Pure Copper Thermal Engineering Sample Kit

Inspect green-laser LPBF materials, fine features and thermal geometries in physical form. Centered on pure copper, with 316L and AlSi10Mg heat exchanger references.
THERMAL ENGINEERING SAMPLE KIT

See the Materials. Inspect the Details.

ADDIREEN2026.09

THERMAL SAMPLE KIT ENGINEERING REFERENCE

Pure Copper · 316L · AlSi10Mg

What You Can Evaluate

  • Fine Features and Thermal Structures: Inspect thin walls, micro-holes, lattices and TPMS surfaces.
  • Integrated Internal Geometry: Review internal channels, fluid interfaces and powder-removal access.
  • Three Material Options: Compare the material and surface characteristics of pure copper, 316L and AlSi10Mg.

REQUEST A SAMPLE KIT

Enter your business details below. We will review your request and contact you to confirm kit availability, contents and shipping arrangements.

CONFIDENTIAL & SECURE ACCESS

A Physical Reference for Early Engineering Evaluation

CAD images and data sheets describe a part, but they do not show how a printed surface, thin wall, lattice or cleaned channel looks and feels in hand. The sample kit provides a physical reference before a custom build or application-specific test program.

Material and Surface

Material and Surface

Compare the appearance, weight and surface condition of pure copper, 316L stainless steel and AlSi10Mg samples.

Geometry and Detail

Geometry and Detail

Inspect thin walls, micro-holes, lattice connections, TPMS surfaces and transitions between internal structures and the outer shell.

Manufacturing Route

Manufacturing Route

Review printed surfaces, machined interfaces, fluid ports, powder-removal access and other details that affect manufacturing planning.

What Is Included in the Kit?

The kit combines pure-copper feature samples with heat exchanger references in three materials. Each sample includes an engineering card describing its material, dimensions, printing conditions, completed processing and intended evaluation purpose.

Pure Copper Structure Display

Pure Copper Structure Display

Shows thin walls, micro-holes, graded features and as-built surface details. Selected records include a 0.1 mm minimum wall and a 0.3 mm minimum hole.

Pure Copper Lattice Structure Display

Pure Copper Lattice Structure Display

Combines several lattice geometries in one sample, allowing engineers to inspect cell shape, connecting features and differences in geometric accessibility.

Pure Copper Liquid Cold Plate

Pure Copper Liquid Cold Plate

Exposes integrated flow channels, wall transitions, fluid ports, machining interfaces and the intended powder-removal route.

Pure Copper TPMS Heat Exchanger

Pure Copper TPMS Heat Exchanger

Shows continuous TPMS surfaces, separated flow regions and integrated interfaces in a single printed component.

316L Stainless Steel Heat Exchanger

316L Stainless Steel Heat Exchanger

Provides a reference for applications where corrosion resistance, fluid compatibility, temperature and pressure requirements influence material selection.

AlSi10Mg Heat Exchanger

AlSi10Mg Heat Exchanger

Provides a lightweight reference for compact heat exchangers and fluid components where mass, structural integration and manufacturing cost are important.

What Can Engineers Evaluate?

Use the samples to review material condition, feature scale, internal geometry and manufacturing details before defining a custom thermal project.

Fine-Feature Manufacturability

Inspect printed thin walls, small holes, lattice connections and local geometric transitions.

Internal Geometry

Review integrated channels, TPMS surfaces, fluid interfaces and potential powder-removal paths.

Material Selection

Compare the physical characteristics of pure copper, 316L stainless steel and AlSi10Mg before selecting a material for a custom part.

Post-Processing Requirements

Identify which interfaces may require machining, surface treatment, cleaning or application-specific inspection.

Three Materials, Different Engineering Priorities

Material selection should consider thermal conductivity, weight, mechanical requirements, corrosion resistance, fluid compatibility, operating temperature, pressure and manufacturing cost together.

Pure Copper

Pure Copper

For high-conductivity thermal and electrical parts: 0.1 mm minimum wall thickness, up to 99.9% density, 400 W/(m·K) thermal conductivity and 101% IACS electrical conductivity.

Learn More
316L Stainless Steel

316L Stainless Steel

For corrosion-resistant thermal and fluid parts: 0.3 mm minimum wall thickness, Ra 5–9 μm surface roughness and up to 99.9% density.

Learn More
AlSi10Mg

AlSi10Mg

For lightweight thermal structures: 0.3 mm minimum wall thickness and up to 99.5% density.

Learn More

From Sample Geometry to a Custom Thermal Part

The sample kit provides an initial manufacturing reference. A custom project then requires material selection, manufacturability review, process planning, post-processing and inspection requirements to be defined.

Application-Oriented Engineering Review

Application-Oriented Engineering Review

Review geometry, wall thickness, internal-channel accessibility, interfaces and project requirements before manufacturing.

316L LPBF Manufacturing

316L LPBF Manufacturing

Develop manufacturing plans for complex internal structures and integrated fluid components.

Post-Processing Coordination

Post-Processing Coordination

Plan support removal, machining, surface treatment and internal cleaning according to project requirements.

Inspection and Test Planning

Inspection and Test Planning

Define dimensional, density, surface and internal-channel inspection requirements for the manufactured sample.

How to Request a Sample Kit

Submit your business information and evaluation needs. We will review your request, confirm kit availability and shipping details, and contact you about the next step.

01

Submit Your Request

Tell us your application, material interests and what you want to evaluate.

02

Application Review

Our team reviews whether the available samples are relevant to your engineering needs.

03

Confirm the Kit

We confirm sample contents, availability, shipping destination and applicable commercial terms.

04

Evaluate and Discuss

Use the samples and engineering cards as a reference, then discuss a custom part, manufacturing review or test program with our team.

Sample Kit FAQ

Common questions about kit contents, evaluation scope, availability and the next steps after receiving the samples.

Have a Thermal Part to Evaluate?

Request the sample kit for an initial physical reference, or submit your CAD model and operating requirements for a project-specific manufacturing review.

REQUEST A SAMPLE KIT
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