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    • 81. 发明专利
    • Method and apparatus for measuring free water
    • 用于测量自由水的方法和装置
    • JP2009085699A
    • 2009-04-23
    • JP2007254163
    • 2007-09-28
    • A & D Co Ltd株式会社エー・アンド・デイ
    • IZUMO NAOTOIHARA TAKESHI
    • G01N5/04
    • PROBLEM TO BE SOLVED: To provide a method and apparatus for measuring a moisture content which can accurately measure the total content of free water.
      SOLUTION: A moisture analyzer 10 comprises: a heating part 12 for heating a sample; a mass measuring part 14 for measuring the mass of the sample; and a computation part 16 for computing moisture content of the sample based on a measured value by the measuring part 14. In the computation part 16, the content of bound water is obtained by measuring the mass before and after heating the sample by the mass measuring part 14 in which free water is completely released from the sample containing bound water and free water, and then, the total water content consisting of free water and bound water is computed by heating the sample in the heating part 12 to the temperature completely evaporating both free water and bound water, to measure the mass before and after heating of the sample by the mass measuring part 14, and thus, the ratio of free water is obtained based on the obtained bound water content and total water content by the equation: Ratio of free water = (total water content-bound water content)/(1-bound water content).
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种测量水分含量的方法和装置,其可以精确测量游离水的总含量。 解决方案:水分分析器10包括:用于加热样品的加热部分12; 用于测量样品质量的质量测量部分14; 以及计算部16,用于基于测量部14的测量值来计算样品的含水量。在计算部16中,通过以下方式获得结合水的含量:通过质量测量来测量样品加热前后的质量 其中游离水从含有结合水和游离水的样品中完全释放的部分14,然后通过将加热部分12中的样品加热至完全蒸发的温度来计算由游离水和结合水组成的总含水量 游离水和结合水,通过质量测量部14测量样品加热前后的质量,由此获得的结合水含量和总含水量根据获得的结合水含量和总含水量得到游离水的比例:Ratio 的游离水=(总含水量含水量)/(1结合含水量)。 版权所有(C)2009,JPO&INPIT
    • 84. 发明专利
    • Windshield for weighing device having heat exhaust structure
    • 具有热排气结构的称重装置的风量
    • JP2008215837A
    • 2008-09-18
    • JP2007049564
    • 2007-02-28
    • A & D Co Ltd株式会社エー・アンド・デイ
    • IZUMO NAOTOSHIGANO HIROSHISUZAKI SATOSHI
    • G01G21/30G01G21/28
    • PROBLEM TO BE SOLVED: To provide a windshield for an electronic weighing meter of a structure exhausting heat to the outside of the windshield without transferring the heat generated in an electronic weighing meter body side into a windshield body.
      SOLUTION: An exhaust passage 5b is formed for a back surface of a lower frame member constituting a part of the windshield body, and exhaust ports 5c as atmospheric open parts are formed at both ends of the exhaust passage 5b. An exhaust slit 5e is formed at substantially the center of the exhaust passage 5b. In the electronic weighing meter body 2, an indication part 2A and an electronic component arrangement part 2B positioned at a lower space of the indication part 2A generate heat most. By constituting the exhaust structure at a lower frame member 5 of the windshield corresponding to this part, the heat generated in the electronic weighing meter 2 side is released to the atmosphere without transferring the heat to the inside of the windshield.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种用于电子称重计的挡风玻璃,其结构是向挡风玻璃的外部排热,而不会将电子称量计主体侧产生的热量转移到挡风玻璃体中。 解决方案:形成用于构成挡风玻璃体的一部分的下框架构件的后表面的排气通道5b,并且在排气通道5b的两端形成作为大气敞开部分的排气口5c。 排气狭缝5e形成在排气通道5b的大致中心处。 在电子称重计主体2中,位于指示部2A的下部空间的指示部2A和电子部件配置部2B发热量最多。 通过在与该部分对应的挡风玻璃的下框架构件5处构成排气结构,将电子称量计2侧产生的热量释放到大气中,而不将热量传递到挡风玻璃的内部。 版权所有(C)2008,JPO&INPIT
    • 85. 发明专利
    • Windshield for weighting device
    • 用于称重设备的WINDSHIELD
    • JP2008209141A
    • 2008-09-11
    • JP2007044096
    • 2007-02-23
    • A & D Co Ltd株式会社エー・アンド・デイ
    • IZUMO NAOTOSHIGANO HIROSHISUZAKI SATOSHI
    • G01G21/28G01G21/30
    • G01G21/286G01G21/30
    • PROBLEM TO BE SOLVED: To provide a constitution for smoothing the opening/closing actions of a slide door of a windshield for a weighting device, and especially for smoothing the opening/closing of the slide door, which is curved to have a circular projected face, in case the windshield is substantially cylindrical.
