Built for pilot‑scale material labs and pre‑production trial lines, this titanium alloy oxidation test rectifier supplies tunable pulsed DC energy to complete oxidation surface treatment for titanium alloy test work‑pieces.
Titanium Alloy Oxidation Test Rectifier serves pilot‑scale testing facilities that explore surface treatment formulas for titanium alloy components. In particular, aerospace and biomedical R&D teams frequently evaluate oxidation coating performance on medium‑size titanium specimens, and they require stable, adjustable power output to reproduce reliable test outcomes. Even so, ordinary general‑use rectifiers struggle to maintain steady pulse parameters amid shifting electrolyte impedance; as a result, inconsistent power output generates uneven surface layers and invalid comparison data for material developers.
Rated at 100A 120V, this titanium alloy oxidation test rectifier adopts IGBT high‑frequency pulse conversion architecture optimized for titanium oxidation trial workflows. Operators can independently modify pulse frequency, duty cycle and positive‑negative amplitude without swapping hardware modules. After technicians finish power wiring and electrolytic cell assembly, staff adjust operating settings via the built‑in control panel to match different titanium alloy grades and target coating properties. Meanwhile, integrated arc‑suppression and multi‑level safety protection reacts quickly when abnormal sparking appears, and this mechanism protects both test samples and internal circuit hardware during continuous pilot testing cycles.
This titanium alloy oxidation test rectifier leverages mature IGBT high‑frequency conversion technology, keeping system efficiency above 91% under typical pilot‑test load conditions. Unlike large‑volume mass‑production power supplies, this test‑oriented model balances output capacity and parameter flexibility, so R&D teams avoid excessive energy consumption for medium‑scale specimen trials.
Rapid closed‑loop feedback compensates impedance variation as oxidation coatings gradually form on titanium surfaces. Therefore, test work‑pieces show fewer defects such as local burning and uneven film thickness, and comparative testing delivers more trustworthy experimental conclusions. Besides, on‑board memory stores multiple sets of process parameters, and technicians can recall proven oxidation recipes instantly instead of reconfiguring every single test run.
Further optimized for titanium‑alloy oxidation working conditions, internal power circuits effectively reduce output ripple. Accordingly, it generates steady pulsed energy to build uniform, adherent oxidation films on various titanium‑based test components.
| Parameter Category | Specific Item | Specification |
|---|---|---|
| Input Parameters | AC Input Power Supply | Three‑phase AC 380V, ±10% tolerance, 50‑60Hz |
| DC Output Parameters | Output Voltage Range | 0‑120V adjustable |
| DC Output Parameters | Output Current Range | 0‑100A adjustable |
| DC Output Parameters | Rated Total Output Power | 12kW |
| DC Output Parameters | Voltage Regulation Accuracy | ≤1% |
| DC Output Parameters | Current Regulation Accuracy | ≤1% |
| DC Output Parameters | Ripple Factor | ≤1% |
| Control and Automation Functions | Operating Modes | Constant Current, Constant Voltage, adjustable positive‑negative pulse mode |
| Control and Automation Functions | Pulse Settings | Frequency 100‑2500Hz, duty cycle 5‑100% stepless adjustable |
| Control and Automation Functions | Auxiliary Hardware | Local control panel, multi‑group recipe storage, test‑data log recorder |
| Control and Automation Functions | Programming Features | Parameter recall, output limit lock, historical alarm storage |
| Physical and Communication Parameters | Cooling Method | Air‑cooled |
| Physical and Communication Parameters | Protection Class | IP20 for indoor pilot laboratory environment |
| Physical and Communication Parameters | Communication Interface | RS485 Modbus RTU |
| Physical and Communication Parameters | Operating Efficiency | Above 91% |
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 titanium alloy oxidation test rectifier applies to material R&D laboratories, pilot production lines and new‑process validation projects focused on titanium alloy surface modification. For example, it handles oxidation treatment trials for aerospace titanium parts, medical implant blanks and industrial titanium structural samples to assess coating hardness, corrosion resistance and surface morphology.
Moreover, it acts as core test power hardware for material R&D departments working on titanium‑material upgrading. Apart from routine specimen testing, it supports formula screening and comparative performance evaluation, supplying valid runtime records for technical reports and subsequent mass‑production process formulation.
We specialise in developing test‑purpose rectifier hardware tailored for metal surface‑modification research scenarios. Above all, every complete unit undergoes pulse‑stability and full‑load ageing testing before shipment, ensuring reliable 100A 120V output for repeated titanium alloy oxidation test cycles.
In addition, we provide customisable adjustments for pulse‑parameter ranges, control‑panel functions and communication protocols to satisfy varied R&D trial requirements. Supported by remote technical guidance, process debugging assistance and consistent spare‑parts supply, we deliver dependable test rectifier solutions for your material‑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.
A: We assign specialized consultants to support each industry sector. If you need further information, simply reach out to us. After we confirm your request, we will immediately send you the full technical datasheets and product images you need.
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.