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Guangdong Gleemax Aluminium Co. , Ltd.
Product: Industrial aluminium parts customization

Industrial aluminium parts customization

Guangdong Gleemax Aluminium Co. , Ltd.

Description

Thermal Management Solutions

Gleemax specializes in advanced thermal management solutions for high-power and high-reliability applications. With a comprehensive product portfolio covering air cooling, heat pipe, vapor chamber and liquid cooling technologies, we support customers across multiple industries in achieving higher power density, lower operating temperature and longer system lifetime.

Our products include aluminum heat sinks, bonded heat sinks, skiving fin heat sinks, heat pipe heat sinks, vapor chambers, liquid cooling plates, embedded tube cold plates, FSW cold plates, as well as battery pack components, EV aluminum parts and customized industrial aluminum solutions.

Gleemax solutions are widely applied in energy storage systems, EV battery packs and controllers, SVG/SVC systems, photovoltaic inverters, wind power converters, motor housings, semiconductors, servers, consumer electronics and medical equipment. From low-profile air-cooled heat sinks to high-performance liquid cooling systems, we provide optimized thermal designs to meet different power levels, space constraints and operating environments.

Backed by strong thermal design expertise, advanced manufacturing capabilities and strict quality control, Gleemax offers flexible customization and fast engineering support, delivering reliable, efficient and cost-effective thermal management solutions from prototype to mass production.

More products by Guangdong Gleemax Aluminium Co. , Ltd.

Liquid Cooling plates

Liquid Cooling plates

Gleemax offers super quality embedded tube cooling plates and FSW cooling plates and we supply Liquid Cooling solutions to our valued customers. In the fields of power electronic control, conversion, drive, signal transmission, and new energy (such as thermal management for new energy vehicle power batteries, UPS and energy storage system cooling, large server cooling, large photovoltaic inverter cooling, SVG/SVC cooling, etc.), when pursuing high efficiency, low noise, and low-temperature operation under space constraints, heat dissipation becomes the greatest limitation in product development. Liquid cooling technology has become the preferred thermal management solution. GLEEMAX's thermal design and management engineers possess extensive experience in the development of liquid cooling systems and liquid cooling plate manufacturing. We provide comprehensive liquid cooling solutions, offering free thermal design, structural design, water channel connections, and turnkey services for liquid cooling plate/water cooling plate systems.

Embedded Tube Cooling Plates
Liquid Cooling Plate/Water Cooling Plate Heat Exchanger Copper Tube Embedding Process Options are four, Shallow Embedding Tube Process,Deep Embedding Tube Process,Welded Tube Process and Double-Sided Clamped Tube Process.

Core Advantages of FSW Liquid Cooling Plates
Top-Tier Thermal Performance
Zero contact thermal resistance: Once heat is conducted from the heat-generating component to the substrate surface, it is immediately carried away by the coolant flowing through the channels. Unlike embedded-tube designs, heat does not need to bypass physical interfaces between tubes and the base plate.
Enhanced heat transfer with internal fins: Designers can incorporate a large number of fins inside the flow channels, greatly increasing the contact area between the coolant and the metal. At the same time, the fins promote turbulent flow, multiplying heat transfer efficiency.
Extremely High Reliability
High pressure resistance: The monolithic structure allows the plate to easily withstand pressures of 1.0–3.0 MPa or even higher, far exceeding the requirements of typical liquid-cooling systems.
Excellent thermal shock resistance: Under severe and rapid temperature cycling (such as sudden power changes during rapid acceleration or braking in electric vehicles), the integral structure avoids fatigue cracking and leakage caused by mismatched thermal expansion coefficients of different materials (e.g., copper tubes and aluminum base plates), ensuring long-term airtightness.
Excellent Temperature Uniformity
The flow channels can be designed to distribute cooling “on demand” to multiple heat sources, or arranged in parallel for large-area heat sources (such as battery packs), ensuring very small temperature differences across the entire surface and effectively preventing localized hot spots.

Heat Sinks

Heat Sinks

Gleemax ist ein professioneller Hersteller von Kühlkörpern.
Unser Kühlkörper-Produktsortiment umfasst folgende Typen:

Aluminium-Strangpress-Kühlkörper

Verbund-/Bonded-Kühlkörper

Skiving-Fin-Kühlkörper

Heatpipe-Kühlkörper


Aluminium-Strangpress-Kühlkörper

Aluminium-Strangpress-Kühlkörper zeichnen sich durch ein ansprechendes Erscheinungsbild, geringes Gewicht, hervorragende Wärmeleitfähigkeit und gute Energieeffizienz aus. Durch eine Oberflächenbehandlung mittels Oxidation (Eloxierung) werden Korrosions- und Verschleißfestigkeit sowie die optische Qualität deutlich verbessert.
Basierend auf ausgereifter Aluminium-Strangpresstechnologie bietet GLEEMAX ALUMINIUM zuverlässige Kühllösungen für natürliche Konvektionsumgebungen. Durch formbasierte Extrusion lassen sich komplexe Rippenstrukturen realisieren. Diese erhöhen die Wärmeabstrahlfläche erheblich und reduzieren gleichzeitig Bearbeitungszeit und Kosten im Vergleich zu massiven Aluminiumblöcken.

Bonded-Kühlkörper

Die Eigenschaften von Bonded-Kühlkörpern sind dichte Rippen mit sehr kleinen Rippenabständen sowie flexible Höhen- und Breitenoptionen, wodurch sie sich für unterschiedlichste Einbauräume eignen. Die Produkte sind kompakt und leicht und damit ideal für die Wärmeableitung in Hochleistungsgeräten.
Ultradünne Rippen sind ab 0,8 mm, 0,9 mm, 1,1 mm, 1,4 mm, 1,8 mm und 2,4 mm realisierbar.
Der Rippenabstand (Center-to-Center / Fin Pitch) kann 3 mm, 4 mm, 5 mm oder 6 mm betragen.
Rippenhöhen von über 130 mm sind möglich.
Die maximale Kühlkörpergröße kann 900 × 950 mm erreichen.

Skiving-Fin-Kühlkörper

Beim Skiving-Fin-Verfahren werden lange Metallplatten mechanisch bearbeitet und durch wiederholtes Schneiden in flache, abgewinkelte Lamellen geteilt. Dadurch entstehen gleichmäßige Rippenabstände.
Unter luftgekühlten Bedingungen eignet sich diese Struktur besonders für die Wärmeableitung von Hochleistungsbauteilen und erzielt im Vergleich zu eingepressten Rippenkühlkörpern eine 8–15 % höhere Wärmeabfuhrleistung.

Heatpipe-Kühlkörper

Heatpipe-Kühlkörper stellen eine neue Generation thermischer Lösungen dar, die durch die Integration fortschrittlicher Heatpipe-Technologie in konventionelle Kühl- und Wärmeaustauschsysteme entwickelt wurden.
Im Bereich der Leistungselektronik werden Heatpipe-Kühlkörper je nach Herstellungsverfahren wie folgt kategorisiert:

Strangpressprofil + Heatpipe

Skiving-Fin + Heatpipe

Eingesetzte Rippen + Heatpipe

Geklemmte Rippen + Heatpipe

Aluminium- und Kupferrohre + Heatpipe

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