Heat exchanger or chiller

US10935289B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10935289-B2
Application numberUS-201615563556-A
CountryUS
Kind codeB2
Filing dateMar 31, 2016
Priority dateApr 1, 2015
Publication dateMar 2, 2021
Grant dateMar 2, 2021

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A heat exchanger or chiller may include a heat exchanger block having a first fluid channel for a coolant and a second fluid channel for a refrigerant, an expansion valve for controlling a mass flow rate of the refrigerant, and a connection flange having an inlet channel and an outlet channel for the refrigerant. The expansion valve may be designed as an electronic expansion valve. The inlet channel may be connected to the second fluid channel in a transition region of the inlet channel. The connection flange may have an insertion opening, which may communicate with the transition region of the inlet channel, and into which the expansion valve may be inserted such that the expansion valve may control the mass flow rate of the refrigerant in the transition region and evaporation of the refrigerant may first occur in the second fluid channel.

First claim

Opening claim text (preview).

The invention claimed is: 1. A heat exchanger or chiller, comprising a heat exchanger block having a first fluid channel for a coolant and a second fluid channel for a refrigerant; an expansion valve for controlling a mass flow rate of the refrigerant, the expansion valve being designed as an electronic expansion valve; a connection flange having an inlet channel and an outlet channel for the refrigerant, wherein the inlet channel is connected to the second fluid channel in a transition region of the inlet channel; and a filter device upstream of the expansion valve; wherein the connection flange has an insertion opening, which communicates with the transition region of the inlet channel, and into which the expansion valve is inserted such that the expansion valve controls the mass flow rate of the refrigerant in the transition region and evaporation of the refrigerant first occurs in the second fluid channel; and wherein the expansion valve is fastened detachably in the insertion opening and protrudes over the connection flange. 2. The heat exchanger or chiller according to claim 1 , wherein the filter device is arranged in the connection flange. 3. The heat exchanger or chiller according to claim 1 , wherein the expansion valve has a stator, a rotor housing arranged securely within the stator, and a rotor arranged in the rotor housing, wherein the stator, the rotor housing and the rotor form a structural unit. 4. The heat exchanger or chiller according to claim 1 , wherein the expansion valve is connected to the connection flange in a torque-proof manner. 5. The heat exchanger or chiller according to claim 1 , wherein one of: the heat exchanger block is constructed as a flat tube heat exchanger and has a plurality of flat tubes, in which the second fluid channel for the refrigerant is formed, the first fluid channel for the coolant is formed around the flat tubes, and the flat tubes are collected at a longitudinal end side in a collector; or the heat exchanger block is constructed as a stacked plate heat exchanger with stack plates stacked over one another, between which the first fluid channel for the coolant and the second fluid channel for the refrigerant run. 6. The heat exchanger or chiller according to claim 1 , wherein the expansion valve is fastened detachably in the insertion opening via a bayonet closure. 7. The heat exchanger or chiller according to claim 1 , wherein the expansion valve is fastened detachably in the insertion opening via a screwed connection. 8. The heat exchanger or chiller according to claim 1 , wherein the expansion valve is arranged over approximately two thirds of its height in the connection flange. 9. A motor vehicle comprising a heat exchanger or chiller including: a heat exchanger block having a first fluid channel for a coolant and a second fluid channel for a refrigerant; an expansion valve for controlling a mass flow rate of the refrigerant, the expansion valve being designed as an electronic expansion valve; a connection flange having an inlet channel and an outlet channel for the refrigerant, wherein the inlet channel is connected to the second fluid channel in a transition region of the inlet channel; and a filter device upstream of the expansion valve; wherein the connection flange has an insertion opening, which communicates with the transition region of the inlet channel, and into which the expansion valve is inserted such that the expansion valve controls the mass flow rate of the refrigerant in the transition region and evaporation of the refrigerant first occurs in the second fluid channel; and wherein the expansion valve is fastened detachably in the insertion opening and protrudes over the connection flange. 10. The motor vehicle according to claim 9 , wherein the filter device is arranged in the connection flange. 11. The motor vehicle according to claim 9 , wherein the expansion valve has a stator, a rotor housing arranged securely within the stator, and a rotor arranged in the rotor housing, wherein the stator, the rotor housing and the rotor form a structural unit. 12. The motor vehicle according to claim 9 , wherein the expansion valve is connected to the connection flange in a torque-proof manner. 13. The motor vehicle according to claim 9 , wherein one of: the heat exchanger block is constructed as a flat tube heat exchanger and has a plurality of flat tubes, in which the second fluid channel for the refrigerant is formed, the first fluid channel for the coolant is formed around the flat tubes, and the flat tubes are collected at a longitudinal end side in a collector; or the heat exchanger block is constructed as a stacked plate heat exchanger with stack plates stacked over one another, between which the first fluid channel for the coolant and the second fluid channel for the refrigerant run. 14. A heat exchanger or chiller, comprising: a heat exchanger block having a first fluid channel for a coolant and a second fluid channel for a refrigerant; an expansion valve for controlling a mass flow rate of the refrigerant, the expansion valve being designed as an electronic expansion valve; a connection flange having an inlet channel and an outlet channel for the refrigerant, wherein the inlet channel is connected to the second fluid channel in a transition region of the inlet channel; wherein the connection flange has an insertion opening, which communicates with the transition region of the inlet channel, and into which the expansion valve is inserted such that the expansion valve controls the mass flow rate of the refrigerant in the transition region and evaporation of the refrigerant first occurs in the second fluid channel; wherein the expansion valve has a stator, a rotor housing arranged securely within the stator, and a rotor arranged in the rotor housing, wherein the stator, the rotor housing and the rotor form a structural unit; and wherein the expansion valve is fastened detachably in the insertion opening. 15. The heat exchanger or chiller according to claim 14 , wherein one of: the heat exchanger block is constructed as a flat tube heat exchanger and has a plurality of flat tubes, in which the second fluid channel for the refrigerant is formed, the first fluid channel for the coolant is formed around the flat tubes, and the flat tubes are collected at a longitudinal end side in a collector; or the heat exchanger block is constructed as a stacked plate heat exchanger with stack plates stacked over one another, between which the first fluid channel for the coolant and the second fluid channel for the refrigerant run.

Assignees

Inventors

Classifications

  • with the valve member being actuated by electric means, e.g. by piezoelectric actuators · CPC title

  • by rotary motors, e.g. by stepping motors · CPC title

  • F25B39/02Primary

    Evaporators · CPC title

  • by using means for separating solid materials from heat-exchange fluids, e.g. filters · CPC title

  • Efficient control or regulation technologies, e.g. for control of refrigerant flow, motor or heating · CPC title

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What does patent US10935289B2 cover?
A heat exchanger or chiller may include a heat exchanger block having a first fluid channel for a coolant and a second fluid channel for a refrigerant, an expansion valve for controlling a mass flow rate of the refrigerant, and a connection flange having an inlet channel and an outlet channel for the refrigerant. The expansion valve may be designed as an electronic expansion valve. The inlet ch…
Who is the assignee on this patent?
Mahle Int Gmbh
What technology area does this patent fall under?
Primary CPC classification F25B39/02. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Mar 02 2021 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 3 related publications on this page (citations in our corpus or others sharing the same primary CPC).