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    • 15. 发明授权
    • Floatable information-reading head support configured to prevent forward
pitch
    • 浮动信息读取头支持配置为防止前向音调
    • US5142424A
    • 1992-08-25
    • US540725
    • 1990-06-20
    • Yotaro Hatamura
    • Yotaro Hatamura
    • G11B11/105G11B21/20
    • G11B11/1058G11B21/20
    • An information-reading head having a structure comprising a floatable information-reading head, and a suspension comprising a load arm for supporting the information-reading head via a gimbal. The gimbal having a frame structure in a reversed trapezoidal shape constituted by an upper horizontal portion fixed to the load arm, a lower horizontal portion to which the information-reading head is fixed, and a front portion and a rear portion. At least one of the front and the rear portion being inclined, whereby the information-reading head is substantially prevented from pitching forward when coming into contact with a surface of an information-bearing mechanism. The suspension supports the information reading head such that a center of gravity of the information reading head is positioned between a center of support of the information-reading head by the suspension and a rear of the information-reading head.
    • 一种信息读取头,其具有包括可浮动信息读取头的结构,以及包括用于经由万向支撑信息读取头的负载臂的悬架。 具有由固定到负载臂的上部水平部分,固定有信息读取头的下部水平部分以及前部和后部构成的反向梯形的框架结构的万向架。 前部和后部中的至少一个是倾斜的,由此当与信息承载机构的表面接触时,基本上防止信息读取头向前倾斜。 悬架支撑信息读取头,使得信息读取头的重心位于信息读取头的悬架中心与信息读取头的后部之间。
    • 17. 发明授权
    • Profile working machine
    • 轮廓加工机
    • US4772161A
    • 1988-09-20
    • US20123
    • 1987-02-27
    • Takaaki NagaoYotaro HatamuraKozo Ono
    • Takaaki NagaoYotaro HatamuraKozo Ono
    • B24B49/16B23Q15/013B23Q17/22B24B19/20G05B19/41B23Q15/12
    • B23Q17/2233B24B19/20B24B49/16G05B19/41G05B2219/49362Y10T409/304704Y10T409/306888Y10T409/30728Y10T409/308008
    • A profile working machine includes a support portion, a working portion, and a drive and control system. The machine also includes displacement sensors for detecting the present relative displacements between the support portion and working portion, a load sensor for detecting each working reaction force exerted to the working portion, a memory unit for storing values corresponding to a predetermined suitable working reaction force detected by the load sensor, a deviation computing unit for computing the deviation of each working reaction force from the values stored in the memory unit, and a displacement computing unit for computing, based on the deviation determined by the deviation computing unit and the present relative displacement detected by the displacement sensors, corrective relative displacements of the support portion and working portion required to bring the difference to 0, whereby the spatial orientation of the load sensor is maintained constant relative to the direction of the suitable working reaction force.
    • 轮廓加工机包括支撑部分,工作部分以及驱动和控制系统。 该机器还包括用于检测支撑部分和工作部分之间的当前相对位移的位移传感器,用于检测施加到工作部分上的每个工作反作用力的负载传感器,用于存储与检测到的预定合适的工作反作用力对应的值的存储单元 通过负载传感器,用于计算每个工作反作用力与存储在存储单元中的值的偏差的偏差计算单元;以及位移计算单元,用于基于由偏差计算单元确定的偏差和当前的相对位移 由位移传感器检测到,将差值设定为0所需的支撑部分和工作部分的校正相对位移,由此负载传感器的空间取向相对于合适的工作反作用力的方向保持恒定。
    • 18. 发明授权
    • Die casting controlling method
    • 压铸控制方法
    • US4874032A
    • 1989-10-17
    • US331083
    • 1989-03-27
    • Yotaro Hatamura
    • Yotaro Hatamura
    • B22D17/32
    • B22D17/32
    • A method of controlling die casting in which at least one of a pressure sensor which directly measures the internal pressure of a cavity continuously throughout the casting cycle and a temperature sensor which directly measures the temperature and heat flux of the cavity surface continuously throughout the casting cycle is mounted in a die and a measured value obtained through the direct measurement by the sensor mounted in the die is compared with a reference value, then casting conditions are controlled on the basis of the result of the comparison, the measured value compared with the reference value being a peak value thereof, a gradient of a certain time, a peak value generation time, a period of holding a value above a certain threshold level, or an integrated value up to a certain time, or it being the difference and/or the sum of peak values, gradients of a certain time, peak value generation times, time periods of holding a value above a certain threshold level, or integrated values up to a certain time, obtained from two or more measurement points.
    • 一种控制压铸的方法,其中至少一个直接在整个铸造周期内连续测量空腔的内部压力的压力传感器和在整个铸造循环中连续地直接测量空腔表面的温度和热通量的温度传感器 安装在模具中,通过安装在模具中的传感器直接测量得到的测量值与参考值进行比较,然后根据比较结果控制铸造条件,测量值与参考值相比较 值是其峰值,特定时间的梯度,峰值生成时间,保持高于某一阈值水平的周期,或直到某一时间的积分值,或者是差异和/或 峰值的总和,一定时间的梯度,峰值生成时间,保持高于某一阈值水平的值的时间段,或积分v 从两个或更多个测量点获得一段时间。