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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Characterization and application of hollow-sphere-composite lightweight materials
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Characterization and application of hollow-sphere-composite lightweight materials

机译:空心球复合轻质材料的表征与应用

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摘要

The ability to recycle mechanical and structural materials at the end of their useful lifetime is of high importance. The use of non-conventional materials in these applications enables such recycling and provides a number of other advantages, including increased quality, better economics, protection of the environment, and reduction of energy consumption. New lightweight materials, which have similar properties to their more traditional alternatives, are therefore highly significant for some industrial applications. In machine-tool design, for example, it is important to reduce the mass of the moving parts to obtain better dynamic characteristics. The current use of the term 'lightweight materials' refers to the lighter metallic materials such as aluminium, titanium, and magnesium. However, in recent years, the application of alternative, recyclable materials has substantially increased, for example the use of polymer concrete for supports, casing, or tables in machine tools with lighter weight and improved thermodynamic properties. An advantage of hollow-sphere-composites (HSC), which mostly consist of hollow spheres with different particle proportions and a reactive resin system, is that they can be recycled with ease. The aim of this article is to evaluate and characterize the mechanical and thermal properties of HSC as necessary input parameters for the design of various machine-tool and robotic system elements. The versatility of HSCs for machine tools and jig design is also demonstrated.
机译:在机械和结构材料使用寿命结束时回收其能力非常重要。在这些应用中使用非常规材料可以实现此类回收利用,并提供许多其他优势,包括提高质量,提高经济效益,保护环境以及降低能耗。因此,新型轻质材料的特性与其更传统的替代品相似,因此对于某些工业应用而言意义重大。例如,在机床设计中,重要的是减少运动部件的质量以获得更好的动态特性。术语“轻质材料”的当前使用是指较轻的金属材料,例如铝,钛和镁。然而,近年来,替代的可回收材料的应用已显着增加,例如,将聚合物混凝土用于重量更轻且热力学性能得到改善的机床中的支架,壳体或工作台。空心球复合材料(HSC)的一个优点是,它们可以轻松回收,该空心球复合材料主要由具有不同颗粒比例的空心球和反应性树脂体系组成。本文的目的是评估和表征HSC的机械和热性能,将其作为设计各种机床和机器人系统元素的必要输入参数。还展示了HSC在机床和夹具设计中的多功能性。

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