Views: 236 Author: Site Editor Publish Time: 2024-11-11 Origin: Site
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Advantages of Glass Fiber Filter Cartridges
Disadvantages of Glass Fiber Filter Cartridges
High Temperature Resistance: Glass fiber filter cartridges exhibit excellent heat resistance. The glass fiber filter media, after undergoing surface chemical treatment, can withstand temperatures up to 280°C, making them suitable for high-temperature filtration applications. This characteristic ensures that the filter cartridges can maintain their performance in harsh environments where high temperatures are prevalent.
High Strength and Dimensional Stability: Glass fiber filter cartridges boast higher tensile strength than other natural and synthetic fibers. With an elongation rate of only 2%-3%, they guarantee dimensional stability and tensile strength under high-pressure conditions. This stability ensures that the filter cartridges can maintain their shape and performance, even when subjected to significant pressure.
Corrosion Resistance: Glass fiber filter media are highly stable to water, humid air, and weak alkaline solutions. They also exhibit good water resistance and acid resistance, making them suitable for filtering a variety of corrosive solutions. This versatility allows glass fiber filter cartridges to be used in a wide range of applications where corrosion is a concern.
Excellent Filtration Performance: Glass fiber filter cartridges offer high-precision and stable filtration performance. They can effectively remove suspended solids, particles, and other impurities from liquids, with low pressure drop and high dirt holding capacity. This ensures that the filtered liquid meets the required quality standards.
Versatile Applications: Glass fiber filter cartridges are widely used in applications such as hydraulic oil filtration, high-temperature gas filtration, and corrosive solvent solution filtration. They have achieved good filtration results in these fields, demonstrating their versatility and reliability.
Higher Cost: Glass fiber filter cartridges are typically priced 2-3 times higher than ordinary filters. Additionally, their maintenance and replacement costs are also higher. This can be a significant drawback for users who are budget-conscious or require frequent filter replacements.
Limited Filter Area: The filter area of glass fiber filter cartridges is generally only half of that of ordinary filters, resulting in a smaller flow rate. This limitation may restrict the system performance in certain application scenarios, especially when high flow rates are required.
Brittleness and Deformation: Glass fiber filter cartridges are brittle and not resistant to folding or wear. They may deform after being pulled or stretched, making them unsuitable for high-pressure environments. This brittleness can lead to premature failure or reduced performance over time.
Limited Filtration Area for Special Applications: In some special application scenarios that require higher filtration precision, such as food processing, glass fiber filter cartridges may not meet the requirements. This is because they may not be able to provide the necessary filtration area or precision to meet the specific needs of these applications.
Clogging Issues: Glass fiber filter cartridges are prone to clogging, requiring regular cleaning to maintain their filtration effect. This can be a time-consuming and labor-intensive process, and may also lead to reduced filter life if not properly maintained.
In conclusion, glass fiber filter cartridges excel in high-temperature, high-pressure, and corrosive environments. However, they have certain limitations in terms of cost, filter area, and applicability in specific application scenarios. Users should carefully consider their specific needs and constraints before selecting glass fiber filter cartridges for their filtration needs.
Type | Specifications | Technical function | ||||||
D OUT | D inside | L | Treatment of gas (m³/h) | Pressure drop loss(mm/H2O) | working temperature(°C) | gas velocity (m/s) | Fog removal efficiency% | |
CC-M | 470 | 400 | 2000 | 1000-1200 | 50 | <70 | 0.14-0.16 | Particle size greater than 3 μm ≥ 98% |
CC-A-R | 480 | 350 | 2000 | 1000-1200 | 60 | <85 | 0.14-0.16 | Particle size greater than 3 μm ≥ 100% |
CC-R | 610 | 500 | 3600 | 3000 | 60 | <85 | 0.14-0.16 | 0.5-0.75μm 75%-90% |
CC-A-R | 600 | 500 | 3000 | 8000 | 80-200 | <85 | 0.16-0.25 | Particle size greater than 3 μm ≥ 100% |