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    • 4. 发明专利
    • COATING DEVICE AND COATING METHOD
    • JPH1147659A
    • 1999-02-23
    • JP21356597
    • 1997-08-07
    • ASK KK
    • TATEISHI TADATAKANISHIMURA YASUNAO
    • B05D1/30B05C5/00B05C13/00
    • PROBLEM TO BE SOLVED: To prevent a coating material adhering to an end part of a member to be coated from adhering to a following material by forming plural projected line spread in the direction of progress of a conveyor on a surface of an outlet side conveyor in the device in which a coating curtain is formed from a flow coater between an inlet and the outlet side conveyor. SOLUTION: The outlet side conveyor 2 is provided opposite to the inlet side conveyor 1, and the coating curtain 4 is supplied downward so that it drips between both conveyors 1 and 2 from a flow coater 3. Then the coating material is applied continuously onto the surface of a plate matter while transporting the plate matter with the conveyors 1 and 2. In such a case, the plural projected lines 6A spread in parallel with the direction of progress are formed on the surface of the outlet side conveyor 2 in a width direction with a prescribed interval. An angle between the projected line 6A and the surface of the outlet side conveyor 2 is set to at least 90 deg. and less than 180 deg. and a height of the projected line 6A is set in 4-8 mm when a ceramic building material such as calcium silicate plate, fiber reinforced-cement plate and wood chip cement plate are used.
    • 6. 发明专利
    • PRODUCTION OF COATED SHEET WITH SURFACE PROTECTIVE MATERIAL
    • JPH1110065A
    • 1999-01-19
    • JP16401697
    • 1997-06-20
    • ASK KK
    • WADA MASAMITATE HIDEKITATEISHI TADATAKA
    • B05D5/00B05C1/08B32B13/12
    • PROBLEM TO BE SOLVED: To provide a process for producing a coated sheet with surface protective materials by efficiently providing the surfaces of smooth top clear layers with the removable surface protective materials without the generation of air bubbles and the adhesion of dust in a coating stage. SOLUTION: The surface of a base material 15 heated to about 60 deg.C in a heating section 6 are subjected to decorative coating by a transfer process using a pair of heating and press bonding rolls 4a, 4b for transfer heated to about 160 deg. and are subjected to the formation of the decorative layers. UV curing type resin coating materials for forming the top clear layers are applied on the film-like surface protective materials. The applied UV curing type resin coating materials and the decorative layers on the base material 15 described above are joined. The entire part is heated and press bonded by the heating rolls 5a, 5b to integrate the base material 15, the decorative layers, the UV curing type resin coating materials and the surface protective materials. These materials are then irradiated with UV rays in a UV irradiation section 7 to cure the UV curing type resin coating material, by which the top clear layers are formed.
    • 7. 发明专利
    • METHOD FOR TREATING DRY STIPIFORM PLANT AFTER HARVEST
    • JPH09118371A
    • 1997-05-06
    • JP29765695
    • 1995-10-20
    • ASK KKNAGAI HIROYASU
    • NAGAKURA SADAO
    • B65D85/50B65D81/18B65D81/22
    • PROBLEM TO BE SOLVED: To provide a method wherein bacteria or the like attaching to stipes of dry stipiform plant can be eliminated for preventing the plant from being rotten by the bacteria or the like, and freshness of the plant can be held for a long time during delivery or the like so that consumers can purchase the dry stipiform plant with freshness at the time of harvest. SOLUTION: The invention relates to a method for post-harvest treatment for maintaining freshness of dry stipiform plant such as asparagus A or leek which has been gathered with a lower part of a stem cut. A lower part of the stem of the gathered dry stipiform plant is soaked in electrolytic strong acid water KS of pH2.5 to 2.7, while a cold insulating sheet 3 is put in a container 2 formed of polypropylene and the electrolytic strong acid water KG is impregnated into the cold insulating sheet 3 for cooling it to be frozen. Thereafter, the plant is received in the container 3 while it stands on the sheet 3, the container with the plant received is put in a box, and it is shipped after precooling.
    • 9. 发明专利
    • BAMBOO FIBER FOR REINFORCEMENT AND ITS PRODUCTION AS WELL AS INORGANIC MOLDING FORMED BY USING THIS BAMBOO FIBER FOR REINFORCEMENT AND ITS PRODUCTION
    • JPH0925145A
    • 1997-01-28
    • JP17363395
    • 1995-07-10
    • ASK KK
    • AKIYAMA NOBUTOIRIE SHOICHIRO
    • C04B16/02B27L11/08C04B18/24D01B1/10D01B1/50E04C5/07
    • PROBLEM TO BE SOLVED: To obtain bamboo fibers for reinforcement having high durability by adjusting the moisture content of the bamboo material supplied to a first stage to a specific value or above and adjusting the moisture content in a drying stage after the end of the first stage and/or after the end of the second stage to a range of the prescribed value. SOLUTION: The bamboo materials of the moisture content of >=65wt.% (hereafter %) cut and divided to a prescribed length and width in a compressing device 9 of the first stage are sent to the second stage. The bamboo materials are pulverized to a prescribed fiber length by a pulverizing machine 11 to form the bamboo fibers in which the film parts coexist. These fibers are sent to rollers 5 via a conveyor 4 and are splashed by a rotary drum 2 having many teeth onto a conveyor 7. The film parts falling before the machine are collected by vanes 6 into a film parts capturing vessel 8. The bamboo fibers are passed through a driving stage by the conveyor 7, by which the bamboo fibers for reinforcement having no film part and having the moisture content of 3 to 35% are formed. Next, a prescribed volume of water is added to a mixture composed of about 15 to 45% bamboo fibers for reinforcement, about 45 to 85% inorg. hydraulic binder, such as cement, and the balance fibers and powders of vegetable raw materials and various kinds of inorg. fillers. After the mixture is kneaded and molded, the moldings are cured, by which the inorg. moldings contg. the bamboo fibers for reinforcement are obtd.
    • 10. 发明专利
    • CALCIUM SILICATE SLAB AND ITS PRODUCTION
    • JPH0920576A
    • 1997-01-21
    • JP16995195
    • 1995-07-05
    • ASK KK
    • SAKIYAMA MASATOASAMI TAKUYAIWANAGA TOMOKIODA MASAAKI
    • B28B1/54C04B28/18C04B38/00C04B40/02
    • PROBLEM TO BE SOLVED: To obtain a calcium silicate slab improved in mechanical strength and interlaminar strength without addition of any curing agent and causing no interlaminar debonding and/or puncture during a hydrothermal reaction by conducting a primary curing of a molded form produced by subjecting a specific feedstock slurry to papermaking process and then by making the hydrothermal reaction. SOLUTION: First, a feedstock slurry 7 is prepared so as to contain, as solid contents 17-50wt.% of a calcareous stock, 15-45wt.% of a siliceous stock, 2-8wt.% of a fibrous stock and 5-30wt.% of an organic filler, and also 5-30wt.%, on the whole solid basis, of type-II anhydrous gypsum and 0.5-5 outer wt.%, based on the type II anhydrous gypsum, of a curing promoter. Secondly, with the respective cylinders 8 in the papermaking boxes 6 of a cylinder machine, the slurry 7 is subjected to papermaking process and transferred onto a felt 3, this operation is repeated by the number of the boxes 6. As a result, a paper-shaped film 4 is made, wound on a making roll 1 at a specified number of turns and then cur into green sheets. A slurry applicator 5 is provided between a return roll 2 and the making roll 1. Finally, the green sheets are subjected to primary curing to effect hydration of the type-II anhydrous gypsum followed by conducting a hydrothermal reaction.