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公开(公告)号:US20200006822A1
公开(公告)日:2020-01-02
申请号:US16074324
申请日:2017-02-03
Applicant: Modine Manufacturing Company
Inventor: Kyle Shisler , Christopher Michael Moore , Mitchell Crawford , Thomas Grotophorst , Jason Braun , Frank Lippke
IPC: H01M10/6554 , F28D9/00 , F28F3/02 , H01M10/6556 , F28F9/02
Abstract: A plate assembly for a heat exchanger includes a first plate, a second plate, and an intermediate plate arranged between the first and second plates. The intermediate plate is joined to the first and second plates at peripheral edges to create a sealed periphery of the plate assembly. Corrugations of the intermediate plate provide crests and troughs that are in contact with inwardly facing surfaces of the first and second plates. The plate assembly can be configured as a battery cooling plate heat exchanger to transfer heat from a battery to fluid flowing through the plate assembly.
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公开(公告)号:US20240291066A1
公开(公告)日:2024-08-29
申请号:US18656001
申请日:2024-05-06
Applicant: Modine Manufacturing Company
Inventor: Victor Aiello , Kyle Shisler , Frances Kis
IPC: H01M10/6554 , F28D1/03 , F28F3/02 , H01M10/613 , H01M10/625 , H01M10/6568
CPC classification number: H01M10/6554 , F28D1/0333 , F28F3/027 , H01M10/613 , H01M10/625 , H01M10/6568
Abstract: A battery cooling plate includes at least one planar heat transfer surface that is bounded by four edges. A coolant inlet port and a coolant outlet port are both arranged along a first one of the edges, and a coolant flow path extends through the battery cooling plate adjacent to the at least one planar heat transfer surface between the coolant inlet port and the coolant outlet port. The coolant flow path includes a first portion that extends along the entire length of a second, third, and fourth edge of the at least one planar heat transfer surface. The coolant flow path further includes a second portion that is arranged downstream of the first portion. The second portion of the coolant flow path is separated from the second, third, and fourth edges of the planar heat transfer surface by the first portion of the coolant flow path.
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公开(公告)号:US11984574B2
公开(公告)日:2024-05-14
申请号:US17859540
申请日:2022-07-07
Applicant: Modine Manufacturing Company
Inventor: Michael Bergnach , Kyle Shisler , Thomas Grotophorst , Christopher Moore
IPC: H01M10/6568 , H01M10/613 , H01M10/6554 , H01M10/6556
CPC classification number: H01M10/6568 , H01M10/613 , H01M10/6554 , H01M10/6556
Abstract: A battery cooling plate includes a first plate and a second plate that are joined together at their respective edges, and are spaced apart to define a coolant volume therebetween. Turbulating inserts can be arranged side-by-side within the coolant volume and multiple rods can extend through the turbulating inserts to at least partially define flow barriers between coolant flow channels. A fluid manifold for the battery cooling plate includes a non-planar wall that extends along a length-wise direction of the fluid manifold to separate a fluid volume into a first portion and a second portion. A series of apertures are arranged along the length-wise direction and successive ones of the apertures are fluidly connected to the first portion and to the second portion in alternating sequence.
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公开(公告)号:US11747063B2
公开(公告)日:2023-09-05
申请号:US17580600
申请日:2022-01-20
Applicant: Modine Manufacturing Company
Inventor: Kyle Shisler , Thomas Klaves
IPC: F25B41/345 , F25B39/02
CPC classification number: F25B41/345 , F25B39/028 , F25B2600/2513
Abstract: Systems and methods for disrupting a flow of refrigerant within a heat exchanger assembly. One embodiment provides a method that includes receiving, with a controller, a first signal from a first sensor, the first signal indicative of a pressure of the refrigerant flowing through the heat exchanger. The method includes setting, with the controller, an operating frequency of a valve based on the first signal. The operating frequency includes a rate at which the valve actuates between a first valve position that sets a first refrigerant flow rate through the heat exchanger and a second valve position that sets a second refrigerant flow rate through the heat exchanger. The method includes controlling, with the controller, operation of a solenoid to actuate the valve at the operating frequency.
