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Precision CNC Machined Stainless Steel Flange Shaft Seat with Customizable Geometry for Gas-Liquid Separators

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Qingdao Sande Technology Co., LTD

City: qingdao

Province/State:shandong

Country/Region:china

Tel:86--13573283285

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Ms.tian
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Precision CNC Machined Stainless Steel Flange Shaft Seat with Customizable Geometry for Gas-Liquid Separators

Brand Name Qingdao Sande Tech Co.,Ltd
Model Number OEM
Certification ISO, DIN, AISI, ASTM, BS, JIS, etc.
Place of Origin Qingdao, China
Minimum Order Quantity 1000pcs
Price $0.5-2
Payment Terms D/A,D/P,T/T
Supply Ability 10000PCS/month
Delivery Time 30 days
Packaging Details 10000PCS/month
Processing Type CNC Turning and milling
Means Of Transport Sea transport
Sizerange Custom sizes as per drawing
Durability long-lasting
Features High Precision, Durable
Value customized
Detailed Product Description
Precision Machined Stainless Steel Flange Shaft Seat For Gas-Liquid Separator
Product Overview

This Precision Machined Stainless Steel Flange Shaft Seat is a high-performance mounting component specifically engineered for gas-liquid separators, including centrifugal separators, cyclone separators, and three-phase oil-gas-water separation systems.

The flange shaft seat acts as the stationary or rotating support interface between the separator housing and the drive shaft or rotor assembly. It provides precise axial and radial positioning, ensures smooth shaft rotation, and withstands the mechanical loads and environmental conditions typical in gas-liquid separation processes.

Manufactured from high-grade stainless steel and finished with precision CNC machining, this component delivers excellent corrosion resistance, dimensional accuracy, and long-term reliability in demanding industrial environments.

Key Features
  • Precision CNC Machined - Achieves tight tolerances down to ±0.005 mm, ensuring accurate shaft alignment and minimal vibration during high-speed separator operation.
  • Stainless Steel Construction - Available in SS304, SS316, SS316L, or duplex stainless steel, providing outstanding resistance to corrosion from moisture, hydrocarbons, and light chemical agents.
  • Integrated Flange Design - The flange allows secure bolt-mounted attachment to the separator housing, simplifying installation and maintenance while improving structural rigidity.
  • Smooth Bearing or Seal Contact Surface - Surface finish up to Ra 0.8 μm on critical contact areas, reducing friction and wear on rotating seals, bearings, or shaft sleeves.
  • High Mechanical Strength - Suitable for applications involving pressure differentials, moderate vibrations, and continuous duty cycles.
  • Customizable Geometry - Flange diameter, bolt hole pattern, shaft bore size, and overall length can be tailored to match specific separator models or OEM requirements.
Technical Specifications (Reference)
ParameterValue / Range
Machining ProcessCNC Turning, Milling, Drilling, Boring
Material OptionsSS304, SS316, SS316L, Duplex 2205, 17-4PH
Diameter Range (Flange OD)50 mm - 300 mm
Shaft Bore Diameter20 mm - 120 mm
Overall Length40 mm - 250 mm
Dimensional Tolerance±0.005 mm - ±0.01 mm
Surface Roughness (Critical Areas)Ra 0.8 - 1.6 μm
Concentricity (Bore to Flange Face)≤ 0.02 mm
Perpendicularity (Bore to Flange Face)≤ 0.02 mm
Flange Hole PatternCustom (4, 6, 8, or 12 holes)
Heat Treatment (Optional)Solution annealing + passivation
Surface Finish (External)As machined, brushed, or electropolished
Application Scenarios

This precision stainless steel flange shaft seat is widely used in the following gas-liquid separation equipment:

  • Centrifugal gas-liquid separators (shaft support housing)
  • Cyclone separators (rotor bearing seat)
  • Three-phase oil-gas-water separators (drive shaft mounting flange)
  • Compressor suction scrubbers (rotating element support)
  • Mist eliminators with mechanical internals
  • Biogas purification systems
  • Industrial vacuum separators

It functions as the critical mounting interface that aligns and secures the rotating shaft or rotor assembly within the stationary separator body.

