Richard Mille presents a new collection dubbed the RM 07-01 Coloured Ceramics series and it is inspired by the Memphis Design architecture movement and Italian art form the 80s. The new capsule is full of bright tones with a spotlight on three variations of summer tones.
This includes blush pink, powder blue, and lavender ceramics. It comes together to form a range of contrasting looks, shapes, and materials for a playful collection that meets the brand's standard "trademarks of performance and innovation.: The watch's hours, minutes, and rot geometry, which is adjustable rely on skeletonized automatic movements inside of the body. It also has micro-blasted grade 5 titanium that is treated with electroplated on the surface and bridges.
Summer Tone-Inspired Artful Watches
Richard Mille Presents the RM 07-01 Coloured Ceramics Capsule
Trend Themes
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Summer Tone-inspired Artful Watches — The RM 07-01 Coloured Ceramics series by Richard Mille is influenced by the vibrant aesthetics of the Memphis Design architecture movement and Italian art from the 80s.
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Contrasting Looks, Shapes, and Materials — The new collection of brightly colored ceramics offers a range of contrasting looks, shapes, and materials, demonstrating Richard Mille's commitment to innovative design.
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Skeletonized Automatic Movements — The RM 07-01 Coloured Ceramics watches feature skeletonized automatic movements, showcasing the brand's dedication to performance and technical innovation.
Industry Implications
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Luxury Watchmaking — The RM 07-01 Coloured Ceramics series highlights opportunities for innovative design and color usage in the luxury watchmaking industry.
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Art and Design — Inspired by the Memphis Design architecture movement and Italian art from the 80s, Richard Mille's collection creates new opportunities for artistic expression and collaboration within the art and design industry.
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Materials Manufacturing — The micro-blasted grade 5 titanium and electroplated surface and bridges of the RM 07-01 Coloured Ceramics watches showcase advancements and possibilities in materials manufacturing.