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    • 2. 发明申请
    • DEVICE FOR COOLING OR HEATING A BATTERY MODULE
    • 用于冷却或加热电池模块的装置
    • WO2010016771A1
    • 2010-02-11
    • PCT/NO2009/000279
    • 2009-08-07
    • MILJØ INNOVASJON ASCLARK, William, GeorgeVALØEN, Lars, OleVANGEN, Jørgen
    • CLARK, William, GeorgeVANGEN, Jørgen
    • H01M10/50H01M2/10H01M10/42
    • H01M2/1072H01M10/425H01M10/613H01M10/615H01M10/617H01M10/625H01M10/653H01M10/6554H01M10/6556H01M10/6568H01M10/6571H01M10/6572
    • The present invention relates to a system for cooling or heating a battery module, in order to uniformly lower the temperature of the battery module, reduce the overall weight and manufacturing costs and time. The system comprises a battery case having at least one cooling liquid inlet and outlet, at least one battery module arranged within the battery case, the battery module comprising a plurality of battery strings, the battery module (1) being fully immersed in the cooling fluid, a tension device (13) being connected to each battery string, the battery strings being arranged in such a way that cooling fluid flow spaces (5) are formed between two adjacent battery strings, a cooling liquid pipe connected to the inlet and outlet of the battery case, thereby forming a closed cooling fluid circuit. A circulating device and a reservoir are connected to the closed cooling fluid circuit, thereby circulating the cooling fluid continuously through the battery module, the closed cooling fluid circuit further being run through a heat exchanger.
    • 本发明涉及一种用于冷却或加热电池模块的系统,以便均匀地降低电池模块的温度,降低整体重量和制造成本和时间。 该系统包括具有至少一个冷却液入口和出口的电池壳体,布置在电池壳体内的至少一个电池模块,电池模块包括多个电池组,电池模块(1)完全浸入冷却流体 ,连接到每个电池组的张紧装置(13),电池串以这样的方式布置,使得冷却流体流动空间(5)形成在两个相邻的电池组之间,冷却液管连接到入口和出口 电池壳体,从而形成封闭的冷却流体回路。 循环装置和储存器连接到封闭的冷却流体回路,从而使冷却流体连续地循环通过电池模块,封闭的冷却流体回路进一步穿过热交换器。
    • 5. 发明申请
    • A METHOD FOR PERFORMING THERMAL REACTIONS BETWEEN REACTANTS AND A FURNACE FOR SAME
    • 一种反应物与一种反应物之间的热反应的方法
    • WO2002066374A1
    • 2002-08-29
    • PCT/NO2002/000052
    • 2002-02-06
    • NORSK HYDRO ASAØVREBØ, DagCLARK, William, George
    • ØVREBØ, DagCLARK, William, George
    • C01B21/06
    • F27B7/06C01B21/06C01B21/0765C01B32/914C01B32/921C01B35/04C01P2004/61C01P2004/62C01P2006/80F27B7/26F27B7/34F27D5/0068F27D2019/0012F27D2099/0008
    • The present invention relates to thermal reactions performed at rapid transient temperatures, and a furnace (1) able to perform such reactions. The method and the furnace may suitably be applied to perform reactions between reactants where significant losses normally occur at certain transient temperatures or temperature ranges. One practical application of the present invention relates to a carbothermic method for producing Refractory Hard Metal powders, such as borides, nitrides and carbides, and a furnace designed for the performance of the method. In accordance with this method Refractory Hard Metal powders, such as boride powders can be produced with reduced loss of reactants such as C and B 2 O 3 . This can be achieved by rapid heating of the mixture containing the reactants in a critical temperature range. For the performance of this particular embodiment a two-step furnace has been applied, where the temperature in each individual temperature zone (37, 38) is respectively below and above critical temperatures of the reaction. In accordance with one embodiment of the present invention high purified boride, carbide and nitride powders with a fine grain size can be produced in a simple and cost effective manner.
    • 本发明涉及在快速瞬态温度下进行的热反应,以及能够进行这种反应的炉(1)。 该方法和炉可以适当地用于在某些瞬时温度或温度范围内通常发生显着损失的反应物之间进行反应。 本发明的一个实际应用涉及用于制备耐火硬金属粉末的碳热还原法,例如硼化物,氮化物和碳化物,以及为实现该方法而设计的炉。 根据该方法,可以减少诸如C和B 2 O 3的反应物的损失来制备诸如硼化物粉末的耐火硬金属粉末。 这可以通过在临界温度范围内快速加热含有反应物的混合物来实现。 对于该特定实施例的性能,已经应用了两步骤炉,其中每个单个温度区(37,38)中的温度分别低于和高于反应的临界温度。 根据本发明的一个实施方案,可以以简单且成本有效的方式制备具有细晶粒度的高纯度硼化物,碳化物和氮化物粉末。