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    • 11. 发明专利
    • Combination balance
    • 组合平衡
    • JP2013145129A
    • 2013-07-25
    • JP2012004873
    • 2012-01-13
    • Yamato Scale Co Ltd大和製衡株式会社
    • KIKUCHI KOHEITAKAHASHI TORU
    • G01G19/387
    • PROBLEM TO BE SOLVED: To enhance production processing capability and to improve a yield of a combination product in a combination balance provided with a plurality of hoppers located on a circumference.SOLUTION: Since objects to be measured are supplied from supply hoppers 13to 13performing discharge operation to measuring hoppers 13to 13being empty by discharging objects to be measured when a plurality of supply hoppers 41to 41rotating around the center of a circumference pass over emptied measuring hoppers 13to 13, the number of measuring hoppers participating in a combination calculation is increased, a production processing capability is enhanced, and a yield of a combination product is also improved because objects to be measured are not supplied before the emptied measuring hoppers perform about one rotation to arrive at a supply position again as in the conventional example in which the measuring hoppers rotate around the center of the circumference.
    • 要解决的问题:提高生产加工能力并提高组合产品的成品率,该组合产品具有设置在圆周上的多个料斗的组合平衡。解决方案:由于待测量对象从供料斗13提供到执行成型的排出操作 通过在围绕圆周的中心旋转的多个供给料斗41〜41通过排空的计量料斗13〜13时,通过排出待测量物体来测量料斗13to 13,使参与组合运算的计量料斗的数量增加,生产处理 提高了能力,并且还提高了组合产品的产量,这是因为在排空的测量料斗执行大约一个旋转之前不提供要测量的物体,如在传统的例子中那样,测量料斗围绕 圆周的中心。
    • 12. 发明专利
    • Combination balance
    • 组合平衡
    • JP2013117413A
    • 2013-06-13
    • JP2011264391
    • 2011-12-02
    • Yamato Scale Co Ltd大和製衡株式会社
    • KIKUCHI KOHEITAKAHASHI TORU
    • G01G19/387
    • PROBLEM TO BE SOLVED: To automatically supply a weighed object in a combination balance for performing combination weighing while rotating a plurality of hoppers positioned on a circumference around the center of the circumference.SOLUTION: A plurality of weighing hoppers 13to 13positioned at equal intervals on a circumference rotate around an axial center x as the center of the circumference, and the positions on the circumference of those weighing hoppers 13to 13are detected, and when the weighing hopper passing through a supply position is an empty weighing hopper which has discharged the weighed object, the weighed object is supplied to the weighing hopper passing through the supply position from the conveyance terminal of a supply conveyer 22.
    • 要解决的问题:为了在旋转位于围绕圆周的中心的圆周上的多个料斗的同时自动地将用于进行组合称重的组合平衡中的称重物体供给。 解决方案:在圆周上以等间隔定位的多个计量料斗13 1 至13 12 绕轴向旋转 中心x作为圆周的中心,并且检测到那些计量料斗13 1 至13 12 的圆周上的位置 当通过供给位置的计量料斗是已经排出被称重物体的空的计量料斗时,将被称量的物体从供给输送器22的输送端子供给到通过供给位置的计量料斗。 版权所有(C)2013,JPO&INPIT
    • 13. 发明专利
    • Measuring device
    • 测量工具
    • JP2013101061A
    • 2013-05-23
    • JP2011245155
    • 2011-11-09
    • Yamato Scale Co Ltd大和製衡株式会社
    • KAGAWA YOICHIROTAKAHASHI TORU
    • G01G23/01G01G11/00
    • PROBLEM TO BE SOLVED: To accurately perform evaluation of measuring accuracy of a measuring device which conveys and simultaneously measures an article under the consideration of allowable accuracy of a static measured value.SOLUTION: In an accuracy evaluation mode for evaluating measuring accuracy, dynamic measuring for conveying and simultaneously measuring a sample article is performed several times, and a CPU 11 evaluates quality of measuring accuracy in accordance with whether or not a plurality of dynamic measurements to be obtained from a load signal to be applied from a load sensor 5 via an amplifier 8, A/D converter 9 and input/output circuit 10 satisfy an evaluation standard successively for the set number of times or more. The evaluation standard is set under the consideration of allowable accuracy of a static measurement obtained by correcting the dynamic measurement by a correction value. Thus, it is possible to accurately perform evaluation of measuring accuracy under the consideration of the allowable accuracy of the static measurement.
