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公开(公告)号:US20130001380A1
公开(公告)日:2013-01-03
申请号:US13172905
申请日:2011-06-30
Applicant: Jacob Anthony Guillory
Inventor: Jacob Anthony Guillory
IPC: F16M11/00
CPC classification number: F17C13/084 , F17C2201/0142 , F17C2201/032 , F17C2201/058 , F17C2203/0621 , F17C2203/0648 , F17C2203/066 , F17C2205/0165 , F17C2205/018 , F17C2205/051
Abstract: The present application provides a compressed gas cylinder stand for use with a compressed gas cylinder. The compressed gas cylinder stand may include a solid body with a cone-like shape and an aperture through the solid body. The aperture may be sized to accommodate the compressed gas cylinder.
Abstract translation: 本申请提供了一种与压缩气瓶一起使用的压缩气瓶支架。 压缩气瓶支架可以包括具有锥形形状的固体和穿过固体的孔。 该孔径的大小适于容纳压缩气瓶。
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公开(公告)号:US20090322068A1
公开(公告)日:2009-12-31
申请号:US12460547
申请日:2009-05-28
Applicant: Johannes Benedikt Höfner
Inventor: Johannes Benedikt Höfner
IPC: B60P3/22
CPC classification number: B60K15/063 , B60K15/03006 , B60K15/073 , F17C2201/0142 , F17C2270/0184
Abstract: In a passenger automobile having a pressure tank which extends along the longitudinal vehicle axis, the tank comprises between its front and rear ends at least one conical section.
Abstract translation: 在具有沿着纵向车辆轴线延伸的压力罐的乘客汽车中,该箱体在其前端和后端之间包括至少一个锥形部分。
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公开(公告)号:US20060107827A1
公开(公告)日:2006-05-25
申请号:US10526841
申请日:2003-09-05
Applicant: Paul Richards
Inventor: Paul Richards
IPC: F42B33/00
CPC classification number: F17C1/00 , F17C2201/0142 , F17C2201/018 , F17C2201/056 , F17C2203/0629 , F17C2203/0631 , F17C2203/0658 , F17C2205/0323 , F17C2205/0352 , F17C2205/0397 , F17C2221/011 , F17C2221/031 , F17C2221/035 , F17C2223/0153 , F17C2223/033 , F17C2227/046 , F17C2260/042 , F17C2270/05 , F41H9/02 , F42B3/04 , F42B33/06
Abstract: A fluid pressurization device 10 comprises a pressure container 12 and a first bladder 14, a second bladder 16 and a sheet 18, that are located in the pressure container 12. The bladders 14 and 16 have pipe connectors 32 and 40, respectively, for filling/discharging fluid from the bladders. The bladders 14 and 16 are located in the container 12 adjacent one another, with the bladder 16 being folded in concertina fashion and the sheet 18 being wrapped around the bladder 16 to form a roll surrounding the folded bladder 16. In use, the bladder 14 is filled with a combustible fluid such as oxygen and the bladder 16 is filled with compressed air to a relatively higher pressure than the oxygen in the bladder 14 for pressurizing the oxygen contained therein. As oxygen is delivered from bladder 14, the sheet 18 unravels gradually, allowing the bladder 16 to continue to exert a force on the bladder 14.
