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2033U

2033U

It has a compact structure, is easy to install and maintain, and is compatible with most types of pumps.
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X212W X212B

X212W X212B

1. The mechanical seal features a modular design, with a shared platform for glass-lined reactors, special material reactors, and steel reactors. Customers can easily select the product based on the reactor type and standards to achieve optimal cost-effectiveness.
2. The mill-type and mechanical seal designs share a common platform, allowing for simple conversion by simply changing the friction pair. The design already considers FDA and GMP standards, requiring no structural alterations.
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X204P

X204P

1. The mechanical seal adopts a split design, fully considering the ease of installation and disassembly on site. Customers can safely replace the mechanical seal without disassembling the motor, reducer, or frame, greatly saving replacement time.
2. The product adopts a balanced design, eliminating the need for an additional lubrication tank on site.
3. The connection size is the same as standard single-end flanges, allowing direct replacement of other conventional single-end mechanical seals.
4. The locking device uses a bushing design to effectively protect the agitator shaft from damage caused by tightening screws.
5. The simple modular design eliminates the need for customers to calculate installation dimensions; simply loosen the top screws for immediate use.
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X204B X204W

X204B X204W

1. The mechanical seal features a modular design. Both special material reactors and steel reactors share a common platform for mechanical seal design, allowing customers to select the product based solely on the reactor's specifications to achieve optimal cost-effectiveness.
2. The metal bellows design is suitable for high-temperature applications. The sealing ring is resistant to solvent corrosion. When the reactor pressure exceeds 0.5 MPa, an auxiliary system must be used.
3. The mill-type and mechanical seal designs share a common platform. Simple conversion is achieved by simply changing the friction pair. The design already considers FDA and GMP standards, requiring no structural modifications.
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X203U

X203U

1. The mechanical seal features a modular design. Both special material reactors and steel reactors share a common platform for mechanical seal design, allowing customers to select the product based solely on the reactor's specifications to achieve optimal cost-effectiveness.
2. The metal bellows design is suitable for high-temperature applications. The sealing ring is resistant to solvent corrosion. When the reactor pressure exceeds 0.5 MPa, an auxiliary system must be used.
3. The mill-type and mechanical seal designs share a common platform. Simple conversion is achieved by simply changing the friction pair. The design already considers FDA and GMP standards, requiring no structural modifications.
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X201U

X201U

Modular design, simple structure, non-directional transmission, suitable for all kinds of steel fermentation tanks.
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FAQ

Frequently Asked Questions

faq
- Static sealing surface leakage: Check if the stationary ring seals (O-rings, V-rings) are aged, deformed, or missized. Replace with seals of the same specifications that are resistant to the medium and temperature. If the clearance between the stationary ring and the gland is too large, the stationary ring needs to be re-machined or replaced.
- Dynamic sealing surface leakage: Check if the sealing end faces of the dynamic and stationary rings have scratches, wear, or chipping. Minor scratches can be repaired by grinding; for severe scratches, replace the sealing ring directly. Also, confirm if the spring compression is appropriate. If insufficient compression, add gaskets; if excessive compression, reduce the number of gaskets.
- Leakage at the bushing-shaft mating point: Check if the bushing seal is damaged or if the clearance between the bushing and the shaft is too large. Replace the seal or re-grind the bushing.
- Excessive end face wear: If caused by particulate impurities in the medium, a filter needs to be installed; if caused by insufficient lubrication, a self-lubricating seal such as an impregnated graphite ring can be used, or an external flushing fluid (such as a clean liquid of the same medium) can be introduced.
- Shaft sleeve wear: Replace the shaft sleeve with one made of wear-resistant material, and adjust the coaxiality of the sealing cavity and the shaft to avoid uneven wear.
- Overheating of the sealing cavity: Check for blockages in the cooling system and clean the cooling pipes. If the medium temperature itself is too high, use high-temperature resistant sealing materials (such as silicon nitride ceramic rings or fluororubber sealing rings).
- Poor end-face contact due to spring failure: Replace fatigued or corroded springs with corrosion-resistant spring materials such as stainless steel, and ensure uniform spring compression.
- Coaxiality deviation: Recalibrate the coaxiality of the pump shaft and motor shaft, and adjust the radial runout of the sealing cavity and shaft to within the allowable range.
- Loose parts: Check whether the gland bolts and drive pins are loose. Tighten the bolts evenly to the specified torque, and replace worn drive pins.
- Material incompatibility with the medium: Replace the sealing material according to the characteristics of the medium (e.g., Hastelloy or PTFE for corrosive media; silicon carbide for high-temperature media).
- Improper installation: Strictly follow the installation specifications to avoid impact or scratches on the sealing surface and ensure that no impurities enter the sealing cavity during installation.
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