节能绝缘地聚合物泡与相变材料的添加
Joanna Marczyk1, Agnieszka Przybek1, Kinga Setlak1
1Cracow University of Technology, Faculty of Materials Engineering and Physics, Warszawska 24, 31-155 Kraków, Poland.
ACS omega
|February 3, 2025
概括
这项研究将相变材料 (PCM) 纳入地质聚合物泡中,增强其隔热性能. 含有5%重量的PCM的地质聚合物泡符合绝缘材料的建筑标准.
科学领域:
- 材料科学 材料科学 材料科学
- 机械工程 机械工程
- 建筑材料科学 建筑材料科学
背景情况:
- 阶段变换材料 (PCM) 在绝缘中用于热调节.
- 地质聚合物泡具有作为轻质建筑材料的潜力.
- 提高热舒适度和室内气候是先进绝缘的关键应用.
研究的目的:
- 评估微粒28S (PCM) 对地质聚合物泡特性的影响.
- 研究PCM修饰的地质聚合物泡的热,物理和机械特性.
- 为了确定这些新材料在建筑应用中的适用性.
主要方法:
- 用飞灰和过氧化合成地质聚合物泡.
- 不同重量百分比的Micronal 28S (0,5,10,15重量百分比) 被纳入成泥.
- 分析了物理,机械,热性能和微观结构.
主要成果:
- 生产了密度约为200公斤/立方米的超轻泡.
- 导热率降至0.057 W/m*K,比热量增加至1.105 kJ/kg*K,PCM含量更高.
- 微小的28S添加导致聚合和孔径减少,影响机械强度.
- 含有0和5%重量的PCM的样本符合绝缘材料的EN 998-1标准.
结论:
- 微米28S有效地增强地质聚合物泡的隔热性能.
- 含有5重%微米28S的地质聚合物泡作为建筑绝缘材料具有前景.
- 这项研究是首次利用Micronal 28S用于具有优越热性能的地质聚合物泡.
更多相关视频
09:22Casting Protocols for the Production of Open Cell Aluminum Foams by the Replication Technique and the Effect on Porosity
Published on: December 11, 2014
14.5K
13:38Synthesis of Biocompatible Liquid Crystal Elastomer Foams as Cell Scaffolds for 3D Spatial Cell Cultures
Published on: April 11, 2017
9.4K
相关概念视频
Thermal Insulation in Masonry Walls
104
In hot, dry climates, the thermal mass of masonry walls can be beneficial, absorbing heat during the day and releasing it at night, thereby stabilizing indoor temperatures. However, in most other climates, additional insulation is necessary to enhance thermal resistance.
External insulation can be applied using an Exterior Insulation and Finish System (EIFS), which involves affixing panels of plastic foam to the wall and covering them with a polymeric stucco reinforced with glass fiber mesh....
External insulation can be applied using an Exterior Insulation and Finish System (EIFS), which involves affixing panels of plastic foam to the wall and covering them with a polymeric stucco reinforced with glass fiber mesh....
104
Phase Changes
4.1K
Phase transitions play an important theoretical and practical role in the study of heat flow. In melting or fusion, a solid turns into a liquid; the opposite process is freezing. In evaporation, a liquid turns into a gas; the opposite process is condensation.
A substance melts or freezes at a temperature called its melting point and boils or condenses at its boiling point. These temperatures depend on pressure. High pressure favors the denser form of the substance, so typically, high pressure...
A substance melts or freezes at a temperature called its melting point and boils or condenses at its boiling point. These temperatures depend on pressure. High pressure favors the denser form of the substance, so typically, high pressure...
4.1K
Molecular Weight of Step-Growth Polymers
2.1K
Step growth polymerization involves bi or multifunctional monomers. Bifunctional monomers react to form linear step growth polymers, whereas multifunctional monomers react to form non-linear or branched polymers.
As the step-growth polymerization involves step-wise condensation of monomers, the molecular weight also builds up eventually. Consequently, high molecular weight polymers are obtained at the late stages of the polymerization, where 99% of monomers have been consumed.
The extent of the...
As the step-growth polymerization involves step-wise condensation of monomers, the molecular weight also builds up eventually. Consequently, high molecular weight polymers are obtained at the late stages of the polymerization, where 99% of monomers have been consumed.
The extent of the...
2.1K
States of Matter and Phase Changes
899
The internal energy of a substance—the total kinetic energy of all its molecules and the potential energy of their associated forces—depends on the strength of the intermolecular forces in the condensed phases and the pressure exerted on the substance. The internal energy of a substance is the highest in the gaseous state, the lowest in the solid state, and intermediate in the liquid state. Phase transitions are caused by changes in physical conditions, such as temperature and...
899
Masonry in Cold and Hot Weather Conditions
78
In cold weather, masonry construction requires specific precautions to ensure mortar does not freeze before curing, as this can significantly weaken its strength and watertightness. Mortar temperature should be maintained between 60°F and 80°F to support proper hydration and curing. Below 40°F, mortar water must be heated, but should not exceed 120°F as high temperatures can reduce mortar's compressive and bond strength.
Other key practices include keeping masonry units...
Other key practices include keeping masonry units...
78
Mass Concreting
53
Mass concreting refers to the process of placing large volumes of concrete, such as in gravity dams. The heat generated during the cement hydration process and differential cooling rates within the concrete mass can lead to a temperature gradient, which can result in thermal cracks in the concrete mass.
To reduce the risk of such cracking, the concrete mix may incorporate low-heat cement and pozzolans to reduce the temperature rise. Pre-cooled angular aggregates and water-reducing admixtures...
To reduce the risk of such cracking, the concrete mix may incorporate low-heat cement and pozzolans to reduce the temperature rise. Pre-cooled angular aggregates and water-reducing admixtures...
53