Abstract translation: 流体加压装置10包括压力容器12和位于压力容器12中的第一囊14,第二囊16和片18。 气囊14和16分别具有用于从气囊填充/排出流体的管连接器32和40。 气囊14和16位于彼此相邻的容器12中,其中气囊16以三角形方式折叠,并且片材18缠绕在气囊16周围以形成围绕折叠气囊16的辊。 在使用中,囊14填充有可燃流体如氧气,并且气囊16充满压缩空气至比膀胱14中的氧更高的压力,用于对其中所含的氧气加压。 当氧气从膀胱14输送时,片材18逐渐解开,允许囊16继续在膀胱14上施加力。
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公开(公告)号:US20040089440A1
公开(公告)日:2004-05-13
申请号:US10294825
申请日:2002-11-13
Inventor: Stan A. Sanders
IPC: F28F007/00 , F28D007/10 , F28D007/02 , B21D053/02
CPC classification number: F17C1/00 , B29C47/00 , B29C47/0014 , B29C47/0023 , B29C47/0026 , B29C47/0028 , B29C47/003 , B29C47/0052 , B29C47/065 , B29C47/30 , B29C47/882 , B29C47/8895 , B29C53/66 , B29C53/8075 , B29C63/10 , B29C65/00 , B29C65/02 , B29C65/04 , B29C65/08 , B29C65/562 , B29C65/564 , B29C65/78 , B29C66/112 , B29C66/1122 , B29C66/1222 , B29C66/1224 , B29C66/124 , B29C66/131 , B29C66/221 , B29C66/5344 , B29C66/54 , B29C66/542 , B29C66/5432 , B29C66/8221 , B29C66/8242 , B29C66/8322 , B29C66/83411 , B29C66/836 , B29C70/32 , B29C70/86 , B29C2793/0027 , B29D23/00 , B29L2023/00 , B29L2023/005 , B29L2031/18 , B29L2031/602 , B29L2031/7156 , B29L2031/772 , F17C2201/0138 , F17C2201/0142 , F17C2201/0147 , F17C2201/0157 , F17C2201/0161 , F17C2201/0166 , F17C2201/0176 , F17C2201/035 , F17C2201/056 , F17C2203/011 , F17C2203/012 , F17C2203/0629 , F17C2203/0658 , F17C2203/0663 , F17C2203/0665 , F17C2203/067 , F17C2203/0685 , F17C2203/069 , F17C2205/0314 , F17C2205/0323 , F17C2209/2154 , F17C2209/22 , F17C2209/221 , F17C2209/227 , F17C2209/228 , F17C2209/23 , F17C2223/0123 , F17C2223/035 , F17C2260/012 , F17C2260/021 , F17C2260/042 , F17C2265/031 , F17C2270/01 , Y10T29/4935
Abstract: A cellular reservoir flexible pressure vessel is formed as a series of closely packed tubes fitted into a pair of opposing end caps. The end caps have individual receptacles sized and shaped to receive the tube ends that are secured with adhesive or radio frequency welding. At least one end cap has a passageway for connection of the vessel. The vessel may be formed in a variety of useful shapes and the tubes may have various internal and external cross-sections. The end caps may be filled with sintactic foam with canals leading to the passageway. Microtubes through the syntactic foam may connect the tubes to the passageway. The vessel is further strengthened by overwrapping with high-strength braiding material, hoop winding or by overlayment with high-strength fabric. The vessel is further strengthened by coating with plastic resin. Apparatus and methods for forming the cellular reservoir flexible vessels are described.
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公开(公告)号:US06375125B1
公开(公告)日:2002-04-23
申请号:US09309805
申请日:1999-05-11
Applicant: Elizabeth P. Kirn , Neil Anthony Graf , Kevin Wilbur Ely
Inventor: Elizabeth P. Kirn , Neil Anthony Graf , Kevin Wilbur Ely
IPC: B64G122
CPC classification number: C08J5/04 , B64G1/402 , C08J2363/00 , C08J2377/00 , F17C1/06 , F17C1/16 , F17C13/008 , F17C13/088 , F17C2201/0109 , F17C2201/0119 , F17C2201/0128 , F17C2201/0142 , F17C2201/0152 , F17C2201/054 , F17C2201/056 , F17C2201/058 , F17C2203/0619 , F17C2203/067 , F17C2203/0673 , F17C2205/0119 , F17C2205/018 , F17C2209/2163 , F17C2209/232 , F17C2221/011 , F17C2221/033 , F17C2223/0123 , F17C2223/0161 , F17C2223/033 , F17C2223/035 , F17C2260/011 , F17C2260/012 , F17C2260/042 , F17C2260/053 , F17C2270/0168 , F17C2270/0194 , F17C2270/0197
Abstract: The development of polymer composite liquid oxygen (LOX) tanks is a critical step in creating the next generation of launch vehicles. A composite LOX tank will weigh significantly less than conventional metal tanks. This benefit of reduced weight is critical to enable future launch vehicles to meet required mass ractions. The high strength and low weight of a composite tank allows for a lighter weight craft and/or higher payload capacity which results in lower costs per pound to place an object in orbit. The unique, nontraditional idea described here is to use resin-based composite materials to make such a composite tank or other oxygen carrying component such as a feedline. Polymer composites have traditionally been regarded as being more flammable than metals and therefore deemed not oxygen compatible. However, a hybrid composite material may provide the optimal balance of oxygen compatibility and mechanical performance that would make composite oxygen tanks feasible.
