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    • 1. 发明授权
    • Optical strain gauge strips
    • 光学应变片条
    • US07720324B2
    • 2010-05-18
    • US11922943
    • 2006-06-27
    • Karl-Heinz HaaseMichael SchmidtRegis Blin
    • Karl-Heinz HaaseMichael SchmidtRegis Blin
    • G02B6/34G02B6/00
    • G01L1/246
    • An optical strain gage (1) for multi-axis strain measurement includes at least two linear light waveguide sections (2, 3, 4) with Bragg gratings (5). These are arranged next to one another in a prescribed angle (19) of 90° or 45° on a support layer (6) and are supplied with lightwaves by a common infeeding waveguide section (7). All of the light waveguide sections(2, 3, 4, 7) are provided preferably linearly on the support layer (6), and a beam dispersion element (8) is arranged between the infeeding waveguide section (7) and the measuring waveguide sections (2, 3, 4) containing the Bragg grating (5).
    • 用于多轴应变测量的光学应变计(1)包括具有布拉格光栅(5)的至少两个线性光波导部分(2,3,4)。 这些在支撑层(6)上以90°或45°的规定角度(19)彼此相邻布置,并且通过公共进料波导部分(7)供应光波。 所有的光波导部分(2,3,4,7)优选地在支撑层(6)上线性地设置,并且光​​束分散元件(8)被布置在进料波导部分(7)和测量波导部分 (2,3,4),其包含布拉格光栅(5)。
    • 2. 发明申请
    • Optical Strain Gauge Strips
    • 光学应变片条
    • US20090080829A1
    • 2009-03-26
    • US11922943
    • 2006-06-27
    • Karl-Heinz HaaseMichael SchmidtRegis Blin
    • Karl-Heinz HaaseMichael SchmidtRegis Blin
    • G02B6/34
    • G01L1/246
    • The invention relates to an optical strain gage (1) for the multi-axis strain measurement, that includes at least two linear light waveguide sections (2, 3, 4) with Bragg gratings (5). These are arranged next to one another in a prescribed angle (19) of 90° or 45° on a support layer (6) and are supplied with lightwaves by a common infeeding waveguide section (7). This invention is characterized in that all light waveguide sections (2, 3, 4, 7) are provided preferably linearly on the support layer (6), and that a beam dispersion element (8) is arranged between the infeeding waveguide section (7) and the measuring waveguide sections (2, 3, 4) containing the Bragg grating (5).
    • 本发明涉及用于多轴应变测量的光学应变计(1),其包括具有布拉格光栅(5)的至少两个线性光波导部分(2,3,4)。 这些在支撑层(6)上以90°或45°的规定角度(19)彼此相邻布置,并且通过公共进料波导部分(7)供应光波。 本发明的特征在于,所有光波导部分(2,3,4,7)优选地在支撑层(6)上线性地设置,并且光​​束分散元件(8)布置在输入波导部分(7) 和包含布拉格光栅(5)的测量波导部分(2,3,4)。
    • 8. 发明申请
    • Device for Determining Strains on Fiber Composite Components
    • 用于确定纤维复合材料部件菌株的装置
    • US20080034881A1
    • 2008-02-14
    • US10577635
    • 2004-10-29
    • Karl-Heinz HaaseCarsten HeckerSebastian KleinSigmund Glaser
    • Karl-Heinz HaaseCarsten HeckerSebastian KleinSigmund Glaser
    • G01L1/22
    • G01M5/0041G01L1/2287G01M5/0033G01N3/08G01N2203/0017G01N2203/0062G01N2203/0073G01N2203/0075G01N2203/0623
    • The invention relates to an apparatus for the determination of loadings on fiber composite components (1), especially of vehicle and aircraft parts, whereby the components (1) are provided with a prescribed number of sensor elements (3), for the determination of strains. The sensor elements (3) are connected with an evaluating apparatus (4), which is especially embodied for the monitoring and also for the determination of loadings that tend to cause damage. The apparatus is characterized in that the sensor elements are embodied as strain gages (3). In that regard, the strain gages (3) are preferably integrated into the fiber composite component (1) in such a manner so that the measuring grids (5) thereof are laid between the individual fiber layers (2) and are guided out of the fiber composite component (1) ready for connection via special connecting pins (8). Via these connecting pins (8) the individual strain gages (3) are connectable to the respective associated evaluating apparatus (4) via loose cable connections (12).
    • 本发明涉及一种用于确定特别是车辆和飞机部件的纤维复合材料部件(1)上的载荷的装置,由此部件(1)设置有规定数量的传感器元件(3),用于确定应变 。 传感器元件(3)与评价装置(4)连接,评估装置(4)特别体现在监视和确定容易造成损坏的负载上。 该装置的特征在于传感器元件被实施为应变计(3)。 在这方面,应变计(3)优选地以这样的方式整合到纤维复合材料部件(1)中,使得其测量网格(5)铺设在各个纤维层(2)之间并被引导出 纤维复合材料组件(1)可通过特殊的连接销(8)准备连接。 通过这些连接销(8),单个应变片(3)可以通过松动的电缆连接(12)连接到相应的相关评估装置(4)。