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    • 71. 发明申请
    • Surface Roughness Inspection System
    • 表面粗糙度检测系统
    • US20090177415A1
    • 2009-07-09
    • US12086081
    • 2006-12-05
    • Yoshinori HayashiHideki Mori
    • Yoshinori HayashiHideki Mori
    • G01B11/30
    • G01B11/303G01N21/9501
    • [Problem] To provide a surface roughness inspection system enabling suitable inspection even when the surface of the object being inspected is curved.[Means for Solution] A system having an imaging unit 20 having a line sensor 22 and scanning the surface of an object being inspected 101 in a direction perpendicular to the direction of extension of the line sensor 22 and outputting a density signal for each pixel from the line sensor 22 and a processing unit 50 processing the density signal from the line sensor 22 of the imaging unit 20, the processing unit 50 having a means for acquiring a pixel density value based on a density signal from the line sensor 22 (S2) and a density state generating means for generating a density state information Pf showing the density state in the scan direction of the object surface based on all of the pixel density values acquired for the object surface 101 being inspected (S7).
    • [问题]提供一种表面粗糙度检查系统,即使被检查物体的表面弯曲,也能够进行适当的检查。 [解决方案]具有成像单元20的系统具有线传感器22,并且在垂直于线传感器22的延伸方向的方向上扫描被检查物体101的表面,并输出每个像素的浓度信号 线传感器22和处理单元50处理来自成像单元20的线传感器22的浓度信号,处理单元50具有用于基于来自线传感器22的密度信号获取像素密度值的装置(S2) 密度状态产生装置,用于基于对被检测物体表面101获得的所有像素密度值,生成表示物体表面的扫描方向上的浓度状态的浓度状态信息Pf(S7)。
    • 79. 发明申请
    • Magnetic scale manufacturing method and magnetic scale
    • 磁性刻度制造方法和磁性刻度
    • US20070220772A1
    • 2007-09-27
    • US11726873
    • 2007-03-23
    • Kojiro KatoYoshinori Hayashi
    • Kojiro KatoYoshinori Hayashi
    • G01B7/00
    • G01D5/145Y10S33/01
    • First, an inner tube member is accommodated in an outer tube member. Then, rigid powder, having high rigidity and a hard-to-magnetize characteristic, into the inner tube member. Next, magnetic powder is filled into a recessed portion of the inner tube member. Then, the inner tube member is drawn out of the outer tube member. Then, a composite filler composed of the rigid powder, magnetic powder and outer tube member is subjected to a cold hydrostatic pressure pressing process as pre-processing. Next, the composite filler is heated and solidified into a billet. Then, the billet is subjected to a hot extrusion process so that it is formed into a bar-shaped workpiece. The bar-shaped workpiece is rolled onto a roller, and then the outer tube member is peeled off. Next, the bar-shaped workpiece is subjected to a cutting process so that it is formed into an elongated bar. Then, a magnetic section of the elongated bar is magnetized into a scale structure.
    • 首先,将内筒件容纳在外管件中。 然后,具有高刚性和难以磁化的特性的刚性粉末进入内管构件。 接下来,将磁性粉末填充到内管构件的凹部中。 然后,将内管部件从外筒部件拉出。 然后,将由刚性粉末,磁性粉末和外管部件构成的复合填料作为预处理进行冷静压压制。 接着,将复合填料加热固化成坯料。 然后,对钢坯进行热挤压加工,形成棒状工件。 将该棒状工件卷绕到辊上,然后将外管部件剥离。 接下来,对条形工件进行切割处理,使其形成为细长条。 然后,细长条的磁性部分被磁化成刻度结构。