Abstract translation: 聚合物复合液氧(LOX)坦克的开发是创造下一代运载火箭的关键一步。 复合LOX储罐的重量明显小于常规金属罐。 减轻重量的这个好处对于使未来的运载火箭能够满足所需的群众行动至关重要。 复合罐的高强度和低重量允许较轻的重量工艺和/或更高的有效载荷能力,这导致将物体放置在轨道中的每磅成本降低。 这里描述的独特的,非传统的想法是使用树脂基复合材料制造这样的复合罐或其它载氧组分如进料线。 传统上,聚合物复合材料被认为比金属更易燃,因此被认为不与氧相容。 然而,混合复合材料可以提供将使复合氧气罐可行的氧相容性和机械性能的最佳平衡。
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公开(公告)号:US2580649A
公开(公告)日:1952-01-01
申请号:US109548
申请日:1948-01-08
Applicant: UNION CARBIDE & CARBON CORP
Inventor: EDWARD BLUDEAU ROBERT
IPC: F17C9/02
CPC classification number: F17C9/02 , F17C2201/0119 , F17C2201/0142 , F17C2203/0631 , F17C2205/0314 , F17C2205/0332 , F17C2205/0335 , F17C2205/0385 , F17C2205/0394 , F17C2221/011 , F17C2221/014 , F17C2221/031 , F17C2223/0161 , F17C2223/033 , F17C2223/047 , F17C2227/0107 , F17C2227/0142 , F17C2227/04 , Y10T137/313 , Y10T137/6525
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公开(公告)号:US09840361B2
公开(公告)日:2017-12-12
申请号:US14010242
申请日:2013-08-26
Applicant: Microlin, LLC
Inventor: John Howard Gordon , Ashok V. Joshi
IPC: A61M5/145 , B65D83/00 , A61M5/148 , A61M5/155 , B05B9/047 , B05B11/00 , B05B11/02 , B05B11/04 , A61M5/142 , C25B9/06
CPC classification number: B65D83/0072 , A61M5/14593 , A61M5/1483 , A61M5/155 , A61M2005/14204 , B05B9/047 , B05B11/00412 , B05B11/0059 , B05B11/02 , B05B11/046 , B05B11/3028 , C25B9/06 , F17C2201/0142 , F17C2201/0147 , F17C2201/0176 , F17C2203/066 , F17C2203/0685
Abstract: An orientation independent delivery device. The delivery device includes a gas chamber, a delivery chamber, a gas cell, and a delivery aperture. The gas chamber includes a gas-side rigid portion and a gas-side flexible barrier. The gas-side flexible barrier is sealed to the gas-side rigid portion. The delivery chamber includes a delivery-side rigid portion and a delivery-side flexible barrier. The delivery-side flexible barrier is sealed to the delivery-side rigid portion and is oriented adjacent to the gas-side flexible barrier. The gas cell is coupled to the gas-side rigid portion of the gas chamber. The gas cell increases a gas pressure within the gas chamber to expand the gas-side flexible barrier. Expansion of the gas-side flexible barrier applies a compressive force to the delivery-side flexible barrier allowing a delivery material to escape from the delivery chamber.
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公开(公告)号:US20130186597A1
公开(公告)日:2013-07-25
申请号:US13745685
申请日:2013-01-18
Applicant: LightSail Energy, Inc.
Inventor: Laurie CLARK , Edwin P. Berlin, JR. , Danielle A. Fong , Stephen E. Crane
CPC classification number: F17C1/06 , B29C49/00 , B29C49/06 , B29C2791/001 , B29L2031/7156 , B60K15/03006 , B60K2015/03032 , B60K2015/03414 , F01K25/00 , F01K27/00 , F02C6/16 , F17C2201/0104 , F17C2201/0109 , F17C2201/0119 , F17C2201/0123 , F17C2201/0128 , F17C2201/0142 , F17C2201/054 , F17C2201/056 , F17C2201/058 , F17C2203/0604 , F17C2203/0617 , F17C2203/0629 , F17C2203/066 , F17C2203/0663 , F17C2203/0665 , F17C2203/067 , F17C2203/0675 , F17C2209/2127 , F17C2209/2154 , F17C2221/031 , F17C2223/0123 , F17C2223/036 , F17C2227/0323 , F17C2227/0341 , F17C2227/0355 , F17C2227/0379 , F17C2227/0397 , F17C2260/017 , F28D1/06 , F28D15/00 , F28D15/02 , F28D20/00 , F28D2020/0026 , F28D2020/006 , F28D2020/0065 , F28D2020/0078 , F28F1/10 , F28F1/24 , F28F13/00 , F28F2215/06 , F28F2215/14 , F28F2280/02 , Y02E60/142
Abstract: Embodiments of the present invention relate to compressed gas storage units, which in certain applications may be employed in conjunction with energy storage systems. Some embodiments may comprise one or more blow-molded polymer shells, formed for example from polyethylene terephthalate (PET) or ultra-high molecular weight polyethylene (UHMWPE). Embodiments of compressed gas storage units may be composite in nature, for example comprising carbon fiber filament(s) wound with a resin over a liner. A compressed gas storage unit may further include a heat exchanger element comprising a heat pipe or apparatus configured to introduce liquid directly into the storage unit for heat exchange with the compressed gas present therein.
