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    • 81. 发明专利
    • Screw conveyor installing method
    • 螺旋输送机安装方法
    • JPS58220008A
    • 1983-12-21
    • JP10263882
    • 1982-06-15
    • Kobe Steel Ltd
    • YAMASHITA HIROSHIOOYABU TOSHIOODA YASUOTANAKA TAKESHI
    • B65G33/00B65G33/18B65G33/32B65G33/34
    • B65G33/34
    • PURPOSE:To make bending stress uniform by supporting, in a fixed beam shape, one end of the conveyor shaft of a screw conveyor which is supported at its both ends and subjected to distributed load, and applying a moment inversely directed to screw conveyor's own weight, to said fixed beam end part. CONSTITUTION:A underwater bearing 10 is installed on a foundation 11 in a hydraulic pool, and a bearing device 12 provided with a plurality of trains of bearings 15 is provided on a foundation 13 located outside the hydraulic pool. Both ends of the conveyor shaft 17 of a screw conveyor are supported by these bearings 10, 15, and said conveyor shaft 17 is installed while applying moment M inversely directed to its own weight to it. Namely, each height of the foundations 11, 13 is firstly set such that the bottom 19 of a bearing box 14 is allowed to make closel contact with the upper surface 20 of the foundation 13 keeping a state where the underwater bearing 10 is lifted so as to provide a gap 30 with width 1. Then, after fightening a nut 26 engaged with a bolt 23 until prescribed pressing force is applied to a belleville spring 25, the required installation is coupleted by placing the bearing 10 side on the foundation 11 while gradually lowering it.
    • 目的:通过以固定梁形状支撑螺旋输送机的输送轴的一端,使其弯曲应力均匀,该螺旋输送机的两端被支撑并承受分布载荷,并施加一个反向螺旋输送机自身重量的力矩 到所述固定梁端部。 构成:水下轴承10安装在液压池的基座11上,在位于液压池外部的基座13上设有具有多列轴承15的轴承装置12。 螺旋输送机的输送机轴17的两端由这些轴承10,15支撑,并且所述输送轴17被安装,同时施加力矩M与其自身的重量相反。 即,基座11,13的高度首先被设定为使得轴承箱14的底部19能够与底座13的上表面20保持接触,保持水下轴承10被提升的状态,从而 以提供具有宽度1的间隙30.然后,在与螺栓23接合的螺母26进行打击之后,直到规定的按压力施加到贝氏弹簧25上,通过将轴承10侧放置在基座11上而将所需的安装件相互连接,同时逐渐 降低它
    • 86. 发明专利
    • TREATMENT OF SILICA-CONTAINING MUD SLUDGE
    • JP2000256055A
    • 2000-09-19
    • JP6466299
    • 1999-03-11
    • KOBE STEEL LTD
    • TANAKA TAKESHIIDA TORUNISHIE MASAICHIRO
    • C04B28/18
    • PROBLEM TO BE SOLVED: To obtain a high-strength solidified article which has wide applications and great demands by treating mud sludge containing silica in order to reduce the volume of waste. SOLUTION: This method consists of an adding and mixing stage of obtaining clayey raw material by adding and mixing a calcium compound to and with the silica-containing mud sludge, a press molding stage for obtaining a solidified article body by press molding the clayey raw material and a water heat solidifying stage for obtaining the solidified article by solidifying the solidified article body by a water heat treatment. The method also consists of the adding, mixing and moisture regulating stage of obtaining the clayey raw material of 5 to 35 wt.% in moisture content by subjecting the silica-containing mud sludge to the addition and mixture of the calcium compound and the regulation of its moisture content, the press molding stage of obtaining the solidified article body by subjecting the clayey raw material to press molding and the water heat solidifying stage for obtaining the solidified article by solidifying the solidified article body by the water heat treatment.
    • 88. 发明专利
    • GYRATORY CRUSHER
    • JPH08131854A
    • 1996-05-28
    • JP27234294
    • 1994-11-07
    • KOBE STEEL LTD
    • TANAKA TAKESHIINOMATA NAOHARU
    • B02C2/04
    • PURPOSE: To make it possible to accurately measure the outlet gap between the cone cave and mantle of a spiral moving crushing machine which sets the outlet gap by vertically moving a concave support holding a concave with a screw mechanism and the abrasion wear thereof with good accuracy and to automatically change and adjust the outlet gap based on the measured value thereof with smooth operability. CONSTITUTION: This spiral moving crushing device has a driving device 14 which rotates a concave support 10, an input detector 15 which detects the fluctuation in the current to the driving motor 13 of this driving device 14, a revolution detector 16 which detects the number of revolution of the concave support 10, an arithmetic display device 17 which processes the signal from this revolution detector 16 in accordance with a conversion program to calculate the moving quantity of the concave support 10 and stores and displays this quantity and a back pressure detector 19 which detects the fluctuation in the back pressure of the static pressure type thrust bearing 4b of a spindle 4. In addition, the input detector 15, the arithmetic display device 17 and the back pressure detector 19 are connected to a controller 20 of the driving device 14.