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    • 2. 发明授权
    • Processing of manganous sulphate/dithionate liquors derived from manganese resource material
    • 由锰资源材料加工的硫酸锰/二硫酸盐液
    • US08460631B2
    • 2013-06-11
    • US13210538
    • 2011-08-16
    • Norman ChowAnca-Mihaela NacuDouglas WarkentinJohn Wentworth Fisher
    • Norman ChowAnca-Mihaela NacuDouglas WarkentinJohn Wentworth Fisher
    • C01D5/00
    • C22B47/00C22B3/10C22B3/44Y02P10/234
    • The process concerns hydrometallurgical processing of manganese sulphate and manganese dithionate containing liquors and recovery of water therefrom. Sodium sulphate and/or sodium dithionate containing liquors are derived from manganese sulphate and manganese dithionate containing liquids, which are then cooled to produce crystals of sodium sulphate decahydrate and sodium dithionate dehydrate. The sodium sulphate decahydrate and sodium dithionate dehydrate crystals are then heated to a temperature sufficient to decompose the sodium sulphate decahydrate crystals to form anhydrous sodium sulphate crystals, sodium dithionate hydrate crystals and water, after which water is removed from the sodium sulphate and sodium dithionate hydrate crystal. The sodium sulphate and sodium dithionate dehydrate crystals are then heated to form anhydrous sodium sulphate, sulfur dioxide and water or steam. The anhydrous sodium sulphate is then separated from the sulfur dioxide and water.
    • 该方法涉及硫酸锰和含有连二硫酸锰的液体的湿法冶金加工,并从中回收水。 含硫酸钠和/或含硫酸锂的液体衍生自含硫酸锰和含有硫酸锰的液体,然后将其冷却,生成十水硫酸钠和脱硫酸钠晶体。 然后将十水硫酸钠和二硫酸钠脱水晶体加热到足以分解硫酸钠十水合物晶体以形成无水硫酸钠晶体,二硫酸氢钠水合物晶体和水的温度,之后从硫酸钠和二硫酸氢钠水合物中除去水 水晶。 然后将硫酸钠和二硫酸钠脱水晶体加热形成无水硫酸钠,二氧化硫和水或蒸汽。 然后将无水硫酸钠与二氧化硫和水分离。
    • 5. 发明申请
    • Liquid cooling loops for server applications
    • 用于服务器应用的液体冷却回路
    • US20070201210A1
    • 2007-08-30
    • US11707332
    • 2007-02-16
    • Norman ChowPaul TsaoDouglas WernerMark McMasterGirish UpadhyaFrederic LandryIan SpearingTim Schrader
    • Norman ChowPaul TsaoDouglas WernerMark McMasterGirish UpadhyaFrederic LandryIan SpearingTim Schrader
    • H05K7/20
    • H05K7/20781H01L2924/0002H05K7/20727H05K7/20772H01L2924/00
    • A mounting system provides mechanisms and form factors for bringing a heat exchanger from a server rack into thermal contact with a heat exchanger from a electronics server. To ensure good thermal contact, pressure is applied between the two heat exchangers, the rejector plate and the chassis cold plate. The mounting mechanism used to engage and disengage the heat exchangers is configured to isolate the force applied to the two heat exchangers. The mounting mechanism includes an interlocking mechanism that prevents transfer of the applied force to the rest of the electronics server. Without isolating this force, the force is applied to the electronics server and/or the rack chassis, possibly disconnecting the electrical connections between the electronics server and the rack, as well as providing mechanical stress to the electronics server and the rack chassis. The mounting mechanism is also coupled to the electronics server locking mechanism such that the action of locking the electronics server into the rack causes the heat exchangers to engage in thermal contact. This is a fail safe procedure since no separate process is required to engage the electronics server cooling loop.
    • 安装系统提供了将来自服务器机架的热交换器与来自电子服务器的热交换器热接触的机构和形式因素。 为了确保良好的热接触,在两个热交换器,排料盘和底盘冷板之间施加压力。 用于接合和分离热交换器的安装机构构造成隔离施加到两个热交换器的力。 安装机构包括互锁机构,其防止施加的力传递到电子服务器的其余部分。 在不隔离该力的情况下,该力被施加到电子服务器和/或机架机架,可能断开电子服务器和机架之间的电连接,以及向电子服务器和机架机架提供机械应力。 安装机构还耦合到电子服务器锁定机构,使得将电子服务器锁定到机架中的动作导致热交换器进行热接触。 这是一个故障安全程序,因为不需要单独的过程来接合电子服务器冷却回路。
    • 8. 发明申请
    • PROCESSING OF MANGANOUS SULPHATE/DITHIONATE LIQUORS DERIVED FROM MANGANESE RESOURCE MATERIAL
    • 从锰矿资源中获得的锰/硫酸盐液体的处理
    • US20120207666A1
    • 2012-08-16
    • US13210538
    • 2011-08-16
    • Norman ChowAnca-Mihaela NacuDouglas WarkentinJohn Wentworth Fisher
    • Norman ChowAnca-Mihaela NacuDouglas WarkentinJohn Wentworth Fisher
    • C01D5/18
    • C22B47/00C22B3/10C22B3/44Y02P10/234
    • The process concerns hydrometallurgical processing of manganese sulphate and manganese dithionate containing liquors and recovery of water therefrom. Sodium sulphate and/or sodium dithionate containing liquors are derived from manganese sulphate and manganese dithionate containing liquids, which are then cooled to produce crystals of sodium sulphate decahydrate and sodium dithionate dehydrate. The sodium sulphate decahydrate and sodium dithionate dehydrate crystals are then heated to a temperature sufficient to decompose the sodium sulphate decahydrate crystals to form anhydrous sodium sulphate crystals, sodium dithionate hydrate crystals and water, after which water is removed from the sodium sulphate and sodium dithionate hydrate crystal. The sodium sulphate and sodium dithionate dehydrate crystals are then heated to form anhydrous sodium sulphate, sulfur dioxide and water or steam. The anhydrous sodium sulphate is then separated from the sulfur dioxide and water.
