6061-T6 4-Layer Pouch Cell Cycle Fixture 350kg ATOMFAIR®

Price range: $462.00 through $494.00

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.

6061-T6 aluminum 4-layer pouch cell cycle fixture with 10–12 mm plates, 350–450 kg load range, and 0.1 mm–2.5 cm cell thickness support. Order now.

ATM-PCBT-AL6061-4L 4-LAYER POUCH CELL BATTERY CYCLE TEST FIXTURE

RESEARCH GRADE EQUIPMENT

Product Overview

The ATM-PCBT-AL6061-4L is a professional laboratory testing fixture engineered specifically for the high-accuracy cycle validation of a single pouch cell battery. Precision-machined entirely from premium grade 6061-T6 aluminum alloy across all 4 structural layers for anodized electrical insulation, lightweight handling, and general electrolyte resistance, this specialized hardware utilizes a functional four-layer parallel mechanical stacked plate framework driven by a centralized single nut locking layout. This solid rigid assembly ensures direct, stable mechanical force transmission and uniform pressure distribution across the entire surface of the cell casing, maintaining exceptional parallel alignment control throughout continuous testing loops. Featuring standard working pressure capacities of 350 kg (customizable up to 450 kg) and standard cell thickness support from 0.1 mm to 2.5 cm, both the physical fixture dimensions and four-layer spacing parameters can be fully customized according to non-standard battery dimensions and institutional testing requirements, delivering uncompromised baseline testing data reproducibility.

