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    • 1. 发明专利
    • 天花板結構的鋼支撐系統 STEEL SUPPORT SYSTEM FOR ROOF STRUCTURES
    • 天花板结构的钢支撑系统 STEEL SUPPORT SYSTEM FOR ROOF STRUCTURES
    • TW200745425A
    • 2007-12-16
    • TW096104827
    • 2007-02-09
    • V&M德國有限公司 V&M DEUTSCHLAND GMBH
    • 寇納里斯 迪特曼 DITTMANN, CORNELIUS歐雷 喬瑟 JOSAT, OLE
    • E04CE04B
    • E04C3/08E04B7/022E04C2003/043E04C2003/0491
    • 本發明的目的是要提供一種具有最好超過20公尺跨距之支撐系統,其可以彈性而低計劃及製造成本的方式來加以修改,以配合於不同的跨距。此目的可由一種支撐系統來達成之,其係由多個預製之標準模組,以一種具有不同負載能力而模組化且標準化的方式組合,並接合在一起,而加以達成的,其中二標準模組的型式為承載元件(1),係由具有固定長度的中空型鋼製成之翼緣部及對角支柱所製做成的格子狀構造,而一標準模組的型式為中心部元件(2、2'、2"),包含有一無格點框架結構的基礎模組,其可透過修改其長度而調整之,且其具有由中空型鋼製成之翼緣部(3、3'、3")及立柱(4),且在各種情形中,對於不同的跨距均使用相同的零組件,以提供中心部元件(2、2'、2")所需的長度。
    • 本发明的目的是要提供一种具有最好超过20公尺跨距之支撑系统,其可以弹性而低计划及制造成本的方式来加以修改,以配合于不同的跨距。此目的可由一种支撑系统来达成之,其系由多个预制之标准模块,以一种具有不同负载能力而模块化且标准化的方式组合,并接合在一起,而加以达成的,其中二标准模块的型式为承载组件(1),系由具有固定长度的中空型钢制成之翼缘部及对角支柱所制做成的格子状构造,而一标准模块的型式为中心部组件(2、2'、2"),包含有一无格点框架结构的基础模块,其可透过修改其长度而调整之,且其具有由中空型钢制成之翼缘部(3、3'、3")及立柱(4),且在各种情形中,对于不同的跨距均使用相同的零组件,以提供中心部组件(2、2'、2")所需的长度。
    • 6. 发明申请
    • LEAKAGE FLUX PROBE FOR NON-DESTRUCTIVE LEAKAGE FLUX-TESTING OF BODIES CONSISTING OF MAGNETIZABLE MATERIAL
    • 泄漏漏磁探头,用于非破坏性漏电流体测试,包括可磁化材料
    • US20130119979A1
    • 2013-05-16
    • US13676448
    • 2012-11-14
    • V & M Deutschland GmbH
    • Michael KaackGert FischerOliver NemitzTill SchmitteStefan Nitsche
    • G01N27/82
    • G01N27/82G01N27/87
    • A leakage flux probe for non-destructive leakage flux-testing of bodies consisting of magnetizable material, in particular of pipes consisting of ferromagnetic steel, having a plurality of sensors disposed one behind the other in a straight line for detection of near-surface flaws in the body. In order to create a leakage flux probe for non-destructive leakage flux-testing of bodies consisting of magnetizable material, in particular of pipes consisting of ferromagnetic steel, which in a main testing direction has a broadened directional characteristic. At least two similar sensors are disposed and interconnected in a sensor package in a different angular orientation with respect to the main testing direction one above the other, one next to the other or one lying inside the other. The sensor packages disposed generally in a line one behind the other can be influenced individually by the generated leakage flux of an existing flaw. The individual sensors of the sensor package are spaced apart from each other by such a small spaced interval that the interconnected sensors of a sensor package are collectively influenced by the generated leakage flux of an existing flaw.
    • 一种漏磁通探针,用于对由可磁化材料,特别是由铁磁性钢组成的管道组成的主体的非破坏性漏磁通检测,其具有多个传感器,所述多个传感器以直线布置在另一个之上,用于检测近表面缺陷 身体。 为了产生用于对由可磁化材料组成的物体进行非破坏性漏磁通检测的漏磁通探测器,特别是由主要测试方向具有拓宽的方向特性的铁磁钢组成的管道。 至少两个相似的传感器以相对于主测试方向的不同的角度方向在传感器封装中布置和互连,一个在另一个之上,一个位于另一个旁边或另一个之间。 通常以一个接一个地布置在一条线上的传感器组件可以由现有缺陷产生的漏磁通量单独影响。 传感器封装的各个传感器彼此隔开这样一个小的间隔间隔,使得传感器封装的互连传感器共同受现有缺陷产生的漏磁通影响。
    • 9. 发明公开
    • VERFAHREN ZUR MESSUNG DER PROFILGEOMETRIE VON GEKRÜMMTEN, INSBESONDERE ZYLINDRISCHEN KÖRPERN
    • 法测量歪轮廓几何,尤其是圆柱体
    • EP2616763A2
    • 2013-07-24
    • EP11763876.7
    • 2011-09-07
    • V & M Deutschland GmbH
    • NEMITZ, OliverSCHMITTE, TillNITSCHE, Stefan
    • G01B11/25
    • G01B11/2522G01B2210/50
    • The invention relates to a method for measuring the profile geometry of curved, in particular cylindrical bodies as measured objects (4) by means of a two-dimensional light-section method, wherein a fan-shaped light section line (2) is imaged on a sub-region of the circumferential contour of the body by means of a projector (1), and the beams reflected by the surface of the body are received by a detector (3), wherein the projector (1) and the detector (3) form a measurement unit, and the measured values are subsequently fed to an analysis unit. In order to disclose a method that is simple to implement, the invention proposes that the height profiles of the respective sub-regions of the circumferential contour, which are measured during the rotation on the measured object (4), are joined into a circumferential contour mad of virtual circumferential segments of the individual height profiles, using the following steps: a) synchronized recording of the height profiles having a number of height values, b) imaging the height values on the virtual circumferential segments (11.1,...,11.n) made of data points (14.1.1, 14.n.i) present in a two-dimensional space, c) determining the angular position of each height profile on the circumferential contour of the measured object (4), d) disposing the individual circumferential segments (11.1,...,11.n) in the positions that the associated height profiles take on the respective sub-region of the circumferential contour by means of rotation about a common rotation point (10) for all circumferential segments (11.1,..., 11.n), e) determining the overlap lengths of overlapping regions (12.1,...,12.n) of the circumferential segments (11.1,...,11.n), f) rotating and displacing the individual circumferential segments (11.1,...,11.n) in such a manner that the overlapping regions (12.1,...,12.n) of the circumferential segments (11.1,...,11.n) overlap one another as uniformly as possible, erroneous angles of rotation and spatial positions of the segments thereby being corrected, wherein the height profiles are recorded during synchronized recording by means of a number of height values, such that the ends of adjacent height profiles partially overlap and/or the present ends are extended by extrapolation and overlapping end regions of adjacent circumferential segments (11.1,...,11.n) are formed.