Advantages Over Standard Cast or Fabricated Shaft Seats
FeaturePrecision Machined SS Flange Shaft SeatCast or Fabricated Seat
Dimensional accuracyHigh (±0.005 mm)Low (±0.1 mm or more)
Surface finishExcellent (Ra ≤ 1.6)Rough (Ra ≥ 6.3)
Corrosion resistanceSuperior (homogenous stainless steel)Variable (coating dependent)
Concentricity & runoutExcellent (≤ 0.02 mm)Poor to moderate
Batch-to-batch consistencyVery highLow to moderate
Lead time for prototypes7-15 days30-60 days
Suitability for high-speed rotationExcellentLimited
Quality Control

Every stainless steel flange shaft seat undergoes rigorous quality inspection before shipment:

Inspection ItemMethod
Critical dimensionsCMM or digital micrometers
Surface roughnessContact profilometer
Concentricity / runoutPrecision centers + dial indicator
PerpendicularityGranite surface plate + height gauge
Material verificationSpectrometer (PMI test)
Visual & surface defectsMagnified visual inspection
Optional NDTDye penetrant test (DPT)

Deliverables: Inspection report, material certificate (EN 10204 Type 3.1 or 3.2), and dimensional report upon request.

Customization Options

We offer full OEM customization based on your drawings, samples, or design specifications:

Custom FeatureOptions
Flange dimensionsAny OD, thickness, bolt circle diameter
Shaft boreSmooth bore, keyway, spline, or tapered bore
Mounting holesThreaded or clearance holes, any pattern
Seal groovesSingle or double labyrinth, O-ring grooves
Bearing seatsIntegrated bearing housing with retaining ring groove
Surface treatmentElectropolishing, passivation, bead blasting
MarkingLaser engraving (part number, logo, material grade)
Material Selection Guide
MaterialCorrosion ResistanceStrengthTypical Application
SS304GoodMediumGeneral gas-liquid separation, mild environments
SS316 / SS316LExcellent (chloride resistant)Medium-HighMarine, chemical, or sour gas applications
Duplex 2205Superior (acid + chloride)HighHigh-pressure, corrosive gas-liquid separators
17-4PHGood + heat treatableVery HighHigh-strength, wear-resistant shaft seats
Packaging & Delivery
Packaging:
  • Anti-rust oil coating (for non-stainless materials if requested)
  • Individual protective wrapping
  • Foam-secured carton or plywood crate
Delivery:
Order TypeLead Time
Prototype (1-5 pcs)7-15 days
Small batch (10-50 pcs)15-20 days
Medium batch (50-500 pcs)20-30 days
Mass production (500+ pcs)30-45 days

Shipping: By sea, air, or express (DHL, FedEx, UPS).

Frequently Asked Questions (FAQ)
1. What is a flange shaft seat used for in a gas-liquid separator?

The flange shaft seat is a precision mounting component that supports and positions the rotating shaft or rotor assembly inside the gas-liquid separator. It attaches directly to the separator housing via its flange, providing accurate axial and radial alignment, ensuring smooth rotation, and maintaining seal integrity during operation.

2. What stainless steel grades are available?

We offer multiple stainless steel options to suit different operating environments:

GradeCorrosion ResistanceBest Suited For
SS304GoodGeneral gas-liquid separation, mild conditions
SS316 / SS316LExcellent (chloride resistant)Marine, chemical, sour gas, or high-moisture environments
Duplex 2205Superior (acid + chloride resistant)High-pressure, corrosive, or aggressive chemical separation
17-4PHGood + heat treatableHigh-strength, wear-resistant applications
3. What tolerances can you achieve?

Our precision CNC machining capabilities include:

ParameterStandard TolerancePrecision Tolerance (upon request)
Diameter (bore / OD)±0.01 mm±0.005 mm
Length±0.02 mm±0.01 mm
Concentricity (bore to flange face)≤ 0.02 mm≤ 0.01 mm
Perpendicularity≤ 0.02 mm≤ 0.01 mm
Surface roughness (critical areas)Ra 1.6 μmRa 0.8 μm
4. Can you customize the flange dimensions and bolt hole pattern?

Yes, absolutely. We provide full OEM customization based on your requirements:

  • Flange outer diameter: Any size (typically 50 mm - 300 mm)
  • Flange thickness: Customizable
  • Bolt circle diameter (BCD): As per your drawing
  • Number of holes: 2, 4, 6, 8, 12, or custom
  • Hole type: Clearance holes, threaded holes, or counterbores

Please provide a drawing or sketch with your specific dimensions.

5. What surface finish do you provide on critical contact areas?

On bearing, seal, or shaft contact surfaces, we achieve:

  • Standard: Ra 1.6 μm (suitable for most seals and bearings)
  • Precision: Ra 0.8 μm (for high-speed or critical sealing applications)
  • Upon request: Ra 0.4 μm (fine grinding or polishing)

External non-critical surfaces are typically left as-machined or can be electropolished, passivated, or bead-blasted.

6. Do you provide material certificates?

Yes. We provide EN 10204 Type 3.1 material certificates as standard, which include:

  • Material grade and standard
  • Heat number / lot number
  • Chemical composition analysis
  • Mechanical properties (if applicable)

EN 10204 Type 3.2 certificates (third-party verified) are available upon request for an additional charge.

