PVD Beschichtungen | Materialien, Technologie, Beratung | Avaluxe Europe

Alles für optimale und innovative PVD-Beschichtungen: Materialien wie Sputter Targets, ARC Kathoden, Refraktär- & Sondermetalle und PVD Zubehör. Technologie und Komponenten Magnetrons, Massflow Controller, Stromversorgungen und Avaluxe Dienstleistungen: Reinigung von PVD Anlagen, Recycling, Bonding

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The right substrate selection for surface engineering

Surface engineering is the process of altering the properties of the surface and the region near the surface in a desirable way. This can be achieved through overlay processes or surface modification processes. Overlay processes entail adding a material

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Cylindrical cathodes for PVD coating

In the context of physical vapor deposition (PVD), "cylindrical cathode PVD" typically refers to a configuration used for the deposition of thin films onto a substrate for a variety of applications, including optical coatings, decorative finishes, and pro

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Tuning the Surface Property of Textile Materials by using roll-to-roll Plasma based systems

Textile materials possess desirable inherent qualities, such as flexibility, low specific weight, strength, a high surface-to-volume ratio, a pleasant "touch and feel" effect, and softness. Because of this, they readily adopt additional qualities, such as

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PVD based nanocomposite coatings for corrosion protection

Metals, such as steel and aluminium, are crucial construction materials we encounter daily. However, these versatile materials are susceptible to corrosion, leading to safety hazards, aesthetic issues, and financial losses. Therefore, a significant aspect

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Reactive PVD-processes: Control is everything

Author: Dr. Joseph Brindley GENCOA and Dr. Anas Ghailane (AVALUXE) Reactive Magnetron SputteringReactive magnetron sputtering is a well-established PVD technique for depositing thin compound films on substrates. Common examples include: · Flat-pan

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Physical vapour deposited coatings for medical devices

Sputter deposition is a versatile low-pressure process where ions bombard a material and liberate atoms, depositing on a substrate to form a coating. The process offers excellent control over coating thickness and energy of arriving atoms and can use targ

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Various PVD technologies for decorative coatings

Decorative coatings produced through Physical Vapor Deposition (PVD) are renowned for enhancing the appearance and functionality of various products and surfaces. PVD coatings involve the deposition of thin films of materials such as metals alloys,

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PVD made High Entropy Alloys

High entropy alloys (HEAs) have emerged as promising candidates for high-temperature applications due to their ability to withstand high temperatures with high thermal stability, superior oxidation and corrosion resistance, thermal fatigue, and creep resi

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Salt spray showdown -PVD coatings- corrosion resistance in decorative applications

Salt spray tests include exposing coated materials to a continuous, fine saltwater mist in an enclosed, controlled environment. To hasten the corrosion process, the temperature and humidity inside the chamber are kept at predetermined levels. The saltwate

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PVD vs Electroplating

The technique of electroplating involves plating different metals onto a metal or plastic component. This enhances the part's functioning while also improving its look. Electroplating is frequently used to coat cheaper metals or polymers with more costly

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Hochentropische Legierungen: PVD spielt eine wichtige Rolle

In den letzten fünf Jahrtausenden haben Legierungen den Fortschritt der Gesellschaft unterstützt und geprägt. Eine bemerkenswerte Entwicklung von nativen Metallen und nativen Legierungen bis hin zur zufälligen Entdeckung der arsenhaltigen Bronzen. Zahlrei

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Iphone - HiPhones - HiPIMS 4 smartphones

Until recently, the mobile phone’s external coating primarily consists of a combination of anodized aluminum, stainless steel, and glass, depending on the specific model and version. Here's a breakdown of the coatings used in recent iPhone models: Picture

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How to make life easier for a PVD operator: Why and how to monitor gas in vacuum

Monitoring gas in a vacuum chamber is important for several reasons: Identifying problems early before they affect the process and substrates. Predicting if a problem is likely to occur. Scheduling maintenance just in time. Analyzing the vacuum en

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Pumping the efficiency and quality through pulsed-cathodic arc technology

Continuous operation cathodic vacuum arcs (DC-CVA) are widely employed in PVD coating industries. In general, pulsed cathodic vacuum arcs (pulsed-CVA) have a greater current and plasma density as well as a more stable and repeatable plasma density than th

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High entropy alloys: PVD has a major role to play

Over the last five millennia, alloys have aided and shaped the advancement of society. A remarkable progression from native metals and native alloys to the inadvertent discovery of arsenical bronzes. Numerous combinations of alloying elements, typically b

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