首页> 外国专利> Monitoring material flow in production processes of building groups or construction units, comprises mixing an UV-active additive to a raw thermosetting polymer in a molding process and detecting light emission of the additive

Monitoring material flow in production processes of building groups or construction units, comprises mixing an UV-active additive to a raw thermosetting polymer in a molding process and detecting light emission of the additive

机译:监视建筑群或建筑单元的生产过程中的材料流动,包括在成型过程中将UV活性添加剂混合到原始热固性聚合物中并检测添加剂的发光

摘要

The procedure for monitoring material flow in production processes of building groups or construction units containing thermosetting polymer, comprises mixing (15) an UV-active additive to a raw thermosetting polymer in a molding process (20), detecting (40) light emission of the UV-active additive using a detection mechanism, casting the raw thermosetting polymer and then supplying as thermosetting polymer part with material-specific characteristics. The UV-active additive is a mineral or a manganite compound. The polymer part is added with different UV-active additives. The procedure for monitoring material flow in production processes of building groups or construction units containing thermosetting polymer, comprises mixing (15) an UV-active additive to a raw thermosetting polymer in a molding process (20), detecting (40) light emission of the UV-active additive using a detection mechanism, casting the raw thermosetting polymer and then supplying as thermosetting polymer part with material-specific characteristics. The UV-active additive is a mineral or a manganite compound. The polymer part is added with different UV-active additives to produce thermosetting polymer part with different characteristics. The combination in the thermosetting polymer part with certain characteristics is other than the combination at the added UV-active additives, which is added with the thermosetting polymer part. After the detection, the polymer parts with different characteristics are fed to processing steps (50, 55). In the mixing process, the particle size and -thickness of the additives are automatically coordinated on the molded thermosetting polymer. The detection is carried out so that the recognition of a certain thermosetting polymer part is possible with a human eye or sensor. An independent claim is included for a device for monitoring the material flow in production processes of building groups or construction units.
机译:监视包含热固性聚合物的建筑群或建筑单元的生产过程中的材料流动的过程,包括在模制过程(20)中将UV活性添加剂混合(15)到原始热固性聚合物中,检测(40)涂料的发光。使用检测机制的紫外线活性添加剂,先浇铸原始的热固性聚合物,然后提供具有特定材料特性的热固性聚合物零件。紫外线活性添加剂是矿物或锰化合物。聚合物部分中添加了不同的紫外线活性添加剂。在包含热固性聚合物的建筑群或建筑单元的生产过程中,监控材料流动的程序包括在模制过程(20)中将紫外线活性添加剂与原始热固性聚合物混合(15),检测(40)使用检测机制的紫外线活性添加剂,先浇铸原始的热固性聚合物,然后提供具有特定材料特性的热固性聚合物零件。紫外线活性添加剂是矿物或锰化合物。向聚合物部件中添加不同的紫外线活性添加剂,以生产具有不同特性的热固性聚合物部件。具有一定特性的热固性聚合物部分中的组合不同于所添加的与热固性聚合物部分一起添加的紫外线活性添加剂的组合。在检测之后,将具有不同特性的聚合物部分进料到处理步骤(50、55)。在混合过程中,添加剂的粒径和厚度会在模塑的热固性聚合物上自动调整。进行检测使得可以用人眼或传感器识别某些热固性聚合物部分。包括独立权利要求,该装置用于监视建筑群或建筑单元的生产过程中的物料流。

著录项

  • 公开/公告号DE102006056103A1

    专利类型

  • 公开/公告日2008-05-29

    原文格式PDF

  • 申请/专利权人 SIEMENS AG;

    申请/专利号DE20061056103

  • 发明设计人 LEIBRECHT FRANK;

    申请日2006-11-24

  • 分类号G01N21/64;C08K3/22;C08J3/20;C08J3/28;

  • 国家 DE

  • 入库时间 2022-08-21 19:49:36

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