7. What is the typical lead time?
Order QuantityLead Time
Prototype (1-5 pcs)7-15 days
Small batch (10-50 pcs)15-20 days
Medium batch (50-500 pcs)20-30 days
Mass production (500+ pcs)30-45 days

Lead time depends on material availability, complexity, and current production schedule.

8. Can you provide samples before mass production?

Yes, we encourage sample orders for quality verification.

  • Sample quantity: 1-5 pieces
  • Sample lead time: 7-15 days
  • Sample charge: Applicable (refundable or deductible from mass production order)
  • Sample shipping: By express (DHL, FedEx, UPS) at customer's cost

We can also provide 3D drawings or CAD models for your approval before production.

9. What is your minimum order quantity (MOQ)?
  • Prototype / sample order: 1 piece (no MOQ)
  • Trial batch: 10-50 pieces
  • Standard production: 100 pieces (for optimal pricing)

We welcome both small and large quantity orders and offer flexible terms for new customers.

10. How do you ensure quality control?

Each flange shaft seat undergoes 100% inspection before shipment:

InspectionMethod / Tool
Critical dimensionsCMM or digital micrometers / calipers
Concentricity / runoutPrecision centers + dial indicator
PerpendicularityGranite surface plate + height gauge
Surface roughnessContact profilometer
Material verificationSpectrometer (PMI test)
Visual defectsMagnified visual inspection (10x-20x)
Optional NDTDye penetrant test (DPT) or MPI

Deliverables: Inspection report with each shipment; additional certificates available upon request.

11. Can this flange shaft seat be used in high-temperature or high-pressure separators?

Yes, depending on the material grade and design:

ConditionRecommended MaterialLimit
High temperature (continuous)SS316L or Duplex 2205Up to 400°C (SS), 250°C (Duplex)
High pressureDuplex 2205 or 17-4PHDepends on flange thickness and bolt strength (engineer on request)

Please provide your operating temperature and pressure for a specific material recommendation.

12. What surface treatments are available for additional protection?

Although stainless steel is naturally corrosion-resistant, we offer:

TreatmentPurpose
PassivationRemoves surface iron, restores corrosion resistance (recommended for SS)
ElectropolishingSmooths surface, improves cleanliness and corrosion resistance
Bead blastingUniform matte finish, hides tool marks
Laser markingPart number, logo, material grade, or traceability code
13. How should this component be installed and maintained?
Installation tips:
  • Clean mating housing surface before installation
  • Use a torque wrench for flange bolts (specify torque value per design)
  • Verify shaft-to-bore clearance matches drawing requirements
  • Apply anti-seize compound to bolts if disassembly is expected
Maintenance tips:
  • Inspect seal contact surface for scoring or wear during routine service
  • Check flange bolts for loosening after initial operating hours
  • Clean with mild solvent and soft cloth; avoid abrasive tools
14. What information do you need to provide a quote?

Please send us the following:

  1. Drawing (PDF, DWG, DXF, STEP, or IGS) - preferred
  2. Material grade (or describe the operating environment)
  3. Quantity (prototype, trial, or annual volume)
  4. Critical dimensions or tolerances (if tighter than our standard)
  5. Special requirements (surface finish, heat treatment, marking, balancing, etc.)

If you don't have a drawing, we can work from a physical sample (reverse engineering) or a detailed sketch with key dimensions.

15. What is your warranty and after-sales support?

We stand behind the quality of our products:

  • 12-month warranty against manufacturing defects
  • Free replacement for any non-conforming parts (with supporting evidence)
  • Technical support for installation, fitment, or performance issues
  • Lifetime support for repeat customers (design improvements, cost reduction suggestions)
16. How do you package and ship these parts?
Packaging:
  • Anti-rust protection (for non-stainless materials if requested)
  • Individual bubble wrap or foam-secured compartments
  • Sealed carton or plywood crate (depending on quantity)
Shipping methods:
MethodBest forTransit time
Express (DHL, FedEx, UPS)Samples, small batches3-7 days
Air freightMedium batches (50-200 kg)7-12 days
Sea freightLarge batches (200+ kg)20-40 days
17. Can you reverse engineer a flange shaft seat from an existing sample?

Yes. We offer reverse engineering services:

  • 3D scanning or manual measurement of your sample
  • CAD model creation (STEP, IGES)
  • Drawing generation with critical tolerances
  • Production of identical or improved replacement parts

Lead time for reverse engineering: 5-10 days (depending on complexity).

18. Do you offer design assistance for new gas-liquid separator projects?

Yes. Our engineering team can assist with:

  • Material selection based on operating conditions
  • Tolerance recommendations for optimal seal/bearing life
  • Design for manufacturability (DFM) feedback
  • Weight reduction or cost optimization suggestions

We treat your design data as strictly confidential (NDA available upon request).

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