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IPX9K Test Chamber | High-Pressure Hot-Water Testing

Test Application: High-pressure, high-temperature water-jet ingress testing for exposed enclosures and components

Test Designation: IPX9K; IEC IPX9 capability should be confirmed against the required standard edition and test method

Système de pulvérisation : Four fixed angles at 0°, 30°, 60° and 90°

Published Water Conditions: 8–10 MPa pressure | 14–16 L/min flow | Water temperature up to 80°C

Turntable: Ø400 mm | 4–10 rpm | 50 kg rated load

Payment: L/C, D/P or T/T

Delivery: Confirmed after chamber configuration, specimen requirements and test method are approved

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High-Pressure Hot-Water Ingress Testing in a Controlled Chamber

The DERUI IPX9K test chamber evaluates whether an enclosure can resist close-range, high-pressure hot-water jets. Its four-angle spray arrangement, controlled water conditions and rotating specimen table support repeatable testing of automotive components, electrical enclosures, outdoor equipment and other products exposed to severe wash-down conditions.

0° / 30° / 60° / 90° jets8–10 MPa published pressureUp to 80°C waterProgrammable turntable

IPX9 and IPX9K Are Not Labels to Use Interchangeably

ISO 20653 addresses enclosure protection for electrical equipment in road vehicles and uses the IPX9K designation. IEC 60529 defines enclosure protection for electrical equipment and includes an IPX9 high-pressure, high-temperature water-jet test in current editions. The exact fixture, exposure conditions and acceptance criteria must come from the standard edition, customer specification or vehicle-manufacturer procedure named in the test plan.

Before production, DERUI reviews the required method rather than assuming that an “IPX9K chamber” automatically satisfies every IPX9 or OEM procedure.

How the IPX9K Test Chamber Works

Four-Angle Water-Jet Exposure

Nozzles positioned at 0°, 30°, 60° and 90° direct hot, pressurized water at the specimen. The required nozzle geometry and distance are set during commissioning.

Controlled Pressure, Flow and Temperature

A pump, heater and control system regulate the three variables that most strongly affect exposure severity. These channels should be verified before formal testing.

Rotating Specimen Platform

The specimen turns at a controlled speed so that exposed surfaces receive a repeatable spray sequence. Fixtures must hold the sample securely without masking critical seals.

Enclosed, Safer Operation

The stainless-steel test space contains splash and hot water. Door interlock, over-temperature protection, low-water protection and emergency stop options reduce operator risk.

Published Chamber Configuration

The following values consolidate the configuration currently published for this DERUI page. The approved quotation and technical agreement remain controlling because chamber dimensions, fixture design, utilities and safety options can change with the specimen.

Internal workspace 800 × 800 × 800 mm
Approximate external dimensions 1280 × 980 × 1650 mm
Turntable Ø400 mm; 4–10 rpm; 50 kg rated load
Published specimen guideline Up to 400 × 300 × 300 mm; actual fit depends on fixture, spray clearance and cable routing
Spray angles 0°, 30°, 60° and 90°
Plage de pression 8–10 MPa (8,000–10,000 kPa)
Flow range 14–16 L/min
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Calibration and Acceptance Checks

A defensible test depends on more than the pressure shown on the controller. The acceptance plan should identify which channels are calibrated, the measurement location, allowable tolerance and report format.

Water Conditions

Verify pressure, flow and temperature with instruments suitable for the working range.

Exposure Geometry

Check nozzle angle, specimen distance, alignment and any fixture obstruction.

Motion and Timing

Confirm turntable speed, sequence duration and controller timing.

Documentation

Retain instrument identification, calibration status, setup photographs, settings and results.

Safety and Maintenance Considerations

High-pressure water at elevated temperature presents burn, injection, electrical and stored-energy hazards. Operators should be trained on interlocks, emergency shutdown, depressurization and safe access. Maintenance should include nozzle inspection, filter cleaning, tank and piping checks, pump inspection, heater scale control, seal inspection and verification of safety devices.

Water quality matters: suspended solids and mineral scale can alter nozzle performance and shorten heater, pump and valve life. Define filtration, water replacement and descaling intervals according to use frequency and local water quality.

Information Needed for an Accurate Quotation

  • Required standard, edition and any customer-specific procedure
  • Specimen dimensions, weight, photographs and mounting orientation
  • Whether the specimen operates during the test and its electrical load
  • Required pressure, flow, temperature, distance, duration and sequence
  • Fixture, turntable and feed-through requirements
  • Site voltage, frequency, water quality, drainage and available floor space
  • Required calibration, acceptance report and third-party verification

Foire Aux Questions

What is the difference between IPX9 and IPX9K?

