Ceramic tube - Type 360

The Type 360 ceramic tube, as a new type of ceramic cyclone, uses clay and latest technological strength with its unique design style. It is sintered at a high temperature of 1300 degrees. Not only does it have stable chemical properties, being resistant to acids, alkalis, high temperatures and wear, but it also has a relatively high flexural strength. The inner and outer surfaces of the ceramic pipe are smooth, preventing blockages and prolonging the service life of the product.

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Product Overview


Ceramic Cyclone Tube Model φ360 – High-Efficiency Dust Removal for Industrial Applications

The Type 360 ceramic tube, as a new type of ceramic cyclone, uses clay and latest technological strength with its unique design style. It is sintered at a high temperature of 1300 degrees. Not only does it have stable chemical properties, being resistant to acids, alkalis, high temperatures and wear, but it also has a relatively high flexural strength. The inner and outer surfaces of the ceramic pipe are smooth, preventing blockages and prolonging the service life of the product.

The characteristic of the φ360 ceramic tube is that its cyclone separation section has an integral air - tight structure, thus overcoming the defects of the multi - section structure, which is prone to air leakage and affects dust removal efficiency. At the bottom of the cyclone tube, a flared seat skirt and a conical insertion head structure are adopted, making it more convenient to connect with the bottom ash hopper. There are multiple ventilation holes on the peripheral surface of the flared skirt, which can prevent the ceramic cyclone dust - collection tube from cracking during firing and improve the production yield.


φ360 Ceramic Cyclone Tube    High Volume Industrial Dust Removal


The exhaust pipe, the inlet cyclone body and the cyclone separation cone of the cyclone separation section are made into one piece, and the exhaust pipe is made to go in and out of the wind plane. There is a flared interface for connection at its end. In this way, the φ360 ceramic tube has an integral and joint - less structure in the cyclone separation section, which can avoid possible air leakage at the joints and the uneven inner wall caused by butt - jointing, ensuring the cyclone separation effect.

 

The φ360 ceramic cyclone is a high-performance dust removal component.The smooth inner and outer surfaces can minimize blockages and pressure losses, ensuring long - term reliability and reducing maintenance costs.


The unique flared skirt base of this model is equipped with vent holes, which can enhance the structural integrity and improve the yield during the firing process. The conical insert head ensures a firm and seamless connection with the ash hopper, while the extended flange interface simplifies the installation process. The φ360 model has a processing air volume of 1500 cubic meters per hour and a dust removal rate of up to 96%, making it very suitable for industries such as metallurgy, cement, chemical engineering, and power generation.


Our ceramic cyclones are designed to be sturdy, durable, and highly precise. They meet international environmental protection standards and are a reliable choice for global customers seeking reliable and low - maintenance emission control solutions.


Why Choose Us


Basic InformationEstablished1995
Registered CapitalRMB 68 million
Annual Output ValueOver RMB 200 million
ScaleTotal Employees150
Manufacturing Area35,000 ㎡
Project ExperienceTotal Engineering ProjectsNearly 500
Denitrification Systems Delivered~3,000 units
Dust Removal Systems Delivered~10,000 units
Desulfurization Systems Delivered~5,000 units
Wet Electrostatic Systems Delivered~250 units
TechnologyPatents50+
Market CoverageExport RegionsAfrica, South America, Southeast Asia


Manufacturing & Production Capacity

High Dust Collection Efficiency


After-Sales Service

Haina provides on-site installation, commissioning and technical training.Regular follow-up inspections are arranged after project delivery to support long-term operation stability.


φ360 Ceramic Cyclone Tube

Quality Management SystemCertification Certificate

High Volume Industrial Dust Removal

Occupational Health and Safety Management System Certification Certificate

High Dust Collection Efficiency

Certificate of After-Sales Service Certification for Products

φ360 Ceramic Cyclone Tube

Environmental Management System Certification Certificate


FAQ

1、What advantages does your ceramic cyclone tube have compared with other ordinary metal or plastic dust collectors?

Our ceramic cyclone tubes are made from high-purity clay raw materials and sintered at a high temperature of 1300°C. They have excellent acid and alkali resistance, high-temperature resistance (up to over 800°C), and wear resistance. Their service life far exceeds that of traditional metal or plastic equipment. The inner wall is smooth and not prone to dust accumulation, and it will not be blocked during long-term operation, greatly reducing maintenance costs and truly enabling long-term use.

2、Why do you claim that your products have better sealing performance and higher dust removal efficiency?
The main reason lies in the integrated airtight structure design.
All our models (φ220 / φ290 / φ360) adopt the integral molding process. The exhaust pipe, intake volute, and separation cone are fired as a single piece, eliminating the risk of air leakage caused by splicing seams. At the same time, it avoids the eddy - current loss caused by the uneven inner wall at the interface, ensuring stable and efficient separation of dust from the airflow and guaranteeing a dust removal efficiency of over 90%.

3、Is the pressure loss large? Will it affect the system's energy consumption?
No. Taking φ360 as an example, its pressure loss is only 900 Pa, which is at the leading level in the industry. Combined with the smooth inner wall design, it minimizes the airflow resistance, helps reduce the load on the fan, saves power consumption, and assists enterprises in building a green and energy - efficient environmental protection system.




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