Ni-Coated CR2032 Coin Cell Cases 5–12μm Set ATOMFAIR®

$160.00

Institutional Procurement & Supply Compliance: As a verified US supplier, Atomfair accepts formal institutional Purchase Orders (POs), contract billing schedules, and custom procurement loops for university and national laboratories, and corporate R&D departments globally.

ASTM A240 CR2032 Ni-coated coin cell case sets with 5–12 μm coating, 316L/304 SS, 15.8×0.5 mm included spacers and 15.4×1.1 mm springs. Order now.

SKU: AFMSKHRA854
Category:
Tags:
Brands:

ATOMFAIR NI-COATED COIN CELL CASES CR2032 RESEARCH GRADE

RESEARCH GRADE MATERIAL

Product Overview

ATOMFAIR® Ni-Coated Coin Cell Cases CR2032 Research Grade is a coin cell case set for battery research and laboratory procurement. Key specifications include Product Name: ATOMFAIR® Ni-Coated Coin Cell Case Sets; Case Material & Coating: Nickel-Coated (5–12 μm, Excellent Weldability, Atmospheric Corrosion Resistant) on 316L/304 Stainless Steel Substrate; Included Components: Ni-Coated Positive Case + Ni-Coated Negative Case + 15.8 × 0.5 mm Spacers + 15.4 × 1.1 mm Springs; Packaging Specification: 1000 Sets/Pack; Customization Options: For other sizes, models, and materials, please email to request customization.. It is organized for Lab Accessories & Consumables workflows.

ATOMFAIR® Ni-Coated Coin Cell Case Sets

ITEM DESCRIPTION
Product Name ATOMFAIR® Ni-Coated Coin Cell Case Sets
Case Material & Coating Nickel-Coated (5–12 μm, Excellent Weldability, Atmospheric Corrosion Resistant) on 316L/304 Stainless Steel Substrate
Included Components Ni-Coated Positive Case + Ni-Coated Negative Case + 15.8 × 0.5 mm Spacers + 15.4 × 1.1 mm Springs
Packaging Specification 1000 Sets/Pack
Intended Use Battery structures requiring tab welding, pilot-scale batch production, routine electrochemical testing, and wear-resistant battery R&D
Customization Options For other sizes, models, and materials, please email to request customization.

Research-Grade Core Quality Advantages

  • Uniform High-Precision Tolerance Control: All component dimensions strictly controlled within ±0.02 mm, ensuring perfect matching across different batches and components, completely eliminating assembly gaps and uneven pressure issues caused by dimensional errors.
  • Full Material Gradient Coverage: Provides a complete material selection from basic to high-end, allowing flexible selection based on corrosivity, voltage range, and testing precision requirements of your experimental system, avoiding experimental failure due to mismatched consumables.
  • Rigorous Electrochemical Compatibility Verification: All materials have undergone constant potential polarization, cyclic voltammetry, and other electrochemical tests to ensure no side reactions within a -0.5 V to 5.0 V voltage range, guaranteeing no interference with battery performance test results.
  • Standardized Batch Production: Fully automated production and quality control ensures highly consistent product performance within and across batches, effectively reducing experimental systematic errors.

APPLICATION SCOPE: Precision assembly and standardized testing for battery structures requiring tab welding, pilot-scale batch production, routine electrochemical testing, and wear-resistant battery R&D requiring high conductivity.
PACKAGING: 1000 sets/pack. 100% dimensional inspection, coating thickness verification, sealing performance testing, and appearance inspection before shipment, ensuring oil-free, burr-free, and impurity-free conditions. Can be used directly for battery assembly inside gloveboxes.
IMPORTANT NOTICE: This series is a one-stop assembly solution for coin cells dedicated to electrochemical research. Default accompanying accessories are made of 304 stainless steel. If other materials or special dimensions are required, please email for customization.



This series is a one-stop assembly solution for coin cells dedicated to electrochemical research, comprehensively covering the three mainstream models CR2032, CR2025, and CR2016. It provides a full material and specification selection of three core components—positive/negative electrode cases, conductive spacers, and elastic springs. Independent purchase of single components is supported, and pre-matched complete assembly kits are also available. Fully compatible with all cutting-edge research systems, including conventional lithium-ion batteries, sodium-ion batteries, all-solid-state batteries, lithium-air batteries, and high-voltage batteries, it provides standardized hardware support for the accuracy and reproducibility of experimental data.
Important Note: Default accompanying accessories are made of 304 stainless steel. For accessories made of other materials, please email for customization.

