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    • 3. 发明授权
    • Method for forming a bladder for fluid storage vessels
    • 用于形成流体储存容器的囊的方法
    • US6017600A
    • 2000-01-25
    • US093643
    • 1998-06-09
    • Fred MitlitskyBlake MyersFrank Magnotta
    • Fred MitlitskyBlake MyersFrank Magnotta
    • F17C1/16B29D22/00
    • F17C1/16B29L2031/7156F17C2203/0604F17C2205/0305F17C2209/2163F17C2221/012F17C2221/03F17C2221/032F17C2221/033F17C2223/0123F17C2270/0168F17C2270/0189Y02E60/321Y10T428/1334Y10T428/1338Y10T428/1355Y10T428/1359Y10T428/1366Y10T428/139Y10T428/1393
    • A lightweight, low permeability liner for graphite epoxy composite compressed gas storage vessels. The liner is composed of polymers that may or may not be coated with a thin layer of a low permeability material, such as silver, gold, or aluminum, deposited on a thin polymeric layer or substrate which is formed into a closed bladder using torispherical or near torispherical end caps, with or without bosses therein, about which a high strength to weight material, such as graphite epoxy composite shell, is formed to withstand the storage pressure forces. The polymeric substrate may be laminated on one or both sides with additional layers of polymeric film. The liner may be formed to a desired configuration using a dissolvable mandrel or by inflation techniques and the edges of the film seamed by heat sealing. The liner may be utilized in most any type of gas storage system, and is particularly applicable for hydrogen, gas mixtures, and oxygen used for vehicles, fuel cells or regenerative fuel cell applications, high altitude solar powered aircraft, hybrid energy storage/propulsion systems, and lunar/Mars space applications, and other applications requiring high cycle life.
    • 石墨环氧复合材料压缩气体储存容器的轻质低渗透性衬垫。 衬垫由聚合物组成,聚合物可以涂覆薄层的低渗透性材料,例如银,金或铝,沉积在薄的聚合物层或基底上,该薄层聚合物层或基底使用圆球形形成封闭的膀胱, 靠近圆球形端盖,其中具有或不具有凸起,围绕其形成高强度重量的材料,例如石墨环氧复合材料外壳,以承受存储压力。 聚合物基材可以在一侧或两侧层叠有另外的聚合物膜层。 可以使用可溶解心轴或通过充气技术将衬垫形成为期望的构造,并且通过热封缝合的膜的边缘。 衬套可用于大多数任何类型的气体存储系统,并且特别适用于用于车辆,燃料电池或再生燃料电池应用的氢气,气体混合物和氧气,高空太阳能飞机,混合能量存储/推进系统 ,以及月球/火星应用以及其他需要高循环寿命的应用。
    • 4. 发明授权
    • Ceramic tile expansion engine housing
    • 瓷砖膨胀发动机外壳
    • US5404793A
    • 1995-04-11
    • US70524
    • 1993-06-03
    • Blake Myers
    • Blake Myers
    • F02F1/18F02F7/00F01B11/02
    • F02F7/0087F02F1/18F05C2203/06F05C2203/08F05C2203/0813F05C2203/083F05C2203/0869
    • An expandable ceramic tile housing for a high temperature engine is disclosed wherein each tile is independently supported in place in an interlocking matrix by retention mechanisms which mechanically couple the individual ceramic tiles to an outer metal support housing while maintaining thermal isolation of the metal housing from the ceramic tiles. The ceramic tiles are formed with either an octagonal front face portion and a square shank portion or a square front face portion with an octagonal shank portion. The length of the sides of the octagonal front face portion on one tile is equal to the length of the sides of the square front face portion of adjoining tiles to permit formation of an interlocking matrix. Fibrous ceramic sealing material may be placed between radial and tangential facing surfaces of adjacent tiles to limit radial gas flow therebetween. Labyrinth-sealed pressure-controlled compartments may be established between the tile housing and the outer metal support housing to control radial gas flow.
    • 公开了一种用于高温发动机的可膨胀瓷砖壳体,其中每个瓦片通过保持机构独立地支撑在互锁基体中,所述保持机构将各个陶瓷砖机械地联接到外部金属支撑壳体,同时保持金属壳体与 瓷砖。 陶瓷砖形成有八边形前表面部分和方形柄部分或具有八角形柄部分的正方形正面部分。 一个瓦片上的八边形前面部分的侧面的长度等于相邻瓦片的正方形前面部分的边的长度,以允许形成互锁矩阵。 纤维陶瓷密封材料可以放置在相邻瓦片的径向和切向面对的表面之间,以限制它们之间的径向气流。 可以在瓦片壳体和外部金属支撑壳体之间建立迷宫密封的压力控制隔室以控制径向气体流动。
    • 6. 发明申请
    • Method for Storing and Dispensing Hydrogen Gas
    • 储存和分配氢气的方法
    • US20060260950A1
    • 2006-11-23
    • US11461613
    • 2006-08-01
    • Fred MitlitskyJohn BoyleLuke DaltonBlake MyersHassan OhabiJason Shiepe
    • Fred MitlitskyJohn BoyleLuke DaltonBlake MyersHassan OhabiJason Shiepe
    • C25B1/02
    • H01M8/04089H01M8/04007
    • Disclosed herein is a hydrogen gas fueling system comprising at least two hydrogen gas storage zones disposed in fluid communication with the compressor, and a hydrogen gas dispensing section disposed in fluid communication with the cascade section. The method for storing and dispensing hydrogen comprises: compressing the hydrogen gas in a compressor, passing the compressed hydrogen gas to a cascade system comprising at least two zones in fluid communication with the compressor via an inlet valve, controlling the inlet valve based upon a first sensed system parameter, dispensing the hydrogen gas from the cascade section through an outlet valve, and controlling the outlet valve based upon a second sensed system parameter. When a zone pressure in a first zone from which the hydrogen gas is being dispensed decreases to below a desired dispensing pressure, dispensing can be ceased from the first zone and commenced from a second zone.
