Economical manual filter press: Made of stainless steel, hygienic and corrosion-resistant
1. Manual hydraulic pressing: The integrated manual hydraulic pump is used to provide the pressing force. No external power supply or compressed air is required. The operation is simple and the movement is convenient. It is especially suitable for use in environments without power sources or where explosion-proof requirements are imposed.
2. All stainless steel structure: The components that come into direct contact with the materials, such as filter plates, feed pipes, and collection trays, are all made of 304 or 316L stainless steel. They possess outstanding corrosion resistance and rust prevention properties, and fully comply with hygiene standards in the food and other industries.
3. Box-type filter plate design: The filter plates adopt an enhanced box-type structure, featuring strong pressure-bearing capacity. The formed filter chamber space is uniform, resulting in excellent filter cake formation effect, and the discharging process is convenient and fast.
4. Flexible and reliable filtration system: Utilizing high-quality filter cloth as the filtration medium, it offers high filtration accuracy. Different materials and filtration accuracies can be selected based on the characteristics of different materials to achieve the best filtration results.
1. Economical and Energy-Efficient: It does not require power-driven operation, significantly reducing operating energy consumption and equipment costs, and offering a high return on investment.
2. Anti-corrosion and Hygiene: Made of fully stainless steel, it is free from pollution, easy to clean, and does not breed bacteria, meeting the high hygiene standards.
3. Simple operation and maintenance: The structure is simple, and it can be operated without requiring complex training; the hydraulic system and wear-prone components such as the filter cloth can be easily replaced, resulting in extremely low maintenance costs.
4. Strong adaptability: Suitable for filtering various materials, ranging from coarse particles to fine and sticky substances. Just adjust the filtration pressure and the accuracy of the filter cloth to handle any situation.
5. Small footprint: The equipment has a compact structure, making it ideal for installation and use in workshops or laboratories with limited space.
6. Durability and Sturdiness: The stainless steel material and sturdy frame design ensure the equipment can operate stably for a long time under harsh conditions, with a long service life.
1. Press down the filter plate:
Operate the lever of the manual hydraulic pump to make the hydraulic oil push the piston rod forward, thereby pressing all the filter plates tightly between the fixed thrust plate and the movable pressing plate, forming a series of sealed filter chambers.
2. Feed material filtration:
Start the feed pump (customers are responsible for providing it), and pump the suspended liquid to be filtered from the feed port on the thrust plate into the filter chamber.
Under the action of the feed pressure, the filtrate passes through the filter cloth and collects in the grooves on the filter plate, then flows out through the outlet. Meanwhile, the solid particles are intercepted by the filter cloth and gradually accumulate to form a filter cake within the filter chamber.
3. Release the discharge:
After the filtration process is completed, operate the pressure relief valve of the manual hydraulic pump to allow the piston rod to retract and the movable pressing plate to release.
Sequentially pull the filter plates, open the filter chamber, and the filter cake falls off from the filter cloth due to its own weight or with the help of auxiliary discharge devices (such as vibrators), completing the discharge.
Clean the remaining substances on the filter cloth and prepare for the next cycle.
This equipment, thanks to its excellent anti-corrosion performance and flexible applicability, is widely used in the following industries:
1. Food and beverage industry: Clarification and filtration of juices, pectin, alcoholic beverages, soy sauce, vinegar, syrup, yeast, plant extracts, etc.
2. Chemical industry: Solid-liquid separation for dyes, pigments, resins, catalyst recovery, etc.
3. Environmental protection industry: Laboratory small-scale wastewater treatment, sludge dewatering treatment, electroplating wastewater treatment, etc.
4. Metallurgy and Mining: Dewatering of metal hydroxides, concentrates, and tailings.
5. Ceramics and building materials industry: Dewatering of glazes and ceramic slurries.
6. Research and Teaching: Experimental research and small-scale production carried out by universities and research institutions.







