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    • 37. 发明专利
    • Measuring system
    • 测量系统
    • JP2011237425A
    • 2011-11-24
    • JP2011096157
    • 2011-04-22
    • Tesa Saテサ・エスアーTesa Sa
    • PASCAL JORDILBENJAMIN BRIO
    • G01B5/012G01B21/00
    • G01B5/012
    • PROBLEM TO BE SOLVED: To provide a coordinate measuring system having a high speed and little oscillation and measurement error.SOLUTION: An analog scanning probe 120 with a connector detachably connected to a movable support of a coordinate measuring system includes a contact portion 30 at the edge of a needle portion 28 rotatably connected with the scanning probe along a measurement axis 63 and a positional encoder for performing the measurement of inclined angle of the contact portion 30 about the measurement axis 63. A joint 64 is provided between the connector and the measurement axis 63 which enables the scanning of the probe by inclining the scanning probe or a part of the probe.
    • 要解决的问题:提供具有高速度,小振荡和测量误差的坐标测量系统。 解决方案:具有可拆卸地连接到坐标测量系统的可移动支撑件的连接器的模拟扫描探针120包括沿着测量轴线63与扫描探针可旋转地连接的针部分28的边缘处的接触部分30和 位置编码器,用于进行接触部分30围绕测量轴线63的倾斜角度的测量。接头64设置在连接器和测量轴线63之间,其能够通过倾斜扫描探针或部分扫描探针来扫描探针 探测。 版权所有(C)2012,JPO&INPIT
    • 38. 发明专利
    • Contact type measurement device having fine contact force adjustment mechanism
    • 接触式测量装置具有精细的接触力调节机构
    • JP2011203121A
    • 2011-10-13
    • JP2010070837
    • 2010-03-25
    • Fanuc Ltdファナック株式会社
    • HON YONPYOEBIHARA KENZOHAMURA MASAYUKI
    • G01B5/012B23Q17/20
    • G01B3/008G01B5/20
    • PROBLEM TO BE SOLVED: To provide a contact type measurement device including a fine contact force adjustment mechanism for adjusting a fine contact force automatically and accurately in contact force adjustment by air pressure and permanent magnet.SOLUTION: Fine adjustment command of voltage is applied to an electro-pneumatic regulator 40 from a numerical control device 8 for controlling a machine tool, the air pressure of the electro-pneumatic regulator is adjusted finely, and the relationship between the displacement and contact force f1 of a probe 1b at that time is acquired simultaneously and stored in a storage device included in a personal computer 11. In control of the electro-pneumatic regulator 40 by the numerical control device 8, the data stored in the storage device of the numerical control device is converted into the voltage commanded to the electro-pneumatic regulator 40, and the pressure of the electro-pneumatic regulator 40 connected to the numerical control device 8 is adjusted. By using the electro-pneumatic regulator 40, compressed air throttled and primarily reduced in pressure by a regulator 36 is throttled again by the electro-pneumatic regulator 40 to be secondarily reduced in pressure.
    • 要解决的问题:提供一种接触式测量装置,其包括用于通过空气压力和永久磁铁自动和准确地调节接触力的微细接触力的微小接触力调节机构。解决方案:电压的微调命令被施加到 从用于控制机床的数控装置8的电动气动调节器40,电动气动调节器的空气压力被微调,并且同时获取当时探针1b的位移和接触力f1之间的关系 并存储在包含在个人计算机11中的存储装置中。在通过数字控制装置8控制电动气动调节器40时,将数字控制装置的存储装置中存储的数据转换成电气指令 - 气动调节器40以及连接到数字控制装置8i的电 - 气调节器40的压力 调整。 通过使用电动气动调节器40,由调节器36节流并主要降低压力的压缩空气再次被电动气动调节器40节流以二次压缩。
    • 40. 发明专利
    • Stylus and contact-type displacement sensor
    • STYLUS和接触式位移传感器
    • JP2011107095A
    • 2011-06-02
    • JP2009265336
    • 2009-11-20
    • Olympus Corpオリンパス株式会社
    • NAGAIKE YASUNARI
    • G01B5/012G01B21/20
    • PROBLEM TO BE SOLVED: To provide a stylus that is safe and made accessible to the vicinity of the top surface of an object being tested. SOLUTION: A stylus 10, which is used for measuring the shape of the top surface of an object being tested S by bringing a front end 12 into contact with the object being tested S to make the front end 12 track the top surface of the object being tested S, includes a light-emitting section 13 for emitting the light L to pass through a predetermined position P farther ahead of an edge 12A on the front end; and a light-receiving section 14 for detecting the reflected light L1, that is generated by the reflection of the light L emitted from the light-emitting section 13. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种安全的触针,使得被测物体顶表面附近可触及。 解决方案:一种触针10,其用于通过使前端12与被测试物体S接触来测量被测物体S的顶面的形状,以使前端12跟踪顶表面 被检测物体S包括发光部分13,用于发射光L穿过前端边缘12A前方的预定位置P; 以及用于检测通过从发光部13发射的光L的反射而产生的反射光L1的光接收部14.版权所有(C)2011,JPO&INPIT