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A new method for testing thermal shock resistance properties of soapstone – Effects of microstructures and mineralogical variables

机译:一种皂石散热性能的新方法 - 微观结构和矿物变量的效果

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摘要

Soapstone industry utilizes different types of soapstone mainly as a construction material for fireplaces. In this application soapstone has to meet different temperature requirements in different parts of fireplaces. Mineralogical and structural information is needed for placing an appropriate type of soapstone in an appropriate position in the fireplace construction. This allows employment of higher temperatures resulting in more particulate-free combustion, which makes it possible for soapstone industry to develop more efficient and environmentally friendly fireplaces. Of many soapstone types, which differ from each other in their chemical composition and thermal properties, carbonate soapstone and its microstructural variations were investigated in this study. A new method was developed to measure thermal shock resistant of natural stones. By exposing carbonate soapstone samples of different textural types to rapid temperature changes, it was possible to determine the parameters that affect the capacity of the rock to resist thermal shock. The results indicate that the type of microtexture is an important factor in controlling the thermal shock resistance of carbonate soapstone. The soapstone samples with a high thermal shock resistance show deformation textures, such as crenulation cleavage and S/C mylonite. A strong negative correlation was observed between the thermal shock resistance and length of cleavage domains in foliated rocks. Also a slight elevation in the iron concentration of talc and magnesite was discovered to improve the thermal shock resistance of carbonate soapstone. Attention should especially be paid to the length and planarity of cleavage domains of spaced foliation.
机译:肥皂石业主要用作不同类型的皂石作为壁炉的建筑材料。在本申请中,SOAPStone必须满足壁炉的不同部位的不同温度要求。需要在壁炉施工的适当位置放置适当类型的肥皂晶技术和结构信息。这允许采用更高的温度导致更颗粒状的燃烧,这使得皂石行业可能开发更有效和环保的壁炉。在本研究中研究了许多肥皂晶类型,其在化学成分和热性质中不同于其化学成分和热性质,碳酸皂石及其微观结构变化。开发了一种新方法来测量天然石材的热冲击。通过将不同纹理类型的碳酸皂石样本暴露在快速温度变化中,可以确定影响岩石容量以抵抗热冲击的参数。结果表明,微横纹理的类型是控制碳酸皂石的热抗冲击性的重要因素。 SOAPSTONE样品具有高耐热冲击性显示变形纹理,例如凸起切割和S / C粘糊精。在叶片岩石中的热抗冲击性和裂解域的长度之间观察到强的负相关性。还发现滑石和菱镁矿铁浓度的轻微升高,以改善碳酸皂石的热抗冲击性。尤其应该注意间隔叶片的裂解结构域的长度和平面。

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