The Jax & Bard Libby Hill Sandal Has a Fly-Knit Upper
Michael Hemsworth — June 4, 2020 — Eco
References: kickstarter & thegadgetflow
The Jax & Bard Libby Hill Sandal is an eco-friendly fashion product for consumers seeking out a premium option that doesn't skimp on delivering maximum comfort and quality. The sandal is achieved with a fly-knit upper section that will allow just the right amount of stretch in order to form perfectly to the foot of the wearer. The solid wood bade of the sandal will deliver dependable durability that will also mold to the foot of the wearer as it provides added impact resistance.
The Jax & Bard Libby Hill Sandal has a natural latex rubber sole to enhance the grip of the wearer on virtually any terrain and are crafted with minimal waste materials to make them a perfect summertime shoe for eco warriors.
The Jax & Bard Libby Hill Sandal has a natural latex rubber sole to enhance the grip of the wearer on virtually any terrain and are crafted with minimal waste materials to make them a perfect summertime shoe for eco warriors.
Trend Themes
1. Eco-friendly Fashion - Opportunity for brands to develop sustainable and environmentally conscious products, such as eco-friendly sandals, to attract eco warriors.
2. Fly-knit Technology - Potential for integrating fly-knit technology in various footwear products to provide a perfect fit and maximum comfort for wearers.
3. Minimal Waste Manufacturing - Chance for manufacturers to adopt minimal waste production methods, reducing environmental impact and meeting the demands of eco-conscious consumers.
Industry Implications
1. Footwear - Footwear industry can leverage eco-friendly sandal clogs as a disruptive innovation and capture the growing market of environmentally conscious consumers.
2. Fashion - Fashion industry can explore the potential of integrating sustainable materials and production processes, like fly-knit technology, to create eco-friendly and stylish products.
3. Manufacturing - Manufacturing sector can embrace minimal waste manufacturing techniques to meet the demand for environmentally friendly products and reduce production waste.
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