      SOLUTION: In the lower portion of a slide door 3 curved to have a circular projected face, there are projected retaining portions 10 (10a, 10b and 10c), which are retained in the upper end face of the guide groove (not shown) for the guiding the opening/closing of the slide door 3. As a result, the retaining portions 10 support the load of the slide door 3 but the retaining portions 10 slide on the upper end face of the guide groove, thereby to perform the opening/closing. With this constitution, the opening/closing of the slide door 3 is smoothed even if waste or specimen falls into the guide groove. Moreover, a clearance is formed between the slide door 3 and the side wall of the guide groove, so that the opening/closing of the slide door 3 is smoothed without making the circularity so high for forming the slide door 3 and the guide groove.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种用于平滑用于加重装置的挡风玻璃的滑动门的打开/关闭动作的结构,特别是用于平滑滑动门的打开/关闭,该滑动门弯曲成具有 在挡风玻璃基本上为圆柱形的情况下为圆形投影面。 解决方案:在滑动门3的下部弯曲成具有圆形突出面的突出保持部分10(10a,10b和10c)被保持在引导槽的上端面(不是 如图所示),用于引导滑动门3的打开/关闭。结果,保持部10支撑滑动门3的负载,但是保持部10在引导槽的上端面上滑动,从而执行 开/关。 利用这种构造,即使废物或试样落入导向槽,滑门3的打开/关闭也是平滑的。 此外,滑动门3与导槽的侧壁之间形成间隙,使得滑动门3的打开/关闭平滑,而不会使得形成滑动门3和导向槽的圆度高得多。 版权所有(C)2008,JPO&INPIT
    • 88. 发明专利
    • Built-in weight lifting device
    • 内置重量提升装置
    • JP2008032610A
    • 2008-02-14
    • JP2006207860
    • 2006-07-31
    • A & D Co Ltd株式会社エー・アンド・デイ
    • IZUMO NAOTOOTA AKIRA
    • G01G23/01
    • PROBLEM TO BE SOLVED: To improve the reliability of operation of a device for adding or subtracting the load of a built-in weight to a load measurement mechanism of a weighing device, and to achieve reduction of price and miniaturization of the device by simplifying the mechanism.
      SOLUTION: The built-in weight 5 is locked with a weight holder 4 lifting with respect to a fixing section 3, the weight holder 4 is always held at the lifting up position by a snapping force of a coil spring 7, and the load of the built-in weight 5 is not charged on the load receiver 10 side. Air is supplied from an air supply and exhaust section 2 to an air bag 9 to increase the volume in calibration, the weight holder 4 moves down against the snapping force of the coil spring 7, and the built-in weight 5 is locked with the load receiver, thereby performing the calibration. After the completion of the calibration, a solenoid valve 12 is opened to exhaust air from the air bag 9, thus the weight holder 4 is lifted up by the snapping force of the coil spring 7, and the weighing device comes into a normal measurement mode.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了提高用于将称重装置的负载测量机构加载或减去内置重量的装置的操作的可靠性,并且实现装置的价格降低和小型化 通过简化机制。

      解决方案:内置重物5通过重物架4锁定,相对于固定部分3提升,重量保持器4总是通过螺旋弹簧7的卡住力保持在提升位置,并且 内置重物5的载荷不在负载接收器10侧被充电。 空气从空气供给排气部2供给到气囊9,以增加校准量,重量保持器4克服螺旋弹簧7的卡合力而向下移动,内置重物5与 负载接收器,从而执行校准。 校准完成后,打开电磁阀12以排出来自安全气囊9的空气,由此通过螺旋弹簧7的卡合力将配重保持器4提升,称重装置进入正常的测量模式 。 版权所有(C)2008,JPO&INPIT

    • 89. 发明专利
    • Mass sensor
    • 质量传感器
    • JP2007315774A
    • 2007-12-06
    • JP2006142628
    • 2006-05-23
    • A & D Co Ltd株式会社エー・アンド・デイ
    • IZUMO NAOTOSUZAKI SATOSHI
    • G01G21/24G01G23/01
    • PROBLEM TO BE SOLVED: To prevent rigid interferences and achieve compactness.
      SOLUTION: A mass sensor includes a sensor block 10 having both a Roberval mechanism which adjusts bias placement errors on weighing pans and a four-corner adjusting mechanism capable of reversibly adjusting the height of the Roberval mechanism in vertical directions and integrally formed. The sensor block 10 is provided with both a fixed part 16 for fixing the mass sensor to a structural member such as a case and upper supporting parts 17 arranged on both sides of the fixed part 16 for supporting one end of an upper sub-rod 20 of the Roberval mechanism. Slit grooves 30 for preventing mutual rigid interferences are provided between the fixed part 16 and the upper supporting parts 17.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:防止刚性干扰并实现紧凑性。 解决方案:质量传感器包括传感器块10,其具有调节称重盘上的偏置放置误差的罗泊威尔机构和能够在竖直方向上可逆地调节罗泊威机构的高度并整体形成的四角调节机构。 传感器块10设置有用于将质量传感器固定到诸如壳体的结构构件的固定部分16和布置在固定部分16两侧的上支撑部分17,用于支撑上子杆20的一端 的Roberval机制。 在固定部分16和上部支撑部分17之间设置有用于防止相互刚性干扰的狭缝槽30.权利要求:(C)2008,JPO&INPIT