Products Battery Testing & Electrochemical Equipment In-situ Raman Test Cell XRD Testing Solid State Battery Device for Electrolyte Pellet Analysis
XRD Testing Solid State Battery Device for Electrolyte Pellet Analysis

In-situ Raman Test Cell

XRD Testing Solid State Battery Device for Electrolyte Pellet Analysis

Item Number : BE10

Price varies based on specs and customizations


Battery Inner Diameter
16 mm
Compatible Sample Thickness
0-6 mm
Fixture Diameter
50 mm
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Product Overview

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This XRD testing solid-state battery device is a dedicated fixture and mounting solution for examining solid-state battery components during laboratory diffraction workflows. It accommodates battery samples with an inner diameter of 16 mm and a thickness range of 0-6 mm. The configuration is intended to help researchers position and test battery-related specimens at a suitable height within an X-ray diffraction setup.

The equipment is particularly relevant to solid-state battery research, electrolyte pellet evaluation, and advanced materials characterization. It can be used where a separately pressed 16 mm electrolyte pellet must be prepared before testing. Because XRD instruments and test platforms can differ in base dimensions and working height, the mounting arrangement can be matched to the customer’s existing equipment after dimensional information is confirmed.

The design focuses on practical compatibility rather than unnecessary complexity. The fixture geometry, sample accommodation, and platform-matching process provide a clear basis for integrating the unit into a laboratory workflow. Customers may provide a photograph and required measurements for a suitable base configuration, or use their own height-adjustable platform to reach the required testing position.

Key Features

  • Solid-State Battery XRD Testing: Configured for X-ray diffraction examination of solid-state battery-related specimens, supporting laboratory research into battery materials and electrolyte structures.

  • 16 mm Sample Compatibility: The internal battery diameter is 16 mm, providing a defined dimensional reference for preparing and positioning compatible battery samples and electrolyte specimens.

  • 0-6 mm Thickness Range: The unit accommodates sample thicknesses from 0 to 6 mm, allowing users to work with specimens of different thicknesses within the stated operating range.

  • Dedicated Electrolyte Pellet Preparation: A separate mold is required for pressing the 16 mm electrolyte pellet. This separation allows pellet preparation to be handled as an independent step before the XRD test.

  • 50 mm Fixture Diameter: The fixture diameter is 50 mm, establishing the principal external dimensional reference for installation and alignment within a suitable testing platform.

  • Defined Working Geometry: The distance from the bottom to the center optical slot is 24 mm, while the total height is 30 mm. These dimensions support clear planning for sample height and instrument clearance.

  • Adaptable Base Configuration: Different equipment models may require different bases. Customers can contact the technical team with a photograph of the testing platform and the relevant measurements so the mounting arrangement can be assessed.

  • Height-Adjustment Flexibility: Users who prefer to manage installation independently may purchase a height-adjustable platform and raise the unit to the required test height, subject to their instrument configuration.

Applications

Application Description Key Benefit
Solid-State Battery Research Position and examine compatible solid-state battery specimens during XRD testing, using the defined 16 mm internal diameter and 0-6 mm thickness range. Establishes a practical sample interface for battery material characterization.
Electrolyte Pellet Evaluation Press a separate 16 mm electrolyte pellet before transferring the prepared specimen to the testing fixture for diffraction analysis. Separates pellet preparation from measurement and clarifies the laboratory workflow.
Battery Materials Development Support iterative evaluation of electrolyte and related solid-state battery materials during research and development programs. Provides repeatable dimensional references for comparing compatible specimens.
XRD Platform Integration Match the fixture with different instrument bases or use a customer-supplied height-adjustable platform to achieve the required testing height. Offers a flexible route for adapting the unit to existing laboratory equipment.
Advanced Materials Characterization Use the fixture as part of a materials research setup where controlled positioning and sample dimensions are important for XRD measurements. Helps laboratories plan installation around known fixture and optical-slot dimensions.

Technical Specifications

Parameter Specification
Product Item Number BE10
Intended test application XRD testing of solid-state battery-related samples
Battery inner diameter 16 mm
Compatible sample thickness 0-6 mm
Fixture diameter 50 mm
Height from bottom to center optical slot 24 mm
Total height 30 mm
Electrolyte pellet requirement A separate mold is required to press the 16 mm electrolyte pellet
Base configuration Different equipment models require different base configurations; contact technical support for matching assistance
Customer information for base matching Provide a photograph of the testing platform and measure the dimensions required for installation
Alternative installation method The customer may purchase a height-adjustable platform and raise the unit to the required testing height

The dimensional information above should be reviewed before ordering and installation. The 16 mm internal diameter defines the battery sample interface, while the 0-6 mm range defines the stated compatible thickness. The 50 mm fixture diameter, 24 mm optical-slot center height, and 30 mm total height should be compared with the available clearance and working position of the customer’s XRD instrument or test platform.

The separate mold requirement is important for process planning. The testing fixture is not described as the mold used to press the 16 mm electrolyte pellet. Users should therefore arrange a suitable independent pressing mold for pellet preparation, then confirm that the prepared specimen falls within the stated dimensional range before testing. This approach makes the preparation and measurement stages easier to define within a battery research workflow.

Base compatibility should also be confirmed before final installation. XRD instruments, sample stages, and laboratory platforms may use different mounting arrangements and working heights. The available reference specifies that customers can contact technical support when a different equipment-model base is required. A photograph of the existing test platform, together with measured installation dimensions, provides the information needed to assess the appropriate configuration.

For laboratories managing their own integration, a height-adjustable platform is another installation option. The platform can be raised to the required testing height, allowing the fixture to be positioned relative to the XRD measurement area. The final height should be checked against the instrument geometry, optical-slot position, available clearance, and the sample location required by the customer’s testing method.

This configuration-led approach is useful when a research group already owns an XRD system but needs a dedicated interface for solid-state battery samples. Instead of treating every installation as identical, the mounting solution can be reviewed against the actual platform. This is especially relevant for laboratories operating multiple instrument types or developing custom sample environments for advanced battery materials.

Before placing an order, users should confirm four points: the 16 mm battery inner diameter, the expected specimen thickness within 0-6 mm, the available space for the 50 mm fixture, and the relationship between the 24 mm optical-slot center height and the instrument’s measurement position. Confirming these values in advance helps reduce installation uncertainty and supports a smoother transition from pellet preparation to XRD testing.

Why Choose This Product

  • Purpose-Matched Battery Research Interface: The equipment is configured around solid-state battery XRD testing rather than general-purpose sample handling, giving researchers clear dimensional references for compatible specimens.

  • Defined Geometry for Installation Planning: The 16 mm internal diameter, 50 mm fixture diameter, 24 mm optical-slot center height, and 30 mm total height provide practical information for checking clearance and test-platform compatibility.

  • Flexible Integration Support: When the existing equipment requires a different base, customers can submit platform photographs and measurements for configuration review instead of relying on assumptions about instrument dimensions.

  • Clear Preparation Workflow: The separate mold requirement for pressing a 16 mm electrolyte pellet makes the relationship between specimen preparation and XRD measurement explicit, helping laboratories organize their process effectively.

  • Adaptable Height Strategy: Customers can request a suitable base arrangement or use a height-adjustable platform to reach the required testing position, supporting different laboratory layouts and equipment configurations.

Contact us to confirm dimensional compatibility, review your XRD platform, and request a quotation or customized mounting solution for your solid-state battery research workflow.

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Product Datasheet

XRD Testing Solid State Battery Device for Electrolyte Pellet Analysis

Category Catalog

In-Situ Raman Test Cell


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