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pvd aluminum pigments

Aluminiumpigmente mit Chromeffekt Aluminum Pigments

METALURE® and SILVERSHINE P1000 are ultra-brilliant aluminum pigment dispersions creating the highest level of reflectance in solvent-based paints, inks and coatings. In a special physical vapor deposition (PVD) process, extremely thin aluminum pigments, which are free of lubricants, are manufactured. These platelets

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Aluminum Pigments with Chrome-Like Effect

In a special physical vapor deposition (PVD) process, extremely thin aluminum pigments, which are free of lubricants, are manufactured. These platelets have a uni form, smooth surface exhibiting perfect non-leafing properties that result in a mirror-like effect. This effect cannot be achieved by con-ventional metallic effect pigments.

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A NEW GENERATION OF ALUMINIUM-BASED PIGMENTS

properties. Standard aluminum pigments are produced as “cornflake” and “silver-dollar” types depending on the quality and shape of the untreated granules and on the milling conditions. One special type is the PVD aluminum, also known as VMP (Vacuum Metallized Pigment, please refer to Fig. 2),.

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ECKART at ACS 2018: to Introduce Pearlescent Pigments, PVD

The three new METALURE® Quantum products 210100 MA, 210160 MA, and METALURE® Quantum 510105 BG provide a complement to the already established METALURE® range, a line of extremely fine aluminum PVD pigments with unrivaled chrome gloss

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8-PVD Aluminum Pigment_图文_百度文库

PVD Aluminum Pigments (PVDA Pigments): The Manufacturing Process In a discontinuous process, a release coating (typical resin systems used are acrylics, cellulose, vinyl resins, etc.) is applied to at least one side of a carrier sheet by a coating or printing technique (preferably rotogravure or flexo).

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Vacuum Metallized Pigments Update ECKART Effect Pigments

Vacuum Metallized Pigments are ultra-brilliant aluminum pigment dispersions creating the highest level of reflectance in solvent-based paints, inks and coatings. A special physical vapor deposition (PVD) process produces extremely thin aluminum pigments that are free of lubricants.

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SpectraFlair Pigments VIAVI Solutions

pigment manufactured by the deposition of ultra-thin layers using physical vacuum deposition (PVD). SpectraFlair pigments are opaque and highly specular (mirror-like) due to a center aluminum core layer. Changing the surface texture of the pigment’s flake structure produces different effects: from neutral silver to a multi-color rainbow.

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Dark metal effect pigments produced by means of a physical

The aluminum sample produced in Example 3 has a higher flop index and in Example 4a lower flop index as compared with the pure PVD aluminum pigment (Comparative Example 5). The major difference between the optical impression of the effect pigments of the invention (examples of the invention) and the effect pigments of the comparative example is

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ChromaFlair Light-Interference Pigments

ultra-thin layers using physical vapor deposition (PVD), is ground into micron-sized flakes. Unlike ordinary pearlescent pigments, ChromaFlair flakes include a center aluminum core layer that is opaque and highly specular (mirror-like). The aluminum layer is surrounded by a glass-like layer.

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Aluminiumpigmente mit Chromeffekt Aluminum

METALURE® and SILVERSHINE P1000 are ultra-brilliant aluminum pigment dispersions creating the highest level of reflectance in solvent-based paints, inks and coatings. In a special physical vapor deposition (PVD) process, extremely thin aluminum pigments, which are free of lubricants, are manufactured. These platelets

More

Aluminum Pigments with Chrome-Like Effect

In a special physical vapor deposition (PVD) process, extremely thin aluminum pigments, which are free of lubricants, are manufactured. These platelets have a uni form, smooth surface exhibiting perfect non-leafing properties that result in a mirror-like effect. This effect cannot be achieved by con-ventional metallic effect pigments.

More

Vacuum Metallized Pigments Update ECKART Effect Pigments

Vacuum Metallized Pigments are ultra-brilliant aluminum pigment dispersions creating the highest level of reflectance in solvent-based paints, inks and coatings. A special physical vapor deposition (PVD) process produces extremely thin aluminum pigments that are free of lubricants.

More

A NEW GENERATION OF ALUMINIUM-BASED PIGMENTS

properties. Standard aluminum pigments are produced as “cornflake” and “silver-dollar” types depending on the quality and shape of the untreated granules and on the milling conditions. One special type is the PVD aluminum, also known as VMP (Vacuum Metallized Pigment, please refer to Fig. 2),.

More

ECKART at ACS 2018: to Introduce Pearlescent Pigments, PVD

The three new METALURE® Quantum products 210100 MA, 210160 MA, and METALURE® Quantum 510105 BG provide a complement to the already established METALURE® range, a line of extremely fine aluminum PVD pigments with unrivaled chrome gloss

More

Dark metal effect pigments produced by means of a physical

The aluminum sample produced in Example 3 has a higher flop index and in Example 4a lower flop index as compared with the pure PVD aluminum pigment (Comparative Example 5). The major difference between the optical impression of the effect pigments of the invention (examples of the invention) and the effect pigments of the comparative example is

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Physical Vapor Deposition (PVD) as a Method to produce

CURRENT STATUS: Aluminum has been demonstrated as a PVD produced material that has high extinction cross-section/unit mass characteristics on the order of 10 m2/gram. Despite its high extinction, aluminum PVD flakes are too pyrophoric and too low in packing density to be practical for dissemination in

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Effect pigments—past, present and future ScienceDirect

Nov 01, 2005· Standard aluminum pigments are produced as “cornflake” and “silverdollar” types depending on the quality and shape of the starting granules and on the milling conditions. A special type is the PVD aluminum, also known as VMP (Vacuum Metallized Pigment), produced by a vacuum process where the aluminum is deposited on a web.

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ChromaFlair Light-Interference Pigments

ultra-thin layers using physical vapor deposition (PVD), is ground into micron-sized flakes. Unlike ordinary pearlescent pigments, ChromaFlair flakes include a center aluminum core layer that is opaque and highly specular (mirror-like). The aluminum layer is surrounded by a glass-like layer.

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Vacuum Deposition an overview ScienceDirect Topics

Vacuum deposition of a thin (<1 µm) layer of aluminum onto plastic films transformed the concept of “barrier plastic films” more than any other technology since 1980. The process (Figure 27.2) requires a deep vacuum (about one-millionth of an atmosphere), provided by a series of strong vacuum pumps.At these very low pressures, the vaporizing temperature (i.e. “boiling point”) of

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ECKART ALTANA AG

The product range includes aluminium, special pearlescent and PVD pigments, metallic pigment coatings, gold-bronze, iron flakes, stainless steel flakes, and zinc pigments as well as press-ready metallic printing inks. ECKART pigments are widely used, for example, in the automotive industry to achieve metallic effects, but also for other

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Cosmetic Composition For Obtaining A Cosmetic Coating With

The invention relates to a cosmetic composition comprising a liquid phase and a PVD aluminum pigment, wherein the cosmetic composition contains a PVD aluminum pigment at a pigmentation level of from 0.05 to 5.0% by weight, based on the total weight of the cosmetic composition, and at

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Toyal Europe

As a recognized leader in the manufacturing of advanced aluminium effect pigment and atomized powder, Toyal Group are constantly pursuing the development of new products to respond to market needs and bring innovative solutions to the customers.

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Our Second S.P. Morell and Company

Mirror like pigments are obtained in the physical vapor deposition process. A release coating is applied to one side of a polyester or polyolefin carrier film via a coating or printing technique. The coated film is passed through a roller where a very thin aluminum layer (30 50 nm) is deposited on the release coat by way of physical vapor

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