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    • 4. 发明申请
    • Exhaust Gas Turbocharger
    • 废气涡轮增压器
    • US20080115570A1
    • 2008-05-22
    • US11666524
    • 2005-09-27
    • Johannes AnteMarkus Gilch
    • Johannes AnteMarkus Gilch
    • F02B33/44G01M15/04
    • G01P3/487F01D5/025F01D21/003F02B39/00F05B2260/301F05D2220/40F05D2260/30F05D2270/304G01P3/488
    • An exhaust fume turbocharger for an internal combustion engine comprises a compressor and a turbine. A compressor wheel is rotatably mounted in the compressor and a turbine wheel is rotatably mounted in the turbine. The compressor wheel is mechanically connected to the turbine wheel by a rotatably mounted turboshaft. The compressor wheel is connected to the turboshaft by a fastening element and the exhaust fume turbocharger comprises a system for sensing the rotational speed of the turboshaft. The arrangement for sensing the rotational speed is arranged at the end of the turboshaft on the side of the compressor with an element for varying a magnetic field between the compressor wheel and the fastening element. The magnetic field is varied depending on the rotation of the turboshaft and a sensor element is arranged in the proximity of the element for varying the magnetic field for sensing the variation in the magnetic field and converting it into electrical signals.
    • 用于内燃机的排气涡轮增压器包括压缩机和涡轮机。 压缩机叶轮可旋转地安装在压缩机中,并且涡轮机叶轮可旋转地安装在涡轮机中。 压缩机叶轮通过可旋转地安装的涡轮轴机械连接到涡轮机叶轮。 压缩机叶轮通过紧固元件连接到涡轮轴,排气涡轮增压器包括用于感测涡轮轴转速的系统。 用于感测旋转速度的装置布置在压缩机侧面的涡轮轴的端部处,其具有用于改变压缩机叶轮和紧固元件之间的磁场的元件。 磁场根据涡轮轴的旋转而变化,并且传感器元件布置在元件附近,用于改变磁场,用于感测磁场的变化并将其转换为电信号。
    • 6. 发明申请
    • Exhaust Gas Turbo Charger
    • 废气涡轮增压器
    • US20080118377A1
    • 2008-05-22
    • US11663135
    • 2005-09-02
    • Johannes AnteMarkus Gilch
    • Johannes AnteMarkus Gilch
    • F02B39/00F01D25/00G01P3/48G01P3/66
    • G01P3/487F01D17/06F01D21/003F02B37/025F02B39/00F02B2039/168F05D2270/304G01P3/488Y02T10/144
    • Presented is an exhaust gas turbocharger. The turbocharger includes a compressor, a turbine, a compressor wheel mounted rotatably in the compressor, a rotatably mounted turboshaft, a device for detecting the rotational speed of the turboshaft, an element for varying a magnetic field, and a turbine wheel mounted rotatably in the turbine. The compressor wheel is mechanically connected to the turbine wheel via the turboshaft. The device for detecting the rotational speed includes the element for varying the magnetic field which is disposed on or in the turboshaft in the region between the compressor wheel and the turbine wheel. The variation of the magnetic field occurring as a function of the rotation of the turboshaft. The turbocharger further includes a sensor element, which detects the variation of the magnetic field and converts it into signals which can be evaluated electrically, arranged in proximity to the element for varying the magnetic field.
    • 提出了一种废气涡轮增压器。 涡轮增压器包括压缩机,涡轮机,可旋转地安装在压缩机中的压缩机叶轮,可旋转地安装的涡轮轴,用于检测涡轮轴的转速的装置,用于改变磁场的元件和可旋转地安装在该涡轮轴中的涡轮机叶轮 涡轮。 压缩机叶轮通过涡轮轴机械地连接到涡轮机叶轮。 用于检测转速的装置包括用于改变设置在压缩机叶轮和涡轮机叶轮之间的区域中或涡轮轴中的磁场的元件。 作为涡轮轴的旋转的函数的磁场的变化。 涡轮增压器还包括传感器元件,其检测磁场的变化并将其转换为可以电气评估的信号,布置在用于改变磁场的元件附近。
    • 8. 发明授权
    • Pressure measurement unit mounted in encircling housing
    • 压力测量单元安装在环绕的外壳中
    • US06877384B2
    • 2005-04-12
    • US10236425
    • 2002-09-05
    • Johannes AnteMarkus Gilch
    • Johannes AnteMarkus Gilch
    • G01L7/08G01L7/00
    • G01L9/0044
    • A pressure measurement unit in a pressure measurement system has a housing section (8) which has an internal space (9) with internal surfaces, and a ceramic unit (1) which has a pressure diaphragm (2) and at least one external surface, with the ceramic unit (1) held in the press fit in the housing section (8) and with radial holding stresses operating between the external surface of the ceramic unit (1) and the internal surfaces of the housing section (8). A method for manufacturing a corresponding pressure measurement unit with a housing section (8) and with a ceramic unit (1) which has a pressure diaphragm (2) and at least one external surface, with holding stresses built up between the housing section (8) and the ceramic unit (1), which hold the ceramic unit (1) in the internal space of the housing section (8).
    • 压力测量系统中的压力测量单元具有:具有内表面的内部空间(9)的壳体部(8)和具有压力膜(2)和至少一个外表面的陶瓷单元(1) 陶瓷单元(1)保持压配合在壳体部分(8)中,并且在陶瓷单元(1)的外表面和壳体部分(8)的内表面之间具有径向保持应力。 一种用于制造具有壳体部分(8)和具有压力隔膜(2)和至少一个外表面的陶瓷单元(1)的对应的压力测量单元的方法,其中在壳体部分(8) )和将陶瓷单元(1)保持在壳体部分(8)的内部空间中的陶瓷单元(1)。