IPX9K is associated with ISO 20653 for road-vehicle electrical equipment, while IPX9 appears in current IEC 60529 provisions for electrical enclosures. They share the concept of high-pressure, high-temperature water jets, but the specified method and edition must be checked before claiming compliance.

Can this chamber also perform IPX5 and IPX6 tests?

Only when compatible IPX5/IPX6 nozzles, water circuits and control functions are included and verified. The IPX9K spray system alone should not be treated as an IPX5/IPX6 system.

Can a specimen be powered and monitored during testing?

Yes, this can be configured when the electrical load, monitoring channels, feed-throughs, isolation and risk controls are defined before manufacture. The safe operating and shutdown procedure must also be agreed.

What water supply does the chamber require?

Purified or appropriately treated water is preferred to reduce deposits and nozzle blockage. Final requirements depend on the specified method, chamber recirculation design and local water quality.

Which parameters should be calibrated?

The test plan commonly controls water pressure, flow, temperature, nozzle geometry and distance, turntable speed and exposure time. Calibration scope and reporting should be agreed with the laboratory or end customer.

What should I send DERUI before requesting a quotation?

Send the required standard and edition, specimen size and weight, operating state, mounting method, electrical interfaces, test conditions, site utilities and documentation requirements. This prevents an apparently suitable chamber from becoming unsuitable during acceptance testing.

Related Water-Ingress Test Equipment

For lower-pressure spray testing, review the rain test chamber range. For immersion testing, use equipment designed specifically for the required IPX7 or IPX8 method. DERUI can review a combined ingress-protection test requirement and identify which functions need separate hardware.

Configure an IPX9K Chamber Around Your Actual Test Method

Send DERUI the standard edition, specimen drawing, operating state, fixture requirements and site utilities. Our engineering team will review chamber size, spray geometry, water system, safety controls and acceptance documentation before quotation.

Request an Application Review

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Paramètres dimensionnels Dimensions de la boîte intérieure 800×800×800mm
  Dimensions globales de la machine 1280×980×1650mm
  Diamètre de la table tournante φ400mm
  Plage de réglage de la buse 100-200mm
  Taille d'échantillon recommandée ≤400×300×300mm
     
Paramètres de performance trafic 14-16 L/min
  Plage de pression de pulvérisation d'eau 8000-10000Kpa
  Capacité de charge de la table tournante 50kg
  Vitesse de la platine tournante 4-10 Rev/min
  Plage de température de l'eau 0-80℃
     
Conditions d'utilisation Tension de la batterie AC 380V
  puissance 10,0 kW
  Taille suggérée du lieu Longueur × Largeur ≥ 2000×1200 mm
  Conditions de source d'eau Préférer utiliser de l'eau purifiée ; l'eau du robinet peut être connectée en externe.

1. Qu'est-ce que le test IPX9K ?
Le test IPX9K est utilisé pour évaluer la résistance à l'eau des équipements sous un flux d'eau à haute température et haute pression.

2. Comment utiliser la chambre d'essai IPX9K ?
Il suffit de régler les paramètres pertinents et de démarrer l'équipement, puis le test d'étanchéité peut être effectué.

3. Quelles sont les normes de test pour la chambre d'essai IPX9K ?
Elle est conforme à la norme internationale d'étanchéité IPX9K.

4、Comment analyser les résultats du test ?
Après la fin du test, des enregistrements détaillés seront générés dans le panneau de contrôle de l'équipement. Ces enregistrements peuvent être exportés sous forme de rapports pour analyse.

5. Quels produits conviennent à la chambre d'essai IPX9K ?
Elle convient à une variété de produits tels que des produits électroniques, des pièces automobiles et des équipements extérieurs.

6. Quelles sont les exigences de maintenance pour la chambre d'essai IPX9K ?
Inspectez régulièrement tous les composants de l'équipement et maintenez-le propre et dans un bon environnement de fonctionnement.

7. Des plans d'essai personnalisés peuvent-ils être fournis ?
Des plans d'essai personnalisés et des réglages de paramètres peuvent être proposés en fonction des exigences du client.

8. Quel est le processus d'achat d'une chambre d'essai IPX9K ?
Vous pouvez contacter l'équipe commerciale de Derui pour obtenir des détails et finaliser le processus d'achat.

 

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