Automotive Oil Filter Performance Test Machine
Whats/App: +86 156 1874 6768
Web: standard-groups.com
Standards
ISO 2941:2009:Hydraulic fluid power — Filter elements — Verification of collapse/burst pressure rating
ISO 4548-12:2017:Test methods for full-flow oil filters for internal combustion engines - Part 12: Particle counting method for filtration efficiency and ash holding capacity
Features
High-pressure hydraulic power unit (pump) or pressure source capable of generating pressures up to the maximum required test pressure.
Pressure control system to increase the test pressure at a precise, controlled rate as specified by test standards.
Robust test stand or fixture designed to securely hold the filter element (for collapse/burst tests) or the filter housing (for burst tests) and withstand the applied pressure.
High-accuracy pressure transducer to measure the applied hydrostatic pressure.
Failure detection system that automatically identifies when the filter structure fails and records the pressure at failure. This may involve monitoring pressure drop, using acoustic sensors, or relying on visual confirmation in some cases (though automation is preferred for accuracy).
Safety enclosure or shielding constructed from strong materials to contain test fluid and debris in the event of a violent rupture.
Digital display showing the applied pressure, pressure rate, and the recorded failure pressure.
Controls for starting, stopping, and pausing the test.
System for filling the filter or housing with the test fluid and purging air.
Technical Parameters
| Main Parameters | Details |
|---|---|
| System pressure gauge range | 30bar |
| Working medium | SAE5W engine oil |
| Pressure rise accuracy | 0.5bar/times incremental point |
| Measuring temperature range | Room temperature |
| Protective cover | Transparent |
Accessoriess
1. Core Testing Components
Filter Element Test Fixture (Compatible with different filter element specifications): Used to fix the filter element, allowing switching between "external pressure collapse" and "internal pressure rupture" pressure application directions.
Filter Housing Test Fixture (Compatible with different housing sizes): Seals and fixes the complete filter housing, supporting the housing rupture pressure test.
High-Pressure Hydraulic Line (High-Pressure Resistant Material): Transmits the test medium and withstands high-pressure conditions during the test.
2. Functional Auxiliary Components
High-Precision Pressure Sensor: Monitors test pressure in real time, synchronously feeds back data, and triggers fault detection (such as sudden pressure drop).
Explosion-Proof Transparent Protective Cover: Isolates the sample during testing, preventing media and fragments from splashing during rupture, ensuring operational safety.
High-Pressure Hydraulic Pump with Pressure Regulator Module: Provides stable and controllable pressure output, gradually increasing pressure at a set rate.
Digital Display Controller: Used to configure test parameters, display pressure data in real time, and record the maximum pressure value at the time of sample rupture.
3. Consumables and Auxiliary Components
Test Medium (Hydraulic Oil/Special Test Fluid): As the pressure transmission medium, it must match the requirements of the corresponding test standard. Oil-resistant/high-pressure sealing gaskets: ensure the sealing effect of test fixtures, samples and pipelines, and prevent pressure leakage from affecting test accuracy.
Test Procedures
1. Preparation Stage
Equipment & Sample Setup
Connect the tester to a stable power supply, and fill the liquid medium (hydraulic oil or specified test fluid) into the test circuit.
Select the test mode (Filter Element Collapse/BurstorFilter Housing Burst) based on the test target:
Forelement testing: Install the filter element into the fixture, and confirm the pressure direction (outside-in for collapse, inside-out for burst).
Forhousing testing: Secure the complete filter housing to the test station, ensuring a sealed connection.
Safety Check
Close the transparent protective cover (to prevent splashing during rupture), and verify that the pressure sensor and failure detection system are functioning normally.
2. Parameter Configuration
Turn on the instrument, set thepressure increase rate(controlled rate per standard requirements) via the control panel.
Set the pressure monitoring threshold (for automatic failure detection, e.g., trigger on sudden pressure drop).
3. Test Operation
Start the high-pressure hydraulic pump to gradually apply pressure to the test sample (filter element/housing).
Monitor the digital pressure display in real time; the system will track pressure changes continuously.
When the sample fails (e.g., pleat collapse, seam rupture, housing rupture), the failure detection system will trigger (via pressure drop/audible event), and the instrument will record themaximum pressure reached(collapse/burst pressure).
Stop the pressure supply immediately after failure is detected.
4. Post-Test Process
Release the residual pressure in the test circuit slowly.
Open the protective cover, remove the damaged test sample, and clean the test fixture/inner chamber.
Export the test data (recorded burst pressure) and generate a test report.
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