摘要:
The present invention relates to a device for restraining an energy store (100) comprising one or more cells disposed between a first side of the energy store and a second side of the energy store vertically opposite to the first side. The device comprises at least one first mounting device (202) designed for transferring a first clamping force acting in the direction of the second side to the first side of the energy store, and at least one second mounting device designed for transferring a second clamping force acting in the direction of the first side to the second side of the energy store, and at least one elastic clamping device (206) designed for providing the first and second clamping forces and further designed for adapting a distance between the at least one first mounting device and the at least one second mounting device to a permissible distance between the first and the second side.
摘要:
The invention relates in particular to a device for thermal connection of an energy store (102) to a cooling plate (108) and/or a contact element (104a, 104b; 504a), and a cooling plate (106) on a contact element (104a, 104b; 504a) and/or a fluid. The device for thermal connection has a first region having a first heat transfer property and at least one other region having another heat transfer property, wherein the first region and the at least one other region are arranged next to one another in relation to the heat transfer surface.
摘要:
The present invention relates to a thermal transfer device (105) for generating a thermal transfer between an energy store (101)and a temperature-control panel (103) for the temperature-control of the energy store. The thermal transfer device (105) comprises a thermal insulation layer (423) made of an unevenly distributed insulation material and a tolerance compensating layer (424) made of a compressible material for compensating different material strengths of the thermal insulation layer.
摘要:
The invention relates to a vaporizer for a cooling circuit, particularly for a motor vehicle, comprising a vaporization region (1), wherein a coolant flowing through the vaporization region (1) takes up heat from an outside region, wherein the vaporization region (1) is downstream of a first expansion element (3) on the inlet side in the direction of flow of the coolant, wherein an exchanger member (2) is provided between the vaporization region (1) and the first expansion element (3), wherein heat can be transferred from the coolant upstream of the vaporization region (1) to the coolant downstream of the vaporization region (1).
摘要:
The present invention relates to a holding and cooling device (100) for at least one heat source, particularly an energy storage element (110) comprising a holding plate (150) having a plurality of slit-shaped openings. Furthermore, the holding and cooling device (100) comprises at least two cooling plates (140) having a folded edge (170) on at least one side, wherein the cooling plates (140) can each be inserted into one of the slit-shaped openings (160a-e) of the holding plate (150) and wherein when inserted the cooling plates (140) form a receiving pocket together with the holding plate (150), said pocket having lateral thermal contacting possibilities for the heat source, particularly the energy storage element (110).
摘要:
The invention relates to an expansion valve for an air conditioning system, in particular for a refrigeration system that is operated with CO2 as the coolant. Said valve comprises a valve housing (22), which has a feed opening (23) and a drain opening (26), an expansion organ (24), which connects the feed opening (23) or a fluidic connection (17) that is linked to said opening to the drain opening (26) or a fluidic connection (18) that is linked to the latter. A bypass valve (27) lies parallel to the expansion organ (24). One end (41) of the valve housing (22) is equipped with a fixing section (42), which fixes the feed opening (23) and the drain opening (26) in a connection block (21) of the refrigeration system (11), said block containing the fluidic connections (17, 18).