DESIGN NAME: Jw Outdoor
PRIMARY FUNCTION: Furniture
INSPIRATION: Jw outdoor furniture is based on origami style. It not only reflects the beauty of the structure but also uses the characteristics of metal materials and processing methods to convey a unique visual language. Modular processing and assembly are used to make transportation and installation more convenient and efficient. The application of ergonomics brings users the best experience.
UNIQUE PROPERTIES / PROJECT DESCRIPTION: The origami style Jw chair looks like a sculpture in a city landscape, and a variety of colors can be freely chosen to decorate the environment.
Aluminum plate bending process is applied to make the furniture more secure, through a partially folded structure, and the aluminum is of recyclable and corrosion-resistant properties, which make outdoor use more suitable.
OPERATION / FLOW / INTERACTION: The origami-style chair made of all-aluminum has simple and unique shapes, which is suitable for a variety of places, such as a courtyard, leisure square and so on, creating a unique artistic style for the environment.
The original intention of the design is that it can be placed in the environment to decorate the environment as sculpture and people can interact with it, A variety of color choices can meet different use environments.
PROJECT DURATION AND LOCATION: The project started in September 2017 in China and finished in November 2017 in China, and was exhibited in Hainan Boao Forum for Entrepreneurs in 2017.
FITS BEST INTO CATEGORY: Furniture Design
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PRODUCTION / REALIZATION TECHNOLOGY: Aluminum plate bending
SPECIFICATIONS / TECHNICAL PROPERTIES: Aluminum Chair Dimensions Width 500mm x Depth 500mm x Height 880mm. Surface treatment with Aluminum sandblast.
TAGS: aluminum furniture, outdoor furniture, chair, decorate, sculpture, minimal, multiple colors
RESEARCH ABSTRACT: Aluminum furniture, aluminum plate bending, Origami style, corrosion-resistant properties, 0 formaldehyde, low transportation cost, low processing and manufacturing cost.
CHALLENGE: Provides maximum support with the thinnest aluminum thickness
ADDED DATE: 2019-11-06 22:44:28
TEAM MEMBERS (2) : Jingwen Li and Lei Zhang
IMAGE CREDITS: Jingwen Li, 2019.
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