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    • 3. 发明授权
    • Surface texture measuring instrument
    • 表面纹理测量仪
    • US06446496B1
    • 2002-09-10
    • US09695999
    • 2000-10-26
    • Nobuyoshi FujiiSatoshi UedaFutoshi Doi
    • Nobuyoshi FujiiSatoshi UedaFutoshi Doi
    • G01B2120
    • G01B5/28G01B3/008
    • A surface texture measuring instrument has a pre-load leaf spring (41, 42) for biasing a detector (10) having a skid (14) at a distal end thereof, a pre-load force controller (47) for controlling a pre-load force of the pre-load leaf spring (41, 42), and a stopper (50) for restricting movement of the detector (10) in a biasing direction when a predetermined pre-load force is applied to the detector (10) by the pre-load force controller (47). In conducting a skidless measurement, the detector (10) is locked by applying the predetermined pre-load force to the detector (10) by the pre-load force controller (47). In conducting a skid measurement, the pre-load force less than the predetermined value is applied to the detector (10) by the pre-load force controller (47).
    • 一种表面纹理测量仪器具有用于偏置在其远端具有滑动件(14)的检测器(10)的预加载板弹簧(41,42),用于控制预加载力的预加载力控制器(47) 并且当预定的预加载力被施加到检测器(10)上时,用于限制检测器(10)在偏置方向上的移动的止动件(50) 预加载力控制器(47)。 在进行防滑测量时,通过由预加载力控制器(47)将预定的预加载力施加到检测器(10)来锁定检测器(10)。 在进行滑行测量时,小于预定值的预加载力由预加载力控制器(47)施加到检测器(10)。
    • 4. 发明授权
    • Touch-signal probe
    • 触摸信号探头
    • US06198298B1
    • 2001-03-06
    • US09220060
    • 1998-12-23
    • Nobuhisa Nishioki
    • Nobuhisa Nishioki
    • G01B2120
    • G01B5/012
    • The stylus support (10) has a center consonant with an origin of a plurality of axes, a stylus (13) on a side thereof and a vibrating/detecting element (12) disposed outside a surface perpendicular to an axis. A fitting portion (14) for fitting a probe body (15) is formed to the stylus support (10) and an aperture (17) is penetrated around the fitting portion (14) along the axis, so that the vibration of the stylus support (10) is isolated from a periphery of a fitted position of the probe body (15). Accordingly, an outer portion of the stylus support (10) outside the aperture (17) can be vibrated freely from the probe body (15) to allow the stylus (13) to vibrate sufficiently for improving accuracy.
    • 触针支架(10)具有多根轴的原点的中心辅音,其侧面上的触针(13)和设置在与轴垂直的表面的外侧的振动/检测元件(12)。 用于安装探针主体(15)的装配部分(14)形成在触针支架(10)上,并且孔(17)沿着轴线穿过嵌合部分(14),使得触针支架 (10)从探针体(15)的装配位置的周边隔离。 因此,可以使孔(17)的外侧的触针支架(10)的外部部分从探针本体(15)自由地振动,从而允许触针(13)充分振动以提高精度。
    • 5. 发明授权
    • Measurement data fairing method
    • 测量数据整流法
    • US06701266B2
    • 2004-03-02
    • US10388808
    • 2003-03-17
    • Soichi KadowakiNaoji HoriuchiTomonori Goto
    • Soichi KadowakiNaoji HoriuchiTomonori Goto
    • G01B2120
    • G06F17/17G01B21/045
    • The measurement data fairing method includes: determining an interval in which a geometrical element is to be fitted to measurement data; extracting, from the data, interval measurement data of the fitting interval and robustly fitting the element; removing, on the basis of a result of the robust fitting, outlier from the interval measurement data; computing a statistic of a residual of the interval measurement data after the outlier removing step; and removing, as invalid data, measurement data that exceeds a predetermined limit value of the statistic of the residual from the interval measurement data after the outlier removing step on the basis of the statistic of the residual computed in the computing step.
    • 测量数据整流方法包括:确定将几何元素拟合到测量数据的间隔; 从数据中提取拟合间隔的间隔测量数据,并牢固地拟合元件; 基于强度拟合的结果,从间隔测量数据中去除异常值; 计算异常值去除步骤后的间隔测量数据的残差的统计量; 以及根据在计算步骤中计算出的残差的统计量,将去除步骤之后的间隔测量数据中的残差的统计量的预定限值超过测量数据作为无效数据。
    • 6. 发明授权
    • Probe for sensing the characteristics of a surface of a workpiece
    • 用于感测工件表面特性的探头
    • US06490912B1
    • 2002-12-10
    • US09695991
    • 2000-10-26
    • Raimund Volk
    • Raimund Volk
    • G01B2120
    • G01B21/30G01B7/001G01B7/003G01B7/28
    • The invention pertains to a probe for sensing the characteristics of a surface of a workpiece which contains a probe tip that is movably held and prestressed essentially in the direction of the tip (Z-direction) and mounted without play to a first acceleration transducer. The first acceleration transducer transforms the movements of the probe tip and consequently the measurement data into acceleration data, with the first acceleration transducer being movably held and prestressed in the direction of the tip (Z-direction) and fixedly connected to the probe tip. A first integrator performs double integration with respect to time of the acceleration data from the first acceleration transducer, thereby forming longitudinal measurement data which correspond to the features of the sensed surface. The probe is thus able to sense the shape as well as the undulations, or roughness of the surface of a workpiece and outputs the features in the form of a corresponding measurement voltage.
    • 本发明涉及用于感测工件表面特性的探针,该探头包含基本上沿尖端(Z方向)可移动地保持和预应力的探针头部,并且无需播放就安装到第一加速度传感器。 第一加速度传感器将探针尖端的运动和因此的测量数据转换成加速度数据,其中第一加速度传感器沿尖端(Z方向)的方向可移动地保持和预应力并且固定地连接到探针尖端。 第一积分器相对于来自第一加速度换能器的加速度数据的时间执行双重积分,从而形成对应于感测表面的特征的纵向测量数据。 因此,探针能够感测工件的形状以及起伏或粗糙度,并以对应的测量电压的形式输出特征。