    • 要解决的问题:在考虑到静态测量值的允许精度的情况下,准确地执行传送并同时测量物品的测量装置的测量精度的评估。 解决方案:在用于评估测量精度的精度评估模式中,进行数次的用于输送和同时测量样品的动态测量,并且CPU 11根据是否多个动态测量值来评估测量精度的质量 要从负载传感器5通过放大器8,A / D转换器9和输入/输出电路10施加的负载信号获得,连续满足设定次数以上的评价标准。 在通过校正动态测量获得的静态测量的允许精度的考虑来设定评估标准。 因此,考虑到静态测量的允许精度,可以准确地进行测量精度的评价。 版权所有(C)2013,JPO&INPIT
    • 14. 发明专利
    • Vehicle measuring system
    • 车辆测量系统
    • JP2013096857A
    • 2013-05-20
    • JP2011240296
    • 2011-11-01
    • Yamato Scale Co Ltd大和製衡株式会社
    • TAKAHASHI TORUSATO YASUMASA
    • G01G19/03G01M17/007
    • PROBLEM TO BE SOLVED: To efficiently determine the height of the center of gravity of a vehicle.SOLUTION: A vehicle measuring system 10 comprises a horizontal-side measuring section 20 and an inclined-side measuring section 40 which are disposed in series along e.g., a passage 60 within the site of a transportation company. As an object to be measured, a vehicle 100 is brought into horizontal attitude when passing through the horizontal-side measuring section 20 and brought into inclined attitude when passing through the inclined-side measuring section 40. On the basis of load detection values W1a-W1d and W2a-W2d obtained from a plurality of load cells constituting the horizontal-side measuring section 20 and load detection values W3a-W3d obtained from a plurality of load cells constituting the inclined-side measuring section 40, the total weight value of the vehicle 100 or the gravity center information such as the position and the height of the center of gravity of the vehicle 100 can be determined. Namely, only by traveling along the passage 60, for the vehicle 100, its own total measuring is implemented.
    • 要解决的问题:有效地确定车辆的重心高度。 解决方案:车辆测量系统10包括水平侧测量部分20和倾斜侧测量部分40,其沿着例如运输公司的位置内的通道60串联设置。 作为测量对象,当通过水平侧测量部20时,车辆100进入水平姿态,并且当通过倾斜侧测量部40时呈现倾斜姿态。基于负载检测值W1a- W1d和W2a-W2d,以及构成倾斜侧测量部40的多个负载传感器获得的负载检测值W3a-W3d,车辆总重量值 可以确定车辆100的重心的位置和高度等重心信息。 也就是说,仅通过沿着通道60行驶,对于车辆100,实现其自身的总计量。 版权所有(C)2013,JPO&INPIT
    • 15. 发明专利
    • Weighing apparatus
    • 称重装置
    • JP2013076661A
    • 2013-04-25
    • JP2011217377
    • 2011-09-30
    • Yamato Scale Co Ltd大和製衡株式会社
    • KAGAWA YOICHIROTAKAHASHI TORU
    • G01G23/01G01G11/00
    • PROBLEM TO BE SOLVED: To more accurately find out a correction value for correcting a dynamic weighing value.SOLUTION: In a correction mode for calculating a correction value for correcting a dynamic weighing value, dynamic weighing for weighing a sample article whose static weight value is known while conveying the sample article is performed multiple times. A CPU 11 determines whether or not each of a plurality of dynamic weighing operations acquired from load signals given from a load sensor 5 through an amplifier 8, an A/D converter 9 and an input/output circuit 10 is suitable for calculating the correction value, and dynamic weighing values not suitable for calculation of the correction value, such as a dynamic weighing value with large dispersion and a dynamic weighing value to which mechanical noise such as unexpected floor vibration and wind or electrical noise caused by an electromagnetic wave is mixed are excluded.
    • 要解决的问题:为了更准确地找出用于校正动态称重值的校正值。 解决方案:在用于计算用于校正动态称量值的校正值的校正模式中,多次执行用于称量在传送样品的静态重量值已知的样品的动态称重。 CPU11判断从负载传感器5通过放大器8,A / D转换器9和输入输出电路10得到的负载信号中获得的多个动态称重操作中的每一个是否适于计算校正值 ,并且不适合计算校正值的动态称重值,例如混合了由电磁波引起的诸如意外地板振动和风或电噪声等机械噪声的大色散的动态称重值和动态称重值, 排除 版权所有(C)2013,JPO&INPIT
    • 16. 发明专利
    • Combination weigher
    • 组合称重
    • JP2013024595A
    • 2013-02-04
    • JP2011156908
    • 2011-07-15
    • Yamato Scale Co Ltd大和製衡株式会社
    • YAMASHITA KAZUHIKOTAKAHASHI TORU
    • G01G19/387
    • PROBLEM TO BE SOLVED: To provide a combination weigher capable of supplying a supply hopper with articles whose quantities are appropriate and close to target values compared to conventional examples.SOLUTION: A combination weigher 100 comprises: supply hoppers 13 for housing articles discharged from a vibration feeder 12; weighing hoppers 14 for housing articles discharged from the supply hopper 13 and used for combination calculation of the articles; weight detection means 15' capable of detecting supply weights of articles to the supply hopper 13; and vibration feeder control means 19 for controlling supply of the articles to the supply hopper 13 using control signals periodically applied to a vibration feeder 12 and for controlling stop of supply of the articles to the supply hopper 13 using supply stop signals applied to the vibration feeder 12. When the supply weights have reached predetermined values, the vibration feeder control means 19 stops supply of the articles on the basis a fact that the supply weights have reached the predetermined values.
