Editorial Technical Reference

Filtration Chamber

This page explains how Filtration Chamber is classified within Machinery and Equipment Manufacturing. Technical values and manufacturer relationships are research references; confirm the current specification and supplier evidence for each order.

Technical Definition & Core Assembly

A sealed enclosure in a coolant filtration system where fluid passes through filter media to remove contaminants.

Representative product image. Confirm appearance and specifications with the manufacturer.

Product Specifications

Technical details and manufacturing context for Filtration Chamber

Definition
The filtration chamber is a critical component of coolant filtration systems, designed as a pressure-rated enclosure that houses filter elements or media. It directs contaminated coolant through filtration materials to capture particulate matter, metal shavings, and other impurities while allowing clean coolant to exit. In industrial applications, it maintains coolant purity for machining, cooling, and lubrication processes. The chamber is available in materials such as stainless steel, carbon steel, and polypropylene, with housing material grades like 304 or 316L for corrosive fluids. Flow rate ranges from 50 to 200 L/min, and filtration area from 0.5 to 5.0 m². Filtration precision is 5 to 50 μm, with a beta ratio per ISO 16889. Operating temperature is -20 to 80°C, as seals degrade above 80°C. Maximum differential pressure is 0.35 to 0.5 MPa, as exceeding may collapse filter media. Seal materials include NBR or FKM, with FKM for high temperature. Inlet/outlet connections are flange or threaded, DN25 to DN100 per DIN 2633. Weight ranges from 50 to 300 kg, and dimensions from 600×400×800 to 1200×800×1500 mm. IP rating is IP54 to IP65, with IP65 for washdown. These values are directory reference ranges; verify model-specific values and standards with the legal manufacturer or supplier.
Working Principle
Contaminated coolant enters the chamber under pressure, flows through filter media (such as cartridges, screens, or membranes) that trap particles based on size exclusion, and clean coolant exits through outlet ports. The chamber maintains structural integrity to withstand system pressures while facilitating efficient filtration. The pressure differential across the media drives the flow, and the chamber design ensures even distribution to maximize media utilization. Regular monitoring of differential pressure indicates when media needs replacement. The chamber's seals and housing must be compatible with the coolant and operating conditions to prevent leaks and maintain performance.
Common Materials
Stainless steel, Carbon steel, Polypropylene
Technical Parameters
ParameterTypical rangeNotes & selection driver
Flow Rate50–200 L/minHigher flow requires larger chamber
Filtration Area0.5–5.0 Determines filter media size
Filtration Precision5–50 μmBeta ratio per ISO 16889ISO 16889
Operating Temperature-20–80 °CSeals degrade above 80°C
Max Differential Pressure0.35–0.5 MPaExceeding may collapse filter media
Housing Material304/316L316L for corrosive fluidsASTM A240
Seal MaterialNBR/FKMFKM for high tempASTM D2000
Inlet/Outlet ConnectionDN25–DN100 mmFlange or threadedDIN 2633
Weight50–300 kgDepends on size and material
Dimensions (L×W×H)600×400×800–1200×800×1500 mmCustom sizes available
IP RatingIP54–IP65IP65 for washdownIEC 60529

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

Components / BOM
  • Chamber Body
    The chamber shell itself: encloses the process volume and carries the operating pressure and temperature.
  • Inlet Port Part
    Entry point for contaminated coolant into the chamber
    Material: Stainless steel
  • Outlet Port Part
    Exit point for filtered coolant from the chamber
    Material: Stainless steel
  • Access Cover Part
    Removable panel for filter media replacement and maintenance
    Material: Steel with gasket
  • Pressure Relief Valve
    Safety device to prevent over-pressurization of the chamber
    Material: Brass or stainless steel

Industry Taxonomies & Aliases

Commonly used trade names and technical identifiers for Filtration Chamber.