Technical Specifications

PARAMETER DETAILS
1. Core Device & Hardware Design
Product Model ATM-PCBT-AL6061-4L
Main Material Composition Premium Heavy-Duty 6061-T6 Aluminum Alloy Structure (Current Default Specification)
Structural Stacking Layers 4-layer parallel mechanical stacked plates made from uniform identical 6061 material
Pressure Monitoring System Essential structural pressure sensor component with real-time acquisition cable support
2. Standard Dimensions Array & Maximum Theoretical Load (Custom Sizes Available)
Size 1: Plate Thickness 10mm | 78×105 mm Max Theoretical Load: 350 kg | Max Compatible Cell Length/Width: ≤48×75 mm
Description: Suitable for mini small cells, lightweight 6061 aluminum alloy, 4-layer full rigid alignment layout.
Size 2: Plate Thickness 10mm | 90×107 mm Max Theoretical Load: 350 kg | Max Compatible Cell Length/Width: ≤60×77 mm
Description: Compact size, lightweight design, standard mechanical clamping for pouch cell validation tasks.
Size 3: Plate Thickness 10mm | 100×130 mm Max Theoretical Load: 350 kg | Max Compatible Cell Length/Width: ≤70×100 mm
Description: Suitable for standard medium-sized cells, universally used in laboratories, single nut design for uniform pressure distribution.
Size 4: Plate Thickness 10mm | 120×160 mm Max Theoretical Load: 450 kg | Max Compatible Cell Length/Width: ≤90×130 mm
Description: Standard pressure type, 6061 aluminum alloy four-layer reinforced structure, insulated after anodizing.
Size 5: Plate Thickness 12mm | 120×160 mm Max Theoretical Load: 450 kg | Max Compatible Cell Length/Width: ≤90×130 mm
Description: Reinforced pressure type, wear-resistant thick 12mm plates, stable four-layer structure, easy to operate.
Size 6: Plate Thickness 10mm | 150×180 mm Max Theoretical Load: 450 kg | Max Compatible Cell Length/Width: ≤120×150 mm
Description: Suitable for large-capacity cells, 6061 aluminum alloy four-layer structure, stable load-bearing capacity with insulating performance.
Size 7: Plate Thickness 12mm | 150×180 mm Max Theoretical Load: 450 kg | Max Compatible Cell Length/Width: ≤120×150 mm
Description: High-load version, single nut design for uniform pressure distribution via 12mm plates, lightweight and scratch-proof.
3. Clamping Mechanics & Cell Protection
Clamping Locking Method Heavy-duty single nut locking design to deliver perfectly optimized concentric force
Cell Scratch Protection Anodized surface layer treatment delivers outstanding scratch-proof qualities to protect delicate battery film
Force Distribution Matrix Single-nut rigid mechanical setup ensures highly uniform surface contact force alignment
4. Operational Boundary & Customization Services
Compatible Cell Thickness Range Standard slots support 0.1 mm to 2.5 cm pouch cell thickness (Four-layer vertical spacing can be adjusted further upon request)
Customization Flexibility Fixture size, four-layer plate dimensions, structural spacing, and pressure level can be fully customized according to cell size and test requirements
Standard Working Pressure Limit 350 kg standard capacity (Fully customizable up to 450 kg mechanical pressure profiles for 6061 Aluminum Alloy)
Dimensional Calculation Rule Maximum cell length & width = Fixture length & width – 30 mm
5. Optional Materials & Core Advantages Matrix
Aluminum Alloy (Default 6061-T6) Lightweight; easy to operate; good overall performance; easy to process and weld; insulated after anodizing; general electrolyte resistance; 4-layer full-metal plate stacking driven by uniform single nut layout, cost-effective option for single cell cycle testing (Standard 350kg, max 450kg).
Aluminum Alloy (7075-T6) Lightweight; highest strength among aluminum alloys; good rigidity and precise positioning; insulated after anodizing; scratch-proof; 4-layer parallel alignment mechanical plate framework with built-in pressure sensor; single nut design ensures uniform direct force (Standard 350kg, max 500kg), optional for precision single cell cycle testing scenarios.
Aluminum Alloy (5052-Supplement) Lightweight; outstanding corrosion resistance against electrochemical battery electrolytes; high fatigue strength and excellent sheet formability; insulated after anodizing; 4-layer rigid plate platform combined with single nut locking optimizes uniform surface contact pressure distribution (Standard 300kg, max 400kg) during laboratory baseline validation.
Stainless Steel (304) Cost-effective; resistant to regular electrolyte contact; non-magnetic; high load capacity (Standard 400kg, max 600kg); scratch-proof; 4-layer stacked plate structural design with built-in pressure sensor, suitable for general industrial testing.
Stainless Steel (316) Optimal electrolyte corrosion resistance; suitable for single cell testing; non-magnetic; compatible with high pressure (Standard 400kg, max 600kg); 4-layer plates made from identical 316 stainless steel mechanical structure, optional for harsh environment validation tasks.
PP/HDPE (PP Polypropylene) Ultra-lightweight; cost-effective; fully electrolyte-resistant (no swelling); high toughness; scratch-proof to protect battery packaging film, optional for 4-layer low-pressure single cell testing (Standard 150kg, max 250kg).
Engineering Plastic (PEEK) Ultra-lightweight; optimal electrolyte resistance (no swelling); insulating and non-magnetic; wide temperature resistance range; extremely high precision, suitable for 4-layer engineering plastic single-cell validation.
Carbon Steel Lowest cost; strong load-bearing capacity; 4-layer structural frame improves rigidity, suitable for cost-sensitive 4-layer high-pressure rigid validations (Standard 500kg, max 700kg).
Acrylic (PMMA) Lightweight; high transparency for visual observation; insulating and non-magnetic; easy to process, optional for 4-layer observation-type testing.
6. Compliance & Catalog Options
Manufacturing Rules Processed under strict RoHS Directive compliance and safe laboratory testing benchmarks conditions
Alternative Options Explore our related catalog or custom dimensions. For urgent technical custom requests or bulk inquiries, please contact our support team.

Key Features & Advantages

  • Uniform Single-Nut Pressure Matrix: Engineered mechanical structural layout guarantees balanced parallel load transfer across the targeted single cell position within the physical stacking alignment to prevent stress localization.
  • Rigid Material Defense: Precision-milled entirely from top-grade uniform 6061-T6 aluminum alloy to deliver outstanding structural balance, anodized insulation defense, and reliable resistance against general automated lifecycle testing workloads.
  • Real-Time Physical Monitoring Integrity: Direct integration of professional sensor data lines allows constant external pressure data tracking without introducing electrical noise or signal line distortion during battery cycles.

APPLICATION SCOPE: Premium research labs, single pouch cell validation, cost-sensitive aluminum alloy testing setups, lightweight structural evaluations, and automated industrial laboratory battery testing.
IMPORTANT NOTICE: This product must be monitored carefully to prevent pressure sensor data interference. Keep all digital connection channels properly insulated and operate within dry room testing environments to avoid external signal contamination before long-term thermal validation loops.
TAILORED SOLUTIONS FOR RESEARCH
Contact our engineering team for technical support or official institutional quotations.
EMAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

This fixture requires operation within a dry room environment to prevent signal contamination and ensure pressure sensor accuracy. All digital connection channels must be properly insulated to avoid electrical noise interference during long-term thermal validation loops.

