
Within the construction of a refrigerator, the flow valve stands as a crucial component ensuring stable operation and energy efficiency. So, what exactly is the refrigerator flow valve? How does its construction and functionality work? Let's delve deeper into this article by Mytour:
1. Understanding the Refrigerator Flow Valve
The refrigerator flow valve, also known as the A flow control valve, is one of the pivotal components of a refrigerator. Essentially, it is a hydraulic valve that regulates the flow of liquid into the evaporator coil to match the cooling load. Consequently, it aids in maintaining stable refrigerator operation with low compression while ensuring maximum energy efficiency.

2. Anatomy of the Refrigerator Flow Valve
In terms of structure, the refrigerator flow valve comprises several key components:
- Flexible tube

Operating principle of flow control valve
Regarding operational principle, the flow control valve of a refrigerator also operates similarly to flow control valves in many other devices. When frictional force and eddy currents occur between the fluid and pass through the flow control valve, it reduces the pressure of the flowing stream. Subsequently, factors such as flow velocity, fluid state, or duct elasticity will adjust the pressure accordingly to deliver to the cold storage. This ensures the refrigerator operates most efficiently and reliably.
Function of flow control valve in refrigerator operation
The flow control valve has the following main functions:
- Ensure the refrigerator operates and maintains a certain level of coldness by adjusting the refrigerant through the ducts. Regulate and ensure stable operating power of the refrigerator. Contribute to saving electricity consumption while the refrigerator operates, still ensuring high productivity and low compression power.

Thus, this article has introduced you to the refrigeration flow control valve. Just like its structure, operational principles, and functions, so you can better understand the makeup of a refrigerator. Thank you for reading!