INDUSTRY COMPONENT

Main Chamber Body

Main structural housing of a deoxygenation chamber that contains the vacuum environment and supports internal components.

Component Specifications

Definition
The Main Chamber Body is the primary structural component of a deoxygenation chamber, designed to maintain a controlled vacuum environment for oxygen removal processes. It provides mounting surfaces for valves, sensors, heating elements, and internal racks while ensuring pressure integrity and thermal stability during operation.
Working Principle
Creates a sealed environment where atmospheric pressure is reduced via vacuum pumps, lowering oxygen partial pressure to facilitate degassing or preservation processes. The chamber withstands external atmospheric pressure while maintaining internal vacuum through robust construction and sealing systems.
Materials
Stainless Steel 316L (ASTM A240), thickness 8-12mm, with polished interior surface (Ra ≤ 0.8μm) to minimize outgassing and facilitate cleaning.
Technical Parameters
ParameterTypical rangeNotes & selection driver
Length1200-3000mm
Diameter800-1500mm
Leak Rate< 1×10^-9 mbar·L/s
Surface FinishElectropolished
Port ConnectionsISO-KF or CF flanges
Working Pressure10^-3 to 10^-6 mbar
Operating Temperature-20°C to 200°C

Ranges are indicative industry figures for RFQ preparation, not a supplier commitment. Confirm every value and standard with the legal manufacturer before ordering.

Standards
ISO 2861, DIN 28400, ASME BPVC Section VIII

Parent Products

This component is used in the following industrial products

Engineering Analysis

Risks & Mitigation
  • Vacuum failure due to seal degradation
  • Corrosion from process chemicals
  • Thermal stress cracking
  • Contamination from improper cleaning
FMEA Triads
Trigger: Seal material degradation over time
Failure: Loss of vacuum integrity leading to process failure
Mitigation: Implement preventive seal replacement schedule and regular leak testing
Trigger: Thermal cycling during operation
Failure: Metal fatigue and potential cracking
Mitigation: Design with thermal expansion allowances and controlled heating/cooling rates

Industrial Ecosystem

Compatible With

Typical Suppliers & Equivalents

Compliance & Inspection

Tolerance
±0.5mm on critical dimensions, circularity within 0.1% of diameter
Test Method
Helium leak detection per ISO 3530, pressure decay testing, and visual inspection per ASTM A380

Procurement Evaluation Criteria

A practical evidence checklist for RFQ preparation and supplier evaluation.

Technical documentation
Request current drawings, revision history, and a signed specification sheet.
Manufacturing capability
Verify equipment lists, process limits, capacity, and representative production evidence.
Inspection readiness
Confirm test methods, calibrated equipment, sampling plans, and traceable reports.
Supplier transparency
Check the legal entity, factory address, ownership, certifications, and direct contacts.

CNFX does not score or rank suppliers. Buyers must verify all claims and documents with the legal manufacturer before ordering.

Manufacturers of Main Chamber Body

Manufacturer profiles associated with Main Chamber Body.

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Frequently Asked Questions

What maintenance does the Main Chamber Body require?

Regular inspection of seals and surfaces, leak testing every 6 months, and cleaning with approved solvents to maintain vacuum integrity and prevent contamination.

Can the chamber body be customized for different applications?

Yes, dimensions, port configurations, and material grades can be modified based on process requirements, though vacuum integrity standards must be maintained.

Data Basis

Editorial classification, named public sources where available, and source-reviewed manufacturer records. See the editorial policy.

Preliminary Technical Classification
This page supports structured research, RFQ preparation, and supplier evaluation. It does not replace buyer-led supplier qualification, standards review, or technical approval.

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