IP Library › Granted Patent US 12,728,699
Granted Patent B2
US 12,728,699 · App. 18/727,271 · Granted Sep 8, 2026

Bypass arrangement for a heat exchanger of a refrigerant circuit of a motor vehicle

Inventors: Saliou Deme (Bonn, DE); Marc Cierco Portillo (Lledia, ES)
Assignee: HANON SYSTEMS
B60H1/00885B60H1/00278B60H2001/00307
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Quick Facts
Patent No.
US 12,728,699
App. No.
18/727,271
Granted
Sep 8, 2026
Kind
B2
Abstract

A bypass arrangement having a first flow duct with a refrigerant flow path miming through the heat exchanger, a second flow duct, which leads as a bypass refrigerant flow path into the first flow duct downstream of the heat exchanger in the refrigerant flow direction, and one valve with an inlet for refrigerant, a first refrigerant outlet connected to the first flow duct, and a second refrigerant outlet connected to the second flow duct, wherein the valve has a valve element with a passage and an expansion recess, which valve element can be flow-connected to the first refrigerant outlet or to the second refrigerant outlet wherein refrigerant passes through the first flow duct and the heat exchanger or through the bypass refrigerant flow path of the second flow duct, circumventing the heat exchanger, and the refrigerant can be expanded into the first flow duct or the second flow duct.

Claims (19)

1 . A bypass arrangement for a heat exchanger of a refrigerant circuit in a motor vehicle, the bypass arrangement comprising:

a first flow duct with a refrigerant flow path running through the heat exchanger;

a second flow duct, which leads as a bypass refrigerant flow path into the first flow duct downstream of the heat exchanger in a direction of a refrigerant flow; and

a valve with an inlet for a refrigerant, a first refrigerant outlet connected to the first flow duct, and a second refrigerant outlet connected to the second flow duct, wherein the valve has a valve element with a passage and an expansion recess, wherein the valve element is flow-connected to the first refrigerant outlet or to the second refrigerant outlet such that the refrigerant passes through the first flow duct and the heat exchanger or that the refrigerant passes through the bypass refrigerant flow path of the second flow duct, circumventing the heat exchanger, and the refrigerant is expanded into the first flow duct or into the second flow duct, wherein the valve has a compact, two-part housing body with a valve body and a valve body element, in which the valve element is accommodated, and wherein the valve body element has a flow duct which forms a flow connection between the passage and the second refrigerant outlet.

2 . The bypass arrangement according to claim 1 , wherein the heat exchanger is arranged in a second half along a section of the refrigerant flow path of the first flow duct between the first refrigerant outlet and a mouth of the second flow duct.

3 . The bypass arrangement according to claim 1 , wherein the bypass refrigerant flow path is a same length or longer than the refrigerant flow path of the first flow duct running through the heat exchanger.

4 . The bypass arrangement according to claim 1 , wherein the valve element is a ball, wherein the passage has an L-shape, and wherein the expansion recess is a notch in a surface of the ball.

5 . The bypass arrangement according to claim 1 , wherein the passage is a circular arc.

6 . The bypass arrangement according to claim 1 , wherein the passage of the valve element, the first refrigerant outlet, the second refrigerant outlet, the first flow duct and the second flow duct have identical flow cross-sections.

7 . The bypass arrangement according to claim 1 , wherein the valve element is connected to a drive unit via a circular-cylindrical shaft.

8 . The bypass arrangement according to claim 1 , wherein the valve has a closure position which prevents a flow of the refrigerant into the first flow duct and into the second flow duct.

9 . A heat pump system comprising the bypass arrangement of claim 1 with the heat exchanger of the refrigerant circuit, the heat exchanger controlling a temperature of an interior of an electric vehicle.

10 . A heat pump system comprising the bypass arrangement of claim 1 with the heat exchanger of the refrigerant circuit, the heat exchanger controlling a temperature of a battery of an electric vehicle.

11 . A heat pump system comprising multiple ones of the bypass arrangement of claim 1 with the heat exchanger of the refrigerant circuit, the heat exchanger controlling a temperature of a battery of an electric vehicle or an interior of the electric vehicle, wherein the multiple ones of the bypass arrangement are arranged in series in the direction of the refrigerant flow of the refrigerant circuit.

12 . A heat pump system comprising multiple ones of the bypass arrangement of claim 1 with the heat exchanger of the refrigerant circuit, the heat exchanger controlling a temperature of a battery of an electric vehicle or an interior of the electric vehicle, wherein the multiple ones of the bypass arrangement are arranged in parallel in the direction of the refrigerant flow of the refrigerant circuit.

13 . A bypass arrangement for a heat exchanger of a refrigerant circuit in a motor vehicle, the bypass arrangement comprising:

a first flow duct with a refrigerant flow path running through the heat exchanger;

a second flow duct, which leads as a bypass refrigerant flow path into the first flow duct downstream of the heat exchanger in a direction of a refrigerant flow; and

a valve with an inlet for a refrigerant, a first refrigerant outlet connected to the first flow duct, and a second refrigerant outlet connected to the second flow duct, wherein the valve has a valve element with a passage and an expansion recess, wherein the valve element can be flow-connected to the first refrigerant outlet or to the second refrigerant outlet such that the refrigerant passes through the first flow duct and the heat exchanger or that the refrigerant passes through the bypass refrigerant flow path of the second flow duct, circumventing the heat exchanger, and the refrigerant can be expanded into the first flow duct or into the second flow duct, wherein the valve has a compact, two-part housing body with a valve body and a valve body element, in which the valve element is accommodated, wherein the valve element is connected to a drive unit via a circular-cylindrical shaft, and wherein the drive unit is connected detachably to the circular-cylindrical shaft.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2024
From: DEME, SALIOU; PORTILLO, MARC CIERCO
To: HANON SYSTEMS
Reel/Frame 069322/0413 →
Priority Claims (2)
DE 10 2022 100 244.6 · Jan 6, 2022 · national
DE 10 2022 119 092.7 · Jul 29, 2022 · national
Continuity (1)
Related Publication 20250083492A1 · Mar 13, 2025
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