    • 本文公开了一种氢气燃料供给系统,包括至少两个设置成与压缩机流体连通的氢气储存区,以及设置成与级联段流体连通的氢气分配段。 用于存储和分配氢气的方法包括:压缩压缩机中的氢气,使压缩的氢气通过级联系统,该级联系统包括经由入口阀与压缩机流体连通的至少两个区域,其基于第一 感测系统参数,通过出口阀从级联部分分配氢气,并且基于第二感测系统参数控制出口阀。 当分配氢气的第一区域中的区域压力降低到低于期望的分配压力时,可以从第一区域停止分配并从第二区域开始分配。
    • 7. 发明授权
    • Lightweight bladder lined pressure vessels
    • 轻便的膀胱内衬压力容器
    • US5798156A
    • 1998-08-25
    • US657248
    • 1996-06-03
    • Fred MitlitskyBlake MyersFrank Magnotta
    • Fred MitlitskyBlake MyersFrank Magnotta
    • F17C1/16B29D22/00
    • F17C1/16B29L2031/7156F17C2203/0604F17C2205/0305F17C2209/2163F17C2221/012F17C2221/03F17C2221/032F17C2221/033F17C2223/0123F17C2270/0168F17C2270/0189Y02E60/321Y10T428/1334Y10T428/1338Y10T428/1355Y10T428/1359Y10T428/1366Y10T428/139Y10T428/1393
    • A lightweight, low permeability liner for graphite epoxy composite compressed gas storage vessels. The liner is composed of polymers that may or may not be coated with a thin layer of a low permeability material, such as silver, gold, or aluminum, deposited on a thin polymeric layer or substrate which is formed into a closed bladder using torispherical or near torispherical end caps, with or without bosses therein, about which a high strength to weight material, such as graphite epoxy composite shell, is formed to withstand the storage pressure forces. The polymeric substrate may be laminated on one or both sides with additional layers of polymeric film. The liner may be formed to a desired configuration using a dissolvable mandrel or by inflation techniques and the edges of the film seamed by heat sealing. The liner may be utilized in most any type of gas storage system, and is particularly applicable for hydrogen, gas mixtures, and oxygen used for vehicles, fuel cells or regenerative fuel cell applications, high altitude solar powered aircraft, hybrid energy storage/propulsion systems, and lunar/Mars space applications, and other applications requiring high cycle life.
    • 石墨环氧复合材料压缩气体储存容器的轻质低渗透性衬垫。 衬垫由聚合物组成,聚合物可以涂覆薄层的低渗透性材料,例如银,金或铝,沉积在薄的聚合物层或基底上,该薄层聚合物层或基底使用圆球形形成封闭的膀胱, 靠近圆球形端盖,其中具有或不具有凸起,围绕其形成高强度重量的材料,例如石墨环氧复合材料外壳,以承受存储压力。 聚合物基材可以在一侧或两侧层叠有另外的聚合物膜层。 可以使用可溶解心轴或通过充气技术将衬垫形成为期望的构造,并且通过热封缝合的膜的边缘。 衬套可用于大多数任何类型的气体存储系统,并且特别适用于用于车辆,燃料电池或再生燃料电池应用的氢气,气体混合物和氧气,高空太阳能飞机,混合能量存储/推进系统 ,以及月球/火星应用以及其他需要高循环寿命的应用。
    • 10. 发明申请
    • Methods for Dispensing Hydrogen Gas
    • 分配氢气的方法
    • US20060260949A1
    • 2006-11-23
    • US11461070
    • 2006-07-31
    • Fred MitlitskyJohn BoyleLuke DaltonBlake MyersHassan ObahiJason Shiepe
    • Fred MitlitskyJohn BoyleLuke DaltonBlake MyersHassan ObahiJason Shiepe
    • C25B1/02
    • C25B15/08H01M8/04201H01M8/0656
    • In one embodiment, the method of dispensing hydrogen gas comprises: selecting a hydrogen gas pressure using a pressure selector disposed in operable communication with a hydrogen gas output port, dispensing hydrogen gas at the selected hydrogen gas pressure, ceasing a flow of hydrogen gas to the vessel, and removing the nozzle from fluid communication with the vessel. The nozzle is in fluid communication with a hose and the hydrogen gas output port to form a first outlet disposed in mechanical connection with a mobile platform. In yet another embodiment, the method of dispensing hydrogen gas comprises: producing the hydrogen gas in an electrolysis cell system, activating a hydrogen dispenser, dispensing the hydrogen gas to a vessel, and ceasing a flow of the hydrogen gas to the vessel. The hydrogen dispenser and the electrolysis cell system are on a mobile platform.
    • 在一个实施例中,分配氢气的方法包括:使用设置为与氢气输出端口可操作地连通的压力选择器选择氢气压力,以选定的氢气压力分配氢气,停止氢气流向 容器,并且除去喷嘴与容器的流体连通。 喷嘴与软管和氢气输出端口流体连通,以形成与移动平台机械连接设置的第一出口。 在另一个实施例中,分配氢气的方法包括:在电解池系统中产生氢气,激活氢分配器,将氢气分配到容器中,并停止氢气流入容器。 氢分配器和电解池系统在移动平台上。