  • Dry Room Requirement: Operate only in dry room conditions to prevent moisture-induced signal interference.
  • Signal Line Insulation: Insulate all pressure sensor data lines to maintain signal integrity.
  • Pressure Uniformity: Ensure uniform pressure distribution by verifying parallel alignment of the four-layer stack.
  • Electrolyte Exposure Limit: Avoid exposure to corrosive electrolytes beyond the general resistance of anodized aluminum.
  • Continuous Monitoring: Monitor pressure readings continuously to detect any drift or sensor malfunction.

This procedure describes the safe installation and initialization of the four-layer fixture for single pouch cell cycle testing. Proper setup ensures uniform pressure distribution and reliable data acquisition.

Required Equipment: Single nut locking mechanism, Pressure sensor data cable, Anodized aluminum fixture plates

  1. Inspect Plates
    Inspect all four fixture plates for cleanliness and absence of debris.
  2. Position Cell
    Place the pouch cell centrally between the plates ensuring correct alignment.
  3. Tighten Nut
    Tighten the single nut gradually to achieve the desired clamping force.
  4. Connect Sensor
    Connect the pressure sensor data cable to the monitoring system.
  5. Insulate Connections
    Verify that all electrical connections are properly insulated from the fixture.
  6. Verify Pressure Distribution
    Confirm uniform pressure distribution by checking parallel alignment visually or with a gauge.
  7. Begin Test
    Begin the cycle test only after verifying stable pressure readings.

What is the maximum pouch cell length and width that can be accommodated by the ATM-PCBT-AL6061-4L 150×180 mm size variant without custom modification?

For the 150×180 mm size variant, the maximum compatible cell length and width is ≤120×150 mm. This is derived from the stated dimensional calculation rule: maximum cell length and width equals fixture length and width minus 30 mm. The 12 mm plate thickness version of this size supports the same cell envelope at a maximum theoretical load of 450 kg.

Can the ATM-PCBT-AL6061-4L fixture be used with pouch cells thicker than 2.5 cm, and what customization is required?

The standard four-layer vertical spacing supports pouch cell thicknesses from 0.1 mm to 2.5 cm. Cells thicker than 2.5 cm require a customization request to adjust the four-layer plate spacing. The fixture size, plate dimensions, structural spacing, and pressure level can all be fully customized according to non-standard battery dimensions and institutional testing requirements.

What are the critical handling and environmental precautions required to prevent pressure sensor data interference during long-term cycling with the ATM-PCBT-AL6061-4L?

All digital connection channels must be properly insulated, and the fixture must be operated within a dry room testing environment to avoid external signal contamination before long-term thermal validation loops. The pressure sensor data lines are integrated for constant external pressure tracking, but careful monitoring is required to prevent sensor data interference. These precautions are essential to maintain signal integrity and data reproducibility during automated lifecycle testing.

The ATM-PCBT-AL6061-4L is a four-layer pouch cell fixture machined from 6061-T6 aluminum, offering uniform pressure via single-nut clamping and real-time pressure monitoring, but requires dry room operation and careful insulation to avoid signal interference.

Positive

  • Uniform single-nut pressure distribution: The single-nut locking design delivers balanced, concentric force across the cell surface, preventing stress localization and ensuring reproducible test results.
  • Anodized 6061-T6 aluminum construction: Lightweight, scratch-proof, and electrically insulated after anodizing, providing durable protection for delicate pouch cell films during long cycling tests.

Trade-offs

  • Requires dry room environment: To prevent external signal contamination and pressure sensor data interference, the fixture must be operated in a dry room with properly insulated digital connections.
  • General electrolyte resistance only: The 6061-T6 alloy offers general electrolyte resistance, which may be insufficient for aggressive or harsh electrolyte environments; 316 stainless steel is recommended for optimal corrosion resistance.

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).

Size

10x78x105 mm, 10x90x107 mm, 10x100x130 mm, 10x120x160 mm, 12x120x160 mm, 10x150x180 mm, 12x150x180 mm