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Experimental Research on Material Properties of Ancient White Bricks in the Yichun Region, China

机译:伊春地区古代白砖材料性能的实验研究

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The ancient white bricks in the Yichun region occupy a special place in Chinese cultural heritage. In order to study the material properties of these unique bricks, a series of experimental studies were conducted, including measurement of density, compressive strength, thermal conductivity, chemical composition, phase composition, pore structure, micro morphology, and firing temperature. These material properties were tested and analyzed using a variety of methods including X-ray fluorescence (XRF) spectrometry, X-ray diffraction (XRD), scanning electron microscopy (SEM), mercury injection test, thermal expansion test, etc. The material properties of the ancient white bricks were also compared with the material properties of the traditional red bricks and of the traditional blue bricks. The results reveal that while the thermal conductivity of the ancient white bricks is lower than that of the traditional red bricks and of the traditional blue bricks, the ancient white bricks' density is actually slightly higher than that of the traditional red bricks and of the traditional blue bricks. An additional finding is that whereas the compressive strength of the white bricks from the ancient city walls is higher than that of the traditional red bricks and of the traditional blue bricks, the compressive strength of the white bricks from the traditional residential walls is similar to that of the traditional red bricks and of the traditional blue bricks. The main components of these two types of ancient white bricks are basically consistent with the constituents of the natural clay originating in the Yichun region, such as Al-Mg compounds and silicide, furthermore the proportion of each of these main elements is also similar. The phases of these two types of ancient white bricks are mainly composed of -Fe2O3, FeCO3, FeS, enstatite, gaylussite, talc, calcite, quartz, and corundum. The pore size of the two types of ancient white bricks is mainly concentrated in the interval between 0.1 m and 1 m, which is similar to the traditional blue bricks', but is smaller than the traditional red bricks'. The firing temperature of the white bricks from the ancient city walls is between 650 degrees C and 700 degrees C, and the firing temperature of the white bricks from the traditional residential walls is approximately 600 degrees C. These results can provide the basis for the excavation of traditional techniques and a scientific conservation strategy for the ancient Chinese white bricks.
机译:伊春地区的古代白砖在中国文化遗产中占有特殊的地位。为了研究这些独特砖的材料特性,进行了一系列实验研究,包括密度,抗压强度,导热系数,化学成分,相组成,孔结构,微观形态和烧成温度的测量。使用多种方法对这些材料的性能进行了测试和分析,包括X射线荧光(XRF)光谱,X射线衍射(XRD),扫描电子显微镜(SEM),水银注入测试,热膨胀测试等。还将古代白砖的材料与传统红砖和传统蓝砖的材料性能进行了比较。结果表明,尽管古代白砖的导热系数低于传统红砖和传统蓝砖的导热系数,但古代白砖的密度实际上却比传统红砖和传统红砖的导热系数稍高。青砖。另一个发现是,虽然古城墙中的白砖的抗压强度高于传统的红砖和传统的蓝砖,但传统住宅墙的白砖的抗压强度与传统住宅墙的抗压强度相似。传统的红砖和传统的蓝砖。这两种类型的古代白砖的主要成分与伊春地区天然粘土的成分(如铝镁化合物和硅化物)基本一致,而且每种主要元素的比例也相似。这两种类型的古代白砖的相主要由-Fe2O3,FeCO3,FeS,顽辉石,方铅矿,滑石,方解石,石英和刚玉组成。两种类型的古代白砖的孔径主要集中在0.1 m和1 m之间,与传统的青砖相似,但小于传统的红砖。古城墙的白砖烧成温度在650摄氏度至700摄氏度之间,传统住宅墙的白砖烧成温度约为600摄氏度。这些结果可为开挖提供基础技术和中国古代白砖科学保护策略的概述。

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