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Loading Mechanics of the 'Can' and Implications for Improved Strength and Stiffness Properties

机译:加载“罐头”的力学和改进的强度和刚度特性的影响

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Improved roof control in high deformation tailgate environments has been achieved over the last decade through development of stiffer and increased capacity standing support products. 'The Can' is one such development, being a steel cylinder containing a weak cementitious fill, designed to essentially fold in upon itself whilst maintaining strength. A laboratory study to better define the relative load contributions of the steel cylinder and fill, the confining interaction between these components and most importantly, the potential impact of varying the steel and/or fill properties is described. This would enable the support engineer to 'dial-up' the desired strength and stiffness properties and optimise the standing support design with respect to load capacity, stiffness, weight (handling) and cost. Design curves to optimise strength based on steel casing thickness, fill strength (confined and unconfined) and 'Can' geometry were established. Scaled-down (one-third) samples were used in the test program and found to adequately reflect the loading behaviour of full-scale versions, thereby providing significantly greater scope for further product development at less expense compared with testing full-scale products.
机译:在过去的十年中,通过开发更硬和增加的容量支持产品,改善了高变形后盖环境的屋顶控制。 “罐头”是一种这种发展,是一种含有弱水泥填充的钢圆筒,设计成在保持强度时基本上折叠起来。实验室研究以更好地限定钢缸的相对负荷贡献,这些部件之间的限制相互作用,最重要的是,描述了改变钢和/或填充性质的潜在影响。这将使支撑工程师能够“拨打”所需的强度和刚度性能,并针对负载容量,刚度,重量(处理)和成本优化站立支撑设计。设计曲线基于钢壳厚度优化强度,建立填充强度(限制和无限制)和“罐头”几何形状。在测试程序中使用缩小(三分之一)样本,发现可以充分反映满量程版本的加载行为,从而与测试全尺寸产品相比,以较少的费用为进一步的产品开发提供明显更大的范围。

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