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Experimental Study of Heat-Absorbent Foam Concrete Wall Based Macro-Encapsulation of Beef Tallow/Damar Gum in Building

机译:基于牛肉牛肉/达摩胶型宏观封装在建筑中的宏观封装的实验研究

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Generally, the foam concrete that designs as the current building wall is without considering the heat absorbent. Therefore, it is necessary to find additional materials that able to absorb the heat energy. One of them is Phase Change Material (PCM). Beef tallow is an organic material of PCM that has a high heat storage capability. Commonly, an aggregate requires in the manufacture of foam concrete as reinforcement materials. This aggregate can be changed with macro-encapsulation of PCM. This study aimed to find the ability of foam concrete based macro-encapsulation of beef tallow/damar gum in absorb heat energy that will be applied in building walls. This research was conducted experimentally with the primary materials of cement, fine sand, water, foam agent, catalyst, sika, and macro-encapsulation of beef tallow/damar gum. This foam concrete wall was made with the dimension of 80 x 80 x 10 cm and varied with a mixture of beef tallow/ damar gum of 0%, 1%, 3%, and 5%, respectively. The wall concrete heater was simulated with using four lamps with the power of 200 watts. The type-K thermocouple was placed on samples at 2 points, inside and on the surface, which connected with Agilent 34970A. The results showed that the effect of adding PCM resulted in a decreasing of the temperature inside and on the surface of foam concrete walls. The amount of temperature decreases due to the addition of 5% PCM is from 51.9 °C to 44.7 °C or decreased by 13.87% inside of foam concrete walls and 75.64 °C to 51.9 °C or down to 21.87% on the surface of foam concrete walls. Overall, this foam concrete based macro-encapsulation of beef tallow/damar gum is better to use as heat-absorbent in building wall application compare with foam concrete wall without using macro-encapsulation of beef tallow/damar gum.
机译:通常,作为当前建筑壁设计的泡沫混凝土在不考虑热吸收剂的情况下。因此,有必要找到能够吸收热能的额外材料。其中一个是相变材料(PCM)。牛肉脂肪是PCM的有机材料,具有高储热能力。通常,骨料需要在泡沫混凝土中作为加强材料制造。可以使用PCM的宏封装更改此聚合。本研究旨在找到泡沫混凝土宏观封装牛肉牛肉/达摩胶的能力,吸收热能将应用于建筑墙壁。本研究通过水泥,细砂,水,泡沫塑料,催化剂,淋巴和宏观封装的牛肉脂/伏谷胶的​​主要材料进行了实验进行。该泡沫混凝土壁是由80×80×10cm的尺寸制成的,并且牛肉牛肉/较小胶的混合物分别为0%,1%,3%和5%的混合物。使用带有200瓦功率的四个灯模拟壁混凝土加热器。 Type-k热电偶在2点,内部和表面上放置在样品上,与Agilent 34970A连接。结果表明,添加PCM的效果导致泡沫混凝土墙体内部和表面的温度降低。由于加入5%PCM的温度降低为51.9℃至44.7℃或在泡沫混凝土墙内部的13.87%和75.64°C至51.9°C或下降至21.87%的泡沫表面混凝土墙。总的来说,这种基于泡沫混凝土的宏观封装牛肉牛肉/达摩胶更好地用作建筑墙壁应用中的吸热剂与泡沫混凝土墙相比,而无需使用牛肉牛肉/达摩胶的宏观封装。

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