Extract high-quality fibers without damaging the raw materials! Dry defibration and fiber separation machine "Atoms".
[Must-see for Manufacturing Managers] Uncut pulp sheet fibers, unraveled into high-quality cotton-like material! *Currently offering data that clearly shows the damage from fiber separation.
Our new product, 'ATOMZ', is a dry defibrating and fiber separating machine that can sort fluffy fibers without finely cutting the pulp sheets (raw materials). Thanks to its unique structure with rotating swing blades, it can fluff and separate the fibers without damaging the raw materials. Being a dry process, there is no need to dissolve the raw materials in water, which reduces both working time and installation costs. Additionally, with ATOMZ's fluffing technology, confidential documents can be processed perfectly, providing robust functionality for corporate security measures. This resource is transformed into a new high-value product. ★ Please take a look at the shocking fiber separation results that clearly demonstrate there is no damage to the raw materials. You can download the materials for more information. 【Reasons to choose this product】 - It sorts high-quality fibers. - It reduces the labor involved in manufacturing. - It minimizes material loss.
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Ishikawa Research Institute Co., Ltd. has been in operation for 60 years, starting with the Ishikawa Iron Works founded by the previous president. We manufacture and sell a range of original machines, including the environmentally friendly dry fiber disintegration machine, the ATOMZ series. In recent years, we have gained attention as a preprocessing machine for cellulose nanofiber (CNF) production, collaborating with Shizuoka Prefecture, Fuji City, and Shizuoka University. Our technology, which finely disintegrates fibers from materials such as paper and cardboard without cutting them, is recognized for its unparalleled performance, assisting companies in developing new products aimed at achieving a sustainable society. We welcome inquiries from companies considering the upcycling potential of their unused materials, such as tea, fabric, and non-woven fabrics.