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公开(公告)号:US20180057932A1
公开(公告)日:2018-03-01
申请号:US15803535
申请日:2017-11-03
Applicant: GOODRICH CORPORATION
Inventor: Christopher T. Kirkpatrick
CPC classification number: C23C16/045 , F16D65/126 , F16D2065/132
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:US09834842B2
公开(公告)日:2017-12-05
申请号:US14713377
申请日:2015-05-15
Applicant: GOODRICH CORPORATION
Inventor: Christopher T. Kirkpatrick
CPC classification number: C23C16/045 , F16D65/126 , F16D2065/132
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:US09482299B1
公开(公告)日:2016-11-01
申请号:US14795798
申请日:2015-07-09
Applicant: Goodrich Corporation
Inventor: Christopher T. Kirkpatrick
CPC classification number: F16D65/12 , F16D55/24 , F16D55/36 , F16D65/0006 , F16D2055/0058 , F16D2065/132 , F16D2065/1328 , F16D2065/1372 , F16D2065/1376
Abstract: The present disclosure provides a multi-leaved core damping disk comprising an annular-shaped first disk half, an annular shaped second disk half, and a multi-leaved core axially aligned with, and disposed therebetween.
Abstract translation: 本公开提供了一种多叶芯阻尼盘,包括环形第一盘半部,环形第二盘半部和与其轴向对准并设置在其间的多叶芯。
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公开(公告)号:US09366302B1
公开(公告)日:2016-06-14
申请号:US14610092
申请日:2015-01-30
Applicant: Goodrich Corporation
Inventor: Christopher T. Kirkpatrick
CPC classification number: F16D65/12 , F16D55/24 , F16D55/36 , F16D55/40 , F16D65/122 , F16D65/126 , F16D69/0408 , F16D2055/0058 , F16D2055/0095 , F16D2065/132 , F16D2065/1324 , F16D2069/009 , F16D2069/0441 , F16D2200/0052
Abstract: Friction disks, such as rotors and stators, including floating wear liners are disclosed. The friction disks may include a core and a floating wear liner configured to contact a contact surface of the core. The cores may include a retention ring that is substantially concentric with the core and extends axially beyond the plane of the contact surface. The retention ring may retain one or more floating wear liners in a substantially concentric position aligned with the contact surface to provide frictional contact with the core during braking.
Abstract translation: 公开了诸如转子和定子的摩擦盘,包括浮动磨损衬垫。 摩擦盘可以包括构造成接触芯的接触表面的芯和浮动耐磨衬垫。 芯可以包括保持环,该保持环与芯基本上同心并且轴向延伸超过接触表面的平面。 保持环可以将一个或多个浮动磨损衬垫保持在与接触表面对准的大致同心位置中,以在制动期间提供与芯的摩擦接触。
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公开(公告)号:US20150001008A1
公开(公告)日:2015-01-01
申请号:US13928897
申请日:2013-06-27
Applicant: Goodrich Corporation
Inventor: Christopher T. Kirkpatrick
CPC classification number: F16D55/24 , B64C25/42 , F16D55/36 , F16D65/0006 , F16D65/12 , F16D2055/0058 , F16D2065/132 , F16D2065/1328
Abstract: Systems and methods disclosed herein may be useful for use in a disk brake assembly. In this regard, a disk brake system may comprise a combination of split friction disk assemblies and solid disk assemblies. These split friction disk assemblies and/or solid disk assemblies may be arranged together in any suitable pattern or position.
Abstract translation: 本文公开的系统和方法可用于盘式制动器组件中。 在这方面,盘式制动系统可以包括分离摩擦盘组件和实心盘组件的组合。 这些分开的摩擦盘组件和/或固体盘组件可以以任何合适的图案或位置布置在一起。
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公开(公告)号:US20140174863A1
公开(公告)日:2014-06-26
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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27.
公开(公告)号:US12036782B2
公开(公告)日:2024-07-16
申请号:US17242725
申请日:2021-04-28
Applicant: GOODRICH CORPORATION
Inventor: Christopher T. Kirkpatrick
IPC: B32B5/24 , B29C70/02 , B29K307/04 , B29K509/04 , B32B5/02 , B32B5/16 , B32B5/30 , B32B37/24 , C04B35/628 , C04B35/83
CPC classification number: B32B5/24 , B29C70/025 , B32B5/02 , B32B5/16 , B32B5/30 , B32B37/24 , C04B35/6286 , C04B35/62878 , C04B35/62892 , C04B35/62894 , C04B35/83 , B29K2307/04 , B29K2509/04 , B32B2260/023 , B32B2260/025 , B32B2260/04 , B32B2262/106 , B32B2264/107 , B32B2313/04 , B32B2315/02 , B32B2605/18 , C04B2235/3821 , C04B2235/422 , C04B2235/428 , C04B2235/5248 , C04B2235/5256 , C04B2235/616
Abstract: A fiber reinforced composite component may include interleaved textile layers and ceramic particle layers coated with matrix material. The fiber reinforced composite component may be fabricated by forming a fibrous preform and densifying the fibrous preform. The fibrous preform may be fabricated by forming a first ceramic particle layer over a first textile layer, disposing a second textile layer over the first ceramic particle layer, forming a second ceramic particle layer over the second textile layer, and disposing a third textile layer over the second ceramic particle layer.
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公开(公告)号:US20230323925A1
公开(公告)日:2023-10-12
申请号:US17718889
申请日:2022-04-12
Applicant: GOODRICH CORPORATION
Inventor: Christopher T. Kirkpatrick
CPC classification number: F16D65/0037 , F16D65/125 , F16D55/22 , F16D2200/0047
Abstract: A wear debris delivery system includes a brake component fabricated from a ceramic matrix composite (CMC). The brake component includes a stator disk, the stator disk having at least one wear surface, and a torque plate barrel having a series of axially extending stator splines, wherein the stator splines are configured to support the stator disk. The wear debris delivery system includes an injector configured to inject wear debris into the brake component such that the wear debris travels through the torque plate barrel to the stator disk via the stator splines.
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公开(公告)号:US11448274B2
公开(公告)日:2022-09-20
申请号:US16779873
申请日:2020-02-03
Applicant: GOODRICH CORPORATION
Inventor: Christopher T. Kirkpatrick
Abstract: A brake disk may comprise a friction disk formed of at least one of a carbon fiber-ceramic matrix composite material or a carbon fiber-carbon matrix composite material. A first surface of the friction disk defines a first recess. A first ceramic insert comprising ceramic powder may be located in the first recess.
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公开(公告)号:US11053168B2
公开(公告)日:2021-07-06
申请号:US15926632
申请日:2018-03-20
Applicant: GOODRICH CORPORATION
Inventor: Christopher T. Kirkpatrick , James Warren Rudolph
IPC: C04B35/83 , C04B35/524 , F16D65/12 , C01B32/168 , C01B32/194 , C01B32/956 , F16D69/02 , C04B35/628 , C04B35/573 , C04B35/571 , C04B35/80 , F16D69/00
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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