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公开(公告)号:US20220336891A1
公开(公告)日:2022-10-20
申请号:US17859540
申请日:2022-07-07
Applicant: Modine Manufacturing Company
Inventor: Michael Bergnach , Kyle Shisler , Thomas Grotophorst , Christopher Moore
IPC: H01M10/6568 , H01M10/613 , H01M10/6554 , H01M10/6556
Abstract: A battery cooling plate includes a first plate and a second plate that are joined together at their respective edges, and are spaced apart to define a coolant volume therebetween. Turbulating inserts can be arranged side-by-side within the coolant volume and multiple rods can extend through the turbulating inserts to at least partially define flow barriers between coolant flow channels. A fluid manifold for the battery cooling plate includes a non-planar wall that extends along a length-wise direction of the fluid manifold to separate a fluid volume into a first portion and a second portion. A series of apertures are arranged along the length-wise direction and successive ones of the apertures are fluidly connected to the first portion and to the second portion in alternating sequence.
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公开(公告)号:US20210280930A1
公开(公告)日:2021-09-09
申请号:US17258146
申请日:2019-07-01
Applicant: Modine Manufacturing Company
Inventor: Michael Bergnach , Kyle Shisler , Thomas Grotophorst , Christopher Moore
IPC: H01M10/6568 , H01M10/6554 , H01M10/6556 , H01M10/613
Abstract: A battery cooling plate includes a first plate and a second plate that are joined together at their respective edges, and are spaced apart to define a coolant volume therebetween. Turbulating inserts can be arranged side-by-side within the coolant volume and multiple rods can extend through the turbulating inserts to at least partially define flow barriers between coolant flow channels. A fluid manifold for the battery cooling plate includes a non-planar wall that extends along a length-wise direction of the fluid manifold to separate a fluid volume into a first portion and a second portion. A series of apertures are arranged along the length-wise direction and successive ones of the apertures are fluidly connected to the first portion and to the second portion in alternating sequence.
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公开(公告)号:US20160356205A1
公开(公告)日:2016-12-08
申请号:US15173909
申请日:2016-06-06
Applicant: Modine Manufacturing Company
Inventor: Jason Braun , Frank Lippke , Steven Meshenky , Ashutosh Patil , Mitchell Crawford , Kyle Shisler
CPC classification number: F02B29/0443 , B60H1/00271 , B60H1/323 , B60H2001/00307 , F02B29/0412 , F02B29/0462 , F02M35/10268 , F28D9/005 , F28D9/0056 , F28D9/0093 , F28D2021/0082 , Y02T10/146
Abstract: A charge air cooler includes a first, second, and third heat exchange sections. In the first heat exchange section, heat is transferred from a first flow of liquid coolant to a refrigerant in order to cool the first flow of liquid coolant from a first temperature to a second temperature. In the second heat exchange section, heat is transferred from a flow of charge air to a second flow of liquid coolant in order to cool the flow of charge air from a third temperature to a fourth temperature. In the third heat exchange section, heat is transferred from the flow of charge air to the first flow of liquid coolant in order to cool the flow of charge air from the fourth temperature to a fifth temperature, the fifth temperature being less than the first temperature.
Abstract translation: 增压空气冷却器包括第一,第二和第三热交换部分。 在第一热交换部分中,热量从第一液体冷却剂流转移到制冷剂,以便将第一液体冷却剂流从第一温度冷却到第二温度。 在第二热交换部分中,热量从增压空气流传递到第二液体冷却剂流,以便将增压空气的流从第三温度冷却到第四温度。 在第三热交换部分中,加热从增压空气流传递到第一液体冷却剂流,以便将增压空气从第四温度冷却至第五温度,第五温度小于第一温度 。
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