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    • 3. 发明申请
    • Method for Determining the Temperature of a Surface Coating
    • 确定表面涂层温度的方法
    • US20080159353A1
    • 2008-07-03
    • US11665824
    • 2005-10-11
    • Thomas BosselmannKlaus HuberFrancisco Javier Sevilla PerezMichael Willsch
    • Thomas BosselmannKlaus HuberFrancisco Javier Sevilla PerezMichael Willsch
    • G01K11/00
    • G01K11/006
    • The invention relates to a method for determining the temperature of a surface coating of rotating blades mounted in a non-positive-displacement machine with a rotor shaft rotationally mounted in a housing, during which electromagnetic waves are emitted in a duct in an area of the rotating blades by at least one means for generating electromagnetic waves. The electromagnetic waves are reflected, at least in part, by at least one rotating blade. The reflected portions of the electromagnetic waves are received by at least one receiving means and the temperature of the surface coating of the rotating blades is determined from a distribution of intensity of the received electromagnetic waves. The invention also relates to a method for determining the temperature of a surface coating of guide vanes mounted in a rotationally fixed manner in a non-positive-displacement machine with a housing, and to a device for carrying out the method.
    • 本发明涉及一种用于确定安装在非正排量机器中的旋转叶片的表面涂层的温度的方法,其中转子轴旋转地安装在壳体中,在该壳体内电磁波在管道中发射在 用于产生电磁波的至少一个装置旋转叶片。 至少部分地由至少一个旋转叶片反射电磁波。 电磁波的反射部分由至少一个接收装置接收,旋转叶片的表面涂层的温度由所接收的电磁波的强度分布确定。 本发明还涉及一种用于确定以具有壳体的非正排量机器中以旋转固定的方式安装的导向叶片的表面涂层的温度的方法以及用于实施该方法的装置。
    • 5. 发明授权
    • Method for determining the temperature of a surface coating
    • 确定表面涂层温度的方法
    • US07517143B2
    • 2009-04-14
    • US11665824
    • 2005-10-11
    • Thomas BosselmannKlaus HuberFrancisco Javier Sevilla PerezMichael Willsch
    • Thomas BosselmannKlaus HuberFrancisco Javier Sevilla PerezMichael Willsch
    • G01K11/00
    • G01K11/006
    • The invention relates to a method for determining the temperature of a surface coating of rotating blades mounted in a non-positive-displacement machine with a rotor shaft rotationally mounted in a housing, during which electromagnetic waves are emitted in a duct in an area of the rotating blades by at least one means for generating electromagnetic waves. The electromagnetic waves are reflected, at least in part, by at least one rotating blade. The reflected portions of the electromagnetic waves are received by at least one receiving means and the temperature of the surface coating of the rotating blades is determined from a distribution of intensity of the received electromagnetic waves. The invention also relates to a method for determining the temperature of a surface coating of guide vanes mounted in a rotationally fixed manner in a non-positive-displacement machine with a housing, and to a device for carrying out the method.
    • 本发明涉及一种用于确定安装在非正排量机器中的旋转叶片的表面涂层的温度的方法,其中转子轴旋转地安装在壳体中,在该壳体内电磁波在管道中发射在 用于产生电磁波的至少一个装置旋转叶片。 至少部分地由至少一个旋转叶片反射电磁波。 电磁波的反射部分由至少一个接收装置接收,并且旋转叶片的表面涂层的温度由所接收的电磁波的强度分布确定。 本发明还涉及一种用于确定以具有壳体的非正排量机器中以旋转固定的方式安装的导向叶片的表面涂层的温度的方法以及用于实施该方法的装置。