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    • 2. 发明授权
    • Probe head of the switching type
    • 探头的开关类型
    • US5018278A
    • 1991-05-28
    • US442605
    • 1989-11-29
    • Hans-Peter AehneltEckhard EnderleMichael Wirth
    • Hans-Peter AehneltEckhard EnderleMichael Wirth
    • G01B5/00G01B3/00G01B5/012G01B5/20G01B7/012G01B13/03
    • G01B3/008G01B7/012
    • The invention contemplates a pneumatically driven piston as a preloading device, continuously urging the movable part (11) of a probe head into precise seating engagement with its fixed bearing (10), (12) in the housing of the probe head. The piston is movable in a cylinder (4) that is supplied with variable regulated pressure determined by a controlled regulating valve (16). Different contacting forces can be automatically and rapidly adjusted by the control system (18) of a coordinate-measuring machine to which the probe head is mounted, and the probe head can be tared to compensate for the different individual weights of successively different probe pins that are used in a given program of multiple-point coordinate measurements on a workpiece.
    • 本发明考虑了一种气动驱动的活塞作为预加载装置,连续地将探头的可动部分(11)推压到其探针头的壳体中的固定轴承(10),(12)的精确座位接合中。 所述活塞可在供给由受控调节阀(16)确定的可变调节压力的气缸(4)中移动。 可以通过安装探头的坐标测量机的控制系统(18)自动快速地调节不同的接触力,并且可以将探头头部去除以补偿连续不同的探针的不同单独重量, 在给定的工件多点坐标测量程序中使用。
    • 4. 发明授权
    • Electromagnetic holding device
    • 电磁保持装置
    • US5041806A
    • 1991-08-20
    • US550029
    • 1990-07-09
    • Eckhard EnderleMichael WirthBernd Baier
    • Eckhard EnderleMichael WirthBernd Baier
    • G01B21/00B23Q3/15B23Q3/154G01B7/012H01F7/04
    • B23Q3/1546G01B7/012H01F2007/208Y10T483/19
    • The invention is directed to an electromagnetic holding device which includes one or more permanent magnets and an electromagnet. The holding device releases and pulls in units which are held thereon. During an exchange operation, the field of the electromagnet is superposable on the field of the permanent magnet either in the same direction or in the opposing direction and thereby intensifies or neutralizes the holding force. In order to provide the smallest possible assembly volume and lowest weight with the highest possible holding force, the permanent magnet is disposed ahead of the electromagnet when viewed with respect to the exchange face. When the exchange part is pulled in, the field lines of the electromagnet run in a completely closed flux-conducting part which is not interrupted at any location by an air gap.
    • 本发明涉及一种包括一个或多个永磁体和电磁体的电磁保持装置。 保持装置以保持在其上的单元释放和拉动。 在交换操作期间,电磁体的场在永久磁铁的场上在相同方向或相反方向上叠加,从而增强或中和保持力。 为了以最高的保持力提供尽可能小的组装体积和最小的重量,当相对于交换面观察时,永磁体设置在电磁体的前方。 当交换部分被拉入时,电磁体的磁场线在完全封闭的磁通部分中运行,其在任何位置都没有被气隙中断。
    • 5. 发明授权
    • Method for rapidly measuring the temperature of a workpiece on a
coordinate measuring apparatus
    • 方便快速测量坐标测量装置工件温度的方法
    • US5195826A
    • 1993-03-23
    • US804059
    • 1991-12-09
    • Eckhard EnderleMichael WirthBernd Baier
    • Eckhard EnderleMichael WirthBernd Baier
    • G01B21/20G01B5/00G01B7/012G01B21/00G01K1/14G01K3/00
    • G01K1/146G01B5/0014G01B7/012Y10S33/19
    • The invention is directed to a temperature measuring head for rapidly measuring the temperature of a workpiece on a coordinate measuring apparatus. To rapidly measure the temperature of the workpiece, the coordinate measuring probe element is exchanged for a temperature measuring head which operates pursuant to the principle of a switching probe head. The measuring head supplies a contact signal after contact with the workpiece takes place. From this time point on, the temperature variation is measured by the temperature measuring head and the determined values are stored in the computer of the coordinate measuring apparatus. The temperature of the workpiece is extrapolated via a numerical evaluation method from a specific measurement interval. After the necessary measurement interval, the temperature measuring head is exchanged for the needed probe element combination. The invention is also directed to a temperature measuring head for carrying out the method of the invention.
    • 本发明涉及一种用于在坐标测量装置上快速测量工件的温度的温度测量头。 为了快速测量工件的温度,坐标测量探头元件被更换为根据开关探头的原理工作的温度测量头。 测量头在与工件接触之后提供接触信号。 从该时间点开始,通过温度测量头测量温度变化,并将确定的值存储在坐标测量装置的计算机中。 通过数值评估方法从特定的测量间隔外推工件的温度。 在必要的测量间隔后,将温度测量头更换为所需的探头元件组合。 本发明还涉及用于实施本发明的方法的温度测量头。
    • 10. 发明授权
    • Control valve for respiratory devices
    • 呼吸装置用控制阀
    • US08695599B2
    • 2014-04-15
    • US12527866
    • 2008-02-05
    • Harri FribergJakob DaescherMichael WirthFelix Kramer
    • Harri FribergJakob DaescherMichael WirthFelix Kramer
    • A62B9/02A61M16/00A62B7/00
    • A61M16/20A61M16/0066A61M16/204A61M16/205A61M2016/0027
    • The invention relates to a respiratory device for keeping a patient breathing artificially or support his or her breathing naturally. Said respiratory device comprises an air inlet, an air source, and at least one proportionally adjustable control valve. The control valve is provided with a housing (11) and a rotary valve (12) which is arranged in the housing so as to be twistable about the longitudinal axis thereof and which allows through-holes (11d) of the housing (11) to be entirely or partially closed by twisting the rotary valve (12). The rotary valve (12) and a corresponding support surface (11f) of the housing (11) have a conical shape, the support surface (11f) cooperating with the rotary valve (12). The through-holes (11d) are disposed in the area of the support surface (11f).
    • 本发明涉及一种呼吸装置,用于保持患者人为地呼吸或自然地支持他或她的呼吸。 所述呼吸装置包括空气入口,空气源和至少一个可成比例地调节的控制阀。 控制阀设置有壳体(11)和旋转阀(12),旋转阀(12)布置在壳体中,以便围绕其纵向轴线可扭转,并且允许壳体(11)的通孔(11d) 通过扭转旋转阀(12)来完全或部分地关闭。 旋转阀(12)和壳体(11)的对应的支撑表面(11f)具有锥形形状,支撑表面(11f)与旋转阀(12)配合。 通孔(11d)设置在支撑面(11f)的区域。