Nullam dignissim, ante scelerisque the is euismod fermentum odio sem semper the is erat, a feugiat leo urna eget eros. Duis Aenean a imperdiet risus.

MY
MY

XY

XY Series (internally mounted, single‑end, multiple‑spring, non‑balanced type) mechanical seal for pumps.

Product features and advantages

Internally mounted, single‑end, multiple‑spring, non‑balanced type, sleeve/lug drive, internal flow ultra‑short design, anti‑rotation pin positioning; springs in contact with the medium (standard type).

1. Modular design allows all wearing parts to be interchangeable, ensuring better stability in mass production and higher cost performance.
2. With modular design, production is used to replace stocking, and the delivery time is shortened by 50% compared with the original design.
3. Dry-running products feature higher cleanliness, enhanced safety and lower noise; they replace imported mechanical seals and offer better cost performance.

Parameter

Pressure ≤ 1.0 MPa (10 bar) standard; enhanced type up to 1.6 MPa (balanced modification + matched flushing required)
Temperature -20 ~ 80 ℃ (standard with NBR/FKM); upgraded to 120 ℃ with FKM/PTFE; high-temperature metal bellows up to 150 ℃
Shaft diameter commonly 25 ~ 120 mm (e.g. MY40, MY65, MY100 for different shaft diameters)
Speed / Surface speed ≤ 3000 rpm, ≤ 10 m/s (high wear-resistant SiC-SiC up to 12 m/s)
Common Material Combinations
Friction Pair Graphite / Silicon Carbide (SiC), Graphite / Tungsten Carbide (WC); SiC-SiC for highly abrasive service
Auxiliary seal NBR (oil/water), FKM (fluoroelastomer, acid and alkali resistant), EPDM (water/steam), PTFE (highly corrosive media)
Metal parts 304/316L stainless steel; Hastelloy available for special conditions

Applicable Operating Conditions (Industrial and Mining)

1. Water treatment: municipal sewage, industrial wastewater, circulating water, seawater desalination; clean water, acidic/alkaline water and flocculant solution with trace particles (<1%).

2. Chemical / pharmaceutical: neutral and corrosive media with low to medium viscosity (≤3000 mPa·s) and trace impurities, such as methanol, ethanol, citric acid, phosphate and dilute acids/alkalis.

3. Metallurgy / electroplating: cooling circulating water, pickling wastewater, low-abrasion liquids containing heavy metal ions.

4. General industry: clean water, low-temperature hot water, hydraulic oil, lubricating oil, emulsion and other non-highly corrosive, low-abrasion applications.

Additional Selection Recommendations

  • For media containing trace particles (0.5%–1%): select graphite + SiC, with API Plan 11 flushing and filtration
  • Weakly corrosive service: FKM secondary seal; strongly corrosive service: PTFE/FFKM + 316L metal parts

FAQ

  1. Leakage (most common issue)
  • Leakage at static sealing face: Check if the stationary seal gasket (O‑ring, V‑ring) is aged, deformed or mismatched in size. Replace it with a media‑resistant and temperature‑resistant gasket of the same specification. If the fit clearance between the stationary ring and the gland is too large, re‑machine or replace the stationary ring.
  • Leakage at dynamic sealing face: Inspect the sealing end faces of the rotating and stationary rings for scratches, wear or chipping. Minor scratches can be repaired by lapping; replace the seal rings directly if severely damaged. Also verify the spring compression: add gaskets if insufficient, reduce gaskets if excessive.
  • Leakage at shaft sleeve / shaft fit: Check for damage to the shaft sleeve gasket, or excessive fit clearance between shaft sleeve and shaft. Replace the gasket or re‑grind the shaft sleeve.
  1. Abnormal wear
  • Excessive end face wear: Install a filter if caused by particulate impurities in the medium. For insufficient lubrication, use self‑lubricating seals such as impregnated graphite rings, or introduce external flushing liquid (e.g. clean same medium).
  • Shaft sleeve wear: Replace the shaft sleeve with wear‑resistant material, and adjust the concentricity between the seal chamber and the shaft to avoid eccentric wear.
  1. Overheating and Burning
  • Excessively high temperature in seal chamber: Check if the cooling system is clogged and clean the cooling lines. If the medium temperature is inherently high, use high-temperature resistant seal materials (such as silicon nitride ceramic rings and fluororubber gaskets).
  • Poor end-face contact due to spring failure: Replace fatigued or corroded springs, select corrosion-resistant spring materials such as stainless steel, and ensure uniform spring compression.
  1. Vibration and Abnormal Noise
  • Misalignment: Recalibrate the concentricity between the pump shaft and motor shaft, and adjust the radial runout of the seal chamber and shaft to within allowable limits.
  • 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.
  1. Short Service Life of Seals
  • Mismatch between material and medium: Replace seal materials according to medium characteristics (e.g., Hastelloy and PTFE for corrosive media; silicon carbide for high-temperature media).
  • Improper installation: Operate in strict accordance with installation specifications, avoid impact or scratches on the seal pair end faces, and ensure no impurities enter the seal chamber during installation.
PRODUCTS

PRODUCTS

View More
News

News

View More

28/ August

Top-Entry vs Side-Entry Agitator Mechanical Seals: Design Differences, Shaft Loads, Bearings and Selection

Compare top-entry vs side-entry agitator mechanical seals, including shaft loads, bearing support, seal selection, maintenance, and RFQ requirements.
Learn More
Top-Entry vs Side-Entry Agitator Mechanical Seals Design Differences, Shaft Loads, Bearings and Selection

27/ August

API Plan 52 vs Plan 53 for Dual Mechanical Seals: How to Choose the Right Buffer or Barrier Fluid System

Compare API Plan 52 vs Plan 53 for dual mechanical seals. Learn buffer vs barrier fluid, selection criteria, risks, retrofit checks, and RFQ tips.
Learn More
API Plan 52 vs Plan 53 for Dual Mechanical Seals How to Choose the Right Buffer or Barrier Fluid System

21/ August

Pump Mechanical Seal Replacement RFQ Checklist: What Data to Send Before Ordering

Use this pump mechanical seal replacement RFQ checklist to submit dimensions, operating data, failure photos, drawings, and purchasing requirements.
Learn More
Pump Mechanical Seal Replacement RFQ Checklist What Data to Send Before Ordering

20/ August

Cartridge vs Component Mechanical Seals for Pumps: Installation Risk, Downtime, Cost and Selection

Compare cartridge vs component mechanical seals for pumps by installation risk, downtime, retrofit fit, lifecycle cost, and supplier selection.
Learn More
Cartridge vs Component Mechanical Seals for Pumps Installation Risk, Downtime, Cost and Selection
What We Do

Services we Offer

No matter what your mechanical seal needs may be, we’re here to help. Contact us today to learn more about our
services and how we can assist you with all of your needs.
service4

One-Stop Service System

We are committed to providing clients with one-stop service throughout the entire project lifecycle, ensuring efficiency, reliability, and worry-free operation from selection to operation.
decorate
Looking for a trusted mechanical seal supplier for your global projects?

Contact Us

Our factory has extensive export experience, and our products meet ISO standards. We offer a one-stop service from product selection to after-sales support, including on-site installation guidance. Whether you need small samples or large orders, we can meet your needs. Send us an inquiry today to discuss your project details and get a sample quote.

    Your Name*

    Email*

    Tel*

    WhatsApp*

    Message*

    Products
    Contacts
    WhatsApp
    Email