
YL03 CG Flow Battery Mold – Red Copper Electrode, PVC/PP Frame, 80×60mm, 500MPa | Xnergy
SKU: XN-BM-YL03CG
$297.00
YL03 CG Flow Battery Mold — flow battery mold for laboratory research. Assembly height 80 mm, product size 80 × 60 mm, working pressure ≤ 500 MPa. Built with stainless steel, red copper, PVC, and PP. Can be customized and modified as required.
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Name: YL03 CG Flow Battery Mold
Mold Type: Flow Battery Mold
Product Code: XN-BM-YL03CG
Description:
The YL03 CG is a flow battery mold for laboratory research. The mold features an assembly height of 80 mm, a product size of 80 × 60 mm, and is rated for a working pressure of ≤ 500 MPa. The YL03 CG is built with stainless steel, red copper, PVC, and PP. Can be customized and modified as required.
Application:
The YL03 CG is designed for laboratory flow battery testing and electrochemical research. The mold supports flow battery experiments compatible with the construction materials (stainless steel, red copper, PVC, PP).
Specifications:
| Parameter | Value |
|---|---|
| Mold Type | Flow battery mold |
| Assembly Height | 80 mm |
| Product Size | 80 × 60 mm |
| Working Pressure | ≤ 500 MPa |
| Product Materials | Stainless steel, red copper, PVC (polyvinyl chloride), PP (polypropylene) |
| Customization | Available on request |
Values measured by Xnergy. Typical values for reference; not guaranteed unless otherwise specified.
Characteristics:
Multi-material construction
The YL03 CG is constructed from stainless steel, red copper, PVC, and PP. The combination provides the structural and electrochemical properties required for flow battery mold applications.
Compact form factor (80 × 60 mm)
With an 80 × 60 mm footprint and 80 mm assembly height, the YL03 CG features a compact form factor suitable for laboratory benchtop deployment.
Working pressure ≤ 500 MPa
The YL03 CG is rated for a working pressure of ≤ 500 MPa.
Customization available on request
The YL03 CG can be customized and modified as required. Contact Xnergy for configuration options that match your specific research requirements.
Recommended Operating Procedure:
1. Clean all wetted-surface components (mold body, copper electrodes, PVC/PP frame components) with deionized water followed by isopropyl alcohol; dry thoroughly before each use. 2. Assemble the mold according to the included user manual. 3. Connect electrolyte supply hoses to the inlet/outlet ports. 4. Fill with electrolyte appropriate to the construction materials (verify chemical compatibility with copper, PVC, PP, and stainless steel before use). 5. Connect the cell electrodes to the cycling tester or potentiostat. 6. Operate within the rated working pressure of ≤ 500 MPa. 7. After testing, drain the electrolyte safely, rinse all wetted-surface components with deionized water followed by alcohol, dry thoroughly, and store in the original case.
Packaging & Storage:
The YL03 CG ships with all components, including the stainless steel, red copper, PVC, and PP body components, sealing components, and assembly hardware. Store in a dry environment protected from dust and chemical exposure. After each use, drain electrolyte safely, rinse all wetted-surface components with deionized water and alcohol, dry thoroughly, and store in a clean, dry environment.
Safety:
For research and industrial laboratory use only. Always wear appropriate PPE (safety glasses, chemical-resistant gloves, lab coat) when handling electrolytes. Verify chemical compatibility between the chosen electrolyte and the YL03 CG construction materials (stainless steel, red copper, PVC, PP) before use. Inspect components regularly for signs of degradation or chemical attack — replace any compromised components before continuing experiments. Do not exceed the maximum working pressure of 500 MPa. Refer to the included user manual for complete safety and operating instructions.
Note: Specifications listed above are typical and for reference only. Actual performance and chemical compatibility depend on the specific electrolyte, electrode condition, and experimental conditions — consult chemical-compatibility tables and published literature for guidance on the use of stainless steel, red copper, PVC, and PP with target flow battery chemistries. For researchers exploring complete flow battery research workflows, see also Xnergy’s related products: YL01 Laboratory Flow Battery Testing Cell System, YL02 CG Square Flow Battery Mold, YL04 CG In-Situ Heated Liquid Observation Mold, YT06 Liquid Battery Mold, YT05 Dual-Electrolyte Swagelok Battery Mold, YT01 Swagelok Dual-Electrode Mold, YT08 Swagelok-Type Battery Test Cell, KQ01 Air Battery Mold, and GT14 Sealed Electrochemical Battery Test Bottle. Browse the full Battery Mold category for all configurations.




