Abstract:
A method for producing a pulp molded article (7) comprising the steps of supplying a pulp slurry into the cavity (1) of a mold (10) composed of a set of splits (3 and 4), the set of splits (3 and 4) being assembled together to form the cavity (1) with a prescribed configuration, to form a pulp deposited body (5), feeding a fluid into the cavity (1) to press the pulp deposited body (5) onto the inner wall of the cavity (1) for dewatering.
Abstract:
A warming device of sheet form having (1) a heat generating sheet prepared by papermaking and containing an oxidizable metal, a moisture retaining agent, and a fibrous material and (2) an air permeable holder holding the heat generating sheet. The warming device has a thickness of 0.1 to 10 mm and a flexural strength of 0.01 to 0.3 N/cm. The sheet preferably has a thickness of 0.1 to 2.0 mm. The fibrous material preferably has a CSF of 600 ml or less.
Abstract:
A formed body (10) formed mainly of pulp, comprising a bottom part (13) and a shell part (12), wherein an angle theta formed between the ground-contact surface (B) of the bottom part (13) and the side wall outer surface of the shell part (12) is 85 DEG or larger, and the height of the shell part (12) is 50 mm or higher.
Abstract:
A method of attaching a nanofiber sheet (10) having a nanofiber layer (11) comprising a polymeric nanofiber and a base layer (12) located on one side of the nanofiber layer (11) to a surface of an object. The method includes bringing a side of the nanofiber layer (11) of the nanofiber sheet (10) into contact with the surface of the object under the condition that a surface of the nanofiber layer (11) or the surface of the object is wet. Preferably, the base layer (12) is releasably laminated to the nanofiber layer (11), and the base layer (12) is removed from the nanofiber sheet (10) that is attached to the surface of the object to transfer the nanofiber layer (10) onto the surface of the object.
Abstract:
A multilayered molded container having at least a moisture-proof layer formed by papermaking which contains a thermoplastic resin having a melting point of 90 to 200 DEG C and a viscosity of 20 to 10000 Pa.s as measured with a capillograph at a shear rate of 100 s and a set temperature of 200 DEG C.
Abstract translation:一种多层成型容器,其至少具有通过造纸形成的防湿层,其含有熔点为90〜200℃的热塑性树脂,粘度为20〜10000Pa·s,以剪切速率 100 s -1,设定温度200℃
Abstract:
A nanofiber laminate sheet including a nanofiber layer containing a cosmetic component or a medicinal component and a water soluble base layer located on at least one side of the nanofiber layer. The water soluble base layer is less water-soluble than the nanofiber layer. The water soluble base layer is preferably constructed of nanofiber portions mingled with filmy portions. The water soluble base layer is preferably a layer of nanofibers in which nanofibers cohere to each other to form the filmy portions at their intersections.
Abstract:
A molded article containing a powder and a fibrous material which is obtained by a wet papermaking process. The fibrous material has a fiber length frequency distribution such that 30% to 90% of the fibrous material have a fiber length of 0.4 to 2.0 mm and that 9% to 50% of the fibrous material has a fiber length of 0.4 mm or less. The molded article contains at least 50% by weight of the powder.