Abstract translation: 本发明的实施例涉及压缩气体存储单元,其在某些应用中可以与能量存储系统结合使用。 一些实施例可以包括由例如聚对苯二甲酸乙二醇酯(PET)或超高分子量聚乙烯(UHMWPE)形成的一个或多个吹塑聚合物壳。 压缩气体存储单元的实施例本质上可以是复合的,例如包括在衬套上用树脂缠绕的碳纤维长丝。 压缩气体存储单元还可以包括热交换器元件,该热交换器元件包括被配置为将液体直接引入存储单元中以与存在于其中的压缩气体进行热交换的热管或设备。
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公开(公告)号:US20120055920A1
公开(公告)日:2012-03-08
申请号:US13201350
申请日:2010-02-10
Applicant: Jonas Rekstad , Jon Erik Borgen , Karl Jorgen Strauman , Arnfinn Unum , Lars Gunnar Vogt
Inventor: Jonas Rekstad , Jon Erik Borgen , Karl Jorgen Strauman , Arnfinn Unum , Lars Gunnar Vogt
IPC: B65D88/12
CPC classification number: F17C3/02 , F17C3/025 , F17C13/08 , F17C2201/0109 , F17C2201/0142 , F17C2201/0147 , F17C2201/032 , F17C2201/052 , F17C2203/0643 , F17C2203/0646 , F17C2203/0651 , F17C2205/0115 , F17C2205/018 , F17C2209/221 , F17C2221/033 , F17C2223/0161 , F17C2223/033 , F17C2260/016 , F17C2270/0105 , F17C2270/0113 , F17C2270/0121 , F17C2270/0123
Abstract: An independent vessel tank system for storing liquid gas on a vessel has a first tank member, a second, cylindrical tank member connected to the first tank member, a third tank member connected to the second tank member, wherein the first, second and third tank members provide a tank device for the liquid gas, a first supporting device provided between the third tank member and a hull of the vessel, for supporting the weight of the tank device, and a second supporting device at least partially provided along a periphery of the tank device, for supporting the tank device to the hull of the vessel. The second supporting device is flexible in a first direction parallel to the centre axis of the tank device, and flexible in a second direction perpendicular to the periphery of the tank device.
Abstract translation: 用于将液体气体储存在容器上的独立容器罐系统具有连接到第一罐构件的第一罐构件,第二圆柱形罐构件,连接到第二罐构件的第三罐构件,其中第一,第二和第三罐 构件提供用于液体气体的罐装置,设置在第三罐构件和容器的船体之间的第一支撑装置,用于支撑罐装置的重量;以及第二支撑装置,其沿着 罐装置,用于将罐装置支撑在容器的船体上。 第二支撑装置在与罐装置的中心轴平行的第一方向上是柔性的,并且在与罐装置的周边垂直的第二方向上是柔性的。
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公开(公告)号:US07829240B2
公开(公告)日:2010-11-09
申请号:US11624748
申请日:2007-01-19
Applicant: David A. Young , James W. Dandalides
Inventor: David A. Young , James W. Dandalides
IPC: H01M8/02
CPC classification number: B60K15/063 , B60K15/073 , B60K2015/0638 , F17C1/00 , F17C2201/0142 , F17C2201/035 , F17C2201/054 , F17C2201/056 , F17C2203/0636 , F17C2203/066 , F17C2205/0138 , F17C2221/012 , F17C2223/0123 , F17C2223/0153 , F17C2223/035 , F17C2223/036 , F17C2260/018 , F17C2270/0168 , F17C2270/0184 , Y02E60/321
Abstract: A fuel cell powered vehicle is disclosed having a fuel tank, wherein the fuel tank is disposed on an undercarriage of the vehicle and has a substantially conical shape to militate against interference with a function of a suspension system of the vehicle.
Abstract translation: 公开了一种燃料电池动力车辆,其具有燃料箱,其中燃料箱设置在车辆的底盘上,并且具有基本上圆锥形的形状,以抵抗与车辆的悬挂系统的功能的干扰。
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