I. Positive/Negative Electrode Cases

Type Classification Material / Special Structure Compatible Models Core Performance Parameters Optimal Application Scenarios
Basic Universal 304 Stainless Steel CR2032/CR2025/CR2016 Dimensional Tolerance ±0.02 mm
Sealing Pressure ≥5 MPa
Operating Temp. -40°C to 120°C
Conventional Li-ion/Na-ion batteries, aqueous battery basic testing, batch prototype preparation
Basic Universal 316L Stainless Steel CR2032/CR2025/CR2016 Dimensional Tolerance ±0.02 mm
Sealing Pressure ≥6 MPa
Operating Temp. -40°C to 150°C
Sulfide solid-state batteries, high-voltage batteries (>4.5 V), long-term cycling tests, highly corrosive systems
High-Performance Coated Aluminum Coated CR2032/CR2025/CR2016 Coating Thickness 5–10 μm
Adhesion ≥5B Grade
Volume Resistivity ≤3×10⁻⁸ Ω·m
Lightweight batteries, low contact resistance precision testing, systems sensitive to metal ion contamination
High-Performance Coated Titanium Coated CR2032/CR2025/CR2016 Coating Thickness 3–8 μm
Excellent Biocompatibility
Resistant to Strong Acid/Base Corrosion
Bio-batteries, aqueous zinc batteries, strongly acidic/alkaline electrolyte systems
High-Performance Coated Nickel Coated CR2032/CR2025/CR2016 Coating Thickness 5–12 μm
Excellent Weldability
Atmospheric Corrosion Resistant
Battery structures requiring tab welding, pilot-scale batch production, routine electrochemical testing
High-Performance Coated Gold Coated CR2032/CR2025/CR2016 Coating Thickness 0.5–2 μm
Contact Resistance ≤1 mΩ
Superior Chemical Stability
Ultra-precision electrochemical testing, EIS testing, micro-current testing, in-situ characterization
Specialized Research Li-Air Mesh Type CR2032/CR2025/CR2016 Pore Size 0.2–0.5 μm
Waterproof Rating IP67
Uniform Gas Distribution Design
Lithium-air batteries, lithium-oxygen batteries, gas-involved reaction battery systems
Specialized Research polyimide Window Type CR2032/CR2025/CR2016 Window Thickness 25–50 μm
Optical Transmittance ≥85%
Electrolyte Corrosion Resistant
In-situ optical characterization, in-situ Raman/IR spectroscopy, in-situ microscopy observation

II. Conductive Spacers

Default Size: Φ15.8 × 0.5 mm, compatible with the internal dimensions of all CR20 series cell cases. Other thicknesses and special sizes are customizable; please email for customization.
Material Available Size (Diameter × Thickness) Core Performance Parameters Optimal Application Scenarios
99.5% Industrial Pure Aluminum Φ15.8 × 0.5 mm (Default) Dimensional Tolerance ±0.02 mm
Volume Resistivity 2.7×10⁻⁸ Ω·m
No Electrochemical Side Reactions
Precision experiments requiring high contact resistance, conventional Li-ion/Na-ion batteries
304 Stainless Steel Φ15.8 × 0.5 mm (Default) Dimensional Tolerance ±0.02 mm
High Mechanical Strength
General Corrosion Resistant
Most routine testing scenarios, aqueous batteries, low-to-medium voltage systems
316L Stainless Steel Φ15.8 × 0.5 mm (Default) Dimensional Tolerance ±0.02 mm
Sulfide/Chloride Ion Corrosion Resistant
High Temperature Resistant
Sulfide solid-state batteries, high-voltage batteries, highly corrosive systems, long-term cycling tests

III. Elastic Springs

Default Size: φ15.4 × 0.3 mm, compatible with the internal dimensions of all CR20 series cell cases. Other heights and special sizes are customizable; please email for customization.
Spring Type Available Materials Available Size (Diameter × Free Height) Core Performance Parameters Optimal Application Scenarios
Wave Spring (Belleville) Al Coated / 304 SS / 316L SS / Au Coated SS φ15.4 × 1.1 mm (Default) Spring Force Range 5 N–30 N
Large Contact Area
Small Footprint
Fatigue Life ≥10,000 cycles
Most routine testing, thin electrodes, low-loading batteries; universal preferred choice
Conical Spring Al Coated / 304 SS / 316L SS / Au Coated SS φ15.4 × 1.1 mm (Default) Spring Force Range 10 N–50 N
Good Self-Centering
Strong Anti-Buckling
Fatigue Life ≥10,000 cycles
Thick electrodes, high-loading batteries, vibration environment testing, systems requiring precise pressure control

