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Mechanisms to reduce cracking in interior plasters attached to cement bonded permanent shuttering panels

机译:减少附着在水泥粘结的永久模板上的内部石膏裂缝的机制

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The investigations deal with the clarification of the mechanisms of crack formation of interior plasters applied on permanent shuttering panels which are used for the erection of concrete inwalls. For this purpose various finite element simulations of the mechanical failure have been performed. Prior to these calculations material investigations have been necessary to provide the material properties. The failure mechanisms are elucidated and countermeasures detected. Especially three alternative methods to restrict the crack width follow from the investigations. The selection of interior plasters with reduced brittleness as shown by a relatively high value of the characteristic length e_(ch) is one of them. The increase of the layer thickness of the interior plaster to a value where a change of the failure mechanism occurs is another possibility. Moreover an improvement of the bond between the shuttering panels and the concrete helps to avoid too large crack widths.
机译:研究涉及澄清用于永久性模板上的内部石膏的裂缝形成机理,该模板用于混凝土墙的安装。为此,已经进行了机械故障的各种有限元模拟。在进行这些计算之前,必须进行材料研究以提供材料特性。阐明了故障机制并检测了对策。从研究中尤其可以得出三种限制裂纹宽度的替代方法。如特征长度e_(ch)的相对较高的值所示,选择具有降低的脆性的内部灰泥是其中之一。另一种可能是将内部灰泥的层厚度增加到发生破坏机理改变的值。此外,模板和混凝土之间的粘结性的改善有助于避免太大的裂缝宽度。

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