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Seven Wool Pile – Dark Grey
Seven Wool Pile – Dark Grey
Seven Wool Pile – Dark Grey
Seven Wool Pile – Dark Grey
Seven Wool Pile – Dark Grey
Seven Wool Pile – Dark Grey
Seven Wool Pile – Dark Grey
Seven Wool Pile – Dark Grey
Seven Wool Pile – Dark Grey
Seven Wool Pile – Dark Grey
Seven Wool Pile – Dark Grey

Seven Wool Pile

228 USD

Dark Grey
Seven Wool Pile – Dark Grey Seven Wool Pile – Light Grey

Seven Pile Cardigan is made from a soft and textured recycled wool fleece knitted in Prato, Italy, featured with a full length two-way zipper at front, side pockets and a high neck. Detail seams across the elbows for a versatile look. The recycled wool is derived from discarded wool textiles, processed, cleaned and made into new fibres, threads and eventually woven into a brand new fabric and certified under the Global Recycle Standard.

Details
  • High collar
  • Side pockets
  • Interfacing in cotton
  • Two-way zipper at front closure

Model in photo is 184cm tall and wearing size Medium.

The below measurements indicate which is the intended size for you. Measurments are specified between ranges, for example: If your chest measurement is 96cm, your waist is 90cm and your shoulder to shoulder length is 40cm, then we recommend you choose a Medium size. If your measurements fall into the ending ranges (ie: your chest is 94cm, waist is 84cm and shoulder to shoulder is 39cm) then choose size Small for a slimmer fit or size Medium if you prefer a looser fit.

SizeChest Waist Shoulders
X Small xs
78 96cm
68 76cm
31 35cm
Small sm
86 94cm
76 84cm
35 39cm
Medium md
94 102cm
84 92cm
39 43cm
Large lg
102 110cm
92 100cm
43 47cm
X Large xl
110 118cm
100 108cm
47 51cm
XX Large xxl
118 130cm
108 116cm
51 55cm
Determine the best fitting size
Shell
  • 60% Recycled Wool
  • 20% Polyamide
  • 15% Polyester
  • 5% Other fibers
Global Recycle Standard

Global Recycle Standard (GRS) - The objectives of the GRS are to define requirements to ensure accurate content claims and good working conditions, and that harmful environmental and chemical impacts are minimised.