Abstract:
A processing device has a fibrillation portion fibrillating fiber-containing materials containing fibers in the air, a particle supply portion supplying particles having Mohs' hardness of 2 or more and 5 or less to the fiber-containing materials during or after the fibrillating at the fibrillation portion for collision of the particles and the fiber-containing materials, and a particle removal portion removing the particles from the fiber-containing materials to which the particles are supplied.
Abstract:
Provided is a processing device which includes a fluffing section for fluffing fibers contained in a sheet-like material, the fibers being at least near a surface of the sheet-like material, and a particle supplying section for supplying particles having Mohs hardness of 2 to 5 to the fluffed fibers. In addition, in such processing device, the particle supplying section preferably has an ejecting portion for ejecting the particles.
Abstract:
A method of manufacturing a cushioning material P includes a defibrating step of defibrating a cloth to produce fibers F in dry forming, a mixing step of mixing the fibers F with a bonding agent to produce a mixture, an accumulation step of accumulating the mixture in air to produce a web W, and a first forming step of pressurizing and heating the web W to form the web W.
Abstract:
A method for manufacturing a carbon fiber sheet includes a mixing section that mixes a plurality of carbon fibers with a binding material that binds the carbon fibers, a depositing section that deposits a mixture of the carbon fibers and the binding material, and a forming section that forms a fiber sheet by heating a deposit deposited by the depositing section. The forming section includes a heating portion.
Abstract:
A speaker diaphragm according to the present disclosure includes a cone formed of a first material including first fibers derived from a plant and a first resin for binding the first fibers together, and an edge portion which is positioned at an outer peripheral portion of the cone and formed of a second material including a second resin, in which the cone and the edge portion are integrally formed. In addition, at least one of the content and the composition of the first resin and the second resin is different.
Abstract:
A processing apparatus includes a deinking material supply portion that supplies a deinking material to defibrated fibers, and an agitating portion that agitates a mixture of the deinking material and the fibers. The agitating portion includes a chamber and a rotary blade that rotates in the chamber.
Abstract:
A gel for a sensor characterized by including a stimulus-responsive gel which expands or contracts in response to a given stimulus, and an electrically conductive substance which is included in the stimulus-responsive gel.
Abstract:
A sweat collection device as a fluid collection device includes a collection section which collects sweat, and a discharge section which discharges the sweat collected by the collection section from the collection section. Further, the sweat collection device is attached to the skin as an adherend, and the collection section is configured to be hermetically sealed by attaching the sweat collection device to the skin. Further, the sweat collection device includes a transfer section which connects the collection section and the discharge section to each other. Further, the sweat collection device includes a gel-like response section which is placed on any of the collection section, the transfer section, and the discharge section, and responds to lactic acid contained in sweat.
Abstract:
A culture container includes a gel section constituted by a material containing a stimulus-responsive gel which expands or contracts in response to a stimulus by a given substance in at least a portion of a part coming into contact with a culture solution.
Abstract:
A stimulus-responsive gel material includes: a first polymer containing an OH group and having a network structure; a second polymer having a phenylboronic acid structure; fine particles having an average particle diameter of 10 nm or more and 1000 nm or less; and a solvent, wherein a polymer chain of the second polymer penetrates into the network of the first polymer.