首页> 外文期刊>Journal of Thermal Engineering >Sepiolite for Powder-Glass Fiber Hybrid Core Materials for Vacuum Insulated Panels: Critical Inner Pressure and Thermal Insulation Performance for Long Service-Time Approach
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Sepiolite for Powder-Glass Fiber Hybrid Core Materials for Vacuum Insulated Panels: Critical Inner Pressure and Thermal Insulation Performance for Long Service-Time Approach

机译:海泡石用于真空绝热板的粉末-玻璃纤维混合芯材:长时间使用的临界内压和绝热性能

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摘要

With increasing driving force on insulation panels with higher insulation performance with lower thicknesses, create a market need to develop new insulation materials. Especially, vacuum insulated panels as superinsulation materials, still have an opportunity to invent new core materials from locally occurring materials like natural fibers and different kind silicates with high porosity like zeolite, sepiolite, diatomite etc. That kind of materials can be used to produce powder-glass fiber hybrid core materials. They have the positive effect on the critical inner pressure of core material. Sepiolite is a Magnesium Hydroxyl Silicate clay with high surface area and fiber-like structure. So that makes the sepiolite is an interesting material for superinsulation research works. Investigation of glass fiber vacuum insulation panels is well justified. As seen from the work, the low sepiolite content and without sepiolite addition glass fib er core materials show better thermal insulation performance. The performance differences on thermal insulation. overall the objectives have been achieved in this study.
机译:随着对具有更高隔热性能和较低厚度的隔热面板的驱动力不断增加,市场需要开发新的隔热材料。尤其是,作为超绝热材料的真空绝热板仍然有机会从本地材料(例如天然纤维和高孔隙率的不同类型的硅酸盐)(例如沸石,海泡石,硅藻土等)中发明新的芯材。此类材料可用于生产粉末-玻璃纤维混合芯材料。它们对芯材的临界内部压力具有积极作用。海泡石是具有高表面积和纤维状结构的镁氢氧化硅酸盐粘土。因此,使海泡石成为用于超绝热研究工作的有趣材料。对玻璃纤维真空隔热板的研究是有充分理由的。从工作中可以看出,海泡石含量低,且不添加海泡石玻璃纤维芯材,具有更好的隔热性能。隔热性能差异。总体而言,这项研究已经实现了目标。

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