    • 该方法涉及硫酸锰和含有连二硫酸锰的液体的湿法冶金加工,并从中回收水。 含硫酸钠和/或含硫酸锂的液体衍生自含硫酸锰和含有硫酸锰的液体,然后将其冷却,生成十水硫酸钠和脱硫酸钠晶体。 然后将十水硫酸钠和二硫酸钠脱水晶体加热到足以分解硫酸钠十水合物晶体以形成无水硫酸钠晶体,二硫酸氢钠水合物晶体和水的温度,之后从硫酸钠和二硫酸氢钠水合物中除去水 水晶。 然后将硫酸钠和二硫酸钠脱水晶体加热形成无水硫酸钠,二氧化硫和水或蒸汽。 然后将无水硫酸钠与二氧化硫和水分离。
    • 9. 发明授权
    • Liquid cooling loops for server applications
    • 用于服务器应用的液体冷却回路
    • US07599184B2
    • 2009-10-06
    • US11707350
    • 2007-02-16
    • Girish UpadhyaMark MunchNorman ChowPaul TsaoDouglas E. WernerMark McMasterFrederic LandryIan SpearingTim Schrader
    • Girish UpadhyaMark MunchNorman ChowPaul TsaoDouglas E. WernerMark McMasterFrederic LandryIan SpearingTim Schrader
    • H05K7/20
    • H05K7/20781H01L2924/0002H05K7/20727H05K7/20772H01L2924/00
    • Liquid-based cooling solutions used to transfer heat produced by one or more heat generating devices from one or more electronics servers to the ambient. Each electronics server includes one or more heat generating devices. Integrated onto each electronics server is a liquid based cooling system. Each liquid based cooling system includes a server pump and one or more microchannel cold plates (MCP) coupled together via fluid lines. The liquid based cooling system for each electronics server includes a rejector plate configured with micro-channels. The MCPs, the server pump and the rejector plate form a first closed loop. The rejector plate is coupled to a chassis cold plate via a thermal interface material. In a multiple electronics server configuration, the rejector plates for each of the electronics servers are coupled to the chassis cold plate configured with fluid channels which are coupled via fluid lines to a liquid-to-air heat exchanging system to form a second closed loop.
    • 液体冷却溶液,用于将一个或多个发热装置产生的热量从一个或多个电子服务器传递到环境。 每个电子服务器包括一个或多个发热装置。 集成到每个电子服务器上是一种基于液体的冷却系统。 每个基于液体的冷却系统包括服务器泵和通过流体管线连接在一起的一个或多个微通道冷板(MCP)。 用于每个电子服务器的基于液体的冷却系统包括配置有微通道的排出板。 MCP,服务器泵和排料板形成第一个闭环。 排料板通过热界面材料连接到底盘冷板。 在多电子服务器配置中,用于每个电子服务器的排放板联接到配置有流体通道的底盘冷板,流体通道经由流体管线耦合到液体 - 空气热交换系统以形成第二闭合回路。
    • 10. 发明授权
    • Liquid cooling loops for server applications
    • 用于服务器应用的液体冷却回路
    • US07539020B2
    • 2009-05-26
    • US11707332
    • 2007-02-16
    • Norman ChowPaul TsaoDouglas E. WernerMark McMasterGirish UpadhyaFrederic LandryIan SpearingTim Schrader
    • Norman ChowPaul TsaoDouglas E. WernerMark McMasterGirish UpadhyaFrederic LandryIan SpearingTim Schrader
    • H05K7/16
    • H05K7/20781H01L2924/0002H05K7/20727H05K7/20772H01L2924/00
    • A mounting system provides mechanisms and form factors for bringing a heat exchanger from a server rack into thermal contact with a heat exchanger from a electronics server. To ensure good thermal contact, pressure is applied between the two heat exchangers, the rejector plate and the chassis cold plate. The mounting mechanism used to engage and disengage the heat exchangers is configured to isolate the force applied to the two heat exchangers. The mounting mechanism includes an interlocking mechanism that prevents transfer of the applied force to the rest of the electronics server. Without isolating this force, the force is applied to the electronics server and/or the rack chassis, possibly disconnecting the electrical connections between the electronics server and the rack, as well as providing mechanical stress to the electronics server and the rack chassis. The mounting mechanism is also coupled to the electronics server locking mechanism such that the action of locking the electronics server into the rack causes the heat exchangers to engage in thermal contact. This is a fail safe procedure since no separate process is required to engage the electronics server cooling loop.
    • 安装系统提供了将来自服务器机架的热交换器与来自电子服务器的热交换器热接触的机构和形式因素。 为了确保良好的热接触,在两个热交换器,排料盘和底盘冷板之间施加压力。 用于接合和分离热交换器的安装机构构造成隔离施加到两个热交换器的力。 安装机构包括互锁机构,其防止施加的力传递到电子服务器的其余部分。 在不隔离该力的情况下,该力被施加到电子服务器和/或机架机架,可能断开电子服务器和机架之间的电连接,以及向电子服务器和机架机架提供机械应力。 安装机构还耦合到电子服务器锁定机构,使得将电子服务器锁定到机架中的动作导致热交换器进行热接触。 这是一个故障安全程序,因为不需要单独的过程来接合电子服务器冷却回路。