    • 要解决的问题:提供一种组合秤,其能够向供料斗提供与常规实施例相比适当且接近目标值的物品。 组合秤100包括:用于容纳从振动给料器12排出的物品的供料斗13; 用于收纳从供料斗13排出的物品的计量料斗14,用于物品的组合计算; 能够检测供给料斗13的物品的供给重量的重量检测单元15' 以及振动给料器控制装置19,用于使用周期性施加到振动给料器12的控制信号来控制物品供应到供料斗13,并且使用施加到振动给料器的供给停止信号来控制物品供应到供料斗13的停止 当供料重量达到预定值时,振动给料器控制装置19基于供料重量达到预定值的事实停止供应物品。 版权所有(C)2013,JPO&INPIT
    • 17. 发明专利
    • Combination weigher
    • 组合称重
    • JP2013024594A
    • 2013-02-04
    • JP2011156907
    • 2011-07-15
    • Yamato Scale Co Ltd大和製衡株式会社
    • YAMASHITA KAZUHIKOTAKAHASHI TORU
    • G01G19/387
    • PROBLEM TO BE SOLVED: To provide a combination weigher capable of supplying a supply hopper with articles whose quantities are appropriate and close to target values compared to conventional examples.SOLUTION: A combination weigher 100 comprises: supply hoppers 13 for housing articles discharged from a vibration feeder 12; weighing hoppers 14 for housing articles discharged from the supply hopper 13 and used for combination calculation of the articles; weight detection means 15' capable of detecting supply weights of articles to the supply hopper 13; time detection means for detecting the time for applying signals, used for supply of the articles to the supply hopper 13, to the vibration feeder, as supply time; and vibration feeder control means 19 for controlling stop of supply of the articles to the supply hopper 13 using signals applied to the vibration feeder 12. The vibration feeder control means 19 respectively sets predetermined supply stop weights and predetermined supply stop time, corresponding to the supply weights and the supply time respectively.
    • 要解决的问题:提供一种组合秤,其能够向供料斗提供与常规实施例相比适当且接近目标值的物品。 组合秤100包括:用于容纳从振动给料器12排出的物品的供料斗13; 用于收纳从供料斗13排出的物品的计量料斗14,用于物品的组合计算; 能够检测供给料斗13的物品的供给重量的重量检测单元15' 时间检测装置,用于检测用于向供料斗13供应物品的信号作为供应时间的振动给料器的时间; 以及振动给料器控制装置19,用于控制使用施加到振动给料器12的信号将物品供应到供料斗13的振动进给器控制装置19.振动给料器控制装置19分别设置预定的供应停止重量和与供应相对应的预定供给停止时间 重量和供应时间。 版权所有(C)2013,JPO&INPIT
    • 18. 发明专利
    • Combination weigher
    • 组合称重
    • JP2013007596A
    • 2013-01-10
    • JP2011139112
    • 2011-06-23
    • Yamato Scale Co Ltd大和製衡株式会社
    • YAMASHITA KAZUHIKOTAKAHASHI TORU
    • G01G19/387
    • PROBLEM TO BE SOLVED: To provide a combination weigher capable of precisely obtaining the weight of an article on an article placing part of a vibration feeder and improving the yield of a combined product by control of a driving signal based on the weight of an article.SOLUTION: In a combination weigher 1 including a forward-moving vibration feeder (forward-moving feeder) 5 for conveying an article downstream by vibrating a trough 5a serving as an article placing part, article weight calculation means 43 calculates the weight of the article on the trough 5a on the basis of a natural vibration cycle or a frequency of the trough 5a with the article placed thereon and equivalent mass and an equivalent spring constant of a feeder vibration system, and feeder main control means 41 controls the supply operation of the forward-moving feeder 5 so that the supply weight of the article supplied from the forward-moving feeder 5 matches a target supply weight by controlling the number of pulses (supply time period) of a driving signal and the amplitude of the driving signal, for example, on the basis of the calculated weight of the article.
