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    • 71. 发明授权
    • Flexible leak test apparatus and method
    • 灵活的泄漏试验装置及方法
    • US09151689B2
    • 2015-10-06
    • US13428451
    • 2012-03-23
    • John Graham
    • John Graham
    • G01M3/02G01M3/32
    • G01M3/02G01M3/025G01M3/3236G01M3/3281
    • A flexible leak test apparatus and method for leak testing a variety of workpieces having various multiple configurations with at least one internal cavity and at least one aperture leading therefrom. The flexible leak test apparatus and method provide a plurality of leak test fixtures adaptable to receive the workpieces. Each leak test fixture has a bottom portion and a top portion that engage one another when the workpieces are loaded in the bottom portion of the leak test fixture. The leak test fixtures are shuttled in and out of the workstation, and a manipulator loads and unloads the workpieces into and out of the bottom portion of the leak test fixtures. The leak test fixtures seal the apertures in the workpieces so that the workpieces can be leak tested by pressurizing the internal cavity of the workpiece.
    • 一种用于对具有各种多种构造的各种工件进行泄漏测试的柔性泄漏测试装置和方法,该工具具有至少一个内部空腔和至少一个从其导出的孔。 柔性泄漏测试装置和方法提供了多个可适应于接收工件的泄漏测试夹具。 每个泄漏测试夹具具有底部和顶部,当工件装载在泄漏测试夹具的底部时彼此接合。 泄漏测试夹具进出工作站,机械手将工件装入和卸载泄漏测试夹具的底部。 泄漏测试夹具密封工件中的孔,使得可以通过对工件的内部空腔加压来泄漏测试工件。
    • 72. 发明申请
    • FLEXIBLE LEAK TEST APPARATUS AND METHOD
    • 灵活的泄漏测试装置和方法
    • US20130074584A1
    • 2013-03-28
    • US13428451
    • 2012-03-23
    • John Graham
    • John Graham
    • G01M3/02
    • G01M3/02G01M3/025G01M3/3236G01M3/3281
    • A flexible leak test apparatus and method for leak testing a variety of workpieces having various multiple configurations with at least one internal cavity and at least one aperture leading therefrom. The flexible leak test apparatus and method provide a plurality of leak test fixtures adaptable to receive the workpieces. Each leak test fixture has a bottom portion and a top portion that engage one another when the workpieces are loaded in the bottom portion of the leak test fixture. The leak test fixtures are shuttled in and out of the workstation, and a manipulator loads and unloads the workpieces into and out of the bottom portion of the leak test fixtures. The leak test fixtures seal the apertures in the workpieces so that the workpieces can be leak tested by pressurizing the internal cavity of the workpiece.
    • 一种用于对具有各种多种构造的各种工件进行泄漏测试的柔性泄漏测试装置和方法,该工具具有至少一个内部空腔和至少一个从其导出的孔。 柔性泄漏测试装置和方法提供了多个可适应于接收工件的泄漏测试夹具。 每个泄漏测试夹具具有底部和顶部,当工件装载在泄漏测试夹具的底部时彼此接合。 泄漏测试夹具进出工作站,机械手将工件装入和卸载泄漏测试夹具的底部。 泄漏测试夹具密封工件中的孔,使得可以通过对工件的内部空腔加压来泄漏测试工件。
    • 76. 发明授权
    • Geothermal exchange system incorporating a thermally superconducting medium
    • 包含热超导介质的地热交换系统
    • US07451612B2
    • 2008-11-18
    • US11532023
    • 2006-09-14
    • Lynn MuellerMark McCooeyJohn GrahamDavid Todd
    • Lynn MuellerMark McCooeyJohn GrahamDavid Todd
    • F25D23/12
    • F24D15/04F24T10/10F25B13/00F25B30/06F25B2313/002Y02B30/12Y02E10/12
    • A geothermal heating and cooling system is thermally coupleable to a ground coil formed from a thermal superconductor material. The system includes a heat intensification circuit, a thermal superconductor heat exchange coil and a thermal switch coupling the intensifying heat exchanger to the superconductor heat exchanger, and a thermostat controller connected to the thermal switch and intensifying heat exchanger. The system employs a high thermal transfer superconductor to efficiently move heat to and from the earth source for the purpose of heating and cooling. The system operates in cooling and heating modes by controlling the thermal switches and activating the heat intensification circuit in response to the difference between a set point and a measured temperature. Heat can be transferred to and from the superconductor heat exchange coil through various air and liquid exchange subsystems including fans, direct and indirect liquid heat exchange.
    • 地热加热和冷却系统可热耦合到由热超导体材料形成的接地线圈。 该系统包括热集中电路,热超导体热交换线圈和将增压热交换器耦合到超导体热交换器的热开关,以及连接到热开关和增压热交换器的恒温器控制器。 该系统采用高热传递超导体,以有效地将热量从地源移动到加热和冷却的目的。 该系统通过控制热开关并响应于设定点和测量温度之间的差异来激活热集中电路,以冷却和加热模式运行。 热量可以通过各种空气和液体交换子系统传递到超导体热交换线圈,包括风扇,直接和间接液体热交换。
    • 78. 发明授权
    • Obtaining translation of generic code representation
    • 获取通用代码表示的翻译
    • US07409681B2
    • 2008-08-05
    • US10232780
    • 2002-08-28
    • John GrahamAlasdair RawsthorneJason Souloglou
    • John GrahamAlasdair RawsthorneJason Souloglou
    • G06F9/45
    • G06F8/41G06F8/52
    • An execution apparatus (10) such as a user PC identifies that translation of generic code representation is required (e.g. Java bytecode included or referenced as part of a web page downloaded from a content provider (20)), and requests a translation of the generic code representation from a remote translation apparatus (30), i.e. a translation server. A translated native code version of the generic code representation specific to a particular execution environment (10) is identified and sent from the translation apparatus (30) immediately ready for native execution on the execution apparatus (10) at full native speed. This avoids perceived slow start-up and unresponsiveness associated with interpretation or compilation of generic code representation at the execution apparatus (10).
    • 诸如用户PC的执行装置(10)识别需要通用代码表示的转换(例如,作为从内容提供商(20)下载的网页的一部分包括或引用的Java字节码),并请求通用代码的翻译 来自远程翻译设备(30)的代码表示,即翻译服务器。 特定于特定执行环境(10)的通用代码表示的经翻译的本地代码版本被识别并从翻译装置(30)发送并立即准备好以完全原始速度在执行装置(10)上进行本地执行。 这避免了与在执行装置(10)处的通用代码表示的解释或编译相关联的感觉到的缓慢的启动和无响应。