IV. Complete Assembly Kit Specifications

Kit Type Included Components Corresponding Battery Model Configurable Options
Standard Assembly Kit Positive Case + Negative Case + Spacer + Spring CR2032/CR2025/CR2016 All materials freely combinable
Spacer thickness customizable
Spring height customizable
Li-Air Dedicated Kit Mesh Positive Case + Negative Case + Waterproof Breathable Membrane + Spacer + Spring CR2032/CR2025/CR2016 304/316L SS material optional
Spacer thickness customizable
Spring height customizable
In-Situ Characterization Kit polyimide Window Cell Case + Gold Coated Spacer + Gold Coated Spring CR2032/CR2025/CR2016 Window thickness optional
Spacer thickness customizable
Spring height customizable

International Quality Standards

  • Stainless steel materials comply with ASTM A240 international standard.
  • Pure aluminum materials comply with ASTM B209 international standard.
  • All coating thicknesses are uniform, with adhesion meeting ASTM B571 standard.
  • 100% dimensional inspection, sealing performance testing, and appearance inspection before shipment.
  • Oil-free, burr-free, and impurity-free; ready for direct use in glovebox battery assembly.
TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official institutional quotations.
EMAIL: INQUIRY@ATOMFAIR.COM
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

The nickel coating thickness is 5–12 μm on a 316L/304 stainless steel substrate. All component dimensions are controlled within ±0.02 mm tolerance with oil-free and burr-free surfaces.

  • Dimensional Tolerance: All component dimensions are controlled within ±0.02 mm to ensure proper assembly and uniform pressure distribution.
  • Coating and Corrosion Resistance: The nickel coating provides excellent weldability and atmospheric corrosion resistance for battery tab welding applications.
  • Electrochemical Compatibility: The materials are verified to cause no side reactions within a -0.5 V to 5.0 V voltage range for reliable electrochemical testing.

What voltage range is the ATOMFAIR Ni-Coated CR2032 coin cell case compatible with, and can it be used for high-voltage battery testing?

The nickel-coated cases have been electrochemically verified to operate without side reactions within a voltage range of -0.5 V to 5.0 V, making them suitable for high-voltage battery testing up to 5.0 V. This compatibility is confirmed through constant potential polarization and cyclic voltammetry tests as stated in the product's key features.

What materials are the spacers and springs in the ATOMFAIR Ni-Coated CR2032 coin cell case set, and can they be customized?

The set includes 15.8 × 0.5 mm spacers and 15.4 × 1.1 mm springs, which are default made of 304 stainless steel per the universal series content. The cases are nickel-coated on 316L/304 stainless steel. For applications requiring different spacer or spring materials (e.g., 316L, aluminum, or gold-coated), customization is available by emailing the manufacturer.

Do the ATOMFAIR Ni-Coated CR2032 coin cell cases require any preparation before use in a glovebox?

No, the cases are shipped oil-free, burr-free, and impurity-free after 100% dimensional inspection, coating thickness verification, and sealing performance testing. They are ready for direct use in glovebox battery assembly without any additional cleaning or pretreatment.

ATOMFAIR® Ni-coated CR2032 coin cell case sets offer robust weldability and corrosion resistance for pilot-scale battery assembly, but are supplied in bulk 1000-set packs and default to 304 SS spacers, which may require customization for specialized chemistries.

Positive

  • Excellent weldability and corrosion resistance: Nickel coating (5–12 μm) provides excellent weldability for tab welding and atmospheric corrosion resistance, making these cases well-suited for pilot-scale batch production and routine electrochemical testing.
  • Precise dimensional and electrochemical control: All component dimensions are controlled within ±0.02 mm for consistent assembly, and the materials have been verified to produce no side reactions within -0.5 V to 5.0 V, ensuring reliable battery testing data.

Trade-offs

  • Large minimum packaging quantity: This product is supplied exclusively in 1000-set packs, which may exceed the volume needed for small-scale or exploratory research and requires appropriate storage space.
  • Default 304 SS spacers and springs: The included spacers and springs are made of 304 stainless steel, which may not be optimal for all chemistries; alternative materials or dimensions require custom ordering via email, adding lead time.

Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.

To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.

Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).