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    • 51. 发明专利
    • Liquid kind detecting apparatus in tank lorry
    • 液体液体检测装置
    • JPS59153147A
    • 1984-09-01
    • JP2834883
    • 1983-02-21
    • Kyokuto Kaihatsu Kogyo Co Ltd
    • ONOZUKA MAMORU
    • G01N9/18G01N9/36
    • G01N9/18
    • PURPOSE:To eliminate erroneous operation by making it possible to easily discriminate the kind of the liquid loaded in a tank from the outside, by converting the rising and falling of a float to the rotary motion of a rotor containing a magnet while operating a display apparatus by the magnet. CONSTITUTION:When a liquid is gasoline of which the specific gravity is smallest, not only a float 6 is not almost raised but also a rotor 16 is not rotated and the liquid kind name of the display plate 23 positioned at the transparent part 26 of a cover 24 comes to ''GASOLINE''. When the liquid is kerosene of which the specific gravity is medium, the float 6 rises to the one-dotted broken line position, a rising and falling member 14 is also pushed up to the one-dotted broken line position by a spring 17, the rotor 16 is rotated to pull the magnetic members 25, 25 of the display plate 23 provided in opposed relation to magnets 21, 21, the display plate 23 are also integrally rotated along with the magnets 21, 21 and the liquid kind name is changed to ''KEROSENE''.
    • 目的:为了消除误操作,通过在操作显示装置的同时,通过将浮子的上升和下降转换为包含磁体的转子的旋转运动,可以容易地将装载在罐中的液体的种类与外部区分开 由磁铁。 构成:当液体是比重最小的汽油时,不仅浮子6几乎不升起,而且转子16不旋转,并且显示板23的液体种类名称位于透明部分26 封面24来到“GASOLINE”。 当液体是比重为中等的煤油时,浮子6上升到单点虚线位置,上升和下降构件14也被弹簧17推到单点虚线位置, 转子16旋转以拉动与磁体21,21相对设置的显示板23的磁性部件25,25,显示板23也与磁体21,21一体旋转,液体种类的名称被改变为 ''煤油''。
    • 52. 发明专利
    • Measuring device of specific gravity for liquid
    • 用于液体的特殊重量的测量装置
    • JPS59138937A
    • 1984-08-09
    • JP1260883
    • 1983-01-31
    • Daiichi Shomei KkOkamoto Ika Kogyo Kk
    • SUNAGA SAIJIAMANO ICHIROU
    • G01N9/18
    • G01N9/18
    • PURPOSE:To measure the specific gravity of a liquid with a simple operation and high accuracy by supplying the liquid to be measured of its specific gravity by a specified volume to a float containing vessel and converting the up or down position of the float to an electric signal. CONSTITUTION:An operating bar 20 is depressed to intrude a suction pipe 5 into a measuring liquid 27. When the bar 20 is released, a specified amt. of the liquid 27 is sucked into a float containing vessel 2. Since the atm. of the liquid to be sucked is constant, the level of a float 6 is determined by the specific gravity of the liquid 27. A shielding body 8 covers window parts 3, 4 by as much as the area corrsponding to the level of the float 6. The quantity of the light incident to a photocell 14 through the window parts 3, 4 from an electric bulb 13 is proportional to the level of the float 6 and the output of the photocell 14 is subjected to A/D conversion. If the output thereof is digitally displayed, the direct measurement of the specific gravity of the liquid is made possible.
    • 目的:为了以简单的操作和高精度测量液体的比重,通过将具有规定体积的被测量的比重提供给浮子容器并将浮子的上下位置转换成电 信号。 构成:操作杆20被压下以将吸入管5插入到测量液体27中。当杆20被释放时, 的液体27被吸入浮子容器2中。 被吸收的液体是恒定的,浮子6的水平由液体27的比重确定。屏蔽体8将窗口部分3,4覆盖与浮子6的水平相应的面积 从电灯泡13通过窗口部件3,4入射到光电管14的光的量与浮子6的电平成比例,并且光电管14的输出经受A / D转换。 如果其输出数字显示,则可以直接测量液体的比重。
    • 60. 发明申请
    • TEMPERATURE COMPENSATED DENSITY SENSING PROCESS AND DEVICE
    • 温度补偿密度传感过程和器件
    • US20100095763A1
    • 2010-04-22
    • US12559998
    • 2009-09-15
    • James Jeffrey Harris
    • James Jeffrey Harris
    • G01N9/00
    • G01N9/12G01N9/18G01N9/36G01N15/06
    • A total dissolved solids measurement process and device are provided that facilitates total dissolved solids sensing of a subject fluid via relative buoyancy levels of separate float bodies; one buoyed by the subject fluid of varying total dissolved solids and temperatures and another buoyed by a reference fluid of constant total dissolved solids but of a varying temperature matching the subject fluid. The equal temperature baths of the subject fluid and the reference fluid as well as geometrical shape and weighting of the floats conveys the total dissolved solids as the difference in buoyancy levels of the floats. This difference in buoyancy levels is of further benefit for activation of sundry controls.
    • 提供了总溶解固体测量过程和装置,其有助于通过相对浮力水平的单独的浮体进行主体流体的总溶解固体感测; 由主要流体以不同的总溶解固体和温度浮动,另一种由具有恒定总溶解固体但与目标流体匹配的变化温度的参考流体浮起。 目标流体和参考流体的等温浴以及浮子的几何形状和加权将总溶解固体输送为浮子的浮力水平差。 浮力水平的差异对于各种控制的启动是进一步的好处。