    • 要解决的问题:提供一种组合秤,其能够精确地获得放置振动给料器的一部分的物品上的物品的重量,并且通过基于重量来控制驱动信号来提高组合产品的产量 一篇文章。 解决方案:在包括通过振动用作物品放置部件的槽5a来输送物品的向前移动的振动给料器(前进进给器)5的组合秤1中,物品重量计算装置43计算重量 基于自然振动周期的槽5a上的物品或其上放置有物品的槽5a的频率,以及馈送器振动系统的等效质量和等效弹簧常数,馈送器主控制装置41控制供电操作 ,从而通过控制驱动信号的脉冲数(供给时间)和驱动信号的振幅,从前进送料器5供给的物品的供给重量与目标供给重量相匹配 ,例如,基于计算出的物品的重量。 版权所有(C)2013,JPO&INPIT
    • 19. 发明专利
    • Measuring apparatus
    • 测量装置
    • JP2012163530A
    • 2012-08-30
    • JP2011026162
    • 2011-02-09
    • Yamato Scale Co Ltd大和製衡株式会社
    • TAKAHASHI TORUEKO HIROSHI
    • G01G23/01
    • PROBLEM TO BE SOLVED: To easily and accurately detect on early stage that a span of any one of load sensors becomes abnormal while normal measuring work is implemented even when installation positions of load sensors are deviated from four corner positions of a rectangle.SOLUTION: A relative ratio between a ratio of output signals from two load sensors arranged at both ends of one side of a rectangle and a ratio of output signals from two load sensors arranged at both ends of a counter side of the one side is determined and, on the basis of the relative ratio, the abnormality in span of any load sensor is detected.
    • 要解决的问题:即使在负载传感器的安装位置偏离矩形的四个角位置时,为了容易且准确地检测在正常测量工作中任何一个负载传感器的跨度变得异常的早期阶段。

      解决方案:布置在矩形一侧的两端的两个负载传感器的输出信号的比率与布置在一侧的对侧的两端的两个负载传感器的输出信号的比率之间的相对比 并且基于相对比率检测任何负载传感器的跨度异常。 版权所有(C)2012,JPO&INPIT

    • 20. 发明专利
    • Quantitative supply device
    • 定量供应设备
    • JP2012063263A
    • 2012-03-29
    • JP2010207973
    • 2010-09-16
    • Yamato Scale Co Ltd大和製衡株式会社
    • TAKAHASHI TORUSATO YASUMASA
    • G01G13/06
    • PROBLEM TO BE SOLVED: To accelerate quantitative supply, while realizing the highly accurate quantitative supply, concerning a quantitative supply device for supplying an object to be measured for the portion of a predetermined target weight value.SOLUTION: An object to be measured is supplied by performing two stages, i.e., a large supply stage and a gradual reduction stage according to the present invention. In the gradual reduction stage, particularly, a gate opening degree Gx is continuously gradually reduced from a gate opening degree G1 in the large supply stage to a final gate opening degree G2 smaller than G1. Besides, the absolute value |dGx/dtx| of a change rate dGx/dtx of the gate opening degree Gx with respect to a time tx is gradually increased in the first half section of the gradual reduction stage, and the absolute value |dGx/dtx| is gradually reduced in the second half section. When a weight measurement value Wx coincides with a supply stop weight value Wc (Wx≥Wc) which is smaller than a target weight value Wt for the portion of a drop amount Wd, the gate opening degree Gx is defined as zero at the time t4. At the same time point t4, dGx/dtx is zero.
    • 要解决的问题:为了加速定量供给,同时实现高精度定量供给,涉及用于为预定目标重量值的部分供给被测量物体的定量供给装置。 解决方案:通过执行根据本发明的两个阶段,即大的供应阶段和逐渐的减少阶段来提供待测量的对象。 在逐渐的还原阶段,特别地,门开度Gx从大供应阶段的开门度G1连续地逐渐减小到小于G1的最终门开度G2。 此外,在逐渐减小级的前半部分中,门开度Gx相对于时间tx的变化率dGx / dtx的绝对值¾dGx/ dtxz逐渐增加,绝对值¾dGx/dtx¾逐渐增加 下半部分减少。 当重量测量值Wx与对于液滴量Wd的部分的目标重量值Wt小的供给停止重量值Wc(Wx≥Wc)一致时,闸门开度Gx在时间t4被定义为零 。 在同一时间点t4,dGx / dtx为零。 版权所有(C)2012,JPO&INPIT