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What is the working principle of the partitionless high-efficiency filter?

What is the working principle of the partitionless high-efficiency filter?

The partitionless high-efficiency filter can be used in electronic semiconductor manufacturing, atomic force research, medicine, precision machinery, cosmetics, and other occasions that require ultra-high cleanliness. Everyone knows more or less about the partitionless high-efficiency filter. As a high-efficiency filter manufacturer, Bailun Purification will introduce the working principle of the partitionless high-efficiency filter to everyone. I hope that by understanding its professional filtering knowledge, everyone can better choose the right filter.

1. Structure

The partitionless high-efficiency filter is a high-efficiency filter commonly used in air purification systems. It improves the filtration efficiency and airflow through a specially designed partitionless structure. Traditional filters generally adopt a partition structure, which consists of a series of parallel metal or plastic partitions. When air passes through the filter, it collides with the partition, resulting in a curved and rotating flow path, which causes the dispersion and turbulence of the streamline. This turbulent phenomenon will cause the suspension and sedimentation of particulate matter, affecting the filtration effect. The partitionless high-efficiency filter adopts a special structural design, cancels the partition in the traditional filter, makes the air flow smoother, and reduces the generation of turbulence. Its structure generally consists of two layers of wire mesh and filter material in the middle. The function of the wire mesh is to support the filter material to prevent the filter material from being adsorbed and blocked, and it also simplifies the flow path and reduces turbulence;

2. Filter material

The filter material is the key part of the non-partitioned high-efficiency filter, which is usually made of fine fiber materials such as glass fiber and synthetic fiber. These fine fibers can form a large number of fine pores, thereby increasing the filtration area and filtration efficiency. When the particles in the air pass through the filter material, they will be trapped on the surface or inside of the filter material, thereby achieving the filtering effect;

3. Static electricity

Some materials of the filter have static electricity, which can change the movement trajectory of dust particles so that they collide with obstacles and finally achieve the purification effect;

4. Gravity effect

Under the action of gravity, the dust loses weight, breaks away from the original movement displacement, and falls on the fiber surface. This is the gravity effect, which makes the filter filter and achieve the ideal purification effect.

The working principle of the non-partitioned high-efficiency filter is mainly based on that when the air passes through the filter, it first passes through the primary filter, where the larger particles are trapped, and then further passes through the non-partitioned high-efficiency filter for fine filtration. Due to the selection of non-partitioned high-efficiency filter materials, static electricity, gravity effects, and structural design, it can efficiently intercept fine particles in the air, such as bacteria, viruses, dust, etc.

As can be seen from the above, the non-partitioned high-efficiency filter improves the filtration efficiency and airflow by eliminating the partition structure in the traditional filter and adopting a specially designed non-partitioned structure, fine fiber filter materials, static electricity, and gravity effects becoming an indispensable and important part of the air purification system. In addition to producing non-partitioned high-efficiency filters, Bailun Purification also produces various high-efficiency filters with large air volume, liquid tank high-efficiency filters, partitioned high-efficiency filters, etc., which use advanced filter element materials. They are widely used in hospitals, laboratories, electronic factories, and other places that require high-quality air, effectively ensuring the health and safety of staff.