Built for university laboratories and material‑science R&D centers, this 10L micro‑arc oxidation experimental equipment completes reliable plasma electrolytic oxidation trials for aluminum, magnesium and titanium alloy test samples under controlled lab operating conditions.
10L Micro‑Arc Oxidation Experimental Equipment addresses core testing demands for laboratory‑scale micro‑arc oxidation research, where stable process control directly determines repeatable coating test results and reliable experimental data. In fact, bulky industrial‑grade MAO systems occupy excessive lab space, while simplified small‑scale test setups often suffer temperature drift and unstable pulse output during long‑time sample trials. Since micro‑arc oxidation generates noticeable thermal output throughout plasma discharge reactions, integrated circulating cooling becomes essential to hold steady bath temperature and guarantee consistent ceramic film formation on alloy specimens.
Rated for 10L working tank volume, this 10L micro‑arc oxidation experimental equipment adopts integrated system layout combining MAO power supply, transparent observation tank, circulating chiller and stirring assembly optimised for bench‑top laboratory environments. Researchers adjust voltage, current, pulse frequency and duty cycle via intuitive touch‑screen interface to match diverse alloy substrates and target ceramic coating performance requirements. After technicians finish electrolyte filling and system connection, lab operators run continuous batch testing for small‑size research specimens. Meanwhile, multi‑level electronic protection reacts rapidly to over‑voltage, over‑current and over‑temperature risks, and this protective design safeguards test samples and internal system assemblies throughout extended experimental cycles.
This 10L micro‑arc oxidation experimental equipment adopts lab‑optimised digital control hardware, and overall system efficiency stays above 87% under routine research‑grade testing loads. Unlike large‑format production MAO units that require dedicated factory floor space, its bench‑top compact layout eliminates space constraints inside university labs; accordingly, research teams carry out repeated exploratory trials without heavy‑duty infrastructure reconstruction.
Fast‑response closed‑loop temperature feedback offsets minor thermal fluctuations generated by plasma discharge as ceramic oxide films grow on alloy specimen surfaces. Consequently, treated test samples show reduced coating thickness deviation and fewer surface defects, and lab researchers obtain highly repeatable comparison data across multiple parallel groups. Moreover, built‑in memory stores multiple sets of experimental parameter presets, and operators can recall validated process profiles instantly instead of manually resetting every new test batch.
Optimised for material‑science laboratory research scenarios, internal control circuits keep pulse‑output fluctuation tightly limited across the full adjustment range. Accordingly, it supplies dependable power output to form uniform, wear‑resistant ceramic oxide coatings for diverse small‑format alloy research specimens.
| Parameter Category | Specific Item | Specification |
|---|---|---|
| Tank Specifications | Working Volume | 10L |
| Control Modes | Operation Mode | Constant Current, Constant Voltage |
| Power Features | Pulse Parameter | Frequency & Duty Cycle Adjustable |
| Cooling System | Cooling Type | Integrated Circulating Chiller |
| Agitation | Stirring System | Built‑in Electrolyte Circulation Stirring |
| Control Unit | Operation Interface | Color Touch Screen |
| Communication | Data Interface | RS485 |
| Protection Functions | Safety Protection | Over‑voltage, Over‑current, Over‑temperature, Short‑circuit Protection |
| Application Object | Suitable Materials | Aluminum, Magnesium, Titanium Alloys |
The product comes with a one‑year warranty and boasts a service life of over 10 years. It supports both Constant Current and Constant Voltage modes, and it also includes a programmable ramp‑up function for current or voltage settings. For time‑sensitive applications, you can use the timed operation mode. Moreover, the multi‑segment function allows you to vary constant current or voltage levels over time. The device further offers an RS485 communication interface, automatic polarity reversal, and a minute‑level timing function. If you need customization, please contact us for further details.
This 10L micro‑arc oxidation experimental equipment fits university material‑science laboratories, new‑material R&D institutes and surface‑technology process‑exploration projects. For instance, it completes micro‑arc oxidation treatment for small alloy test coupons and research specimens to evaluate coating hardness, wear‑resistance and anti‑corrosion performance.
Besides, it acts as complete bench‑top MAO test hardware for researchers exploring advanced plasma electrolytic oxidation technical workflows. Apart from specimen processing, it supports process‑parameter screening and coating‑formula validation, delivering practical experimental records for academic papers and new‑process specification establishment.
We specialise in manufacturing lab‑grade micro‑arc oxidation experimental hardware built for demanding material research continuous‑test scenarios. Most importantly, every finished unit completes full‑load waveform calibration and ageing testing before shipment, ensuring stable 10L system performance throughout repeated long‑time experimental cycles.
Furthermore, we provide customisable adjustments for output limits, control‑panel layout and communication protocols to satisfy varied laboratory operational demands. Backed by remote technical guidance and stable spare‑parts supply, we deliver dependable equipment solutions for your material‑surface‑treatment research projects.
A: Products with the same nominal specifications often serve different industries, and they may carry different detailed parameter requirements. These differences directly affect production costs and technical solutions, so final prices will vary accordingly. For this reason, we recommend you contact us directly to receive a precise and tailored quotation.
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A: We focus on custom non-standard industrial power supplies, so we can fully adjust output current and voltage to match your exact needs. The products shown on our website only represent part of our actual range, as we do not list every model online. If you cannot find your desired specifications, please contact us directly. We will work with you to confirm your exact requirements, or we can guide you to select the most suitable parameters based on your industry standards. We will provide complete technical specifications and dimension drawings so you can fully understand the product.