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    • 3. 发明授权
    • Method for measuring shape and apparatus therefor
    • 用于测量其形状和装置的方法
    • US4959553A
    • 1990-09-25
    • US280798
    • 1988-12-07
    • Seiki YamadaTakashi Kawamura
    • Seiki YamadaTakashi Kawamura
    • G01B21/20G01B11/24G01B11/245
    • G01B11/245G01B2210/44
    • A method and an apparatus for measuring a shape wherein an article having a cross sectional shape to be measured is subjected to scanning along a direction of a width of the article by means of a pair of displacement sensors, wherein the article is moved in a constant direction and the displacement sensors are located substantially opposing to each other with the article being therebetween, and displacements of a surface on one side and of a surface on another side of the article are detected at every constant pitch, then the cross sectional shape is obtained by processing the detected displacements. The method and the apparatus enable to carry out accurate on-line measurement of a cross sectional shape of an article and provide improved quality control.
    • 一种用于测量形状的方法和装置,其中具有待测量的横截面形状的制品通过一对位移传感器沿着制品的宽度方向进行扫描,其中制品以恒定的方式移动 方向,并且位移传感器基本上彼此相对地定位,并且物品处于其间,并且以每个恒定的间距检测物品的一侧和另一侧的表面上的表面的位移,然后获得横截面形状 通过处理检测到的位移。 该方法和装置能够对制品的横截面形状进行准确的在线测量并提供改进的质量控制。
    • 4. 发明授权
    • Tire grooving apparatus and method
    • 轮胎切槽装置及方法
    • US5193600A
    • 1993-03-16
    • US720685
    • 1991-06-25
    • Satoru KinuhataSeiki Yamada
    • Satoru KinuhataSeiki Yamada
    • B29D30/68
    • B29D30/68
    • A tire grooving apparatus according to the present invention consists of a movable block (5) movable at least in a lateral direction parallel with a tire support shaft, a vertically movable block (7) provided on the movable blocks, and a pivotable arm (81) provided on the block (7) and having a cutter support device (9) at the free end portion thereof, characterized in that the apparatus is further provided with a center deviation detector (13) for detecting a deviation of center line of a tire tread surface, or both the center deviation detector (13) and a lateral runout detector (14). A tire grooving method according to the present invention is characterized in that an actual measurement obtained by the center deviation detector (13), or both an actual measurement obtained by the center deviation detector (13) and an actual measurement obtained by the lateral runout detector (14) are utilized for the correction of the quantity of movement of a cutter (10).
    • 根据本发明的轮胎切槽装置由至少在平行于轮胎支撑轴的横向方向上移动的可移动块(5),设置在可移动块上的可竖直移动的块(7)和可枢转臂(81) ),其在其自由端部具有切割器支撑装置(9),其特征在于,所述装置还设置有用于检测轮胎的中心线偏离的中心偏差检测器(13) 胎面表面,或中心偏差检测器(13)和侧向跳动检测器(14)两者。 根据本发明的轮胎开槽方法的特征在于,通过中心偏差检测器(13)获得的实际测量或由中心偏差检测器(13)获得的实际测量值和由侧向跳动检测器(13)获得的实际测量 (14)用于校正切割器(10)的移动量。
    • 8. 发明授权
    • Tire grooving apparatus and method
    • 轮胎铺设装置和方法
    • US5144996A
    • 1992-09-08
    • US474760
    • 1990-03-26
    • Satoru KinuhataSeiki Yamada
    • Satoru KinuhataSeiki Yamada
    • B29D30/68
    • B29D30/68
    • A tire grooving apparatus according to the present invention consists of a movable block (5) movable at least in a lateral direction parallel with a tire support shaft, a vertically movable block (7) provided on the movable blocks, and a pivotable arm (81) provided on the block (7) and having a cutter support device (9) at the free end portion thereof, characterized in that the apparatus is further provided with a center deviation detector (13) for detecting a deviation of center line of a tire tread surface, or both the center deviation detecetor (13) and a lateral runout detector (14). A tire grooving method according to the present invention is characterized in that an actual measurement obtained by the center deviataion detector (13), or both an actual measurement obtained by the center deviation detector (13) and an actual measurement obtained by the lateral runout detector (14) are utilized for the correction of the quantity of movement of a cutter (10).
    • PCT No.PCT / JP89 / 00776 Sec。 371 1990年3月26日第 102(e)1990年3月26日PCT PCT 1989年7月27日PCT公布。 公开号WO90 / 00965 日本1990年8月2日。根据本发明的轮胎开槽装置由至少在与轮胎支撑轴平行的横向方向上可移动的可动块(5),可移动块(7) ,以及设置在所述块(7)上并且在其自由端部处具有切割器支撑装置(9)的可枢转臂(81),其特征在于,所述装置还设置有中心偏差检测器(13) 轮胎胎面表面的中心线的偏差,或者中心偏差检测器(13)和侧面偏差检测器(14)两者的偏差。 根据本发明的轮胎开槽方法的特征在于,通过中心偏差检测器(13)获得的实际测量值,或由中心偏差检测器(13)获得的实际测量值以及由侧向跳动检测器 (14)用于校正切割器(10)的移动量。