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All-glass shell scale models made with an adjustable mould

机译:采用可调节模具制成的全玻璃壳体秤

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摘要

Ever since Lucio Blandini developed a doubly curved synclastic shell with adhesively bonded glass components, the concept of building a self-supporting glass-only shell has almost become within reach. In the current contribution a small-scaled experimental concept is presented of a self-supporting anticlastic all-glass shell scale model, created by means of an adaptable mould.First, different manufacturing parameters of relatively small shells are investigated, such as mould type, glass supporting system and dimensions, oven temperature and shell curvature.Next, an adjustable mould for the bending of glass is developed, built and tested. With this mould it is possible to make glass panels synclastic and anticlastic in a great variety of forms. With this new moulding technique we were able to create different prototypes. They are forming the basis an intended larger shell, composed of smaller segments. The objective is to join the latter by using fusing techniques, which result is completely transparent monolithic all-glass shells. Therefore, additional experiments have been performed to explore different variants of glass fusion techniques to be applied for double curved glass shells.
机译:自卢西奥·布兰迪尼(Lucio Blandini)开发出具有粘合玻璃组件的双曲面同质弹壳以来,构建仅靠玻璃的自支撑壳的概念几乎可以实现。在当前的贡献中,提出了一个小规模的实验概念,即通过自适应模具创建的自支撑抗弹全玻璃壳比例模型。首先,研究了相对较小的壳的不同制造参数,例如模具类型,玻璃支撑系统和尺寸,烤箱温度和外壳曲率。接下来,开发,制造和测试了可调节的玻璃弯曲模具。利用这种模具,可以使玻璃板以多种形式同时发生回弹和防弹。借助这种新的成型技术,我们能够创建不同的原型。它们构成了由较小段组成的预期较大外壳的基础。目的是通过使用熔融技术将后者连接起来,从而获得完全透明的整体式全玻璃外壳。因此,已经进行了另外的实验以探索将应用于双曲面玻璃壳的玻璃融合技术的不同变体。

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