrick , Jean-Francois Le Costaouec , John Linck , Paul Perea , Gregory J. Loughry , Daniel Register , Lance McWilson , Lauren Rosler , Christopher L. Everhart
CPC classification number: D04H18/00 , B29B11/16 , D04H1/4242 , D04H1/43 , D04H1/46 , D04H1/492 , D04H1/498 , D04H3/11 , F16D69/023 , F16D2069/005 , F16D2250/0092
Abstract: A loom system for making a fibrous preform may comprise a base, a bedplate coupled to the base, wherein the bedplate is configured to rotate about an axis of rotation, and an air entangling module coupled to the base. The air entangling module may comprise an air entangling head coupled to an outer support and an inner support, wherein the air entangling head is configured to apply a jet of air toward the bedplate at an entangling zone. The air entangling head may have freedom of motion along the outer support and the inner support, and may be configured to rest on top of a fibrous layer.
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