Applied To / Applications

This component is essential for the following industrial systems and equipment:

Industrial Ecosystem & Supply Chain Structure

Complementary Systems
Downstream Applications
Specialized Tooling

Application Fit & Sizing Matrix

Operational Limits
pressure: 0 to 10 bar (g)
flow rate: Up to 500 L/min
temperature: -20°C to 120°C
slurry concentration: Up to 15% solids by weight
Media Compatibility
✓ Polypropylene filter media ✓ Stainless steel 316L housing ✓ Ceramic membrane elements
Unsuitable: Hydrofluoric acid environments
Sizing Data Required
  • Required flow rate (L/min)
  • Contaminant particle size distribution (microns)
  • System operating pressure (bar)

Reliability & Engineering Risk Analysis

Failure Mode & Root Cause
Filter media degradation
Cause: Chemical incompatibility with process fluids leading to swelling, hardening, or dissolution of filter media, compromising filtration efficiency and structural integrity.
Seal failure and leakage
Cause: Improper gasket installation, thermal cycling causing material fatigue, or excessive pressure differentials exceeding design limits, resulting in bypass contamination and process fluid loss.
Maintenance Indicators
  • Sudden pressure drop increase across the chamber indicating media breakthrough or clogging
  • Visible fluid weeping or dripping from seal interfaces or housing welds
Engineering Tips
  • Implement differential pressure monitoring with automated alarms set at 80% of manufacturer's maximum rating to prevent over-pressurization
  • Establish chemical compatibility verification protocols for all process fluids and cleaning agents, including compatibility testing during material selection

Indicative industry ranges for design and RFQ preparation. Confirm the exact figures and applicable standard with the manufacturer before specifying.

Compliance & Manufacturing Standards

Applicable Standards
ISO 2941:2022 - Hydraulic fluid power - Filter elements - Verification of collapse/burst pressure rating ANSI/ASME BPE-2022 - Bioprocessing Equipment (for sanitary filtration chambers) DIN EN 1822-1:2019 - High efficiency air filters (EPA, HEPA and ULPA) - Part 1: Classification, performance testing, marking

Quoted from the published standard.

Manufacturing Precision
  • Sealing surface flatness: ≤0.05mm per 100mm
  • Filter element bore concentricity: ±0.01mm
Quality Inspection
  • Pressure decay leak test (per ISO 2942)
  • Material verification via PMI (Positive Material Identification)

Manufacturers of Filtration Chamber

9 companies list this product among what they make. Company figures are quoted from each company's own website; every card states where the relationship came from.

Jianen Sanitary
Wenzhou, Zhejiang, CN
Founded 2009
3A CE ISO9001 SGS
Listed on the company's own website · profile compiled by CNFX from public sources
Jiangxi Ruiqian Auto Parts Co., Ltd.
Shangrao, Jiangxi, CN
Founded 1988300+ staff10,000+ Square Meters
ISO-TS16949:2009 ISO9001:2008 IATF 16964:2016
Also makes: Fuel Filter, Air Filter, Integrated Filter and 5 more
Listed on the company's own website · profile compiled by CNFX from public sources
Canature
Shanghai, CN
Listed on the company's own website · profile compiled by CNFX from public sources
CN Food Machines
Wenzhou, Zhejiang, CN
Listed on the company's own website · profile compiled by CNFX from public sources
Guangzhou Chunke Environmental
Guangzhou, Guangdong, CN
Listed on the company's own website · profile compiled by CNFX from public sources
HY Cleanroom Technology Co. Ltd.
Suzhou, Jiangsu, CN
Listed on the company's own website · profile compiled by CNFX from public sources
JX Filtration (China) Co., Ltd
Shanghai, CN
Listed on the company's own website · profile compiled by CNFX from public sources
Shijiazhuang Yitong Filter Machinery Co., Ltd.
Shijiazhuang, Hebei, CN
Listed on the company's own website · profile compiled by CNFX from public sources
Wenzhou Kosun Fluid Equipment Co.,Ltd
Wenzhou, Zhejiang, CN
Listed on the company's own website · profile compiled by CNFX from public sources

Manufacturer listings support early research and capability understanding. They are not certification, ranking, or transaction guarantees.

Technical documentation
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Manufacturing capability
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Frequently Asked Questions

What filtration precision can be achieved?

The filtration precision is listed as 5 to 50 μm, with a beta ratio per ISO 16889. This indicates the particle size removal efficiency. Verify the exact beta ratio and test conditions with the supplier for your application.

What materials are available for the chamber housing?

The chamber can be made of stainless steel, carbon steel, or polypropylene. For corrosive fluids, housing material grades 304 or 316L are listed per ASTM A240. Confirm material compatibility with your coolant and operating environment.

What is the maximum differential pressure?

The maximum differential pressure is listed as 0.35 to 0.5 MPa. Exceeding this may collapse the filter media. Monitor differential pressure regularly and replace media as needed to stay within limits.

Data Basis

Editorial classification, named public sources where available, and source-reviewed manufacturer records.

Preliminary Technical Classification
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