Linde Polymer Tec Co.,Ltd

Condenser Air Conditioning System Rubber Ring

Condenser Air Conditioning System Rubber Ring

Product material: Rubber/Silicone /Custom
Hardness (Shore A): 20 to 90
Applicable temperature °C: -50 to 140
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Description
Technical Parameters

In the condenser of the air conditioning system, rubber seals are usually used in the following locations:

 

Pipe connections

There are multiple pipe connections inside the condenser, such as refrigerant inlet and outlet pipes, cooling water inlet and outlet pipes, etc. Rubber seals are required at these connections to ensure the tightness of the connection and prevent leakage of refrigerant or cooling water. Commonly used seals include O-rings, flat sealing gaskets, etc., which are usually made of rubber materials, such as nitrile rubber (NBR), fluorine rubber (FKM), etc.

 

Product name Condenser Air Conditioning System Rubber Ring
Product material Rubber/Silicone /Custom
Hardness (Shore A) 20 to 90
Applicable temperature °C -50 to 140
Color Black, orange, blue, yellow, green, custom
Size Standard/ Custom

 

The connection between the pipe and the condenser body: The connection between the condenser and the pipe also needs to use rubber seals to ensure tightness. Common seals include rubber O-rings or flat gaskets, which are located at the connection between the pipe and the condenser body to prevent refrigerant or cooling water from leaking.

 

Bellows Gasket

Bellows are used in some condenser designs and they are used to increase the cooling area of the condenser. The gap between the bellows and other connecting parts needs to be sealed with a bellows sealing gasket to ensure sealing performance. These gaskets are usually made of rubber or silicone material.

These rubber seals play a key sealing role in the condenser, ensuring that the condenser maintains good sealing performance during operation and prevents refrigerant or cooling water leakage.

 

 

What is the size range of rubber seals?

Rubber seals are a common sealing material widely used in various industrial fields and mechanical equipment. They are mainly used to fill, seal or isolate the gaps between objects to prevent the leakage of liquid, gas or dust.

The size range of rubber seals is mainly determined by the following aspects:

 

Inner diameter (ID) and outer diameter (OD): The inner diameter and outer diameter of rubber seals are the most basic dimensional parameters. The inner diameter refers to the diameter of the inner hole of the seal, and the outer diameter refers to the diameter of the outer ring of the seal. These two dimensions are usually measured in millimeters (mm). The inner and outer diameters of rubber seals can vary depending on the specific application needs, ranging from a few millimeters to several meters.

 

condenser-of-the-air-conditioning-system-rubber-

 

Thickness (T): The thickness of a rubber seal refers to the thickness of the seal in the radial direction. It is usually measured in millimeters. The thickness of the seal can vary according to different application requirements, ranging from a few millimeters to tens of millimeters.

 

Cross-sectional shape: The cross-sectional shape of rubber seals can be round, square, rectangular, oval, etc. These shapes can be selected based on specific application needs to best suit the sealing requirements.

 

Other dimensional parameters: In addition to the above basic dimensional parameters, rubber seals may also have other specific dimensional parameters, such as edge radius, angle, groove depth, etc. The selection and design of these parameters depends on the specific application requirements and engineering design.Generally speaking, the size of rubber seals can range from a few millimeters to several meters or even larger. Depending on the specific application requirements, rubber seals can have different shapes, sizes and material properties to achieve the best sealing effect.

 

It should be noted that when selecting and designing rubber seals, in addition to size range, other factors should also be considered, such as material selection, wear resistance, temperature resistance, chemical resistance, etc.

 

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